Temperature control management system and control method thereof
By designing a temperature control management system, using data gatherers and management terminals to collect and monitor data from medical thermostats in real time, the problem of temperature management wastes manpower and inability to detect abnormal temperature control in clinical applications of medical thermostats is solved, and efficient temperature control management and abnormal alarms are achieved.
Patent Information
- Application Number
- CN202510124174.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-26
- Publication Date
- 2025-05-06
AI Technical Summary
In clinical applications, existing medical thermostats have problems such as waste of manpower in body temperature management and inability to detect abnormal temperature control in time.
A temperature control management system is designed, including multiple medical thermostats, data gatherers and management terminals. The sensor collects patient monitoring data in real time, and the data collector transmits the data to the management terminal, which is used to judge temperature control abnormalities and alarm, and at the same time, it centrally displays the real-time monitoring data and temperature control abnormal information of each bed.
It realizes the management of body temperature of patients in multiple beds, remotely monitors the abnormal temperature control information of medical thermostats, greatly saving human resources, improving work efficiency and convenience of use.
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Figure CN119937680A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of temperature control management, and in particular to a temperature control management system and a control method thereof. Background Art
[0002] Medical thermostats, also known as sub-hypothermia therapeutic devices, are widely used in clinical practice. Their main application areas are: after neurosurgery, patients will have fever in their bodies and heads. Medical thermostats provide a method of physically cooling the body. When the body temperature is maintained at 33 to 36 degrees, it promotes the recovery of brain cells. In the actual application of medical thermostats, there is currently one machine for each bed. In clinical use, medical staff will go to the bed at intervals to observe the use of the medical thermostat and the patient's body temperature. This method is not suitable for a large number of medical thermostats, which brings unnecessary work burdens to medical staff and causes a waste of human resources. In addition, existing medical thermostats cannot store patients' body temperature treatment data, making it inconvenient for hospital departments to manage patients' body temperatures and unable to promptly detect temperature control anomalies in medical thermostats. Summary of the invention
[0003] In view of this, an embodiment of the present application provides a temperature control management system and a control method thereof to solve the problem that medical temperature controllers waste manpower in temperature management and fail to detect temperature control abnormalities in a timely manner.
[0004] In a first aspect, an embodiment of the present application provides a temperature control management system, comprising: a plurality of medical temperature controllers, a data collector, and a management terminal, wherein one medical temperature controller is provided for each bed, and the data collector is respectively connected to each medical temperature controller and the management terminal;
[0005] Each of the medical temperature controllers comprises a sensor, and each of the medical temperature controllers collects the real-time monitoring data of the patient in the bed through the sensor to obtain the real-time monitoring data;
[0006] The management terminal is used to obtain the real-time monitoring data of each of the beds through the data collector to determine whether the medical temperature controller in each of the beds has abnormal temperature control, and to issue an abnormal alarm when it is determined that there is abnormal temperature control;
[0007] The management terminal is also used to centrally display the real-time monitoring data and temperature control abnormality information of each of the beds through a display interface.
[0008] In a first possible embodiment of the first aspect, the data concentrator is provided with a plurality of data receiving ports, and each of the data receiving ports is respectively connected to the medical temperature controller of one of the beds;
[0009] The management terminal is also used to periodically poll the medical temperature controller of each bed through the data collector to obtain the real-time monitoring data of the corresponding bed through each data receiving port.
[0010] In a second possible embodiment of the first aspect, the identifier of each medical thermostat is associated with a unique bed number of the bed;
[0011] The management end is also used to determine the bed number corresponding to the real-time monitoring data according to the data receiving port or the identification of the medical thermostat that receives the real-time monitoring data, so as to centrally display the real-time monitoring data corresponding to each bed number.
[0012] In a third possible embodiment of the first aspect, the sensor includes a plurality of body temperature sensors, each of which is respectively arranged at a part of the human body, the real-time monitoring data includes the body temperature of the part of the human body, and the temperature control abnormality includes a sensor abnormality;
[0013] The management terminal is also used to determine whether the body temperature sensor has fallen off based on the comparison result between the temperature of the human body part and the patient treatment temperature;
[0014] If the temperature of the human body part is not zero, and the temperature of the human body part is lower than the patient's lowest treatment temperature, it is determined that the body temperature sensor has fallen off;
[0015] If the temperature of the human body part is within the patient treatment temperature range, it is determined that the body temperature sensor has not fallen off.
[0016] In a fourth possible embodiment of the first aspect, the temperature control abnormality further includes a temperature measurement line abnormality;
[0017] The management terminal is also used to determine whether there is an abnormality in the temperature measuring line in the medical temperature controller according to the temperature of the human body part;
[0018] If the body temperature of the human body part is zero, or the patient's body temperature is greater than a first preset threshold, it is determined that there is an abnormality in the temperature measuring line in the medical temperature controller.
[0019] In a fifth possible embodiment of the first aspect, the sensor further includes a plurality of water temperature sensors, each of the water temperature sensors being arranged at a cold water output interface of the medical temperature controller connected to a cooling contact piece, and a hot water output interface of the medical temperature controller connected to a heating contact piece, the patient monitoring data includes an input water temperature of the heating contact piece and an input water temperature of the cooling contact piece, and the temperature control abnormality also includes a water temperature abnormality;
[0020] The management terminal is also used to determine whether the medical temperature controller has the water temperature abnormality according to the comparison result between the difference between the input water temperature and the preset water temperature and the second preset threshold value;
[0021] If the difference is greater than the second preset threshold, it is determined that the medical temperature controller has the water temperature abnormality;
[0022] If the difference is less than or equal to the second preset threshold, it is determined that there is no water temperature abnormality in the medical temperature controller.
[0023] In a sixth possible embodiment of the first aspect, the sensor further includes a water pressure sensor, and the water pressure sensor is disposed in a cooling channel module of the medical temperature controller, and the real-time monitoring data further includes water pressure, preset water temperature, body temperature change curve, and treatment time in the cooling channel module;
[0024] The management terminal is also used to store all the real-time monitoring data, generate patient medical records based on the real-time monitoring data of each bed, and upload the real-time monitoring data to the hospital's internal database.
[0025] In a seventh possible embodiment of the first aspect, the data collector communicates with each of the medical temperature controllers via RS485 communication to obtain the real-time monitoring data of the corresponding bed based on each of the data receiving ports.
[0026] In a second aspect, an embodiment of the present application provides a control method for a temperature control management system, wherein the temperature control management system includes a plurality of medical temperature controllers, a data collector, and a management terminal, wherein one medical temperature controller is provided for each bed, and the data collector is connected to each medical temperature controller and the management terminal respectively;
[0027] Each of the medical temperature controllers comprises a sensor, and each of the medical temperature controllers collects the real-time monitoring data of the patient in the bed through the sensor to obtain the real-time monitoring data;
[0028] The control method is applied to the management terminal, and the control method includes:
[0029] Acquire the real-time monitoring data of each of the beds through the data collector;
[0030] Determining whether the medical temperature controller in each of the beds has abnormal temperature control according to the real-time monitoring data;
[0031] When it is determined that the medical temperature controller has temperature control abnormality, an abnormality alarm is issued;
[0032] The real-time monitoring data and temperature control abnormality information of each of the beds are centrally displayed through a display interface.
[0033] In a first possible embodiment of the second aspect, the data concentrator is provided with a plurality of data receiving ports, each of the data receiving ports is respectively connected to the medical temperature controller of one of the beds, and the control method further includes:
[0034] The medical temperature controller of each bed is periodically polled by the data collector to obtain the real-time monitoring data of the corresponding bed through each data receiving port.
[0035] The embodiments of the present application have the following beneficial effects:
[0036] A temperature control management system of the present embodiment includes: multiple medical thermostats, a data collector and a management terminal. One medical thermostat is set corresponding to one hospital bed, and the data collector is connected to each medical thermostat and the management terminal respectively; each medical thermostat includes a sensor, and each medical thermostat collects the real-time monitoring data of the patient in the hospital bed through the sensor to obtain real-time monitoring data; the management terminal is used to obtain the real-time monitoring data of each hospital bed through the data collector to determine whether the medical thermostat in each hospital bed has abnormal temperature control, and when it is determined that there is abnormal temperature control, an abnormal alarm is issued; the management terminal is also used to centrally display the real-time monitoring data and abnormal temperature control information of each hospital bed through the display interface. The temperature control management system of the present application can manage the body temperature of patients in multiple beds, realize remote monitoring of the abnormal temperature control information of each medical thermostat, greatly save manpower, and has clinical effects such as easy and reliable use. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without paying creative work.
[0038] Figure 1 A first structural schematic diagram of a temperature control management system according to an embodiment of the present application is shown;
[0039] Figure 2 A second structural schematic diagram of the temperature control management system according to an embodiment of the present application is shown;
[0040] Figure 3 A flow chart of a control method of a temperature control management system according to an embodiment of the present application is shown.
[0041] Description of main component symbols:
[0042] 100 - temperature control management system; 110 - medical temperature controller; 111 - body temperature sensor; 112 - water temperature sensor; 113 - water pressure sensor; 120 - data collector; 130 - management terminal; 140 - cooling contact; 150 - heating contact. DETAILED DESCRIPTION
[0043] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all of the embodiments.
[0044] The components of the embodiments of the present application generally described and shown in the drawings herein may be arranged and designed in various configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the application claimed for protection, but merely represents the selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without making creative work belong to the scope of protection of the present application.
[0045] Hereinafter, the terms "including", "having" and their cognates that can be used in various embodiments of the present application are intended only to indicate specific features, numbers, steps, operations, elements, components or a combination of the foregoing items, and should not be understood as first excluding the existence of one or more other features, numbers, steps, operations, elements, components or a combination of the foregoing items or increasing the possibility of one or more features, numbers, steps, operations, elements, components or a combination of the foregoing items. In addition, the terms "first", "second", "third" and the like are only used to distinguish descriptions and cannot be understood as indicating or implying relative importance.
[0046] Unless otherwise defined, all terms (including technical terms and scientific terms) used herein have the same meanings as those generally understood by those skilled in the art to which the various embodiments of the present application belong. The terms (such as those defined in generally used dictionaries) will be interpreted as having the same meanings as the contextual meanings in the relevant technical field and will not be interpreted as having idealized meanings or overly formal meanings unless clearly defined in the various embodiments of the present application.
[0047] In conjunction with the accompanying drawings, some embodiments of the present application are described in detail below. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.
[0048] Figure 1A structural schematic diagram of a temperature control management system 100 according to an embodiment of the present application is shown. Exemplarily, the temperature control management system 100 includes a plurality of medical temperature controllers 110, a data collector 120, and a management terminal 130. One medical temperature controller 110 is provided for each bed, and the data collector 120 is respectively connected to each medical temperature controller 110 and the management terminal 130. Each medical temperature controller 110 includes a sensor, and each medical temperature controller 110 collects the patient monitoring data of the bed in real time through the sensor to obtain real-time monitoring data.
[0049] In the embodiment of the present application, the management terminal 130 is used to obtain the real-time monitoring data of each bed through the data collector 120 to determine whether the medical thermostat 110 in each bed has abnormal temperature control, and to issue an abnormal alarm when it is determined that there is an abnormal temperature control. The management terminal 130 is also used to centrally display the real-time monitoring data and temperature control abnormality information of each bed through a display interface, so that medical staff can directly view the real-time monitoring data of patients using the medical thermostat 110, saving manpower.
[0050] In one embodiment, the data collector 120 is provided with a plurality of data receiving ports, each of which is connected to the medical thermostat 110 of one of the beds. The management terminal 130 is also used to periodically poll the medical thermostat 110 of each bed through the data collector 120 to obtain the real-time monitoring data of the corresponding bed through each data receiving port. The real-time monitoring data of each medical thermostat 110 can be output to the data receiving port after being processed by the microcomputer of the medical thermostat, and then transmitted to the management terminal 130, so that the real-time monitoring data of patients in different beds can be displayed respectively.
[0051] In an optional embodiment, the data aggregator 120 communicates with each medical thermostat 110 via RS485 communication. After receiving the query instruction sent by the data aggregator 120, each medical thermostat 110 will send the real-time monitoring data to the data aggregator 120. The data aggregator 120 obtains the real-time monitoring data of the corresponding bed based on each data receiving port.
[0052] In one embodiment, the identifier of each medical thermostat 110 is associated with the unique bed number of the bed. The bed number can be directly used as the unique identifier of the medical thermostat 110, or there is a one-to-one correspondence between the bed number and the medical thermostat 110. The management end is also used to determine the bed number corresponding to the real-time monitoring data according to the data receiving port for receiving the real-time monitoring data or the identifier of the medical thermostat 110, so as to centrally display the real-time monitoring data corresponding to each bed number.
[0053] In one embodiment, when real-time monitoring data with a specific medical thermostat 110 identification is received, the bed number corresponding to the real-time monitoring data is determined according to the corresponding relationship between the bed number and the medical thermostat 110. The management end can determine the bed number corresponding to the real-time monitoring data according to the preset mapping rules between the data receiving port and the medical thermostat 110, and the association relationship between the medical thermostat 110 and the bed. For example, the data receiving port 1 always corresponds to the medical thermostat 110 identified as "XXX101", and the medical thermostat 110 identified as "XXX101" corresponds to the bed number 101, the data receiving port 2 is identified as the medical thermostat 110 identified as "XXX102", and the medical thermostat 110 identified as "XXX102" corresponds to the bed number 102, etc. When the data receiving port receives from a certain data receiving port, the corresponding bed number can be directly determined according to the mapping rule.
[0054] In one embodiment, if Figure 2 As shown, the sensor includes a plurality of body temperature sensors 111, each of which is respectively arranged at a human body part, and the real-time monitoring data includes the body temperature of the human body part, and the temperature control abnormality includes the sensor abnormality, that is, the body temperature sensor 111 falls off from the human body part, resulting in the inability to monitor the temperature of the human body part. The management terminal 130 is also used to determine whether the body temperature sensor 111 falls off according to the comparison result between the temperature of the human body part and the patient's treatment temperature; if the temperature of the human body part is not zero, and the temperature of the human body part is lower than the patient's lowest treatment temperature, it is determined that the body temperature sensor 111 falls off; if the temperature of the human body part is within the patient's treatment temperature range, it is determined that the body temperature sensor 111 has not fallen off. When the medical thermostat 110 performs sub-hypothermia treatment on the patient, the patient's treatment temperature range is 32-35 degrees. If the body temperature sensor 111 falls off, and the temperature of the human body part is the room temperature temperature which is 32 degrees lower than the patient's lowest treatment temperature, it can be determined that the body temperature sensor 111 falls off on the human body part.
[0055] In one embodiment, when a patient is subjected to temperature therapy, each temperature sensor 111 can be attached to the patient's trunk, or placed in the mouth, under the armpit, or in the anus, to measure the patient's body temperature or the temperature of different parts of the body. It can be understood that the medical thermostat 110 can perform mild hypothermia and rewarming therapy on the patient, and can also keep or cool different parts of the patient's body, and the temperature sensor 111 can measure the patient's body temperature when mild hypothermia and rewarming therapy are performed, and can also measure the temperature of different parts of the patient's body when they are kept or cooled.
[0056] In one embodiment, the temperature control abnormality also includes an abnormality in the temperature measuring line, which connects the body temperature sensor 111 and the medical temperature controller microcomputer. The management terminal 130 is also used to determine whether there is an abnormality in the temperature measuring line in the medical temperature controller 110 according to the temperature of the human body part; if the body temperature of the human body part is zero, or the patient's body temperature is greater than the first preset threshold, it is determined that the temperature measuring line in the medical temperature controller 110 is abnormal. The cause of the abnormality in the temperature measuring line may be a short circuit or a break in the temperature measuring line. When the body temperature sensor 111 measures the body temperature of the human body part to be zero, it is determined that the temperature measuring line has a break in the circuit. When the body temperature sensor 111 measures the body temperature of the human body part to be high, exceeding the first preset threshold of 50 degrees, it is determined that the temperature measuring line has a short circuit in the circuit.
[0057] In another embodiment, the sensor further includes a plurality of water temperature sensors 112, each of which is arranged at a cold water output interface of the medical thermostat 110 connected to the cooling contact 140, and a hot water output interface of the medical thermostat 110 connected to the heating contact 150, the patient monitoring data includes the input water temperature of the heating contact 150 and the input water temperature of the cooling contact 140, and the temperature control abnormality also includes the water temperature abnormality. The management terminal 130 is also used to determine whether the medical thermostat 110 has a water temperature abnormality based on the comparison result between the input water temperature and the preset water temperature and the second preset threshold value; if the difference is greater than the second preset threshold value, it is determined that the medical thermostat 110 has a water temperature abnormality; if the difference is less than or equal to the second preset threshold value, it is determined that the medical thermostat 110 does not have a water temperature abnormality.
[0058] In one embodiment, when a patient is subjected to mild hypothermia treatment, the cooling contact member 140 contacts the patient's part to cool down, and the required preset water temperature range is 5-20 degrees. After the mild hypothermia treatment is completed, the patient needs to be rewarmed, that is, from the mild hypothermia body temperature to the normal body temperature of 37 degrees. At this time, hot water higher than body temperature needs to be passed through the heating contact member 150 to rewarm the human body, and the preset water temperature range is 37-40 degrees. For example, when the temperature sensor measures that the difference between the input water temperature of the heating contact member 150 or the cooling contact member 140 and the preset water temperature is greater than 10 degrees, it can be determined that the water temperature of the medical temperature controller 110 is abnormal.
[0059] It can be understood that the management terminal 130 of the present application can directly display the temperature control abnormality information of the medical thermostat 110 on the display interface by monitoring the temperature control abnormality of the medical thermostat 110 of each bed, and can also sound an alarm, so that medical staff can discover and deal with it in time. The present application achieves real-time treatment monitoring of multiple beds, reduces the movement of medical staff, and improves work efficiency.
[0060] In one embodiment, the sensor further includes a water pressure sensor 113, which is disposed in the cooling channel module of the medical thermostat, wherein the cooling channel module is connected to the cooling contact 140 via a cold water output interface, and the medical thermostat 110 is used to collect the water pressure in the cooling channel module via the water pressure sensor 113, and judge whether the flow pressure of the magnetic pump in the cooling channel module is sufficient according to the water pressure in the cooling channel module. If the magnetic pump ages, when the pressure reaches a certain limit value, the water cannot flow back to the cold and hot water machine, the water circulation fails, and the cooling function of the medical thermostat fails. The management end can remotely judge whether the water pressure of the cooling channel module when delivering cold water is sufficient according to the water pressure in the cooling channel module, so as to give a timely reminder when it is judged that the water pressure is insufficient.
[0061] In one embodiment, the real-time monitoring data also includes the water pressure, preset water temperature, temperature change curve and treatment time in the cooling channel module; the management terminal 130 is also used to store all real-time monitoring data and print patient cases according to the real-time monitoring data of each bed. After receiving the real-time monitoring data, the management terminal 130 needs to integrate the data, reasonably arrange the basic information of the patient (obtained from the hospital information system), treatment time, temperature data, etc., and form a printable medical record document. The management terminal 130 can also establish a connection with the internal database of the hospital and upload the real-time monitoring data to the internal database of the hospital, which is helpful for subsequent clinical research and scientifically improves the level of hypothermia treatment. The management terminal 130 uses the display interface to display the real-time monitoring data and abnormal temperature control information of the medical thermostats 110 of multiple beds, and can flip the screen to display at a certain interval, so as to achieve centralized monitoring of the temperature control treatment of multiple beds at the nurse station.
[0062] Figure 3 A flow chart of a control method of a temperature control management system according to an embodiment of the present application is shown. Exemplarily, the control method of the temperature control management system is applied to the management terminal 130, and specifically includes the following steps:
[0063] S210, obtaining real-time monitoring data of each bed through the data collector 120.
[0064] S220, judging whether the temperature control of the medical temperature controller 110 in each bed is abnormal according to the real-time monitoring data.
[0065] S230, when it is determined that the medical temperature controller 110 has a temperature control abnormality, an abnormality alarm is issued.
[0066] S240, centrally displaying the real-time monitoring data and temperature control abnormality information of each bed through the display interface.
[0067] In one embodiment, the control method further includes: periodically polling the medical temperature controller 110 of each bed through the data collector 120 to obtain the real-time monitoring data of the corresponding bed through each data receiving port.
[0068] It can be understood that the control method of the temperature control management system of this embodiment corresponds to the temperature control management system 100 of the above embodiment, and the options in the above embodiment are also applicable to this embodiment, so they will not be described repeatedly here.
[0069] In several embodiments provided in the present application, it should be understood that the disclosed apparatus and method can also be implemented in other ways. The apparatus embodiments described above are merely schematic, for example, the flowcharts and structure diagrams in the accompanying drawings show the possible architecture, functions and operations of the apparatus, method and computer program product according to multiple embodiments of the present application. In this regard, each box in the flowchart or block diagram can represent a module, a program segment or a part of a code, and a module, a program segment or a part of a code contains one or more executable instructions for implementing a specified logical function. It should also be noted that in an alternative implementation, the functions marked in the box can also occur in a different order from that marked in the accompanying drawings. For example, two consecutive boxes can actually be executed substantially in parallel, and they can sometimes be executed in the opposite order, depending on the functions involved. It should also be noted that each box in the structure diagram and / or the flow diagram, and the combination of boxes in the structure diagram and / or the flow diagram, can be implemented with a dedicated hardware-based system that performs a specified function or action, or can be implemented with a combination of dedicated hardware and computer instructions.
[0070] In addition, the functional modules or units in the various embodiments of the present application may be integrated together to form an independent part, or each module may exist separately, or two or more modules may be integrated to form an independent part.
[0071] If the function is implemented in the form of a software function module and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present application, or the part that contributes to the prior art, or the part of the technical solution, can be embodied in the form of a software product, which is stored in a storage medium and includes several instructions for a computer device (which can be a smart phone, a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the methods of each embodiment of the present application.
[0072] The above are only specific implementation methods of the present application, but the protection scope of the present application is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed in the present application, which should be covered by the protection scope of the present application.
Claims
1. A temperature control management system, characterized in that: include: A plurality of medical temperature controllers, a data collector and a management terminal, wherein one medical temperature controller is provided for each bed, and the data collector is respectively connected to each medical temperature controller and the management terminal; Each of the medical temperature controllers comprises a sensor, and each of the medical temperature controllers collects the real-time monitoring data of the patient in the bed through the sensor to obtain the real-time monitoring data; The management terminal is used to obtain the real-time monitoring data of each of the beds through the data collector to determine whether the medical temperature controller in each of the beds has abnormal temperature control, and to issue an abnormal alarm when it is determined that there is abnormal temperature control; The management terminal is also used to centrally display the real-time monitoring data and temperature control abnormality information of each of the beds through a display interface.
2. The temperature control management system according to claim 1, characterized in that: The data collector is provided with a plurality of data receiving ports, each of which is connected to the medical temperature controller of one of the beds; The management terminal is also used to periodically poll the medical temperature controller of each bed through the data collector to obtain the real-time monitoring data of the corresponding bed through each data receiving port.
3. The temperature control management system according to claim 2, characterized in that: The identification of each of the medical thermostats is associated with the unique bed number of the bed; The management end is also used to determine the bed number corresponding to the real-time monitoring data according to the data receiving port or the identification of the medical thermostat that receives the real-time monitoring data, so as to centrally display the real-time monitoring data corresponding to each bed number.
4. The temperature control management system according to claim 1, characterized in that: The sensor includes a plurality of body temperature sensors, each of which is respectively arranged at a part of the human body, the real-time monitoring data includes the body temperature of the part of the human body, and the temperature control abnormality includes a sensor abnormality; The management terminal is also used to determine whether the body temperature sensor has fallen off based on the comparison result between the temperature of the human body part and the patient treatment temperature; If the temperature of the human body part is not zero, and the temperature of the human body part is lower than the patient's lowest treatment temperature, it is determined that the body temperature sensor has fallen off; If the temperature of the human body part is within the patient treatment temperature range, it is determined that the body temperature sensor has not fallen off.
5. The temperature control management system according to claim 4, characterized in that: The temperature control anomaly also includes an abnormality in the temperature measurement line; The management terminal is also used to determine whether there is an abnormality in the temperature measuring line in the medical temperature controller according to the temperature of the human body part; If the body temperature of the human body part is zero, or the patient's body temperature is greater than a first preset threshold, it is determined that there is an abnormality in the temperature measuring line in the medical temperature controller.
6. The temperature control management system according to claim 4, characterized in that: The sensor further includes a plurality of water temperature sensors, each of which is arranged at a cold water output interface of the medical temperature controller connected to a cooling contact, and a hot water output interface of the medical temperature controller connected to a heating contact, the patient monitoring data includes the input water temperature of the heating contact and the input water temperature of the cooling contact, and the temperature control abnormality also includes a water temperature abnormality; The management terminal is also used to determine whether the medical temperature controller has the water temperature abnormality according to the comparison result between the difference between the input water temperature and the preset water temperature and the second preset threshold value; If the difference is greater than the second preset threshold, it is determined that the medical temperature controller has the water temperature abnormality; If the difference is less than or equal to the second preset threshold, it is determined that there is no water temperature abnormality in the medical temperature controller.
7. The temperature control management system according to claim 1, characterized in that: The sensor further comprises a water pressure sensor, which is arranged in the cooling channel module of the medical temperature controller, and the real-time monitoring data further comprises the water pressure in the cooling channel module, the preset water temperature, the body temperature change curve and the treatment time; The management terminal is also used to store all the real-time monitoring data, generate patient medical records based on the real-time monitoring data of each bed, and upload the real-time monitoring data to the hospital's internal database.
8. The temperature control management system according to claim 2, characterized in that: The data collector communicates with each of the medical temperature controllers via RS485 communication to obtain the real-time monitoring data of the corresponding bed based on each of the data receiving ports.
9. A control method for a temperature control management system, characterized in that: The temperature control management system includes a plurality of medical temperature controllers, a data collector and a management terminal. One medical temperature controller is provided for each bed, and the data collector is connected to each medical temperature controller and the management terminal respectively. Each of the medical temperature controllers comprises a sensor, and each of the medical temperature controllers collects the real-time monitoring data of the patient in the bed through the sensor to obtain the real-time monitoring data; The control method is applied to the management terminal, and the control method includes: Acquire the real-time monitoring data of each of the beds through the data collector; Determining whether the medical temperature controller in each of the beds has abnormal temperature control according to the real-time monitoring data; When it is determined that the medical temperature controller has temperature control abnormality, an abnormality alarm is issued; The real-time monitoring data and temperature control abnormality information of each of the beds are centrally displayed through a display interface.
10. The control method of the temperature control management system according to claim 9, characterized in that: The data collector is provided with a plurality of data receiving ports, each of the data receiving ports is respectively connected to the medical temperature controller of one of the beds, and the control method further comprises: The medical temperature controller of each bed is periodically polled by the data collector to obtain the real-time monitoring data of the corresponding bed through each data receiving port.