A monitoring system and method, storage medium
By configuring specific channel groups for ward-level monitoring equipment in each area, the problem of inter-device interference in WMTS was solved, improving data transmission performance and the reliability of real-time monitoring.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SHENZHEN MINDRAY BIO MEDICAL ELECTRONICS CO LTD
- Filing Date
- 2018-12-29
- Publication Date
- 2026-05-01
AI Technical Summary
In hospitals, when using frequency division multiplexing wireless medical telemetry service (WMTS), interference can easily occur when multiple devices work together, leading to a decrease in data transmission performance.
By configuring corresponding channel groups as transmission channels for ward-level monitoring equipment in each area, pairing interference between ward-level monitoring equipment and main mobile monitoring devices is reduced. Channel allocation is performed using management equipment to ensure the discreteness and uniqueness of channel groups.
It improves data transmission performance, reduces interference between devices, and ensures the reliability and efficiency of real-time monitoring.
Smart Images

Figure CN112839565B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of medical device technology, and in particular to a monitoring system and method, and a storage medium. Background Technology
[0002] Wireless Medical Telemetry Services (WMTS) use radio technology to remotely monitor a patient's physiological parameters, such as pulse and respiratory rate.
[0003] Currently, WMTS (Wireless Multi-Mechanical System) in hospitals helps healthcare professionals effectively monitor patients. Typically, once the device acquiring the patient's physiological parameters wirelessly transmits the collected data to a monitoring device accessible to healthcare professionals, they can obtain real-time information about the patient's condition and take appropriate action. However, due to limitations in spectrum resources, WMTS using frequency division multiplexing often experiences interference when multiple devices are operating simultaneously, compromising data transmission performance. Summary of the Invention
[0004] To address the aforementioned technical problems, embodiments of the present invention aim to provide a monitoring system and method, and a storage medium. By configuring channels in the corresponding channel group as transmission channels for the ward-level monitoring devices included in each area, pairing interference during data transmission between the ward-level monitoring devices and the corresponding primary motion monitoring devices is reduced, thereby improving data transmission performance.
[0005] The technical solution of this invention can be implemented as follows:
[0006] This invention provides a monitoring system, the system comprising:
[0007] At least one ward-level monitoring device belonging to the first area, wherein the at least one ward-level monitoring device is configured with a channel in the first channel group corresponding to the first area as a transmission channel;
[0008] At least one primary motion monitoring device is matched with the at least one ward-level monitoring device. The at least one primary motion monitoring device transmits the patient recovery status parameters corresponding to the target object to the at least one ward-level monitoring device through the channel in the first channel group to realize real-time monitoring of the target object.
[0009] The system described above also includes: management equipment;
[0010] The management device determines a preset channel group corresponding to each region from all channels according to a preset channel allocation method, and configures different channels in the preset channel group as transmission channels for different ward-level monitoring devices in each region.
[0011] The first channel group is a preset channel group corresponding to the first region determined by the management device from all the channels.
[0012] The system also includes at least one auxiliary motion monitoring device;
[0013] The patient recovery status parameters include at least one first patient recovery status parameter collected by at least one primary motion monitoring device and at least one second patient recovery status parameter collected by at least one secondary motion monitoring device.
[0014] The at least one auxiliary motion monitoring device wirelessly transmits the at least one second patient recovery status parameter to the at least one primary motion monitoring device.
[0015] In the above system, the at least one ward-level monitoring device includes a target ward-level monitoring device; the target ward-level monitoring device includes a first wireless communication module, and the management device includes a second wireless communication module;
[0016] The management device determines the first channel corresponding to the target ward-level monitoring device from the first channel group, and transmits the first indication information corresponding to the first channel to the target ward-level monitoring device through the second wireless communication module.
[0017] The target ward-level monitoring device receives the first instruction information through the first wireless communication module and configures the first channel as a transmission channel according to the first instruction information.
[0018] In the above system, the at least one primary motion monitoring device includes a target motion monitoring device, and the target ward-level monitoring equipment corresponds and matches the target motion monitoring device;
[0019] The target motion monitoring device acquires some parameters from the patient's recovery status parameters and transmits these parameters to the target ward-level monitoring device through the first channel.
[0020] In the above system, the target ward-level monitoring device includes a first near-field communication module, and the target motion monitoring device includes a second near-field communication module;
[0021] The target ward-level monitoring device generates a first pairing code by combining a preset serial number and the current time, and transmits the first pairing code to the target motion monitoring device through the first near-field communication module.
[0022] The target motion monitoring device receives the first pairing code through the second near-field communication module and pairs with the target ward-level monitoring device.
[0023] The system described above also includes a non-target movement monitoring device;
[0024] When the non-target motion monitoring device acquires a second pairing code and attempts to pair with the target ward-level monitoring device using the second pairing code, the target ward-level monitoring device refuses to pair with the non-target motion monitoring device.
[0025] In the above system, after the target ward-level monitoring device is powered on, it scans all channels to determine whether the channel currently in working status among all channels is a channel in the first channel group;
[0026] When the channel currently in operation among all the channels is not a channel in the first channel group, the target ward-level monitoring device outputs a mixed-use prompt message to indicate this.
[0027] When the channel in the first channel group is currently in working condition among all the channels, the target ward-level monitoring device is paired with the target motion monitoring device.
[0028] In the above system, the target ward-level monitoring device includes a third wireless communication module, and the target motion monitoring device includes a fourth wireless communication module that can be coupled and communicated with the third wireless communication module.
[0029] The target motion monitoring device transmits some parameters to the ward-level monitoring device via the first channel through the fourth wireless communication module.
[0030] The target ward-level monitoring device receives some of the parameters through the third wireless communication module via the first channel.
[0031] In the above system, the management device determines the second channel corresponding to the target ward-level monitoring device from the second channel group, and transmits the second indication information corresponding to the second channel to the target ward-level monitoring device through the second wireless communication module; wherein, the second channel group is a preset channel group corresponding to the second area determined by the management device from all channels;
[0032] The target ward-level monitoring device receives the second instruction information through the first wireless communication module, stops configuring the first channel according to the second instruction information, and configures the second channel as a transmission channel to leave the first area and join the second area.
[0033] In the above system, each of the at least one ward-level monitoring devices is configured with a preset color label corresponding to the first area to distinguish that the at least one ward-level monitoring device belongs to the first area.
[0034] In the above system, each of the at least one ward-level monitoring devices is configured with preset area identification information corresponding to the first area to distinguish that the at least one ward-level monitoring device belongs to the first area.
[0035] This invention provides a monitoring method applied to at least one ward-level monitoring device belonging to a first area, characterized in that the method includes:
[0036] The patient recovery status parameters corresponding to the target object are received by at least one primary motion monitoring device through the channel in the first channel group corresponding to the first region; wherein, the at least one ward-level monitoring device is matched with the at least one primary motion monitoring device.
[0037] The target object is monitored in real time based on the patient's recovery status parameters.
[0038] In the above scheme, the first channel group is determined by the management device from all channels, the at least one ward-level monitoring device includes a target ward-level monitoring device, the target ward-level monitoring device includes a first wireless communication module, and the management device includes a second wireless communication module; before receiving the patient recovery status parameters corresponding to the target object obtained by at least one primary motion monitoring device through the channels in the first channel group corresponding to the first area, the method further includes:
[0039] The first wireless communication module receives the first instruction information transmitted by the management device.
[0040] The first channel is configured as the transmission channel of the target ward-level monitoring device according to the first instruction information;
[0041] Wherein, the first channel is the transmission channel corresponding to the target ward-level monitoring device determined by the management device from the first channel group, and the management device is used to transmit the first indication information corresponding to the first channel to the target ward-level monitoring device through the second wireless communication module.
[0042] In the above scheme, receiving patient recovery status parameters corresponding to the target object obtained by at least one primary mobility monitoring device through a channel in the first preset channel group corresponding to the first region includes:
[0043] The first channel configured in the target ward-level monitoring device receives a portion of the patient recovery status parameters obtained by the target motion monitoring device in the at least one main motion monitoring device.
[0044] The target motion monitoring device is matched with the target ward-level monitoring equipment.
[0045] In the above scheme, the target ward-level monitoring device includes a first near-field communication module, and before receiving a portion of the patient recovery status parameters acquired by the target motion monitoring device in the at least one main motion monitoring device, the method further includes:
[0046] The first pairing code is generated by combining the target ward-level monitoring equipment with the preset serial number and the current time;
[0047] The first pairing code is transmitted to the target motion monitoring device through the first near-field communication module to achieve pairing with the target motion monitoring device.
[0048] In the above scheme, after transmitting the first pairing code to the target motion monitoring device through the first near-field communication module to achieve pairing with the target motion monitoring device, the method further includes:
[0049] When a non-target motion monitoring device acquires a second pairing code and attempts to pair with the target ward-level monitoring device using the second pairing code, the target ward-level monitoring device refuses to pair with the non-target motion monitoring device.
[0050] In the above scheme, before receiving a portion of the patient recovery status parameters acquired by the target motion monitoring device in the at least one primary motion monitoring device, the method further includes:
[0051] After the target ward-level monitoring device is powered on, the target ward-level monitoring device scans all channels to determine whether the channel currently in operation is a channel in the first channel group.
[0052] If the channel currently in operation is not a channel in the first channel group, the target ward-level monitoring device will output a mixed-use prompt message to indicate this.
[0053] When the channel in the first channel group is currently in working condition among all the channels, the target ward-level monitoring device is paired with the target motion monitoring device.
[0054] In the above scheme, the target ward-level monitoring device includes a third wireless communication module. The device receives, via the first channel configured in the target ward-level monitoring device, a portion of the patient recovery status parameters acquired by the target motion monitoring device in the at least one primary motion monitoring device, including:
[0055] The parameters are received via the first channel through the third wireless communication module.
[0056] In the above scheme, after configuring the first channel as the transmission channel of the target ward-level monitoring device according to the first indication information, the method further includes:
[0057] The first wireless communication module receives the second instruction information transmitted by the management device; the target ward-level monitoring device stops configuring the first channel according to the second instruction information and configures the second channel as the transmission channel of the target ward-level monitoring device, so as to enable the target ward-level monitoring device to leave the first area and join the second area.
[0058] The management device is used to determine the second channel group corresponding to the second region from all channels, and to determine the second channel corresponding to the target ward-level monitoring device from the second channel group, so as to transmit the second indication information corresponding to the second channel to the target ward-level monitoring device through the second wireless communication module.
[0059] This invention provides a monitoring method applied to at least one primary motion monitoring device, wherein the at least one primary motion monitoring device corresponds to at least one ward-level monitoring device belonging to a first area, the method comprising:
[0060] Obtain the patient recovery status parameters corresponding to the target object;
[0061] The patient's recovery status parameters are transmitted to the at least one ward-level monitoring device through a channel in the first channel group, so as to realize real-time monitoring of the target object through the at least one ward-level monitoring device;
[0062] The at least one ward-level monitoring device is configured with a channel in the first channel group corresponding to the first area as a transmission channel.
[0063] In the above scheme, the at least one primary motion monitoring device includes a target motion monitoring device, the at least one ward-level monitoring device includes a target ward-level monitoring device, the target ward-level monitoring device corresponds to and matches the target motion monitoring device, and the step of transmitting the patient recovery status parameters to the at least one ward-level monitoring device through a channel in the first channel group includes:
[0064] The target movement monitoring device acquires some parameters from the patient's recovery status parameters;
[0065] The target motion monitoring device transmits some parameters to the target ward-level monitoring device via the first channel;
[0066] The first channel is a channel in the first channel group configured in the target ward-level monitoring device.
[0067] In the above scheme, the target motion monitoring device includes a second near-field communication module, and before transmitting the partial parameters to the target ward-level monitoring device via the first channel through the target motion monitoring device, the method further includes:
[0068] The second near-field communication module receives the first pairing code transmitted by the target ward-level monitoring device.
[0069] The device is paired with the target ward-level monitoring equipment according to the first pairing code.
[0070] This invention provides a ward-level monitoring device, which includes: a first processor, a first memory, a first communication bus, and a first communication accessory;
[0071] The first communication bus is used to realize the communication connection between the first processor, the first memory and the first communication accessory;
[0072] The first processor and the first communication accessory are used to execute the first monitoring program stored in the first memory to implement the monitoring method described above for at least one ward-level monitoring device.
[0073] This invention provides a primary motion monitoring device, which includes: a second processor, a second memory, a second communication bus, and a second communication accessory;
[0074] The second communication bus is used to realize the communication connection between the second processor, the second memory and the second communication accessory;
[0075] The second processor and the second communication accessory are used to execute the second monitoring program stored in the second memory to implement the monitoring method described above applied to at least one main motion monitoring device.
[0076] This invention provides a computer-readable storage medium storing a monitoring program that can be executed by a processor to implement the monitoring method described above.
[0077] Therefore, in the embodiments of the present invention, the monitoring system includes: at least one ward-level monitoring device belonging to a first area, wherein the at least one ward-level monitoring device is configured with a channel in a first channel group corresponding to the first area as a transmission channel; and at least one primary motion monitoring device corresponding to the at least one ward-level monitoring device, wherein the at least one primary motion monitoring device transmits the acquired patient recovery status parameters corresponding to the target object to the at least one ward-level monitoring device through a channel in the first channel group to achieve real-time monitoring of the target object. In other words, by configuring a channel in a corresponding channel group as a transmission channel for each ward-level monitoring device included in each area, pairing interference during data transmission between the ward-level monitoring device and the corresponding primary motion monitoring device is reduced, thereby improving data transmission performance. Attached Figure Description
[0078] Figure 1 A schematic diagram of a monitoring system provided in an embodiment of the present invention;
[0079] Figure 2 A schematic diagram of a monitoring system provided in an embodiment of the present invention;
[0080] Figure 3 This is a schematic diagram of wearing a primary motion monitoring and secondary motion monitoring device provided in an embodiment of the present invention;
[0081] Figure 4 A schematic diagram of a monitoring system provided in an embodiment of the present invention;
[0082] Figure 5 A communication diagram illustrating a target ward-level monitoring device, a target motion monitoring device, and a management device provided in an embodiment of the present invention;
[0083] Figure 6 A schematic flowchart of a monitoring method provided in an embodiment of the present invention;
[0084] Figure 7 A schematic flowchart of a monitoring method provided in an embodiment of the present invention;
[0085] Figure 8 This is a schematic diagram of the structure of a ward-level monitoring device provided in an embodiment of the present invention;
[0086] Figure 9 This is a schematic diagram of the structure of a mobile monitoring device provided in an embodiment of the present invention. Detailed Implementation
[0087] To gain a more detailed understanding of the features and technical content of the embodiments of the present invention, the implementation of the embodiments of the present invention will be described in detail below with reference to the accompanying drawings. The accompanying drawings are for reference and illustration only and are not intended to limit the embodiments of the present invention.
[0088] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, or apparatuses.
[0089] This invention provides a monitoring system. Figure 1 This is a schematic diagram of a monitoring system provided in an embodiment of the present invention. Figure 1 As shown, the monitoring system includes:
[0090] At least one ward-level monitoring device belonging to the first area, and at least one ward-level monitoring device is configured with a channel in the first channel group corresponding to the first area as a transmission channel;
[0091] At least one primary motion monitoring device is matched with at least one ward-level monitoring device. The at least one primary motion monitoring device transmits the patient recovery status parameters corresponding to the target object to at least one ward-level monitoring device through a channel in the first channel group to achieve real-time monitoring of the target object.
[0092] It should be noted that, in the embodiments of the present invention, the patient recovery status parameters include three types of parameters: exercise-related parameters, such as steps, cadence, distance, calories, etc.; physiological parameters, such as blood oxygen, blood pressure, pulse rate, body temperature, electrocardiogram, respiration, etc., as well as the relevant statistics and rates of change of these parameters; and human body state time parameters, such as exercise-related or sleep-related time parameters characterizing human body state. Specific patient recovery status parameters are not limited in the embodiments of the present invention.
[0093] It should be noted that, in the embodiments of the present invention, the ward-level monitoring equipment can be pre-divided into different areas according to their different locations. That is, ward-level monitoring equipment that is relatively close to each other can be divided into one area. The first area is only one of these areas. For example, in actual hospital applications, ward-level monitoring equipment in the same department is located relatively close to each other. Therefore, ward-level monitoring equipment in the same department can be divided into one area. The specific first area is not limited in the embodiments of the present invention.
[0094] It should be noted that, in the embodiments of the present invention, the monitoring system may include not only ward-level monitoring equipment and mobile monitoring devices belonging to the first area, but also ward-level monitoring equipment and mobile monitoring devices belonging to other areas. The specific number of areas included in the monitoring system and the number of ward-level monitoring equipment and mobile monitoring devices belonging to each area are not limited in the embodiments of the present invention.
[0095] Specifically, the target object is the patient who needs to be monitored. The target object may include multiple patients. Each ward-level monitoring device in the first area can be used to monitor one patient in the first area. Each ward-level monitoring device in the first area is matched with a main motion monitoring device. That is, a main motion monitoring device can actually obtain the patient recovery status parameters corresponding to one patient. In other words, the ward-level monitoring device and the main motion monitoring device can be matched one-to-one.
[0096] Figure 2 This is a schematic diagram of a monitoring system provided in an embodiment of the present invention. Figure 2 As shown, the ward-level monitoring equipment belonging to the first area in the monitoring system includes: ward-level monitoring device 1, ward-level monitoring device 2, and ward-level monitoring device 3. The main motion monitoring device 1 is matched with ward-level monitoring device 1, the main motion monitoring device 2 is matched with ward-level monitoring device 2, and the main motion monitoring device 3 is matched with ward-level monitoring device 3. The first channel group includes channel f. a f b and f c The main motion monitoring device 1 and the ward-level monitoring device 1 communicate via channel f a Communication is achieved between the main mobile monitoring device 2 and the ward-level monitoring device 2 via channel f. b Communication is achieved between the main mobile monitoring device 3 and the ward-level monitoring device 3 via channel f. c To enable communication.
[0097] It should be noted that, in the embodiments of the present invention, different ward-level monitoring devices in at least one ward-level monitoring device belonging to the first area are configured with different channels in the first channel group as transmission channels. That is, if any ward-level monitoring device in at least one ward-level monitoring device belonging to the first area is configured with a channel in the first channel group as a transmission channel, other ward-level monitoring devices cannot be configured with that channel as a transmission channel.
[0098] The main motion monitoring device can be worn anywhere on the target's body, such as on the wrist, leg, arm, chest, finger, or waist.
[0099] In embodiments of the present invention, the monitoring system further includes at least one auxiliary motion monitoring device;
[0100] The patient recovery status parameters include at least one first patient recovery status parameter collected by at least one primary motion monitoring device and at least one second patient recovery status parameter collected by at least one secondary motion monitoring device.
[0101] At least one secondary motion monitoring device wirelessly transmits at least one second patient recovery status parameter to at least one primary motion monitoring device.
[0102] It should be noted that, in the embodiments of the present invention, the motion monitoring device in the monitoring system can be divided into two types: a primary motion monitoring device and an auxiliary motion monitoring device. For each primary motion monitoring device, it can not only collect the first patient recovery status parameter from the patient recovery status parameters, but also collect the second patient recovery status parameter from the patient recovery status parameters collected by the auxiliary motion monitoring device that matches it, thereby transmitting the complete patient recovery status parameters to the corresponding matched ward-level monitoring equipment.
[0103] It is understood that, in the embodiments of the present invention, due to the power consumption involved in communication between the mobile monitoring device and the ward-level monitoring equipment, if each mobile monitoring device worn by the patient communicates with the ward-level monitoring equipment, it will affect the battery life of each mobile monitoring device. Furthermore, if each mobile monitoring device worn by the patient communicates with the ward-level monitoring equipment, it will also occupy a significant amount of spectrum resources. Therefore, to reduce power consumption and avoid occupying excessive spectrum resources, the mobile monitoring devices are divided into two categories: a primary mobile monitoring device that collects patient recovery status parameters, and only the primary mobile monitoring device communicates with the ward-level monitoring equipment, i.e., transmits patient recovery status parameters. In practical use, since ECG is usually a necessary monitoring item, the ECG-Pod can be selected as the primary mobile monitoring device. Of course, in some embodiments, all mobile monitoring devices worn by the patient can act as primary mobile monitoring devices, communicating individually with the ward-level monitoring equipment.
[0104] It is understood that, in the embodiments of the present invention, not only the main motion monitoring device needs to be worn on the patient's body, but the auxiliary motion monitoring device also needs to be worn on the patient's body. Figure 3 This is a schematic diagram illustrating the wearing of an exemplary primary motion detection and secondary motion detection device, provided as an embodiment of the present invention. Figure 3 As shown, the primary mobile monitoring device can be an electrocardiogram signal measuring device (hereinafter referred to as ECG-PoD), worn on the wrist, and the secondary mobile monitoring device can be a non-invasive blood pressure measuring device (hereinafter referred to as NIBP-PoD), worn on the arm. The ECG-PoD can collect the patient's electrocardiogram signal, i.e., the first patient recovery state parameter mentioned above, and the NIBP-PoD can collect the patient's blood pressure data, i.e., the second patient recovery state parameter mentioned above. The NIBP-PoD transmits the patient's blood pressure data to the ECG-PoD wirelessly.
[0105] It should be noted that, in the embodiments of the present invention, the wireless transmission method between the main motion monitoring device and the auxiliary motion monitoring device can be Bluetooth transmission, Wireless-Fidelity (WI-FI) transmission, or other transmission methods. The specific wireless transmission method is not limited in the embodiments of the present invention.
[0106] In an embodiment of the present invention, the monitoring system further includes: a management device, which determines a preset channel group corresponding to each region from all channels according to a preset channel allocation method, and configures different channels in the preset channel group as transmission channels for different ward-level monitoring devices in each region; wherein, the first channel group is the preset channel group corresponding to the first region determined by the management device from all channels.
[0107] It should be noted that, in the embodiments of the present invention, the management device can select a set of discrete channels from all channels as the corresponding preset channel group for each region based on the degree of mutual interference between channels, so as to achieve limited frequency point coexistence.
[0108] It should be noted that, in the embodiments of the present invention, the management device may determine the preset channel group corresponding to each region from all channels according to certain preset rules or certain specific optimal channel algorithms. The specific preset channel allocation method is not limited in the embodiments of the present invention.
[0109] For example, in an embodiment of the present invention, an area is a department in a hospital. For the first department, i.e., the aforementioned first area, the management device selects discrete channels from all channels to obtain a first channel group. The first channel group includes channel f. a f b f c , ......, f n For the second department, the management device simultaneously shifts all channels in the first channel group by one channel to form the second channel group corresponding to the second department. The second channel group includes channel f. a+1 f b+1 f c+1 , ......, f n+1 .
[0110] Figure 4 This is a schematic diagram of a monitoring system provided in an embodiment of the present invention. Figure 4 As shown, the monitoring system includes a first area and a second area, and the first channel group of the first area is f. a f b and f c The second channel group corresponding to the second region is f. a+1 f b+1 f c+1 In the first area, the main motion monitoring device 1 is matched with the ward-level monitoring device 1, the main motion monitoring device 2 is matched with the ward-level monitoring device 2, and the main motion monitoring device 3 is matched with the ward-level monitoring device 3. The main motion monitoring device 1 and the ward-level monitoring device 1 communicate via channel f. a Communication is achieved between the main mobile monitoring device 2 and the ward-level monitoring device 2 via channel f. b Communication is achieved between the main mobile monitoring device 3 and the ward-level monitoring device 3 via channel f. c Communication is achieved. In the second area, the main motion monitoring device 4 is paired with the ward-level monitoring device 4, the main motion monitoring device 5 is paired with the ward-level monitoring device 5, and the main motion monitoring device 6 is paired with the ward-level monitoring device 6. The main motion monitoring device 4 and the ward-level monitoring device 4 communicate via channel f. a+1Communication is achieved through channel f between the main mobile monitoring device 5 and the ward-level monitoring equipment 5. b+1 Communication is achieved between the main mobile monitoring device 6 and the ward-level monitoring equipment 6 via channel f. c+1 To enable communication.
[0111] Figure 5 This is a communication diagram of a target ward-level monitoring device, a target motion monitoring device, and a management device provided in an embodiment of the present invention. The target ward-level monitoring device is any one of at least one ward-level monitoring devices belonging to a first area, and the target motion monitoring device is the only device among at least one main motion monitoring device that corresponds and matches the target ward-level monitoring device. The following will be based on... Figure 5 Detailed instructions on how to conduct communication among the three parties.
[0112] like Figure 5 As shown, in an embodiment of the present invention, at least one ward-level monitoring device includes a target ward-level monitoring device; the target ward-level monitoring device includes a first wireless communication module 101, and the management device includes a second wireless communication module 102;
[0113] The management device determines the first channel corresponding to the target ward-level monitoring device from the first channel group, and transmits the first indication information corresponding to the first channel to the target ward-level monitoring device through the second wireless communication module 102.
[0114] The target ward-level monitoring device receives the first instruction information through the first wireless communication module 101 and configures the first channel as a transmission channel according to the first instruction information.
[0115] It should be noted that, in the embodiments of the present invention, there may be multiple ward-level monitoring devices belonging to the first area, and the target ward-level monitoring device is only any one of them. The specific target ward-level monitoring device is not limited in the embodiments of the present invention.
[0116] For example, in an embodiment of the present invention, the first region includes: ward-level monitoring device 1, ward-level monitoring device 2, ward-level monitoring device 3, ward-level monitoring device 4, and ward-level monitoring device 5, and the first channel group determined by the management device includes channel f. a f b f c f d f e Five channels; the management device selects channel f from the first channel group. aAs the first channel corresponding to the ward-level monitoring device 1, the management device transmits the first indication information to the ward-level monitoring device 1 through the second wireless communication module 102. The ward-level monitoring device 1 receives the first indication information through the first wireless communication module 101. The first indication information is used to instruct the ward-level monitoring device 1 to use channel f a The information configured as a transmission channel allows the ward-level monitoring device 1 to allocate channel f according to the first instruction information. a Configured as a transmission channel.
[0117] It should be noted that, in the embodiments of the present invention, the target ward-level monitoring device and the management device can communicate wirelessly via Wi-Fi. That is, the first wireless communication module 101 included in the target ward-level monitoring device and the second wireless communication module 102 included in the management device can be Wi-Fi modules. The specific first wireless communication module 101 and the second wireless communication module 102 are not limited in the embodiments of the present invention. It should also be noted that the multiple communication modules mentioned in the embodiments of this application can be multiple independent modules or integrated into one module to achieve the functions required by the embodiments of this application.
[0118] In an embodiment of the present invention, at least one primary motion monitoring device includes a target motion monitoring device, and a target ward-level monitoring device is matched with the target motion monitoring device.
[0119] The target motion monitoring device acquires some parameters from the patient's recovery status parameters and transmits some parameters to the target ward-level monitoring equipment through the first channel.
[0120] It should be noted that, in the embodiments of the present invention, the target ward-level monitoring device and the target motion monitoring device are matched accordingly, and the two constitute a pair of communication devices. Since the target motion monitoring device is only one of the main motion monitoring devices, it only obtains a portion of the patient recovery status parameters. This portion of parameters is actually composed of the first patient recovery status parameters collected by the target motion monitoring device itself and the second patient recovery status parameters collected by the auxiliary motion monitoring device that is matched with the target motion monitoring device. This portion of parameters is also the patient recovery status parameters corresponding to the patient that the target ward-level monitoring device needs to monitor.
[0121] It is understood that, in embodiments of the present invention, such as Figure 2As shown, ward-level monitoring device 1 is the target ward-level monitoring device, and correspondingly, main motion monitoring device 1 is the target motion monitoring device. Similarly, ward-level monitoring device 2 is the target ward-level monitoring device, and correspondingly, main motion monitoring device 2 is the target motion monitoring device. Ward-level monitoring device 3 is the target ward-level monitoring device, and correspondingly, main motion monitoring device 3 is the target motion monitoring device.
[0122] It is understood that, in the embodiments of the present invention, since the target ward-level monitoring device is configured with the first channel in the first channel group, the target motion monitoring device corresponding to and matched with the target ward-level monitoring device needs to transmit some parameters to the target ward-level monitoring device through the first channel.
[0123] like Figure 5 As shown, in an embodiment of the present invention, the target ward-level monitoring device includes a first near-field communication module 201, and the target motion monitoring device includes a second near-field communication module 202.
[0124] The target ward-level monitoring device generates a first pairing code by combining the preset serial number and the current time, and transmits the first pairing code to the target motion monitoring device through the first near-field communication module 201;
[0125] The target motion monitoring device receives the first pairing code through the second near-field communication module 202 and pairs with the target ward-level monitoring equipment.
[0126] It is understood that, in the embodiments of the present invention, the target ward-level monitoring device and the corresponding matched target motion monitoring device need to be matched before they can communicate through the first channel.
[0127] It should be noted that, in the embodiments of the present invention, each ward-level monitoring device corresponds to a different serial number. Therefore, the target ward-level monitoring device can combine the preset serial number and the current time to generate a unique pairing code, namely the first pairing code, which is then transmitted to the target motion monitoring device through the first near-field communication module 201. Correspondingly, the target motion monitoring device receives the first pairing code through the second near-field communication module 202, and can then pair with the target ward-level monitoring device according to the first pairing code, thus realizing the pairing of a pair of communication devices.
[0128] It should be noted that, in the embodiments of the present invention, the first near-field communication module and the second near-field communication module can be near-field communication (NFC) modules. Therefore, when the target motion monitoring device and the target ward-level monitoring device touch each other at close range, the target ward-level monitoring device can send the first pairing code to the target motion monitoring device through the first near-field communication module 201, and the target motion monitoring device can receive the first pairing code through the second near-field communication module 202.
[0129] In embodiments of the present invention, the monitoring system further includes a non-target movement monitoring device;
[0130] When a non-target motion monitoring device acquires a second pairing code and attempts to pair with a target ward-level monitoring device using the second pairing code, the target ward-level monitoring device refuses to pair with the non-target motion monitoring device.
[0131] It is understood that, in the embodiments of the present invention, the monitoring system may include multiple primary motion monitoring devices and multiple secondary motion monitoring devices. For the target motion monitoring device, other motion monitoring devices in the monitoring system can be regarded as non-target motion monitoring devices. Non-target motion monitoring devices may have been previously paired with the target ward-level monitoring device, or they may need to be paired with other ward-level monitoring devices. In this case, the non-target motion monitoring device can obtain the pairing code of the previously paired device or the pairing code of the device that needs to be paired with other ward-level monitoring devices. These pairing codes can be used as second pairing codes. Since the non-target motion monitoring device may be around the target ward-level monitoring device, there may be a situation where the non-target motion monitoring device attempts to access the target ward-level monitoring device through the second pairing code. In this case, the target ward-level monitoring device can recognize that it is not the first pairing code and refuse to pair with the non-target motion monitoring device, thus achieving interference-free communication.
[0132] In an embodiment of the present invention, after the target ward-level monitoring device is powered on, it scans all channels to determine whether the channel currently in operation is a channel in the first channel group.
[0133] If the channel currently in operation is not a channel in the first channel group, the target ward-level monitoring device outputs a mixed-use prompt message to indicate this.
[0134] When the channel in the first channel group is the one that is currently in operation among all channels, the target ward-level monitoring device is paired with the target motion monitoring device.
[0135] It is understood that in the embodiments of the present invention, in actual application, there may be situations where ward-level monitoring devices are used interchangeably. For example, a target ward-level monitoring device belonging to the first area may be used by medical staff in other areas. Therefore, after the target ward-level monitoring device is turned on, it is not paired with the target motion monitoring device. Instead, it scans all channels to determine whether the currently active channel is a channel in the first channel group. If it is, it means that the target ward-level monitoring device is currently in the first area and can therefore work normally. If it is not, it means that the target ward-level monitoring device is currently in another area other than the first area. Therefore, it is necessary to output a mixed-use prompt message to remind the medical staff.
[0136] It should be noted that, in the embodiments of the present invention, the output of mixed use prompt information by the target ward-level monitoring device may specifically be an alarm prompt sound, or a relevant text prompt displayed on the display interface of the target ward-level monitoring device. The embodiments of the present invention are not limited thereto.
[0137] like Figure 5 As shown, in an embodiment of the present invention, the target ward-level monitoring device further includes a third wireless communication module 301, and the target motion monitoring device includes a fourth wireless communication module 302 that can be coupled and communicated with the third wireless communication module 301.
[0138] The target movement monitoring device transmits some parameters to the ward-level monitoring equipment via the first channel through the fourth wireless communication module 302.
[0139] The target ward-level monitoring equipment receives some parameters through the third wireless communication module 301 via the first channel.
[0140] It is understood that, in the embodiments of the present invention, the communication between the target ward-level monitoring device and the target motion monitoring device through the first channel relies on the specific third wireless communication module 301 and fourth wireless communication module 302, that is, the transmission is actually carried out by the third wireless communication module 301 and the fourth wireless communication module 302 through the first channel.
[0141] It should be noted that, in the embodiments of the present invention, the target motion monitoring device and the target ward-level monitoring device communicate wirelessly through the third wireless communication module 301 and the fourth wireless communication module 302 via the first channel, which is actually the WMTS transmission mode. The third wireless communication module 301 and the fourth wireless communication module 302 are the hardware required to implement the WMTS transmission mode.
[0142] It should be noted that, in the embodiments of the present invention, the management device can also determine the second channel corresponding to the target ward-level monitoring device from the second channel group, and transmit the second indication information corresponding to the second channel to the target ward-level monitoring device through the second wireless communication module; wherein, the second channel group is a preset channel group corresponding to the second area determined by the management device from the channel group;
[0143] The target ward-level monitoring device receives the second instruction information through the first wireless communication module, stops configuring the first channel according to the second instruction information, and configures the second channel as the transmission channel in order to leave the first area and join the second area.
[0144] It is understood that, in the embodiments of the present invention, in order to use the ward-level monitoring equipment more flexibly, the management equipment can also change the transmission channel configured in one area of the ward-level monitoring equipment and add it to another area for use.
[0145] It should be noted that, in the embodiments of the present invention, the target ward-level monitoring device itself is configured with the first channel in the first channel group, that is, the target ward-level monitoring device belongs to the first area. However, if it is necessary to apply the target ward-level monitoring device to the second area, that is, to use the target ward-level monitoring device as the ward-level monitoring device in the second area, the management device can select a channel from the second channel group corresponding to the second area, that is, the second channel is configured for the target ward-level monitoring device. The selected second channel must be a channel in the second channel group that has not been configured for any ward-level monitoring device belonging to the second area.
[0146] In an embodiment of the present invention, each of the at least one ward-level monitoring devices is configured with a preset color label corresponding to a first area to distinguish that at least one ward-level monitoring device belongs to the first area.
[0147] It is understood that, in the embodiments of the present invention, each ward-level monitoring device in at least one ward-level monitoring device belonging to the first area can be configured with a preset color label. When medical staff see the preset color label, they can determine whether the ward-level monitoring device belongs to the first area. Of course, for each ward-level monitoring device in the monitoring system, a preset color label corresponding to the area can be configured.
[0148] It should be noted that, in the embodiments of the present invention, the preset color label can be an indicator light color, that is, different indicator light colors can be configured for ward-level monitoring devices in different areas; or, the ward-level monitoring device displays a color label in a certain area of the display interface. The specific preset color label is not limited in the embodiments of the present invention.
[0149] In an embodiment of the present invention, each of the at least one ward-level monitoring devices is configured with preset area identification information corresponding to the first area, so as to distinguish that at least one ward-level monitoring device belongs to the first area.
[0150] It is understood that, in the embodiments of the present invention, each ward-level monitoring device in at least one ward-level monitoring device belonging to the first area can be configured with preset area identification information corresponding to the first area. When medical staff see the preset area identification information of the ward-level monitoring device, they can determine whether the ward-level monitoring device belongs to the first area. Of course, for each ward-level monitoring device in the monitoring system, a preset area identification information corresponding to the corresponding area can be configured.
[0151] For example, in an embodiment of the present invention, the monitoring system includes: a first area, a second area, a third area, ..., an Nth area, wherein the ward-level monitoring devices in the first area are all configured with a preset area identity ID1, the ward-level monitoring devices in the second area are all configured with a preset area identity ID2, the ward-level monitoring devices in the third area are all configured with a preset area identity ID3, ..., and the ward-level monitoring devices in the Nth area are all configured with a preset area identity IDDN.
[0152] This invention provides a monitoring system, comprising: at least one ward-level monitoring device belonging to a first area, wherein the at least one ward-level monitoring device is configured with a channel in a first channel group corresponding to the first area as a transmission channel; and at least one primary motion monitoring device corresponding to the at least one ward-level monitoring device, wherein the at least one primary motion monitoring device transmits acquired patient recovery status parameters corresponding to a target object to the at least one ward-level monitoring device through a channel in the first channel group to achieve real-time monitoring of the target object. In other words, the monitoring system provided by this invention, by configuring a channel in a corresponding channel group as a transmission channel for each ward-level monitoring device included in each area, reduces mutual interference between the ward-level monitoring devices and the corresponding motion monitoring devices during data transmission, thereby improving data transmission performance.
[0153] Another embodiment of the present invention provides a monitoring method applied to at least one ward-level monitoring device belonging to a first area. Figure 6 This is a flowchart illustrating a monitoring method provided in an embodiment of the present invention. Figure 6 As shown, the main steps include:
[0154] S601, receive patient recovery status parameters corresponding to the target object obtained by at least one primary motion monitoring device through a channel in the first channel group corresponding to the first region; wherein, at least one ward-level monitoring device is matched with at least one primary motion monitoring device.
[0155] In an embodiment of the present invention, at least one ward-level monitoring device belonging to the first area is configured with a channel in the first channel group to communicate with at least one primary motion monitoring device.
[0156] It should be noted that in the embodiments of the present invention, the patient recovery status parameters are the same as those defined in the above embodiments, and will not be repeated here.
[0157] Specifically, at least one mobile monitoring device can be matched one-to-one with at least one ward-level monitoring device. For example, the first area specifically includes ward-level monitoring device 1, ward-level monitoring device 2 and ward-level monitoring device 3. The first area specifically includes main mobile monitoring device 1, main mobile monitoring device 2 and main mobile monitoring device 3. Among them, ward-level monitoring device 1 is matched with main mobile monitoring device 1, ward-level monitoring device 2 is matched with main mobile monitoring device 2, and ward-level monitoring device 3 is matched with mobile monitoring device 3.
[0158] It should be noted that, in the embodiments of the present invention, before at least one ward-level monitoring device receives the patient recovery status parameters corresponding to the target object obtained by at least one main motion monitoring device through the channel in the first channel group corresponding to the first area, each of the at least one ward-level monitoring devices needs to configure the channel in the first channel group as the transmission channel.
[0159] Specifically, in embodiments of the present invention, the first channel group is determined by the management device from all channels, and at least one ward-level monitoring device includes a target ward-level monitoring device. The target ward-level monitoring device includes a first wireless communication module 101, and the management device includes a second wireless communication module 102. The target ward-level monitoring device receives first indication information transmitted by the management device through the first wireless communication module 101. Then, according to the first indication information, it configures the first channel as the transmission channel of the target ward-level monitoring device. The first channel is the transmission channel corresponding to the target ward-level monitoring device determined by the management device from the first channel group. The management device is used to transmit the first indication information corresponding to the first channel to the target ward-level monitoring device through the second wireless communication module 102.
[0160] It should be noted that, in the embodiments of the present invention, the target ward-level monitoring device is any one of the at least one ward-level monitoring devices belonging to the first area, and the specific target ward-level monitoring device is not limited in the embodiments of the present invention.
[0161] Specifically, in an embodiment of the present invention, at least one motion monitoring device receives patient recovery status parameters corresponding to a target object obtained by at least one master motion monitoring device through a channel in a first preset channel group corresponding to a first region, including: receiving a portion of the patient recovery status parameters obtained by the target motion monitoring device among at least one master motion monitoring device through a first channel configured in the target ward-level monitoring device; wherein, the target motion monitoring device and the target ward-level monitoring device are matched accordingly.
[0162] For example, in an embodiment of the present invention, the first channel group includes channel f. a f b f c Target ward-level monitoring equipment configuration channel f a As a transmission channel, therefore, in at least one primary motion monitoring device, the target motion monitoring device corresponding to and matched with the target ward-level monitoring device is actually connected via channel f. a Transmits some parameters of the patient's recovery status acquired by itself; correspondingly, at least one ward-level monitoring device transmits the data through channel f to the target ward-level monitoring device. a Receive some parameters of the patient's recovery status.
[0163] S602. Real-time monitoring of the target object based on the patient's recovery status parameters.
[0164] In an embodiment of the present invention, at least one ward-level monitoring device can perform real-time monitoring of the target object based on the patient's recovery status parameters after receiving the patient's recovery status parameters.
[0165] It should be noted that, in the embodiments of the present invention, each of the at least one main motion monitoring device transmits a portion of the patient recovery status parameters. These portion parameters can actually be different relevant parameters for different patients, which together constitute the complete patient recovery status parameters. In other words, at least one ward-level monitoring device receives different portion parameters through each ward-level monitoring device, which can actually monitor different patients.
[0166] It should be noted that, in the embodiments of the present invention, before at least one ward-level monitoring device receives some parameters from the patient's recovery status parameters through the target ward-level monitoring device, the target ward-level monitoring device also needs to be paired with the target motion monitoring device.
[0167] Specifically, in an embodiment of the present invention, the target ward-level monitoring device includes a first near-field communication module 201. Before at least one ward-level monitoring device receives some parameters from the patient recovery status parameters acquired by at least one main motion monitoring device through the target ward-level monitoring device, the following steps are further included: generating a first pairing code by combining a preset serial number and the current time through the target ward-level monitoring device; transmitting the first pairing code to the target motion monitoring device through the first near-field communication module 201 to achieve pairing with the target motion monitoring device.
[0168] It should be noted that, in the embodiments of the present invention, after the target ward-level monitoring device transmits the first pairing code to the target motion monitoring device through the first near-field communication module 201 to achieve pairing with the target motion monitoring device, the following steps are also included: when the non-target motion monitoring device obtains the second pairing code and attempts to pair with the target ward-level monitoring device through the second pairing code, the target ward-level monitoring device refuses to pair with the non-target motion monitoring device.
[0169] It is understood that, in the embodiments of the present invention, each ward-level monitoring device corresponds to a different serial number, i.e. a unique identifier. Therefore, at least one ward-level monitoring device can generate a first pairing code by combining the target ward-level monitoring device with the preset serial number and the current time. The preset serial number is the preset serial number of the target ward-level monitoring device itself. When the target motion monitoring device receives the first pairing code, it can establish a pairing with the target ward-level monitoring device. Of course, other motion monitoring devices that cannot obtain the first pairing code cannot pair with the target ward-level monitoring device.
[0170] It should be noted that, in the embodiments of the present invention, before at least one ward-level monitoring device receives some parameters from the patient recovery status parameters acquired by the target motion monitoring device in at least one main motion monitoring device through the target ward-level monitoring device, the following steps may be included: after the target ward-level monitoring device is powered on, the target ward-level monitoring device scans all channels to determine whether the channels currently in working status among all channels are channels in the first channel group; when the channels currently in working status among all channels are not channels in the first channel group, the target ward-level monitoring device outputs a mixed-use prompt message to provide a prompt; when the channels currently in working status among all channels are channels in the first channel group, the target ward-level monitoring device and the target motion monitoring device are paired.
[0171] It is understood that in the embodiments of the present invention, in actual application, there may be situations where ward-level monitoring devices are used interchangeably. For example, a target ward-level monitoring device belonging to the first area may be used by medical staff in other areas. Therefore, after the target ward-level monitoring device is turned on, it is not paired with the target motion monitoring device. Instead, it scans all channels to determine whether the currently active channel is a channel in the first channel group. If it is, it means that the target ward-level monitoring device is currently in the first area and can therefore work normally. If it is not, it means that the target ward-level monitoring device is currently in another area other than the first area. Therefore, it is necessary to output a mixed-use prompt message to remind the medical staff.
[0172] It should be noted that, in the embodiments of the present invention, the output of mixed use prompt information by the target ward-level monitoring device may specifically be an alarm prompt sound, or a relevant text prompt displayed on the display interface of the target ward-level monitoring device. The embodiments of the present invention are not limited thereto.
[0173] It should be noted that, in the embodiments of the present invention, the target ward-level monitoring device includes a third wireless communication module 301. At least one ward-level monitoring device receives, through a first channel configured in the target ward-level monitoring device, a portion of the parameters in the patient recovery status parameters obtained by the target motion monitoring device in at least one main motion monitoring device. Specifically, the portion of the parameters is received through the third wireless communication module via the first channel.
[0174] It should be noted that, in the embodiments of the present invention, after at least one ward-level monitoring device configures the first channel as the transmission channel of the target ward-level monitoring device according to the first instruction information, the following steps may be further included: receiving the second instruction information transmitted by the management device through the first wireless communication module; the target ward-level monitoring device stops configuring the first channel according to the second instruction information and configures the second channel as the transmission channel of the target ward-level monitoring device, so as to realize that the target ward-level monitoring device leaves the first area and joins the second area; wherein, the management device is used to determine the second channel group corresponding to the second area from all channels, and determine the second channel corresponding to the target ward-level monitoring device from the second channel group, so as to transmit the second instruction information corresponding to the second channel to the target ward-level monitoring device through the second wireless communication module.
[0175] It is understood that, in the embodiments of the present invention, in order to make more flexible use of ward-level monitoring equipment, for example, if the number of patients requiring monitoring in the second area of the monitoring system increases and more ward-level monitoring equipment is needed, the ward-level monitoring equipment in the first area can be called to the first area, while the ward-level monitoring equipment in the second area is configured with channels in the second channel group. Therefore, it is necessary to replace the channels in the first channel group configured for the ward-level monitoring equipment in the first area with channels in the second channel group.
[0176] Another embodiment of the present invention provides a monitoring method applied to at least one primary motion monitoring device, wherein the primary motion monitoring device is matched with at least one ward-level monitoring device belonging to a first area. Figure 7 This is a flowchart illustrating a monitoring method provided in an embodiment of the present invention. Figure 7 As shown, the main steps include:
[0177] S701. Obtain the patient recovery status parameters corresponding to the target object.
[0178] In an embodiment of the present invention, at least one primary motion monitoring device can acquire patient recovery status parameters corresponding to the target object.
[0179] It should be noted that, in the embodiments of the present invention, the target object can be multiple patients, wherein one patient corresponds to one main motion monitoring device, that is, one patient wears one main motion monitoring device, and each main motion monitoring device can acquire relevant parameters of the corresponding patient, and the relevant parameters of each patient are part of the parameters in the patient's recovery status parameters.
[0180] It should be noted that, in the embodiments of the present invention, each of the at least one primary motion monitoring device may also have a corresponding matching secondary motion monitoring device. The primary motion monitoring device itself can collect some parameters from the patient's recovery status parameters, such as electrocardiogram signals, and can also collect some parameters collected by the secondary motion monitoring device, such as blood pressure data.
[0181] S702. The patient's recovery status parameters are transmitted to at least one ward-level monitoring device through the channel in the first channel group, so as to realize real-time monitoring of the target object through at least one ward-level monitoring device; wherein, at least one ward-level monitoring device is configured with the channel in the first channel group corresponding to the first area as the transmission channel.
[0182] In embodiments of the present invention, at least one primary motion monitoring device includes a target motion monitoring device, and at least one ward-level monitoring device includes a target ward-level monitoring device. The target ward-level monitoring device corresponds and matches the target motion monitoring device. The at least one primary motion monitoring device transmits patient recovery status parameters to the at least one ward-level monitoring device through a channel in a first channel group, including: acquiring a portion of the patient recovery status parameters through the target motion monitoring device; and transmitting the portion of the parameters to the target ward-level monitoring device through the target motion monitoring device using a first channel. The first channel is a channel in a first channel group configured for the target ward-level monitoring device.
[0183] It should be noted that, in the embodiments of the present invention, the target movement monitoring device includes a fourth wireless communication module 302, which specifically transmits some parameters to the target ward-level monitoring device through the first channel via the fourth wireless communication module 302.
[0184] It should be noted that, in the embodiments of the present invention, the target motion monitoring device includes a second near-field communication module 202. Before at least one main motion monitoring device transmits some parameters to the target ward-level monitoring device through the target motion monitoring device via the first channel, the device further includes: receiving a first pairing code transmitted by the target ward-level monitoring device through the second near-field communication module; and pairing with the target ward-level monitoring device according to the first pairing code.
[0185] It should be noted that, in the embodiments of the present invention, the second near-field communication module 202 can actually be an NFC module. Correspondingly, the target ward-level monitoring device that is matched with the target motion monitoring device includes the first near-field communication module 201. When the target ward-level monitoring device and the target motion monitoring device touch at close range, the first pairing code can be transmitted through the first near-field communication module 201 and the second near-field communication module 202 to achieve pairing.
[0186] Another embodiment of the present invention provides a ward-level monitoring device. Figure 8 This is a schematic diagram of a ward-level monitoring device provided in an embodiment of the present invention. Figure 8 As shown, the ward-level monitoring device includes: a first processor 801, a first memory 802, a first communication bus 803, and a first communication accessory 804;
[0187] The first communication bus 803 is used to realize the communication connection between the first processor 801, the first memory 802 and the first communication accessory 804;
[0188] The first processor 801 and the first communication accessory 804 are used to execute the first monitoring program stored in the first memory 802 to implement the monitoring method described above applied to at least one ward-level monitoring device.
[0189] Another embodiment of the present invention provides a main motion monitoring device. Figure 9 This is a schematic diagram of a mobile monitoring device provided in an embodiment of the present invention. Figure 9 As shown, the main motion monitoring device includes: a second processor 901, a second memory 902, a second communication bus 903, and a second communication accessory 904;
[0190] The second communication bus 903 is used to realize the communication connection between the second processor 901, the second memory 902, and the second communication accessory 904;
[0191] The second processor 901 and the second communication accessory 904 are used to execute the second monitoring program stored in the second memory 902 to implement the monitoring method applied to the main motion monitoring device described above.
[0192] This invention also provides a computer-readable storage medium storing a monitoring program that can be executed by a processor to implement the above-described monitoring method.
[0193] It should be noted that computer-readable storage media can be volatile memory, such as random-access memory (RAM); or non-volatile memory, such as read-only memory (ROM), flash memory, hard disk drive (HDD), or solid-state drive (SSD); or devices that include one or any combination of the above-mentioned memory, such as mobile phones, computers, tablet devices, personal digital assistants, etc.
[0194] Those skilled in the art will understand that embodiments of the present invention can be provided as methods, systems, or computer program products. Therefore, the present invention can take the form of hardware embodiments, software embodiments, or embodiments combining software and hardware aspects. Furthermore, the present invention can take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage and optical storage) containing computer-usable program code.
[0195] This invention is described with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of the invention. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable signal processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable signal processing apparatus, generate instructions for implementing the flowchart illustrations and / or block diagrams. Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.
[0196] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable signal processing device to operate in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function specified in one or more boxes.
[0197] These computer program instructions can also be loaded onto a computer or other programmable signal processing device to cause a series of operational steps to be performed on the computer or other programmable device to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable device for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function specified in one or more boxes.
[0198] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention.
[0199] Industrial applicability
[0200] In the technical solution of this invention embodiment, the monitoring system includes: at least one ward-level monitoring device belonging to a first area, wherein the at least one ward-level monitoring device is configured with a channel in a first channel group corresponding to the first area as a transmission channel; and at least one primary motion monitoring device corresponding to the at least one ward-level monitoring device, wherein the at least one primary motion monitoring device transmits the acquired patient recovery status parameters corresponding to the target object to the at least one ward-level monitoring device through a channel in the first channel group to achieve real-time monitoring of the target object. In other words, by configuring a channel in a corresponding channel group as a transmission channel for each ward-level monitoring device included in each area, pairing interference during data transmission between the ward-level monitoring device and the corresponding primary motion monitoring device is reduced, thereby improving data transmission performance.
Claims
1. A monitoring system that uses wireless medical telemetry services for remote monitoring, characterized in that, The system includes: At least one ward-level monitoring device belonging to the first area, wherein the at least one ward-level monitoring device is configured with a channel in the first channel group corresponding to the first area as a transmission channel; wherein the ward-level monitoring device is pre-divided into different areas according to different locations; At least one primary motion monitoring device is matched with the at least one ward-level monitoring device. The at least one primary motion monitoring device transmits the patient recovery status parameters corresponding to the target object to the at least one ward-level monitoring device through the channel in the first channel group to realize real-time monitoring of the target object. Wherein, the first channel group is a preset channel group corresponding to the first region determined from all channels; different channels in the preset channel group are used as transmission channels and correspond to different ward-level monitoring devices in the first region, and the first region is a department in a hospital.
2. The system according to claim 1, characterized in that, The system also includes: management equipment; The management device determines a preset channel group corresponding to each region from all channels according to a preset channel allocation method, and configures different channels in the preset channel group as transmission channels for different ward-level monitoring devices in each region.
3. The system according to claim 1, characterized in that, The system also includes at least one auxiliary motion monitoring device; The patient recovery status parameters include at least one first patient recovery status parameter collected by at least one primary motion monitoring device and at least one second patient recovery status parameter collected by at least one secondary motion monitoring device. The at least one auxiliary motion monitoring device wirelessly transmits the at least one second patient recovery status parameter to the at least one primary motion monitoring device.
4. The system according to claim 2, characterized in that, The at least one ward-level monitoring device includes a target ward-level monitoring device; the target ward-level monitoring device includes a first wireless communication module, and the management device includes a second wireless communication module; The management device determines the first channel corresponding to the target ward-level monitoring device from the first channel group, and transmits the first indication information corresponding to the first channel to the target ward-level monitoring device through the second wireless communication module. The target ward-level monitoring device receives the first instruction information through the first wireless communication module and configures the first channel as a transmission channel according to the first instruction information.
5. The system according to claim 4, characterized in that, The at least one primary motion monitoring device includes a target motion monitoring device, and the target ward-level monitoring equipment corresponds and matches the target motion monitoring device; The target motion monitoring device acquires some parameters from the patient's recovery status parameters and transmits these parameters to the target ward-level monitoring device through the first channel.
6. The system according to claim 5, wherein the target ward-level monitoring device includes a first near-field communication module, and the target motion monitoring device includes a second near-field communication module; The target ward-level monitoring device generates a first pairing code by combining a preset serial number and the current time, and transmits the first pairing code to the target motion monitoring device through the first near-field communication module. The target motion monitoring device receives the first pairing code through the second near-field communication module and pairs with the target ward-level monitoring device.
7. The system according to claim 6, characterized in that, The system also includes a non-target movement monitoring device; When the non-target motion monitoring device acquires a second pairing code and attempts to pair with the target ward-level monitoring device using the second pairing code, the target ward-level monitoring device refuses to pair with the non-target motion monitoring device.
8. The system according to claim 5, characterized in that, After the target ward-level monitoring equipment is powered on, it scans all channels to determine whether the channel currently in operation among all channels is a channel in the first channel group. When the channel currently in operation among all the channels is not a channel in the first channel group, the target ward-level monitoring device outputs a mixed-use prompt message to indicate this. When the channel in the first channel group is currently in working condition among all the channels, the target ward-level monitoring device is paired with the target motion monitoring device.
9. The system according to claim 5, characterized in that, The target ward-level monitoring equipment includes a third wireless communication module, and the target motion monitoring device includes a fourth wireless communication module that can be coupled and communicate with the third wireless communication module. The target motion monitoring device transmits some parameters to the ward-level monitoring device via the first channel through the fourth wireless communication module. The target ward-level monitoring device receives some of the parameters through the third wireless communication module via the first channel.
10. The system according to claim 4, characterized in that, The management device determines the second channel corresponding to the target ward-level monitoring device from the second channel group, and transmits the second indication information corresponding to the second channel to the target ward-level monitoring device through the second wireless communication module; wherein, the second channel group is a preset channel group corresponding to the second area determined by the management device from all channels; The target ward-level monitoring device receives the second instruction information through the first wireless communication module, stops configuring the first channel according to the second instruction information, and configures the second channel as a transmission channel to leave the first area and join the second area.
11. The system according to claim 1, characterized in that, Each of the at least one ward-level monitoring devices is equipped with a preset color label corresponding to the first area to distinguish that the at least one ward-level monitoring device belongs to the first area.
12. The system according to claim 1, characterized in that, Each of the at least one ward-level monitoring devices is configured with preset area identification information corresponding to the first area to distinguish that the at least one ward-level monitoring device belongs to the first area.
13. A monitoring method, employing wireless medical telemetry services for remote monitoring, applied to at least one ward-level monitoring device belonging to a first area, wherein the ward-level monitoring device is pre-divided into different areas according to different locations, characterized in that, The method includes: The patient recovery status parameters corresponding to the target object are received by at least one primary motion monitoring device through the channel in the first channel group corresponding to the first region; wherein, the at least one ward-level monitoring device is matched with the at least one primary motion monitoring device. The target object is monitored in real time based on the patient's recovery status parameters; Wherein, the first channel group is a preset channel group corresponding to the first region determined from all channels; different channels in the preset channel group are used as transmission channels and correspond to different ward-level monitoring devices in the first region, and the first region is a department in a hospital.
14. The method according to claim 13, characterized in that, The first channel group is determined by the management device from all channels; the at least one ward-level monitoring device includes a target ward-level monitoring device, the target ward-level monitoring device includes a first wireless communication module, and the management device includes a second wireless communication module; before receiving the patient recovery status parameters corresponding to the target object obtained by at least one primary motion monitoring device through the channels in the first channel group corresponding to the first area, the method further includes: The first wireless communication module receives the first instruction information transmitted by the management device. The first channel is configured as the transmission channel of the target ward-level monitoring device according to the first instruction information; Wherein, the first channel is the transmission channel corresponding to the target ward-level monitoring device determined by the management device from the first channel group, and the management device is used to transmit the first indication information corresponding to the first channel to the target ward-level monitoring device through the second wireless communication module.
15. The method according to claim 14, characterized in that, The step of receiving patient recovery status parameters corresponding to the target object from at least one primary mobility monitoring device via a channel in the first preset channel group corresponding to the first region includes: The first channel configured in the target ward-level monitoring device receives a portion of the patient recovery status parameters obtained by the target motion monitoring device in the at least one main motion monitoring device. The target motion monitoring device is matched with the target ward-level monitoring equipment.
16. The method according to claim 15, characterized in that, The target ward-level monitoring device includes a first near-field communication module. Before receiving a portion of the patient recovery status parameters acquired by the target motion monitoring device in the at least one main motion monitoring device, the method further includes: The first pairing code is generated by combining the target ward-level monitoring equipment with the preset serial number and the current time; The first pairing code is transmitted to the target motion monitoring device through the first near-field communication module to achieve pairing with the target motion monitoring device.
17. The method according to claim 16, characterized in that, After transmitting the first pairing code to the target motion monitoring device via the first near-field communication module to achieve pairing with the target motion monitoring device, the method further includes: When a non-target motion monitoring device acquires a second pairing code and attempts to pair with the target ward-level monitoring device using the second pairing code, the target ward-level monitoring device refuses to pair with the non-target motion monitoring device.
18. The method according to claim 15, characterized in that, Before receiving a portion of the patient recovery status parameters acquired by the target motion monitoring device in the at least one primary motion monitoring device, the method further includes: After the target ward-level monitoring device is powered on, the target ward-level monitoring device scans all channels to determine whether the channel currently in operation is a channel in the first channel group. If the channel currently in operation is not a channel in the first channel group, the target ward-level monitoring device will output a mixed-use prompt message to indicate this. When the channel in the first channel group is currently in working condition among all the channels, the target ward-level monitoring device is paired with the target motion monitoring device.
19. The method according to claim 15, characterized in that, The target ward-level monitoring device includes a third wireless communication module, which receives, via the first channel configured in the target ward-level monitoring device, a portion of the patient recovery status parameters acquired by the target motion monitoring device in the at least one primary motion monitoring device, including: The parameters are received via the first channel through the third wireless communication module.
20. The method according to claim 14, characterized in that, After configuring the first channel as the transmission channel of the target ward-level monitoring device according to the first indication information, the method further includes: The first wireless communication module receives the second instruction information transmitted by the management device; the target ward-level monitoring device stops configuring the first channel according to the second instruction information and configures the second channel as the transmission channel of the target ward-level monitoring device, so as to enable the target ward-level monitoring device to leave the first area and join the second area. The management device is used to determine the second channel group corresponding to the second region from all channels, and to determine the second channel corresponding to the target ward-level monitoring device from the second channel group, so as to transmit the second indication information corresponding to the second channel to the target ward-level monitoring device through the second wireless communication module.
21. A monitoring method, employing wireless medical telemetry services for remote monitoring, applied to at least one primary motion monitoring device, characterized in that, The at least one primary motion monitoring device is matched with at least one ward-level monitoring device belonging to the first area, and the method includes: Obtain the patient recovery status parameters corresponding to the target object; The patient's recovery status parameters are transmitted to the at least one ward-level monitoring device through a channel in the first channel group, so as to realize real-time monitoring of the target object through the at least one ward-level monitoring device, wherein the ward-level monitoring device is pre-divided into different areas according to different locations; Wherein, the at least one ward-level monitoring device is configured with a channel in the first channel group corresponding to the first area as a transmission channel, and the first channel group is a preset channel group corresponding to the first area determined from all channels; different channels in the preset channel group are used as transmission channels and correspond to different ward-level monitoring devices in the first area, and the first area is a department in the hospital.
22. The method according to claim 21, characterized in that, The at least one primary motion monitoring device includes a target motion monitoring device, and the at least one ward-level monitoring device includes a target ward-level monitoring device. The target ward-level monitoring device corresponds to and is matched with the target motion monitoring device. The step of transmitting the patient recovery status parameters to the at least one ward-level monitoring device through a channel in the first channel group includes: The target movement monitoring device acquires some parameters from the patient's recovery status parameters; The target motion monitoring device transmits some parameters to the target ward-level monitoring device via the first channel; The first channel is a channel in the first channel group configured in the target ward-level monitoring device.
23. The method according to claim 22, characterized in that, The target motion monitoring device includes a second near-field communication module. Before transmitting the partial parameters to the target ward-level monitoring device via the first channel, the method further includes: The second near-field communication module receives the first pairing code transmitted by the target ward-level monitoring device. The device is paired with the target ward-level monitoring equipment according to the first pairing code.
24. A ward-level monitoring device, characterized in that, The ward-level monitoring equipment includes: a first processor, a first memory, a first communication bus, and a first communication accessory; The first communication bus is used to realize the communication connection between the first processor, the first memory and the first communication accessory; The first processor and the first communication accessory are configured to execute a first monitoring program stored in the first memory to implement the method described in any one of claims 13-20.
25. A main motion monitoring device, characterized in that, The main motion monitoring device includes: a second processor, a second memory, a second communication bus, and a second communication accessory; The second communication bus is used to realize the communication connection between the second processor, the second memory and the second communication accessory; The second processor and the second communication accessory are configured to execute the second monitoring program stored in the second memory to implement the method described in any one of claims 21-23.
26. A computer-readable storage medium storing a monitoring program that can be executed by a processor to implement the method of any one of claims 13-23.
Citation Information
Patent Citations
Wireless intelligent tutelage system and method for medical treatment
CN101152077A
Sickroom wireless monitoring system based on ZigBee
CN101371801A
Central monitoring method and central monitoring system for wards
CN105787285A
Special nursing and warning system for intelligent ward
CN107301325A