Central medical temperature control system
By designing a central medical temperature control system, using hot and cold water makers and pipeline modules to provide cold and hot water to multiple medical temperature controllers, and collecting and displaying patient monitoring data in real time, the problems of poor treatment environment and low work efficiency in the existing technology are solved, and efficient multi-person temperature treatment and centralized monitoring are achieved.
Patent Information
- Application Number
- CN202510124171.3
- 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 the case of large population fever, existing medical thermostats lead to poor treatment environment, low work efficiency, and difficulty in centrally monitoring patient data and equipment usage.
A central medical temperature control system is designed, including a hot and cold water machine, a pipeline module, multiple medical temperature controllers and temperature control management modules. Through central refrigeration and heating, cold and hot water are provided to multiple medical temperature control devices, and patient monitoring data is collected and displayed in real time.
The system effectively solves the problems of poor treatment environment and low work efficiency, can support temperature treatment for multiple patients at the same time, improve the treatment environment, and improve work efficiency through centralized monitoring.
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Figure CN119925071A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of medical temperature control technology, and in particular to a central medical temperature control system. 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 body and head. Medical thermostats provide a method of physical cooling of the body. When the body temperature is maintained at 33 to 36 degrees, it can promote the recovery of brain cells. In the actual application of medical thermostats, there is currently one machine for one bed, or one bed for two machines. However, for a large number of group fevers, multiple medical thermostats are required to work at the same time to treat multiple patients. Due to the large number of instruments and equipment used, it is bound to cause crowded space and messy water pipes and wires. Moreover, it is not conducive to medical staff to timely understand the patient monitoring data and the use of each medical thermostat. Summary of the invention
[0003] In view of this, an embodiment of the present application provides a central medical temperature control system, which can effectively solve the problem of poor treatment environment and low work efficiency caused by the use of a large number of medical temperature controllers.
[0004] In a first aspect, an embodiment of the present application provides a central medical temperature control system, comprising: a hot and cold water maker, a pipeline module, a plurality of medical temperature controllers and a temperature control management module connected in sequence, wherein one medical temperature controller is provided corresponding to one bed, and each medical temperature controller is respectively connected to a heating contact piece and a cooling contact piece;
[0005] The cold and hot water machine is used to obtain cold water and hot water in a preset temperature range, and pass the cold water and hot water into each of the medical temperature controllers through the pipeline module;
[0006] Each of the medical temperature controllers is used to adjust the input cold water and hot water to different preset temperature ranges, so that the cold water and hot water in different preset temperature ranges enter the cooling contact piece and the heating contact piece respectively, so as to cool down and reheat the contacted human body parts;
[0007] Each of the medical temperature controllers is also used to collect real-time monitoring data of patients in sickbeds to obtain real-time monitoring data;
[0008] The temperature control management module is used to obtain the real-time monitoring data of each of the beds and centrally display the real-time monitoring data.
[0009] In a first possible embodiment of the first aspect, the hot and cold water machine includes a cold water tank, a cold water main pipe, a first cold water return pipe, a hot water tank, a hot water main pipe and a first hot water return pipe;
[0010] The cold water tank is connected to the cold water main pipeline and the first cold water return pipe respectively, the hot water tank is connected to the hot water main pipeline and the first hot water return pipe respectively, and the cold water main pipeline, the first cold water return pipe, the hot water main pipeline and the first hot water return pipe are connected to the pipeline module respectively;
[0011] The cold water main pipeline is used to transport the water in the cold water tank to the pipeline module;
[0012] The hot water main pipeline is used to transport the water in the hot water tank to the pipeline module;
[0013] The first cold water return pipe is used to return the cold water passing through the pipeline module to the cold water tank;
[0014] The first hot water return pipe is used to return the hot water passing through the pipeline module to the hot water tank.
[0015] In a second possible embodiment of the first aspect, the pipeline module includes a cold water input interface, a hot water input interface, a cold water input pipe, a hot water input pipe, a first cold water output interface, a first hot water output interface, a second hot water return pipe, a second cold water return pipe, and a plurality of interface integrated boxes;
[0016] The cold water input interface is respectively connected to the cold water main pipeline and the cold water input pipe, the hot water input interface is respectively connected to the hot water main pipeline and the hot water input pipe, the first cold water output interface is respectively connected to the first cold water return pipe and the second cold water return pipe, and the first hot water output interface is respectively connected to the first hot water return pipe and the second hot water return pipe;
[0017] The first end of each of the interface integrated boxes is respectively connected to the cold water input pipe, the hot water input pipe, the second hot water return pipe and the second cold water return pipe, and the second end of each of the interface integrated boxes is respectively connected to each of the medical temperature controllers;
[0018] Each of the interface integrated boxes is used to respectively direct the cold water of the cold water input pipe and the hot water of the hot water input pipe into the medical thermostat, and to respectively direct the cold water and hot water returning from the medical thermostat into the second cold water return pipe and the second hot water return pipe, so as to direct the water into the cold and hot water maker through the first cold water return pipe and the first hot water return pipe.
[0019] In a third possible embodiment of the first aspect, each of the interface integrated boxes includes a plurality of water diversion joints, each of the medical temperature controllers includes a cold water joint, a hot water joint, a cold water return joint, and a hot water return joint, and each of the medical temperature controllers is connected to a corresponding interface integrated box;
[0020] Each of the water diversion joints is respectively connected to the cold water joint, the hot water joint, the cold water return joint and the hot water return joint;
[0021] The interface integrated box is also used to control the cold water of the cold water input pipe to enter the cold water joint through the water inlet joint, and to control the hot water of the hot water input pipe to enter the hot water joint, so as to allow the cold water and hot water to enter the medical temperature controller;
[0022] The interface integrated box is also used to control the cold water of the cold water return joint to flow back to the second cold water return pipe through the water diversion joint, and to control the hot water of the hot water return joint to flow back to the second hot water return pipe.
[0023] In a fourth possible embodiment of the first aspect, the temperature control management module includes a data collector and a management terminal, and the data collector is respectively connected to each of the medical temperature controllers and the management terminal;
[0024] The management terminal is used to obtain the real-time monitoring data of each of the beds through the data collector, and to display the real-time monitoring data corresponding to each bed in a display interface.
[0025] In a fifth possible embodiment of the first aspect, the hot and cold water generator further includes a main control module, a circulating refrigeration module and a heating module;
[0026] The main control module is used to control the circulating refrigeration module to cool the water in the cold water tank to a first preset temperature range, so that the cooled cold water enters the medical temperature controller through the cold water main pipeline, and to control the heating module to heat the water in the hot water tank to a second preset temperature range, so that the heated hot water enters the medical temperature controller through the hot water main pipeline.
[0027] In a sixth possible embodiment of the first aspect, the medical temperature controller further includes a second cold water output interface, a second hot water output interface, a cooling channel module, a rewarming channel module, a reflux channel module, an emptying channel module, and a control panel;
[0028] The cooling channel module is connected to the cold water joint and the hot water joint respectively, the cooling channel module is also connected to the cooling contact piece through the second cold water output interface, the rewarming channel module is connected to the hot water joint, the rewarming channel module is connected to the heating contact piece through the second hot water output interface, the first ends of the emptying channel module and the reflux channel module are connected to the cooling contact piece and the heating contact piece respectively, and the second ends of the emptying channel module and the reflux channel module are connected to the cold water reflux joint and the hot water reflux joint respectively;
[0029] The control panel is used to control the cooling channel module to deliver cold water in the first preset temperature range or the second preset temperature range to the cooling contact piece to cool the contacted human body part; and is used to control the rewarming channel module to deliver hot water in the third preset temperature range to the heating contact piece to rewarm the contacted human body part;
[0030] The reflux channel module is used to reflux the water flowing through the temperature-lowering contact piece and the temperature-raising contact piece;
[0031] The drain channel module is used to drain water from the temperature-lowering contact piece and the temperature-raising contact piece.
[0032] In a seventh possible embodiment of the first aspect, each of the medical temperature controllers further includes a plurality of body temperature sensors, a plurality of water temperature sensors and a water pressure sensor, each of the body temperature sensors is respectively arranged at a part of the human body, each of the water temperature sensors is arranged at the second cold water output interface and the second hot water output interface, and the water pressure sensor is arranged in the cooling channel module;
[0033] The medical temperature controller is also used to collect the real-time monitoring data through each of the sensors;
[0034] The temperature control management module is also used to determine whether the medical temperature controller in each of the beds has abnormal temperature control according to the real-time monitoring data, and to issue an abnormal alarm when it is determined that there is a temperature control abnormality.
[0035] In an eighth possible embodiment of the first aspect, the hot and cold water maker further includes a water storage tank, and the water storage tank is connected to the hot water tank;
[0036] The main control module is also used to transport water to the hot water tank according to the judgment result of whether the water in the hot water tank is sufficient.
[0037] In a ninth possible embodiment of the first aspect, the hot and cold water generator further includes a first overflow pipe and a second overflow pipe;
[0038] The first end of the first overflow pipe is connected to the hot water tank, the second end of the first overflow pipe is connected to the cold water tank, the first end of the second overflow pipe is connected to the hot water tank, and the second end of the second overflow pipe is connected to the water storage tank;
[0039] The first overflow pipe is used to transport the water overflowing from the cold water tank to the hot water tank;
[0040] The second overflow pipe is used to transport water overflowing from the hot water tank to the water storage tank.
[0041] The embodiments of the present application have the following beneficial effects:
[0042] A central medical temperature control system of the present embodiment includes: a hot and cold water maker, a pipeline module, a plurality of medical temperature controllers and a temperature control management module connected in sequence, one medical temperature controller is arranged corresponding to one hospital bed, and each medical temperature controller is respectively connected to a heating contact piece and a cooling contact piece; the hot and cold water maker is used to obtain cold water and hot water in a preset temperature range, and the cold water and hot water enter each medical temperature controller through the pipeline module; each medical temperature controller is used to adjust the input cold water and hot water to different preset temperature ranges, so as to respectively let the cold water and hot water in different preset temperature ranges enter the cooling contact piece and the heating contact piece, so as to cool and reheat the contacted human body parts; each medical temperature controller is also used to collect real-time monitoring data; the temperature control management module is used to obtain the real-time monitoring data of each hospital bed, and centrally display the real-time monitoring data. This application uses a cold and hot water machine for central cooling and heating to provide sufficient cold water and hot water for multiple medical thermostats, which can support temperature treatment of multiple patients at the same time. One bed corresponds to one medical thermostat. Due to the use of central cooling and heating and the small size of the medical thermostat, the treatment environment is greatly improved. At the same time, the real-time body temperature of each patient can be observed centrally, reducing the workload of medical staff and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0043] 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.
[0044] Figure 1 A first structural schematic diagram of a central medical temperature control system according to an embodiment of the present application is shown;
[0045] Figure 2 A second structural schematic diagram of the central medical temperature control system of an embodiment of the present application is shown;
[0046] Figure 3 A third structural schematic diagram of the central medical temperature control system of an embodiment of the present application is shown;
[0047] Figure 4 A fourth structural schematic diagram of the central medical temperature control system of an embodiment of the present application is shown;
[0048] Figure 5 A schematic diagram of the structure of a cold and hot water making machine according to an embodiment of the present application is shown;
[0049] Figure 6 A schematic diagram of the structure of a medical temperature controller according to an embodiment of the present application is shown;
[0050] Figure 7 A fifth structural schematic diagram of the central medical temperature control system of an embodiment of the present application is shown.
[0051] Description of main component symbols:
[0052] 100-central medical temperature control system; 110-cold and hot water machine; 1101-cold water tank; 1102-cold water main pipeline; 1103-first cold water return pipe; 1104-hot water tank; 1105-hot water main pipeline; 1106-first hot water return pipe; 1107-main control module; 1108-circulating refrigeration module; 1109-heating module; 1110-water storage tank; 1111-first overflow pipe; 1112-second overflow pipe; 120-pipeline module; 1201-cold water input interface; 1202-hot water input interface; 1203-cold water input pipe; 1204-hot water input pipe; 1205-first cold water output interface; 1206-first hot water output interface; 1207-second hot water return pipe; 1 208-second cold water return pipe; 1209-interface integrated box; 130-medical temperature controller; 1301-cold water connector; 1302-hot water connector; 1303-cold water return connector; 1304-hot water return connector; 1305-second cold water output interface; 1306-second hot water output interface; 1307-cooling channel module; 1308-rewarming channel module; 1309-reflow channel module; 1310-emptying channel module; 1311-control panel; 1312-body temperature sensor; 1313-multiple water temperature sensors; 1314-water pressure sensor; 140-temperature control management module; 1401-data collector; 1402-management terminal; 150-heating contact; 160-cooling contact. DETAILED DESCRIPTION
[0053] 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.
[0054] 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.
[0055] 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.
[0056] 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.
[0057] 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.
[0058] Figure 1 A structural diagram of a central medical temperature control system 100 of an embodiment of the present application is shown. Exemplarily, the central medical temperature control system 100 includes: a hot and cold water machine 110, a pipeline module 120, a plurality of medical temperature controllers 130 and a temperature control management module 140 connected in sequence. Among them, one medical temperature controller 130 is set corresponding to one bed, and the medical temperature controller 130 can be placed under the bed, or hung on the wall, etc., and occupies a small space. Each medical temperature controller 130 is respectively connected to a heating contact 150 and a cooling contact 160, and the cooling contact 160 and the heating contact 150 can act on different parts of the human body at the same time, and cool, reheat and keep warm different parts of the human body respectively; the cooling contact 160 can act on the human body alone for medical treatment, and put the human body part in a sub-hypothermia state; the heating contact 150 can act on different parts of the human body alone for medical treatment, and keep the human body part warm, or restore the human body from a sub-hypothermia state to a normal temperature state.
[0059] In the embodiment of the present application, the hot and cold water machine 110 is used to obtain cold water and hot water in a preset temperature range, and the cold water and hot water enter each medical temperature controller 130 through the pipeline module 120. Each medical temperature controller 130 is used to adjust the input cold water and hot water to different preset temperature ranges, so as to respectively allow the cold water and hot water in different preset temperature ranges to enter the cooling contact member 160 and the heating contact member 150 to cool and reheat the contacted human body parts. Each medical temperature controller 130 is also used to collect the patient monitoring data of the bed in real time to obtain real-time monitoring data; the temperature control management module 140 is used to obtain the real-time monitoring data of each bed and centrally display the real-time monitoring data.
[0060] In one embodiment, if Figure 2 As shown, the cold and hot water machine 110 includes a cold water tank 1101, a cold water main pipeline 1102, a first cold water return pipe 1103, a hot water tank 1104, a hot water main pipeline 1105 and a first hot water return pipe 1106. Exemplarily, the cold water tank 1101 stores cold water in a first preset temperature range, and the hot water tank 1104 stores hot water in a second preset temperature range. The cold water tank 1101 is respectively connected to the cold water main pipeline 1102 and the first cold water return pipe 1103, the hot water tank 1104 is respectively connected to the hot water main pipeline 1105 and the first hot water return pipe 1106, and the cold water main pipeline 1102, the first cold water return pipe 1103, the hot water main pipeline 1105 and the first hot water return pipe 1106 are respectively connected to the pipeline module 120. The cold water main pipe 1102 is used to transport the water in the cold water tank 1101 to the pipeline module 120; the hot water main pipe 1105 is used to transport the water in the hot water tank 1104 to the pipeline module 120; the first cold water return pipe 1103 is used to return the cold water passing through the pipeline module 120 to the cold water tank 1101; the first hot water return pipe 1106 is used to return the hot water passing through the pipeline module 120 to the hot water tank 1104.
[0061] In another embodiment, the pipeline module 120 includes a cold water input interface 1201, a hot water input interface 1202, a cold water input pipe 1203, a hot water input pipe 1204, a first cold water output interface 1205, a first hot water output interface 1206, a second hot water return pipe 1207, a second cold water return pipe 1208 and a plurality of interface integration boxes 1209. Each interface integration box 1209 is used to respectively allow the cold water of the cold water input pipe 1203 and the hot water of the hot water input pipe 1204 to enter the medical thermostat 130, and respectively allow the cold water and hot water returned from the medical thermostat 130 to enter the second cold water return pipe 1208 and the second hot water return pipe 1207, so as to allow the water to enter the cold and hot water generator 110 through the first cold water return pipe 1103 and the first hot water return pipe 1106.
[0062] Among them, the cold water input interface 1201 is respectively connected to the cold water main pipeline 1102 and the cold water input pipe 1203, the hot water input interface 1202 is respectively connected to the hot water main pipeline 1105 and the hot water input pipe 1204, the first cold water output interface 1205 is respectively connected to the first cold water return pipe 1103 and the second cold water return pipe 1208, and the first hot water output interface 1206 is respectively connected to the first hot water return pipe 1106 and the second hot water return pipe 1207; the first end of each interface integrated box 1209 is respectively connected to the cold water input pipe 1203, the hot water input pipe 1204, the second hot water return pipe 1207 and the second cold water return pipe 1208, and the second end of each interface integrated box 1209 is respectively connected to each medical temperature controller 130.
[0063] In another embodiment, if Figure 3 and 4 As shown, each interface integrated box 1209 includes a plurality of water inlet joints, and each medical temperature controller 130 includes a cold water joint 1301, a hot water joint 1302, a cold water return joint 1303, and a hot water return joint 1304. Each medical temperature controller 130 is connected to a corresponding interface integrated box 1209; each water inlet joint is connected to the cold water joint 1301, the hot water joint 1302, the cold water return joint 1303, and the hot water return joint 1304. The interface integrated box 1209 is also used to control the cold water of the cold water input pipe 1203 to enter the cold water joint 1301 through the water inlet joint, and to control the hot water of the hot water input pipe 1204 to enter the hot water joint 1302, so as to allow cold water and hot water to enter the medical temperature controller 130; the interface integrated box 1209 is also used to control the cold water of the cold water return joint 1303 to flow back to the second cold water return pipe 1208 through the water inlet joint, and to control the hot water of the hot water return joint 1304 to flow back to the second hot water return pipe 1207.
[0064] In one embodiment, after the cold water input interface 1201 and the hot water input interface 1202 are connected to the cold and hot water machine 110, the cold water and hot water are delivered to each interface integrated box 1209 through the cold water input pipe 1203 and the hot water input pipe 1204, and the cold water and hot water are delivered to the cooling contact 160 and the heating contact 160 respectively after the medical temperature controller 130 intelligently adjusts the temperature. The contact piece 150 realizes the rewarming and cooling treatment of the patient, and the return water of the cooling contact piece 160 and the heating contact piece 150 flows from the medical temperature controller 130 to the interface integrated box 1209 through the second hot water return pipe 1207 and the second cold water return pipe 1208, and then returns to the refrigeration water tank 1101 and the hot water tank 1104 through the first cold water return pipe 1103 and the first hot water return pipe 1106 of the hot and cold water machine 110, completing the water circuit circulation.
[0065] In one embodiment, if Figure 4As shown, the temperature control management module 140 includes a data collector 1401 and a management terminal 1402. The data collector 1401 is respectively connected to each medical temperature controller 130 and the management terminal 1402. The management terminal 1402 is used to obtain the real-time monitoring data of each bed through the data collector 1401, and display the real-time monitoring data corresponding to each bed in a display interface.
[0066] In one embodiment, after each medical thermostat 130 collects real-time monitoring data, it is transmitted to the data collector 1401 via a temperature cable. The real-time monitoring data processed by the data collector 1401 enters the display interface such as the medical display screen of the management terminal 1402. The medical display screen can display the name, gender, treatment time, treatment duration, real-time body temperature, treatment mode, bed number, etc. of all patients in the beds, and store the above real-time monitoring data to provide original treatment data for subsequent scientific diagnosis and treatment of the disease, medical training, etc. For a large number of group fever epidemics, the analysis of treatment data is particularly important.
[0067] In one embodiment, if Figure 5 As shown, the hot and cold water machine 110 further includes a main control module 1107, a circulating refrigeration module 1108 and a heating module 1109. Exemplarily, the main control module 1107 is used to control the circulating refrigeration module 1108 to cool the water in the cold water tank 1101 to a first preset temperature range, so that the cooled cold water enters the medical temperature controller 130 through the cold water main pipeline 1102, and to control the heating module 1109 to heat the water in the hot water tank 1104 to a second preset temperature range, so that the heated hot water enters the medical temperature controller 130 through the hot water main pipeline 1105.
[0068] In an optional embodiment, the present application can set at least two identical circulating refrigeration modules 1108 in the hot and cold water machine 110, which greatly shortens the time for cooling the water in the cold water tank 1101, improves the cooling efficiency of the cold water in the cold water tank 1101, and correspondingly improves the cold water circulation efficiency of the entire central medical temperature control system 100, thereby greatly improving the effect of patient temperature treatment.
[0069] In one embodiment, when the hot and cold water generator 110 is connected to the pipeline module 120, the cold water in the cold water tank 1101 can flow through the cold water main pipeline 1102, the cold water input pipe 1203 and the cold water joint 1301 to be used by the medical thermostat 130. After the cold water is cooled by the cooling contact member 160 for cooling the human body, the return water enters the first cold water return pipe 1103 through the pipeline module 120, and the water in the first cold water return pipe 1103 returns to the cold water tank 1101 to form a cold water cycle. When the medical thermostat 130 is in use, in order to achieve cold water in different temperature ranges, a portion of hot water will enter the cold water cycle after being adjusted by the throttle valve of the medical thermostat 130. Similarly, the hot water in the hot water tank 1104 flows through the hot water main pipe 1105, the hot water input pipe 1204 and the hot water connector 1302, enters the medical temperature controller 130, and then performs rewarming treatment on the human body through the heating contact piece 150. The return water enters the first hot water return pipe 1106 through the pipeline module 120, and then flows back to the hot water tank 1104 to form a hot water cycle.
[0070] In another embodiment, the hot and cold water machine 110 of the present application further includes a water storage tank 1110, which is connected to the hot water tank 1104. The water storage tank 1110 is used to provide sufficient water for the hot water tank 1104 and the cold water tank 1101 when the water level in the hot water tank 1104 is too low, and the main control module 1107 is also used to transport water to the hot water tank 1104 according to the judgment result of whether the water in the hot water tank 1104 is sufficient. The present application can add a certain proportion of alcohol to the water storage tank 1110 to prevent the water tank from freezing at low temperature.
[0071] In another embodiment, the hot and cold water machine 110 also includes a first overflow pipe 1111 and a second overflow pipe 1112; the first end of the first overflow pipe 1111 is connected to the hot water tank 1104, the second end of the first overflow pipe 1111 is connected to the cold water tank 1101, the first end of the second overflow pipe 1112 is connected to the hot water tank 1104, and the second end of the second overflow pipe 1112 is connected to the water storage tank 1110; the first overflow pipe 1111 is used to transport water overflowing from the cold water tank 1101 to the hot water tank 1104; the second overflow pipe 1112 is used to transport water overflowing from the hot water tank 1104 to the water storage tank 1110.
[0072] In one embodiment, the hot and cold water machine 110 cools the water in the cold water tank 1101 through an evaporator built into the circulating refrigeration module 1108 to obtain cold water in a first preset temperature range, which can be set to 2-6 degrees. The hot water tank 1104 is heated by a built-in heating pipe to obtain hot water in a second preset temperature range of 38-42 degrees. The water storage tank 1110 is used to replenish the hot water tank 1104, and can also store water overflowing from the cold water tank 1101 and the hot water tank 1104. Through the cold water main pipeline 1102 and the hot water main pipeline 1105, cold water and hot water can enter the pipeline module 120, and the cold water and hot water flowing through the pipeline module 120 flow into the cold water tank 1101 and the hot water tank 1104 respectively through the first cold water return pipe 1103 and the first hot water return pipe 1106.
[0073] In one embodiment, if Figure 6 As shown, the medical temperature controller 130 also includes a second cold water output interface 1305, a second hot water output interface 1306, a cooling channel module 1307, a rewarming channel module 1308, a reflux channel module 1309, an emptying channel module 1310 and a control board 1311; the cooling channel module 1307 is respectively connected to the cold water connector 1301 and the hot water connector 1302, the cooling channel module 1307 is also connected to the cooling contact 160 through the second cold water output interface 1305, the rewarming channel module 1308 is connected to the hot water connector 1302, the rewarming channel module 1308 is connected to the heating contact 150 through the second hot water output interface 1306, the first ends of the emptying channel module 1310 and the reflux channel module 1309 are respectively connected to the cooling contact 160 and the heating contact 150, and the second ends of the emptying channel module 1310 and the reflux channel module 1309 are respectively connected to the cold water reflux connector 1303 and the hot water reflux connector 1304.
[0074] The control panel 1311 is used to control the cooling channel module 1307 to deliver cold water in the first preset temperature range or the second preset temperature range to the cooling contact piece 160 to cool the contacted human body part; and to control the rewarming channel module 1308 to deliver hot water in the third preset temperature range to the heating contact piece 150 to rewarm the contacted human body part. The reflux channel module 1309 is used to reflux the water flowing through the cooling contact piece 160 and the heating contact piece 150; and the drain channel module 1310 is used to drain the water in the cooling contact piece 160 and the heating contact piece 150.
[0075] In one embodiment, the medical temperature controller 130 of the present application can be used in hypothermia treatment. When the human body is subjected to hypothermia treatment, the human body temperature range is 32-35 degrees, and the corresponding required cold water temperature range is [5, 20] degrees, the first preset temperature range is [5, 10] degrees, and the second preset temperature range is [10, 20] degrees. After the treatment is completed, the human body needs to be rewarmed, that is, from the hypothermia body temperature to the normal body temperature of 37 degrees. At this time, hot water higher than body temperature is needed to rewarm the human body through the heating contact member 150, and hot water in the third preset temperature range is needed, and the third preset temperature range is [37, 40] degrees.
[0076] In another embodiment, when a human body part needs to be cooled, a temperature range can be preset. When the set temperature is within the first preset temperature range, the control board 1311 is used to control the cold water of the cold water joint 1301 to enter the cooling channel module 1307, so that the cold water in the first preset temperature range enters the cooling contact piece 160 to cool the human body part. When the set temperature is within the second preset temperature range, the control board 1311 is used to control the cold water of the cold water joint 1301 and the hot water of the hot water joint 1302 to enter the cooling channel module 1307, so that the cold water in the second preset temperature range enters the cooling contact piece 160 to cool the human body part. When the human body cooling treatment is completed and it is necessary to rewarm or keep the human body part warm, the hot water in the third preset temperature range enters the rewarming channel module 1308 from the hot water joint 1302 and is transported to the heating contact piece 150 to rewarm or keep the human body part warm.
[0077] In one embodiment, the cooling contact 160 and the heating contact 150 are detachably arranged on the medical temperature controller 130, and both the cooling contact 160 and the heating contact 150 include a water blanket, a water cap, etc. The cooling contact 160 and the heating contact 150 can act on different parts of the human body at the same time, cooling, reheating and keeping warm the different parts of the human body respectively. The cooling contact 160 can act on a part of the human body alone for medical treatment, and put the part of the human body in a sub-hypothermia state; the heating contact 150 can act on a different part of the human body alone for medical treatment, and keep warm the part of the human body, or restore the human body from a sub-hypothermia state to a normal temperature state.
[0078] In one embodiment, each medical temperature controller 130 further includes a plurality of body temperature sensors 1312, a plurality of water temperature sensors 1313 and a water pressure sensor 1314, each body temperature sensor 1312 is respectively arranged at a part of the human body, each water temperature sensor 1313 is arranged at the second cold water output interface 1305 and the second hot water output interface 1306, and the water pressure sensor 1314 is arranged in the cooling channel module 1307. The medical temperature controller 130 is also used to collect real-time monitoring data through various sensors, and the temperature control management module 140 is also used to determine whether the medical temperature controller 130 in each bed has abnormal temperature control according to the real-time monitoring data, and to issue an abnormal alarm when it is determined that there is abnormal temperature control.
[0079] In one embodiment, the medical temperature controller 130 is used to collect the water pressure in the cooling channel module 1307 through the water pressure sensor 1314, and judge whether the flow pressure of the magnetic pump in the cooling channel module 1307 is sufficient according to the water pressure in the cooling channel module 1307. If the magnetic pump is aged, when the pressure reaches a certain limit value, the water cannot flow back to the hot and cold water machine 110, the water circulation fails, and the cooling function of the medical temperature controller 130 fails. The management terminal 1402 can remotely judge whether the water pressure of the cooling channel module 1307 is sufficient when delivering cold water according to the water pressure in the cooling channel module 1307, so as to give a timely reminder when it is judged that the water pressure is insufficient.
[0080] In one embodiment, the temperature control abnormality includes a sensor abnormality, that is, the body temperature sensor 1312 falls off from the human body part, resulting in the inability to monitor the temperature of the human body part. The management terminal 1402 is also used to determine whether the body temperature sensor 1312 falls off based on 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 1312 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 1312 has not fallen off. When the medical thermostat 130 performs sub-hypothermia treatment on the patient, the patient's treatment temperature range is 32-35 degrees. If the body temperature sensor 1312 falls off and the temperature of the human body part is room temperature, which is 32 degrees lower than the patient's lowest treatment temperature, it can be determined that the body temperature sensor 1312 falls off from the human body part.
[0081] In one embodiment, when the patient is subjected to temperature therapy, each temperature sensor 1312 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 130 can perform mild hypothermia and rewarming therapy on the patient, and can also keep or cool different parts of the patient's body. The temperature sensor 1312 can measure the patient's body temperature when the patient is subjected to mild hypothermia and rewarming therapy, and can also measure the temperature of different parts of the patient's body when they are kept or cooled.
[0082] In one embodiment, the temperature control abnormality also includes an abnormality in the temperature measuring line, which connects the body temperature sensor 1312 and the microcomputer of the medical thermostat 130. The management terminal 1402 is also used to determine whether there is an abnormality in the temperature measuring line in the medical thermostat 130 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 thermostat 130 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 1312 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 1312 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.
[0083] In another embodiment, the patient monitoring data includes the input water temperature of the heating contact 150 and the input water temperature of the cooling contact 160, and the temperature control abnormality also includes water temperature abnormality. The management terminal 1402 is further used to determine whether the medical temperature controller 130 has a water temperature abnormality based on the comparison result between the difference between the input water temperature and the preset water temperature and the second preset threshold; if the difference is greater than the second preset threshold, it is determined that the medical temperature controller 130 has a water temperature abnormality; if the difference is less than or equal to the second preset threshold, it is determined that the medical temperature controller 130 does not have a water temperature abnormality.
[0084] It can be understood that the management terminal 1402 of the present application can directly display the temperature control abnormality information of the medical thermostat 130 on the display interface by monitoring the temperature control abnormality of the medical thermostat 130 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.
[0085] The central medical temperature control system 100 of this application solves the problem that a single medical temperature controller 130 cannot cool down and reheat at the same time. In use, ordinary medical temperature controllers 130 usually output cold water for cooling down about half an hour after starting up. Compared with ordinary medical temperature controllers 130, this application is equipped with a hot and cold water machine 110 with large-volume water storage and water making functions, which provides sufficient constant temperature cold water and hot water for multiple medical temperature controllers 130. When used, it has plug-and-play and rapid cooling. At the same time, it can also perform temperature treatment on patients in multiple beds at the same time, reflecting a strong temperature control ability. In addition, the pipeline module 120 can realize temperature management of all patients in the central medical temperature control system 100, display and store real-time monitoring data of the entire treatment process, which plays an important role in scientific diagnosis and treatment, nursing training, etc. For major epidemics, the central medical temperature control system 100 can play a role in physical therapy for a large number of fever patients at the same time, and increase the ability of hospitals at all levels to prevent and control major epidemics.
[0086] In several embodiments provided in the present application, it should be understood that the disclosed devices and methods can also be implemented in other ways. The device 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 devices, methods and computer program products 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 the module, a program segment or a part of a code contains one or more executable instructions for implementing the 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 the order 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.
[0087] 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.
[0088] If the functions are implemented in the form of software function modules and sold or used as independent products, they 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 described in the various embodiments of the present application.
[0089] The above description is only a specific implementation manner 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 included in the protection scope of the present application.
Claims
1. A central medical temperature control system, characterized in that: include: A hot and cold water machine, a pipeline module, a plurality of medical temperature controllers and a temperature control management module connected in sequence, one medical temperature controller is provided for each bed, and each medical temperature controller is respectively connected to a heating contact piece and a cooling contact piece; The cold and hot water machine is used to obtain cold water and hot water in a preset temperature range, and pass the cold water and hot water into each of the medical temperature controllers through the pipeline module; Each of the medical temperature controllers is used to adjust the input cold water and hot water to different preset temperature ranges, so that the cold water and hot water in different preset temperature ranges enter the cooling contact piece and the heating contact piece respectively, so as to cool down and reheat the contacted human body parts; Each of the medical temperature controllers is also used to collect real-time monitoring data of patients in sickbeds to obtain real-time monitoring data; The temperature control management module is used to obtain the real-time monitoring data of each of the beds and centrally display the real-time monitoring data.
2. The central medical temperature control system according to claim 1, characterized in that: The cold and hot water machine comprises a cold water tank, a cold water main pipeline, a first cold water return pipe, a hot water tank, a hot water main pipeline and a first hot water return pipe; The cold water tank is connected to the cold water main pipeline and the first cold water return pipe respectively, the hot water tank is connected to the hot water main pipeline and the first hot water return pipe respectively, and the cold water main pipeline, the first cold water return pipe, the hot water main pipeline and the first hot water return pipe are connected to the pipeline module respectively; The cold water main pipeline is used to transport the water in the cold water tank to the pipeline module; The hot water main pipeline is used to transport the water in the hot water tank to the pipeline module; The first cold water return pipe is used to return the cold water passing through the pipeline module to the cold water tank; The first hot water return pipe is used to return the hot water passing through the pipeline module to the hot water tank.
3. The central medical temperature control system according to claim 2, characterized in that: The pipeline module includes a cold water input interface, a hot water input interface, a cold water input pipe, a hot water input pipe, a first cold water output interface, a second hot water output interface, a second hot water return pipe, a second cold water return pipe and a plurality of interface integrated boxes; The cold water input interface is respectively connected to the cold water main pipeline and the cold water input pipe, the hot water input interface is respectively connected to the hot water main pipeline and the hot water input pipe, the first cold water output interface is respectively connected to the first cold water return pipe and the second cold water return pipe, and the first hot water output interface is respectively connected to the first hot water return pipe and the second hot water return pipe; The first end of each of the interface integrated boxes is respectively connected to the cold water input pipe, the hot water input pipe, the second hot water return pipe and the second cold water return pipe, and the second end of each of the interface integrated boxes is respectively connected to each of the medical temperature controllers; Each of the interface integrated boxes is used to respectively direct the cold water of the cold water input pipe and the hot water of the hot water input pipe into the medical thermostat, and to respectively direct the cold water and hot water returning from the medical thermostat into the second cold water return pipe and the second hot water return pipe, so as to direct the water into the cold and hot water maker through the first cold water return pipe and the first hot water return pipe.
4. The central medical temperature control system according to claim 3, characterized in that: Each of the interface integrated boxes includes a plurality of water inlet joints, each of the medical temperature controllers includes a cold water joint, a hot water joint, a cold water return joint and a hot water return joint, and each of the medical temperature controllers is connected to a corresponding interface integrated box; Each of the water diversion joints is respectively connected to the cold water joint, the hot water joint, the cold water return joint and the hot water return joint; The interface integrated box is also used to control the cold water of the cold water input pipe to enter the cold water joint through the water inlet joint, and to control the hot water of the hot water input pipe to enter the hot water joint, so as to allow the cold water and hot water to enter the medical temperature controller; The interface integrated box is also used to control the cold water of the cold water return joint to flow back to the second cold water return pipe through the water diversion joint, and to control the hot water of the hot water return joint to flow back to the second hot water return pipe.
5. The central medical temperature control system according to claim 1, characterized in that: The temperature control management module includes a data collector and a management terminal, and the data collector is respectively connected to each of the medical temperature controllers and the management terminal; The management terminal is used to obtain the real-time monitoring data of each of the beds through the data collector, and to display the real-time monitoring data corresponding to each bed in a display interface.
6. The central medical temperature control system according to claim 2, characterized in that: The hot and cold water making machine also includes a main control module, a circulating refrigeration module and a heating module; The main control module is used to control the circulating refrigeration module to cool the water in the cold water tank to a first preset temperature range, so that the cooled cold water enters the medical temperature controller through the cold water main pipeline, and to control the heating module to heat the water in the hot water tank to a second preset temperature range, so that the heated hot water enters the medical temperature controller through the hot water main pipeline.
7. The central medical temperature control system according to claim 4, characterized in that: The medical temperature controller also includes a second cold water output interface, a second hot water output interface, a cooling channel module, a rewarming channel module, a reflux channel module, an emptying channel module and a control panel; The cooling channel module is connected to the cold water joint and the hot water joint respectively, the cooling channel module is also connected to the cooling contact piece through the second cold water output interface, the rewarming channel module is connected to the hot water joint, the rewarming channel module is connected to the heating contact piece through the second hot water output interface, the first ends of the emptying channel module and the reflux channel module are connected to the cooling contact piece and the heating contact piece respectively, and the second ends of the emptying channel module and the reflux channel module are connected to the cold water reflux joint and the hot water reflux joint respectively; The control panel is used to control the cooling channel module to deliver cold water in the first preset temperature range or the second preset temperature range to the cooling contact piece to cool the contacted human body part; and is used to control the rewarming channel module to deliver hot water in the third preset temperature range to the heating contact piece to rewarm the contacted human body part; The reflux channel module is used to reflux the water flowing through the temperature-lowering contact piece and the temperature-raising contact piece; The drain channel module is used to drain water from the temperature-lowering contact piece and the temperature-raising contact piece.
8. The central medical temperature control system according to claim 7, characterized in that: Each of the medical temperature controllers further comprises a plurality of body temperature sensors, a plurality of water temperature sensors and a water pressure sensor, each of the body temperature sensors being respectively arranged on a part of the human body, each of the water temperature sensors being arranged on the second cold water output interface and the second hot water output interface, and the water pressure sensor being arranged in the cooling channel module; The medical temperature controller is also used to collect the real-time monitoring data through each of the sensors; The temperature control management module is also used to determine whether the medical temperature controller in each of the beds has abnormal temperature control according to the real-time monitoring data, and to issue an abnormal alarm when it is determined that there is a temperature control abnormality.
9. The central medical temperature control system according to claim 6, characterized in that: The hot and cold water making machine further comprises a water storage tank, which is connected to the hot water tank; The main control module is also used to transport water to the hot water tank according to the judgment result of whether the water in the hot water tank is sufficient.
10. The central medical temperature control system according to claim 9, characterized in that: The hot and cold water making machine further comprises a first overflow pipe and a second overflow pipe; The first end of the first overflow pipe is connected to the hot water tank, the second end of the first overflow pipe is connected to the cold water tank, the first end of the second overflow pipe is connected to the hot water tank, and the second end of the second overflow pipe is connected to the water storage tank; The first overflow pipe is used to transport the water overflowing from the cold water tank to the hot water tank; The second overflow pipe is used to transport water overflowing from the hot water tank to the water storage tank.