Urine volume measuring device
The urine volume measuring device addresses inaccurate urine output calculations by adjusting measurement procedures based on handrail or caregiver assistance, ensuring accurate results and user-friendly operation.
Patent Information
- Application Number
- JP2024574282
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2023-01-30
- Filing Date
- 2023-11-28
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2043-11-28
AI Technical Summary
Existing urine volume measuring devices inaccurately calculate urine output when patients use handrails or caregiver support during weight measurement, leading to inaccurate body weight readings.
A urine volume measuring device with a weight measurement unit, urination volume calculation unit, assistance setting unit, and memory unit that adjusts measurement procedures based on the presence of handrails or caregiver assistance, providing guided instructions through a display and audio output.
Ensures accurate urine volume calculation by accounting for different assistance modes, facilitating easy use for patients with varying abilities and conditions.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a urine volume measuring device. [Background technology]
[0002] A urination volume management system that manages daily urination volume has been proposed to manage the physical condition of patients with disorders of urine collection or urination functions, or to confirm the effectiveness of treatment (Patent Document 1). This system includes a weight measurement unit and a urination volume management terminal connected to the weight measurement unit via a communication circuit. The urination volume management terminal receives weight values before and after urination transmitted from the weight measurement unit via the communication line, and calculates the difference between these weight values as the urination volume. The patient can measure the urination volume simply by standing on the weight measurement unit and measuring their weight before and after urination.
[0003] Many patients with disorders of urine collection and urination functions are elderly, and elderly patients with particularly weak legs and hips have difficulty getting on and off the weight measurement unit by themselves. In response to this, Patent Document 2 proposes a weight scale equipped with handrails (Patent Document 2). In this weight scale, handrails are attached to a load plate whose four corners are supported by load cells that detect the load. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2018-175349 [Patent Document 2] Japanese Patent Application Publication No. 2019-002734 Summary of the Invention [Problem to be solved by the invention]
[0005] The scale described in Patent Document 2 can accurately measure the patient's weight even if the patient stands on the scale while holding onto the handrail and starts the weight measurement in that position. However, there are cases where patients stand on the scale using a handrail provided separately from the scale or with the support of a caregiver such as a nurse. In such cases, if the patient starts the weight measurement while holding onto the handrail or with the support of a caregiver, the patient's weight cannot be measured accurately, and as a result, there is a problem that the amount of urine output cannot be calculated accurately.
[0006] The problem to be solved by the present invention is to make it possible to obtain an accurate amount of urine in a urine volume measuring device that calculates the amount of urine from body weight measurements before and after urination. [Means for solving the problem]
[0007] The urine volume measuring device according to the present invention, which has been made to solve the above problems, is A weight measurement unit; a urination volume calculation unit that calculates the urination volume from the measurement result of the weight measurement unit; an assistance setting unit that sets an assistance mode when the subject uses the weight measuring unit; a memory unit that stores a procedure for measuring the amount of urine according to the mode of assistance; an output unit that reads out from the storage unit a procedure for measuring the amount of urine corresponding to the mode of assistance set by the assistance setting unit and outputs the procedure for measuring the amount of urine; Equipped with. [Effects of the Invention]
[0008] According to the urine volume measuring device of the present invention, a urine volume measuring procedure according to the mode of assistance when measuring body weight is output, so that the subject can be notified of an appropriate urine volume measuring procedure, and the accurate urine volume can be calculated. [Brief explanation of the drawings]
[0009] [Figure 1] 1 is a schematic diagram illustrating the overall configuration of a urine volume management system according to an embodiment of the present invention. [Figure 2] FIG. 2 is a schematic block diagram of a weight measurement unit and an output device that constitute the urine volume measurement device. [Figure 3] FIG. 10 is a diagram showing an example of a display screen of an output device for explaining the flow of a urine volume measurement process without assistance. [Figure 4] FIG. 10 is a diagram showing an example of a display screen of an output device for explaining the flow of a urine volume measurement process in the case where assistance is provided. [Figure 5] 10A and 10B are diagrams showing examples of display screens of an output device when setting whether to use assistance and a delay time. DETAILED DESCRIPTION OF THE INVENTION
[0010] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, specific embodiments of the present invention will be described with reference to the accompanying drawings.
[0011] [Overall configuration of the urination volume measuring device] Fig. 1 is a diagram that shows a schematic diagram of a urination volume management system 1 according to this embodiment. Fig. 2 is a schematic block diagram of the urination volume management system 1. This urination volume management system 1 includes a urination volume measuring device 2 and an administrator terminal 3. The urination volume management system 1 is installed in a medical institution such as a hospital, the subject's home, etc.
[0012] The urine volume measuring device 2 includes a weight measuring unit 100 and an output device 200. The weight measuring unit 100 and the output device 200 include short-range wireless communication circuits (hereinafter simply referred to as "communication circuits") 180 and 280, respectively, and are configured to be able to communicate wirelessly with each other. The administrator terminal 3 is, for example, a desktop, notebook, or tablet personal computer, and is connected to the output device 200 of the urine volume measuring device 2 by short-range wireless communication. The administrator terminal 3 and the output device 200 may be connected via a local network within the facility where the urination volume management system 1 is installed, or via the Internet.
[0013] [Weight measurement unit configuration] The weight measurement unit 100 has a flat housing 101, and is equipped with a CPU (Central Processing Unit) 170, a communication circuit 180, a power supply control circuit 160, an LED control circuit 165, an A / D conversion circuit 130, a USB / serial conversion circuit 145, memory (ROM (Read Only Memory) and RAM (Random Access Memory)) 171, a power supply battery 140, an LED 175, and a load cell 110 housed within the housing 101.
[0014] The load cell 110 is a type of weight sensor in which strain caused by the weight of a subject standing on the housing 101 appears as a change in resistance value. The change in resistance value is output from the load cell 110 as a voltage signal or a current signal. The signal output from the load cell 110 is converted into a digital value by the A / D conversion circuit 130 and then input to the CPU 170.
[0015] The USB / serial conversion circuit 145 converts various signals input and output from the USB port 173 into serial data and inputs it to the CPU 170. The ROM stores a program describing the processing procedures of the CPU 170, and the CPU 170 functions as a control unit by expanding the program into RAM or the like and executing it. The ROM also stores various tables (maps) used for various calculations. The CPU 170 executes various processes in the weight measurement unit 100 according to these programs and tables. The various processes are not limited to those executed by software, and can also be executed by dedicated hardware (electronic circuits).
[0016] Weight measurement unit 100 further includes a power switch 176 for turning it on and off. Even when weight measurement unit 100 is turned on by power switch 176, it is generally in a sleep state when not measuring weight in order to achieve low power consumption.
[0017] The CPU 170 has high processing power capable of high-speed calculations up to the floating point to realize weight measurement. Therefore, if the load cell 110 and downstream processing circuits are kept in standby mode at all times to detect the load, power consumption will be high. Therefore, in the sleep mode of the urination volume measurement device 2 of this embodiment, the communication circuit 180 of the weight measurement unit 100 and some functions of the CPU 170 that control the communication circuit 180 are activated at low power. When the CPU 170 receives a wireless communication request from the output device 200, the communication circuit 180 is activated and communication with the output device 200 is established. Once communication is established, the CPU 170 is fully activated. It is preferable to use a communication circuit 180 that complies with a low-power standard, such as Bluetooth (registered trademark) Low Energy. The CPU 170 externally displays the operating status of the weight measurement unit 100 using the LED 175, an RGB indicator.
[0018] In the weight measurement unit 100, after communication with the output device 200 is established, the CPU 170 changes from a low-power startup state to a state capable of high-performance calculation, and causes the power supply control circuit 160 to energize other units such as the load cell 110. Then, when measuring weight, the CPU 170 starts calculating the signal from the load cell 110, which increases power consumption.
[0019] With the above configuration, the power consumption of the weight measurement unit 100 in sleep mode can be limited to the power consumption of the CPU 170 in low power mode. In the urination volume management system 1, weight is measured twice each time the patient urinates, before and after urination, so the power consumption of the weight measurement unit 100 increases significantly compared to when weight is measured once a day, for example. In the weight measurement unit 100 of this embodiment, the power consumption in sleep mode is reduced, so the life of the battery 140 can be dramatically extended.
[0020] [Output device configuration] The output device 200 is composed of a stand 201 and a device main body 202 mounted thereon. The device main body 202 is composed of, for example, a tablet terminal that is removably mounted on the stand 201. The device main body 202 includes a CPU 270, a memory 271, a storage unit 277, an input operation unit 260 consisting of a touch panel or buttons that accepts input operations, a display unit 210 consisting of a display panel that displays a screen, an audio instruction unit 220 consisting of a speaker, and a communication circuit 280. The CPU 270 further includes, as functional blocks, an auxiliary setting unit 272, a delay time setting unit 273, a display processing unit 274, an audio processing unit 275, and a urination volume calculation unit 276. The output device 200 may be integrated with the device main body 201.
[0021] The assistance setting unit 272 sets the type of assistance (e.g., type of assistance, presence or absence of assistance) when the subject uses the weight measurement unit 100. In this embodiment, it is set whether or not a handrail that can be used when getting on and off the housing 101 of the weight scale side unit 100 is installed near the weight measurement unit 100 (either on the left or right side of the weight measurement unit 100, or both). Note that this handrail is installed separately from the weight measurement unit 100 and may be a dedicated handrail installed for the urination volume measurement device 2, or a handrail installed in a hospital corridor, etc. may be used. The delay time setting unit 273 sets the time from when the weight measurement unit 100 detects the subject's weight to when it starts measuring the weight (the time from when a signal output from the load cell 110 is input to the CPU 170 of the weight measurement unit 100 to when calculation of the signal starts) (hereinafter referred to as the "delay time"). The presence or absence of a handrail and the delay time are set in advance by an administrator or an operator such as a nurse requested by the administrator (hereinafter referred to as the "administrator, etc.") operating the input operation unit 260. The input operation unit 260 and the auxiliary setting unit 272 in this embodiment correspond to the "auxiliary setting unit" of the present invention, and the input operation unit 260 and the delay time setting unit 273 correspond to the "delay time setting unit" (described later) of the present invention.
[0022] Different urine volume measurement procedures depending on whether or not a handrail is provided are stored in the storage unit 277. Specifically, display screens and voice messages showing the contents of each processing step of the urine volume measurement procedure are stored together with the order of each processing step.
[0023] The display processing unit 274 reads out from the storage unit 277 a urination volume measurement procedure corresponding to the presence or absence of a handrail set by the auxiliary setting unit 272, and displays the urination volume measurement procedure as a display screen on the display unit 210. The voice processing unit 275 reads out from the storage unit 277 a urination volume measurement procedure corresponding to the presence or absence of a handrail set by the auxiliary setting unit 272, and outputs the urination volume measurement procedure as a voice message to the voice instruction unit 220. The display processing unit 274 and the display unit 210, the voice processing unit 275 and the voice instruction unit 220 in this embodiment each correspond to the "output unit" of the present invention.
[0024] The urination volume calculation unit 276 calculates the urination volume from the body weight measured by the weight measurement unit 100. Specifically, the urination volume is obtained by subtracting the body weight measured after urination from the body weight measured before urination. If necessary, the body weight value may be converted into volume using the standard density of urine.
[0025] The memory 271 stores application software dedicated to the urination volume management system 1, and when the CPU 270 executes this software, the auxiliary setting unit 272, delay time setting unit 273, display processing unit 274, audio processing unit 275, and urination volume calculation unit 276 function.
[0026] [Urine volume measurement processing] Next, the urine volume measurement process in the urine volume measurement device 2 will be described. First, an administrator or the like of the urination volume management system 1 sets conditions necessary for the urination volume measurement process before starting to use the urination volume measurement device 2. Fig. 5 shows an example of a screen (administrator screen) displayed on the display unit 210 of the output device 200 for the administrator or the like to set conditions.
[0027] For example, Fig. 5 shows a setting screen for setting whether or not there is a "handrail" near the weight measurement unit 100. This setting screen includes two rectangular areas 212 and 213 arranged one above the other. The delay time described above is set in area 212, and the presence or absence of a handrail is set in area 213. Therefore, area 212 displays an explanation of the delay time ("the time from getting on the device to the start of measurement") and a GUI (Graphical User Interface) input field 214 for inputting the delay time. Furthermore, area 213 displays examples of display screens corresponding to the presence or absence of a handrail ("with handrail" and "without handrail"), and characters indicating the presence or absence of a handrail, one above the other. To the left of the characters "with handrail" and "without handrail," GUI radio buttons 215 and 216 for selecting them are displayed, respectively.
[0028] With the setting screen shown in FIG. 5 displayed on the display unit 210, the administrator or the like can select whether or not to provide a handrail by touching GUI radio buttons 215 and 216 in area 213 on the touch panel 260. FIG. 5 shows the state in which "without handrail" is selected. The auxiliary setting unit 272 sets whether or not to provide a handrail based on this selection. In addition, the administrator or the like can touch the GUI input field 214 in area 212 on the touch panel 260 and input a delay time into the input field 214 using a software keyboard or the like that is displayed. The delay time setting unit 273 sets the input value as the delay time and transmits the delay time to the CPU 170 of the weight measurement unit 100.
[0029] The delay time is set within a range of 0 to 30 seconds, for example. For a young subject who has no difficulty getting on and off the housing 101 of the weight measurement unit 100, or for a subject who has symptoms of urinary urgency, it is preferable to set the delay time short so that measurement can begin immediately. On the other hand, if the subject is elderly and it takes time for the subject to stand on the housing 101 and stop, it is preferable to set the delay time longer. Setting the delay time longer makes it possible to obtain an accurate weight measurement value even if it takes time for the subject to stand on the housing 101 and stop, or if it takes time for the subject to stand on the housing 101 and stop.
[0030] Furthermore, the weight measuring unit 100 has a function of determining whether the output signal from the load cell 110 has stabilized by having the CPU 170 determine whether the amplitude of fluctuations in the signal output from the load cell 110 is within a predetermined range. The weight measuring unit 100 may be configured to determine that a measurement error has occurred and abort the measurement if the signal does not stabilize within a preset time after the CPU 170 receives the signal from the load cell 110. In such a weight measuring unit 100, by setting the delay time longer than the set time, it is possible to start calculating the subject's weight after the output signal from the load cell 100 has stabilized.
[0031] Next, a description will be given of the operation when measuring the weight of a subject using the weight measuring unit 100 and the output device 200. It is assumed that the power switch 176 has been used to turn on the power to the weight measuring unit 100.
[0032] FIG. 3 is an example of a screen displayed on the display unit 210 of the output device 200 when "no handrail" is set, and FIG. 4 is an example of a screen displayed on the display unit 210 of the output device 200 when "handrail" is set.
[0033] A subject using the weight measurement unit 100 and the output device 200 first touches the touch panel 260 of the output device 200. Then, a name selection screen (not shown) is displayed on the display unit 210. The subject touches the touch panel 260 to select his or her own name displayed on the display unit 210, and presses the measurement start button. This causes the subject's identification information to be input from the input operation unit 260 to the CPU 270.
[0034] When the CPU 270 receives the identification information, it activates the communication circuit 280 and transmits a wireless communication request to the weight measurement unit 100. Upon receiving the wireless communication request, the weight measurement unit 100 activates the communication circuit 180 and establishes communication with the output device 200. Once communication is established, the CPU 270 of the output device 200 transmits a “measurement preparation instruction” signal to the weight measurement unit 100. When the weight measurement unit 100 receives the “measurement preparation instruction” signal, the CPU 170 fully activates, and circuits required for measurement, such as the load cell 110, transition from a sleep state to a measurement-enabled state. The CPU 170 then returns a “measurement preparation complete” signal to the output device 200. When the CPU 270 of the output device 200 receives the “measurement preparation complete” signal, the CPU 270 executes an operation instruction screen display process and an audio instruction process on the display unit 210 and the audio instruction unit 220. First, the process when “no handrail” is set will be described with reference to FIG. 3.
[0035] When the CPU 270 receives a signal indicating that "measurement preparation is complete," the display processing unit 274 reads out from the memory unit 277 a screen (action instruction screen) that instructs the subject on the next action to be taken, and displays it on the display unit 210 (FIG. 3(1)).
[0036] The operation instruction screen in FIG. 3(1) displays a text message ("Please get on") instructing the subject to stand on the housing 101 of the weight measurement unit 100 to measure the subject's weight, an image showing a person trying to stand on the housing 101, and a GUI button 217 for confirming the subject's intention to stop the measurement. The image may be a still image or a video. The GUI button 217 consists of a rectangular frame with the words "Stop measurement" displayed within it. In addition, the identification information (identification number, name of the subject) received by the CPU 270 from the input operation unit 260 is displayed at the top of this operation instruction screen.
[0037] In addition, when the CPU 270 of the output device 200 receives a signal indicating that "measurement preparation is complete" from the weight measurement unit 100, the voice processing unit 275 reads out a voice message from the memory unit 277 that instructs the next action to be taken, and outputs the voice message from the voice instruction unit 220.
[0038] Therefore, the subject can determine the next action to be taken by looking at the text message or image displayed on the screen of the display unit 210 or by listening to the audio message output from the audio instruction unit 220. In this way, the next action to be taken is instructed using both visual information, i.e., the text message and image, and auditory information, i.e., the audio message, making it easy to use even for subjects with impaired vision, hearing, or both, or with cognitive problems. In addition, expressing the content of the action instructions using images makes it easy to use even for young children and foreign patients who cannot understand the content of text or audio instructions.
[0039] If a "measurement preparation complete" signal is not transmitted from the weight measuring unit 100 even after a predetermined time has elapsed since the output device 200 transmitted the "measurement preparation instruction" signal, the CPU 270 transmits the "measurement preparation instruction" signal again. If a "measurement preparation complete" signal is not transmitted from the weight measuring unit 100 even after the process of transmitting the "measurement preparation instruction" signal is repeated multiple times (for example, 10 times), an error screen is displayed on the display unit 210.
[0040] Meanwhile, the CPU 170 of the weight measurement unit 100 that has transitioned from the sleep state to the measurement-enabled state observes the change in the resistance value of the load cell 110 for a certain period of time using the digital value obtained from the A / D conversion circuit .
[0041] When the subject stands on the housing 101 of the weight measuring unit 100, a digital value representing a change in the resistance value of the load cell 110 is input from the A / D conversion circuit 130 to the CPU 170. The CPU 170 detects from the digital value that the subject is standing on the housing 101.
[0042] The CPU 170 detects that the subject is standing on the housing 101 and transmits a "load change detected" signal to the output device 200. After that, when the time set by the delay time setting unit 273 has elapsed, the CPU 270 of the output device 200 transmits a "measurement start instruction" signal to the CPU 170 of the weight measurement unit 100. Upon receiving the "measurement start instruction" signal, the CPU 170 begins calculating the signal from the load cell 110. The CPU 170 calculates the subject's weight measurement value while performing averaging processing and stabilization determination of the digital values input from the load cell 110. This allows accurate weight measurement even if it takes a long time for the subject to stop after standing on the housing 101. The calculated weight measurement value is stored in the memory 171 of the weight measurement unit 100.
[0043] When the calculation of the subject's weight measurement value is completed, the CPU 170 transmits a "weight measurement completed" signal to the output device 200. When the CPU 270 of the output device 200 receives the "weight measurement completed" signal, the display processing unit 274 reads out a next operation instruction screen from the storage unit 277 and displays it on the display unit 210 (FIG. 3(2)). This screen displays a text message explaining the operation after the measurement is completed ("Please get off the device and go to the toilet") and an image showing a person about to get down from the housing 101 of the weight measuring unit 100. Furthermore, when the CPU 270 receives the "weight measurement completed" signal, the audio processing unit 275 reads out an audio message explaining the next operation from the storage unit 277 and outputs it to the audio instruction unit 220.
[0044] When the subject steps off the housing 101 of the weight measuring unit 100, the digital value input from the A / D conversion circuit 130 drops sharply. The CPU 170 detects from the change in the digital value that the subject has stepped off the housing 101 and sends a "weight change detected" signal to the output device 200. The CPU 170 also reads from the memory 171 the weight measurement value when the subject was on the housing 101, and obtains the subject's weight value by subtracting from the weight measurement value the weight measurement value calculated from the digital value when the subject was not on the housing 101. The obtained weight value is stored in the memory 171 and is also transmitted to the output device 200 as pre-urination weight value data.
[0045] The CPU 270 of the output device 200 receives the pre-urination weight value data from the weight measurement unit 100, stores the weight value data in the memory 271, and transmits a signal indicating "weight value data reception complete" to the weight measurement unit 100. The CPU 170 of the weight measurement unit 100 repeats the process of transmitting the weight value data multiple times (for example, 10 times) until it receives the signal indicating "weight value data reception complete" from the CPU 270 of the output device 200.
[0046] Upon receiving the "weight value data reception complete" signal from the output device 200, the CPU 170 of the weight measurement unit 100 terminates the weight value data transmission process. Thereafter, the output device 200 transmits a "measurement end" signal to the weight measurement unit 100, and upon receiving the "measurement end" signal, the weight measurement unit 100 transmits a "measurement end confirmation" signal to the output device 200. Upon receiving the "measurement end confirmation" signal, the output device 200 cuts off communication with the weight measurement unit 100. When communication is cut off, the weight measurement unit 100 and the output device 200 enter a sleep state.
[0047] When a predetermined time has elapsed since the output device 200 entered sleep mode, the CPU 270 activates the communication circuit 280 to send a wireless communication request to the weight measurement unit 100, thereby establishing communication with the weight measurement unit 100. Once communication is established, the CPU 270 of the output device 200 sends a "measurement preparation instruction" signal to the weight measurement unit 100. When the weight measurement unit 100 receives the "measurement preparation instruction" signal, the weight measurement unit 100 transitions from the sleep mode to a measurable state. Thereafter, the CPU 170 returns a "measurement preparation complete" signal to the output device 200.
[0048] When the CPU 270 of the output device 200 receives the signal "measurement preparation complete", the display processing unit 274 reads the next operation instruction screen from the storage unit 277 and displays the screen on the display unit 210 (Fig. 3(3)). This screen is the same as Fig. 3(1), and displays a text message ("Please get on") instructing the subject to get on the housing 101 of the weight measurement unit 100.
[0049] Furthermore, the voice processing unit 275 reads out a voice message from the storage unit 277 instructing the next action to be taken, and outputs the message to the voice instruction unit 220 .
[0050] As with the weight measurement before urination, the CPU 170 of the weight measurement unit 100 calculates the weight measurement value of the subject after urination and stores it in the memory 171. When the CPU 170 finishes calculating the weight measurement value of the subject, it sends a signal indicating "weight measurement completed" to the output device 200. When the CPU 270 of the output device 200 receives the signal indicating "weight measurement completed," the display processing unit 274 reads out a screen indicating that the measurement has been completed from the storage unit 277 and displays it on the display unit 210 (FIG. 3(4)). This screen displays a text message explaining what to do after the measurement has been completed ("Measurement completed. Please step down slowly") and an image of a person about to step down from the housing 101. In addition, the audio processing unit 275 reads out an audio message from the storage unit 277 instructing what to do after the measurement has been completed and outputs it to the audio instruction unit 220.
[0051] When CPU 170 detects from the change in the digital value that the subject has stepped off housing 101, it transmits a "load change detected" signal to output device 200. CPU 170 also reads from memory 171 the weight measurement value when the subject was on housing 101, and obtains the subject's weight value by subtracting from the weight measurement value calculated from the digital value when the subject was not on housing 101. The obtained weight value is transmitted to output device 200 as post-urination weight value data.
[0052] The CPU 270 of the output device 200 receives the post-urination weight value data from the weight measurement unit 100, stores the weight value data in memory 271, and transmits a "weight value data reception complete" signal to the weight measurement unit 100. The CPU 170 of the weight measurement unit 100, upon receiving the "weight value data reception complete" signal from the output device 200, terminates the weight value data transmission process. The output device 200 transmits a "measurement end" signal to the weight measurement unit 100, and the weight measurement unit 100, upon receiving the "measurement end" signal, transmits a "measurement end confirmation" signal to the output device 200. When the output device 200 receives the "measurement end confirmation" signal, the urination volume calculation unit 276 reads the pre-urination weight value stored in memory 271 and calculates the urination volume by subtracting the post-urination weight value from the pre-urination weight value. The calculated urination volume is stored in memory 271. Thereafter, the CPU 270 associates the amount of urine stored in the memory 271 with the identification information of the subject and transmits the amount of urine to the administrator terminal 3, and ends the urine amount measurement process.
[0053] Next, the urination volume measurement process when "handrails are present" is set will be described with reference to Fig. 4. In Fig. 4, handrails are displayed on the images of various display screens. Note that explanations of parts that overlap with the content when "handrails are not present" are omitted as appropriate.
[0054] As described above, a subject using the weight measurement unit 100 and the output device 200 first touches the touch panel 260 of the output device 200, selects his / her own name on the displayed name selection screen on the touch panel 260, and presses the measurement start button. This causes the subject's identification information to be input from the input operation unit 260 to the CPU 270.
[0055] When the CPU 270 receives the identification information, the CPU 270 activates the communication circuit 280 to send a wireless communication request to the weight measurement unit 100, thereby establishing communication with the weight measurement unit 100. Once communication is established, the CPU 270 of the output device 200 sends a "measurement preparation instruction" signal to the weight measurement unit 100. When the weight measurement unit 100 receives the "measurement preparation instruction" signal, the weight measurement unit 100 transitions from a sleep state to a measurable state. Thereafter, the CPU 170 returns a "measurement preparation complete" signal to the output device 200.
[0056] When the CPU 270 receives the "measurement preparation complete" signal, the display processing unit 274 reads from the memory unit 277 a screen (action instruction screen) that instructs the subject on the next action to be taken, and displays it on the display unit 210 (Fig. 4(1)). Fig. 4(1) is the same as Fig. 3(1) except that a handrail is displayed in the image, and a text message ("Please get on") is displayed instructing the subject to stand on the housing 101 of the weight measurement unit 100 to measure their weight. In addition, the audio processing unit 275 outputs an audio message from the audio instruction unit 220 instructing the subject on the next action.
[0057] Meanwhile, the CPU 170 of the weight measurement unit 100, which has transitioned from the sleep state to the measurement-enabled state, observes changes in the resistance value of the load cell 110 for a certain period of time. When the CPU 170 detects that the subject is standing on the housing 101, it transmits a "load change detection" signal to the output device 200. When the time set by the delay time setting unit 273 has elapsed since the output device 200 received the "load change detection" signal, the CPU 270 of the output device 200 transmits a "measurement start instruction" signal to the CPU 170 of the weight measurement unit 100. This causes the CPU 170 to start calculating the signal from the load cell 110.
[0058] Furthermore, when the time set by the delay time setting unit 273 has elapsed since the output device 200 received the "load change detection" signal, the display processing unit 274 of the output device displays the next operation instruction screen on the display unit 210 (FIG. 4(2)). This screen displays text indicating that weight measurement is in progress ("Measuring..."), a text message indicating precautions to take during measurement ("Remove your hands from the handrail"), images of a person standing upright on the housing 101 with their hands removed from the handrail and a person standing on the housing 101 while holding the handrail, and a GUI button 218 for confirming an intention to stop measurement. In the image of FIG. 4(2), a circle symbol is displayed above the person who has removed their hands from the handrail, and an x symbol is displayed above the person who is holding the handrail.
[0059] The CPU 170 of the weight measurement unit 100 calculates the subject's weight measurement value while performing stabilization determination and averaging processing of the digital value input from the load cell 110, and stores the calculated value in the memory 171. When the calculation of the subject's weight measurement value is completed, the CPU 170 sends a "weight measurement completed" signal to the output device 200. When the CPU 270 of the output device 200 receives the "weight measurement completed" signal, the display processing unit 274 switches the screen of the display unit 210 to the next action instruction screen (FIG. 4(3)). FIG. 4(3) is the same as FIG. 3(2) except that a handrail is displayed in the image, and a text message explaining the action to take after the weight measurement is completed ("Please get off the device and go to the toilet") is displayed. At the same time, the audio instruction unit 220 outputs an audio message with the same content as the text message.
[0060] When CPU 170 detects from the change in the digital value that the subject has stepped off housing 101 of weight measuring unit 100, it sends a "load change detected" signal to output device 200. CPU 170 also reads from memory 171 the weight measurement value when the subject was on housing 101, and obtains the subject's weight value by subtracting from the weight measurement value the weight measurement value calculated from the digital value when the subject was not on housing 101. The obtained weight value is stored in memory 171 and is also transmitted to output device 200 as pre-urination weight value data.
[0061] The CPU 270 of the output device 200 receives the pre-urination weight value data from the weight measurement unit 100, stores the weight value data in memory 271, and transmits a "weight value data reception complete" signal to the weight measurement unit 100. Upon receiving the "weight value data reception complete" signal from the output device 200, the CPU 170 of the weight measurement unit 100 terminates the weight value data transmission process. Thereafter, the output device 200 transmits a "measurement end" signal to the weight measurement unit 100, and upon receiving the "measurement end" signal, the weight measurement unit 100 transmits a "measurement end confirmation" signal to the output device 200. Upon receiving the "measurement end confirmation" signal, the output device 200 disconnects communication with the weight measurement unit 100. When communication is disconnected, the weight measurement unit 100 and the output device 200 enter a sleep state.
[0062] When a predetermined time has elapsed since the output device 200 entered sleep mode, the CPU 270 activates the communication circuit 280 to send a wireless communication request to the weight measurement unit 100, thereby establishing communication with the weight measurement unit 100. Once communication is established, the CPU 270 of the output device 200 sends a "measurement preparation instruction" signal to the weight measurement unit 100. When the weight measurement unit 100 receives the "measurement preparation instruction" signal, the weight measurement unit 100 transitions from the sleep mode to a measurable state. Thereafter, the CPU 170 returns a "measurement preparation complete" signal to the output device 200.
[0063] When the CPU 270 of the output device 200 receives the signal "measurement preparation complete", the display processing unit 274 displays the next operation instruction screen on the display unit 210 (Fig. 4(4)). Fig. 4(4) is the same as Fig. 4(1), and displays a text message instructing the subject to stand on the housing 101 of the weight measuring unit 100 to measure their weight. In addition, the audio instruction unit 220 outputs an audio message with the same content as this text message.
[0064] Meanwhile, the CPU 170 of the weight measurement unit 100, which has transitioned from the sleep state to the measurement-enabled state, observes changes in the resistance value of the load cell 110 for a certain period of time. When the CPU 170 detects that the subject is standing on the housing 101, it transmits a "load change detection" signal to the output device 200. When the time set by the delay time setting unit 273 has elapsed since the output device 200 received the "load change detection" signal, the CPU 270 of the output device 200 transmits a "measurement start instruction" signal to the CPU 170 of the weight measurement unit 100. This causes the CPU 170 to start calculating the signal from the load cell 110.
[0065] Furthermore, when the time set by the delay time setting unit 273 has elapsed since the output device 200 received the "load change detection" signal, the display processing unit 274 of the output device displays the next operation instruction screen on the display unit 210 (Fig. 4(5)). Fig. 4(5) is the same as Fig. 4(2), and displays a text message explaining points to be careful about during measurement. Furthermore, the audio instruction unit 220 outputs an audio message with the same content as this text message.
[0066] As with the pre-urination weight measurement, the CPU 170 of the weight measurement unit 100 calculates the subject's weight measurement value. When the CPU 170 has finished calculating the subject's weight measurement value, it sends a "weight measurement completed" signal to the output device 200. When the CPU 270 of the output device 200 receives the "weight measurement completed" signal, the display processing unit 274 switches the screen of the display unit 210 to a screen indicating that the measurement has been completed (FIG. 4(6)). FIG. 4(6) is the same as FIG. 3(4) except that a handrail is displayed in the image, and a text message explaining what to do after the measurement is completed ("Measurement completed. Please descend slowly.") is displayed. In addition, the audio instruction unit 220 outputs a voice message with the same content as this text message.
[0067] When the CPU 170 detects from the change in the digital value that the subject has stepped down from the housing 101, it sends a "weight change detected" signal to the output device 200. The CPU 170 also calculates the subject's weight value after urination in the same manner as before urination. The calculated weight value is stored in the memory 171 and is also sent to the output device 200 as post-urination weight value data.
[0068] The CPU 270 of the output device 200 receives the post-urination weight value data from the weight measurement unit 100, stores the weight value data in memory 271, and transmits a "weight value data reception complete" signal to the weight measurement unit 100. Upon receiving the "weight value data reception complete" signal from the output device 200, the CPU 170 of the weight measurement unit 100 terminates the weight value data transmission process. The output device 200 then transmits a "measurement end" signal to the weight measurement unit 100, and the weight measurement unit 100, having received the "measurement end" signal, transmits a "measurement end confirmation" signal to the output device 200. When the output device 200 receives the "measurement end confirmation" signal, the urination volume calculation unit 276 reads the pre-urination weight value stored in memory 271 and calculates the urination volume by subtracting the post-urination weight value from the pre-urination weight value. The calculated urination volume is stored in memory 271. Thereafter, the CPU 270 associates the amount of urine stored in the memory 271 with the identification information of the subject and transmits the amount of urine to the administrator terminal 3, and ends the urine amount measurement process.
[0069] (Variation) The present invention is not limited to the above-described embodiment, and can be modified as appropriate.
[0070] For example, in the above embodiment, the assistance mode is set by setting whether or not a handrail is installed near the housing 101 of the weight measuring unit 100, but the assistance setting unit 272 may also set whether or not a caregiver is provided to assist the subject in getting on and off the housing 101. In that case, the image displayed on the display unit 210 of the output device 200 displays the caregiver instead of the handrail.
[0071] The present invention can also be applied to cases where the subject is not standing on the housing 101 but is seated during measurement. For example, if a wheelchair-using subject has difficulty standing, the subject may sit on the housing 101 while in the wheelchair and be measured. Furthermore, if the subject does not use a wheelchair but has difficulty maintaining an upright position, a chair may be placed on the housing 101 and the subject may be measured while sitting on the chair. In such cases, depending on the use of a wheelchair or chair (a mode of assistance), it may be possible to display on the display unit 210 of the output device 200 information such as getting on and off the housing 101 and the posture during measurement. In these examples, the weight measuring unit 100 may be one that is large enough to accommodate a wheelchair or chair and has a housing 101 with a slope to make it easier for the wheelchair to get on and off, or one in which the housing 101 itself is chair-shaped.
[0072] In the above embodiment, the subject touches the touch panel 260, selects his / her own name on the displayed name selection screen, and then presses the measurement start button, thereby establishing communication between the weight measurement unit 100 and the output device 200 and starting processing, but the method of starting processing is not limited to this. For example, if the urination volume measurement device 2 further includes a barcode reader as a device for acquiring identification information of the subject, and each subject is given a wristband with a barcode on which identification information for identifying the subject is recorded, the subject may hold his / her wristband over the barcode reader to start processing.
[0073] Whether or not assistance from an assistant is required when getting on and off the scale side unit 100 varies depending on the subject's health condition and the condition of their legs and hips. Therefore, for example, information regarding the presence or absence of an assistant may be recorded in the barcode on the wristband described above, along with the subject's identification information. When a barcode reader reads the information regarding the presence or absence of an assistant, the information is input to the assistance setting unit 272, and the presence or absence of an assistant is set. Similarly, a delay time may be recorded in the subject's barcode. When a barcode reader reads the delay time, the delay time is input to the delay time setting unit 273, and the delay time is set. Alternatively, such information may be stored in advance in the memory 271 of the output device 200 for each subject, and the assistance setting unit 272 may read the information based on the subject's identification information input to the CPU 270 from a barcode reader or the input operation unit 260.
[0074] In the above embodiment, the weight measurement unit 100 and the output device 200 are configured separately, but they may be formed integrally. Also, the output device 200 includes both the display unit 210 and the audio instruction unit 220, but it may be configured to include only one of the display unit 210 and the audio instruction unit 220.
[0075] In the above embodiment, the urination volume measuring device 2 has been described as being composed of one weight measuring unit 100 and one output device 200, but there may be a plurality of output devices 200. For example, a subject's personal smartphone may be used as the output device 200. In this case, identification information for distinguishing each terminal from other terminals is stored in advance in the memory 271 of the output device 200.
[0076] In the above embodiment, the output device 200 includes the urination amount calculation unit 276, but the weight measurement unit 100 may include the urination amount calculation unit 276. In this case, the urination amount measurement result is transmitted and received between the weight measurement unit 100 of the urination amount measurement device 2 and the administrator terminal 3.
[0077] [Aspect] It will be apparent to those skilled in the art that the above-described exemplary embodiments are examples of the following aspects.
[0078] (Item 1) A urine volume measuring device according to one aspect of the present invention comprises: A weight measurement unit; a urination volume calculation unit that calculates the urination volume from the measurement result of the weight measurement unit; an assistance setting unit that sets an assistance mode when the subject uses the weight measuring unit; a storage unit that stores a procedure for measuring the amount of urine according to the mode of assistance; an output unit that reads out from the storage unit a procedure for measuring the amount of urine corresponding to the mode of assistance set by the assistance setting unit and outputs the procedure for measuring the amount of urine; Equipped with.
[0079] (2) In the urine volume measuring device according to the first paragraph, The mode of assistance may be the presence or absence of assistance.
[0080] According to the urine volume measuring device of the first or second aspect, a urine volume measuring procedure according to the mode of assistance when measuring weight is output. Therefore, it is possible to properly instruct the subject on the next action to be taken, and accurate weight measurement can be performed. As a result, it is possible to accurately calculate the urine volume.
[0081] (3) In the urination volume measuring device according to paragraph 1 or 2, The apparatus may further include a delay time setting unit that sets a delay time from when the weight measurement unit detects the weight of the subject until when the weight measurement unit starts to measure the subject's weight.
[0082] According to the urine volume measuring device of paragraph 3, the delay time can be set according to the time required for the subject to stand still on the weight measuring unit after stepping on it. This allows the weight measurement to start when the subject is still, allowing for accurate weight measurement.
[0083] (4) In the urine volume measuring device according to the third paragraph, When the assistance setting unit sets assistance to be provided, The output unit may output a urination volume measurement procedure that informs the subject to remove his or her body from the support when the delay time set by the delay time setting unit has elapsed.
[0084] The urine volume measuring device according to the fourth aspect can prevent weight measurement from starting in a state where part of the subject's weight is being rested on an assisting device such as a handrail or on an assistant.
[0085] (5) In the urine volume measuring device according to any one of the first to fourth paragraphs, The output unit may output the urine volume measurement procedure as a display screen and / or a voice message.
[0086] According to the urine volume measuring device of the fifth aspect, the subject can be appropriately instructed on the next action to be taken by visual information in the form of a display screen and / or auditory information in the form of a voice message. [Explanation of symbols]
[0087] 1. Urinary volume management system 2. Urine volume measuring device 100...Weight measurement section 101...Case 110...Load cell 130...A / D conversion circuit 140…Power battery 145...USB / serial conversion circuit 165...LED control circuit 170...CPU 171...Memory 173...USB port 175...LED 176...Power switch 180...Communication circuit 200...Output device 201... Mounting stand 202...Device body 210...Display section 220...Audio instruction section 260...input operation section 270...CPU 271...Memory 272...Auxiliary setting section 273...Delay time setting section 274...Display processing unit 275...Audio processing unit 276…Urine volume calculation unit 277...Storage section 280...Communication circuit 3...Administrator terminal
Claims
1. A weight measurement unit; a urination volume calculation unit that calculates the urination volume from the measurement result of the weight measurement unit; an assistance setting unit that accepts settings of assistance modes when a subject uses the weight measuring unit; a memory unit that stores a procedure for measuring the amount of urine according to the mode of assistance; an output unit that reads out from the storage unit a procedure for measuring the amount of urine corresponding to the mode of assistance set by the assistance setting unit, and outputs the procedure for measuring the amount of urine to the subject; A urination volume measuring device comprising:
2. The urine volume measuring device according to claim 1 , wherein the mode of assistance is the presence or absence of assistance.
3. The weight measuring unit has a load cell and a CPU, 3. The urine volume measuring device according to claim 2, wherein the weight measuring unit further comprises a delay time setting unit that accepts setting of a delay time from when a signal output from the load cell is input to the CPU until the CPU starts calculating the measured weight value of the subject based on the signal.
4. When the assistance setting unit is set to have assistance, 4. The urine volume measuring device according to claim 3, wherein the output unit outputs a urine volume measurement procedure informing the subject to remove his / her body from the support when the delay time set by the delay time setting unit has elapsed.
5. The urine volume measuring device according to claim 1 , wherein the output unit outputs the urine volume measuring procedure as a display screen and / or a voice message.
Citation Information
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