A method and system for checking and verifying the output prescription of a therapeutic instrument
By receiving and verifying the prescription signal information generated by the treatment device, the problem of the treatment device output verification that relies on human perception is solved, and a more accurate and objective treatment device testing is achieved.
Patent Information
- Application Number
- CN202110946712.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-08-18
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2041-08-18
AI Technical Summary
In the prior art, the output energy verification of the treatment instrument depends on human perception and cannot objectively and accurately verify the output of the treatment instrument.
By receiving the prescription signal information generated by the treatment device, the testing device is used to obtain and verify whether the prescription signal output by the treatment device is consistent with the pre-received signal information, including comparison of range values for various physical attributes and display of gaps.
Improve the accuracy and objectivity of the treatment device test to ensure that the signal output by the treatment device meets expectations.
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Figure CN113648204B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical devices. Specifically, it relates to a method and system for checking and verifying the output prescriptions of a therapeutic instrument. Background Art
[0002] During the treatment process, some diseases require the use of a therapeutic instrument for adjuvant treatment. The therapeutic instrument generally outputs physical energy. In the prior art, for the energy output by these therapeutic instruments, the strength of the output energy is generally judged by the way of human perception. For example, when outputting current through electrode patches, the electrode patches are directly attached to the tester's body, and the level of the output current is gradually increased. By asking the tester about the stinging feeling of the test current, it is determined whether increasing the current level has an effect.
[0003] This way of perceiving the therapeutic instrument by human perception cannot objectively verify the output of the therapeutic instrument. Summary of the Invention
[0004] The embodiments of this application provide a method and system for checking and verifying the output prescriptions of a therapeutic instrument, which at least solves the problem that the way of perceiving the therapeutic instrument by human perception cannot objectively verify the output of the therapeutic instrument, and improves the accuracy and objectivity of the test of the therapeutic instrument.
[0005] According to one aspect of this application, a method for checking and verifying the output prescriptions of a therapeutic instrument is provided, including: receiving the information of the prescription signal, where the information of the prescription signal is the basis for the therapeutic instrument to generate the prescription signal, the prescription signal is a physical signal generated by the therapeutic instrument, and the information of the prescription signal is used to indicate the physical attributes of the prescription signal; obtaining the prescription signal output by the therapeutic instrument according to the information of the prescription signal through a test device, where the test device obtains the prescription signal through the prescription signal output interface of the therapeutic instrument, and verifying whether the prescription signal output by the therapeutic instrument conforms to the information of the prescription signal received in advance; in the case of conformity, determining that the verification of the output prescription signal of the therapeutic instrument passes.
[0006] Further, verifying whether the prescription signal output by the therapeutic instrument conforms to the information of the prescription signal received in advance includes: obtaining the range values corresponding to the various physical attributes of the prescription signal in the information of the prescription signal; comparing the values of the various physical attributes of the prescription signal output by the therapeutic instrument with the corresponding range values; if the values of the various physical attributes of the prescription signal output by the therapeutic instrument all fall within the corresponding range values, then the prescription signal output by the therapeutic instrument conforms to the information of the prescription signal.
[0007] Further, it further includes: displaying the value of the physical attribute in the prescription signal that does not fall within the corresponding range value, and the difference between the value of the physical attribute and the corresponding range value.
[0008] Further, in the case of compliance, determining that the verification of the output prescription signal of the therapeutic apparatus passes includes: receiving the prescription signals generated by the therapeutic apparatus multiple times according to the information of the prescription signal; and determining that the verification of the output prescription signal of the therapeutic apparatus passes when each prescription signal output by the therapeutic apparatus conforms to the information of the prescription signal.
[0009] Further, the prescription signal includes at least one of the following: a vibration prescription signal, a current prescription signal.
[0010] According to another aspect of the present application, there is also provided a system for verifying the output prescription inspection of a therapeutic apparatus, including: a test device for obtaining the prescription signal output by the therapeutic apparatus according to the information of the prescription signal, wherein the test device obtains the prescription signal through the prescription signal output interface of the therapeutic apparatus; and software for executing the above method.
[0011] According to another aspect of the present application, there is also provided a device for verifying the output prescription inspection of a therapeutic apparatus, including: a receiving module for receiving the information of the prescription signal, wherein the information of the prescription signal is the basis for the therapeutic apparatus to generate the prescription signal, the prescription signal is a physical signal generated by the therapeutic apparatus, and the information of the prescription signal is used to indicate the physical attribute of the prescription signal; an obtaining module for obtaining the prescription signal output by the therapeutic apparatus according to the information of the prescription signal through a test device, wherein the test device obtains the prescription signal through the prescription signal output interface of the therapeutic apparatus; a verification module for verifying whether the prescription signal output by the therapeutic apparatus conforms to the information of the prescription signal received in advance; and a determination module for determining that the verification of the output prescription signal of the therapeutic apparatus passes in the case of compliance.
[0012] Further, the verification module is used for: obtaining the range values corresponding to the various physical attributes of the prescription signal in the information of the prescription signal; comparing the values of the various physical attributes of the prescription signal output by the therapeutic apparatus with the corresponding range values; and if the values of the various physical attributes of the prescription signal output by the therapeutic apparatus all fall within the corresponding range values, then the prescription signal output by the therapeutic apparatus conforms to the information of the prescription signal.
[0013] Further, it further includes: a display module for displaying the value of the physical attribute in the prescription signal that does not fall within the corresponding range value, and the difference between the value of the physical attribute and the corresponding range value.
[0014] Further, the verification module is configured to: receive the prescription signals generated by the treatment instrument multiple times according to the information of the prescription signal; and determine that the verification of the output prescription signal of the treatment instrument passes when the prescription signals output by the treatment instrument each time match the information of the prescription signal.
[0015] In the embodiments of the present application, the information of the prescription signal is received, where the information of the prescription signal is the basis for the treatment instrument to generate the prescription signal, the prescription signal is a physical signal generated by the treatment instrument, and the information of the prescription signal is used to indicate the physical attributes of the prescription signal; the prescription signal output by the treatment instrument according to the information of the prescription signal is obtained through a test device, where the test device obtains the prescription signal through the prescription signal output interface of the treatment instrument, and verifies whether the prescription signal output by the treatment instrument matches the information of the prescription signal received in advance; when they match, it is determined that the verification of the output prescription signal of the treatment instrument passes. By means of the present application, the problem that the method of relying on human perception to perceive the treatment instrument cannot objectively verify the output of the treatment instrument is solved, and the accuracy and objectivity of the treatment instrument test are improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings constituting a part of the present application are used to provide a further understanding of the present application. The schematic embodiments and descriptions thereof of the present application are used to explain the present application and do not constitute an improper limitation to the present application. In the drawings:
[0017] Figure 1 is a flowchart of a method for verifying the output prescription of a treatment instrument according to an embodiment of the present application. DETAILED DESCRIPTION
[0018] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. The present application will be described in detail below with reference to the drawings and in combination with the embodiments.
[0019] It should be noted that the steps shown in the flowchart of the drawings may be executed in a computer system such as a set of computer executable instructions, and although the logical order is shown in the flowchart, in some cases, the steps shown or described may be executed in a different order than here.
[0020] The embodiments of the present application can be applied to a variety of treatment devices. For example, as a typical tool, the treatment device may include a treatment pen and a treatment host (the treatment host may also be referred to as a treatment instrument).
[0021] The main unit includes: a chassis, a touch display screen disposed on the surface of the chassis, and a central processing unit (CPU) main control board disposed inside the chassis and electrically connected to the touch display screen. The CPU main control board is configured to supply power to the vibrator and output the vibration prescription signal. The touch display screen is used for a user to select a vibration prescription. Among them, the vibration prescription signal is output to a treatment pen. The characteristic parameters of the vibration prescription signal include: continuous vibration of the vibrator and the vibration frequency and amplitude of the continuous vibration; or, intermittent vibration of the vibrator and the duty cycle, vibration frequency and amplitude of the intermittent vibration. The vibration prescription includes: default fixed parameters of each treatment site that have been stored and individual vibration intensity levels manually adjusted for the same treatment site. The touch display screen is used for the user to select a corresponding vibration prescription for the treatment site, and generate target characteristic parameters jointly according to the default fixed parameters included in the selected vibration prescription and the individual vibration intensity levels manually adjusted by the user for the same treatment site, and send the target characteristic parameters generated according to the vibration prescription selected by the user to the CPU main control board. The CPU main control board is configured to generate a corresponding vibration prescription signal according to the target characteristic parameters.
[0022] Optionally, it further includes: at least one intermediate frequency output interface disposed on the surface of the chassis; the limb pain treatment instrument further includes at least one group of electrode pads electrically connected to the at least one intermediate frequency output interface through a cable, and the CPU main control board is also electrically connected to the at least one intermediate frequency output interface for outputting a current prescription signal to the at least one group of electrode pads.
[0023] The treatment pen includes: a pen shaft and a pen cap detachably connected to the distal end of the pen shaft. The pen shaft can be installed with a treatment needle after removing the pen cap, and a switch button is disposed on the surface of the pen shaft. The needle tube of the treatment needle extends out of the distal end of the pen cap. A vibrator that can be controlled to start and stop by the switch button is disposed inside the pen shaft. The vibrator is configured to transfer physical kinetic energy corresponding to the vibration prescription signal to the treatment needle inserted into the lesion site when it is turned on. The treatment pen satisfies at least one of the following characteristics: (a) the vibration trajectory output by the vibrator is in a plane perpendicular or parallel to the axis of the pen shaft, and the vibration trajectory includes: a trajectory of reciprocating motion in a single direction, and / or, a trajectory of reciprocating motion in a circular manner along multiple angular directions centered on the axis of the pen shaft; (b) the amplitude of the vibrator is designed to be between 2μm and 500μm, and the vibration frequency of the vibrator is designed to be between 5Hz and 500Hz; (c) the treatment needle is a dedicated treatment needle or a disposable syringe needle for diagnosing and / or treating the lesion site formed by soft tissue damage.
[0024] Optionally, the vibrator includes a rotary centrifugal vibrator. When a rotary centrifugal vibrator that can be controlled to start and stop by the switch button is provided inside the pen barrel, the treatment pen further includes: a printed circuit board (PCB) control board that is electrically connected to the rotary centrifugal vibrator and is used to output a vibration prescription signal to the rotary centrifugal vibrator, and a common mode filter is also integrated on the PCB control board.
[0025] It can be seen that in the above treatment instrument, the treatment pen or other external devices (such as electrode pads, etc.) are based on the prescription signals output by the treatment instrument (such as vibration prescription signals or current prescription signals). Whether there are errors in the prescription signals output by the treatment instrument or whether they match the expectations will affect the final treatment effect. Therefore, in this embodiment, it is necessary to verify the prescription.
[0026] In this embodiment, a method for checking and verifying the output prescription of a treatment instrument is provided. Figure 1 It is a flowchart of the method for checking and verifying the output prescription of a treatment instrument according to an embodiment of the present application, as Figure 1 shown, and this process includes the following steps:
[0027] Step S102: Receive the information of the prescription signal. Here, the information of the prescription signal is the basis for the treatment instrument to generate the prescription signal. The prescription signal is a physical signal generated by the treatment instrument, and the information of the prescription signal is used to indicate the physical attributes of the prescription signal.
[0028] Step S104: Obtain the prescription signal (such as a current prescription signal and / or a vibration prescription signal) output by the treatment instrument according to the information of the prescription signal through a test device. Here, the test device obtains the prescription signal through the prescription signal output interface of the treatment instrument.
[0029] Step S106: Verify whether the prescription signal output by the treatment instrument matches the information of the prescription signal received in advance.
[0030] Step S108: When they match, determine that the verification of the output prescription signal of the treatment instrument passes.
[0031] By means of the present application, the problem that the method of relying on human perception to verify the output of the treatment instrument cannot objectively verify the output of the treatment instrument is solved, and the accuracy and objectivity of the test of the treatment instrument are improved.
[0032] In an alternative approach, if there are multiple physical attributes of the prescription signal, the range values corresponding to the various physical attributes of the prescription signal in the information of the prescription signal can be obtained; the values of the various physical attributes of the prescription signal output by the treatment instrument are compared with the corresponding range values; if the values of the various physical attributes of the prescription signal output by the treatment instrument all fall within the corresponding range values, then the prescription signal output by the treatment instrument conforms to the information of the prescription signal.
[0033] To visually observe non-conforming situations, preferably, the values of the physical attributes in the prescription signal that do not fall within the corresponding range values, as well as the difference between the value of the physical attribute and the corresponding range value, can also be displayed.
[0034] To make the verification result more accurate and comprehensive, the prescription signals generated by the treatment instrument multiple times according to the information of the prescription signal can be received; when the prescription signal output by the treatment instrument each time conforms to the information of the prescription signal, it is determined that the verification of the output prescription signal of the treatment instrument passes. The number of times can be pre-configured.
[0035] As an alternative implementation, the above-mentioned multiple generation and verification of the prescription signal can be performed at different times. That is, a verification plan can be formulated in advance. The verification technology is configured with a verification script, and the verification script is used to instruct the treatment instrument to generate a predetermined number of prescription signals at a predetermined time, and whether other operations (such as restart operations) are performed between two tests. Through the execution of the verification script, automatic verification of the prescription signal generated by the treatment instrument can be achieved.
[0036] As another alternative approach, the information of multiple prescription signals can also be obtained, and then the treatment instrument is controlled to generate the prescription signals corresponding to the information of each prescription signal according to the verification times and the time of generating the prescription signal of the information of each prescription signal, and verification is performed. After the verification plan is successfully verified, the information of these prescription signals is still used, but the number of times and the time of generating the prescription signal according to the information of each prescription signal are adjusted, and the prescription signal generated each time is verified again. If the prescription signals generated by the information of the multiple prescription signals are all successfully verified using multiple different verification plans, then it is determined that the prescription signals generated by the information of the multiple prescription signals all pass the verification.
[0037] As another alternative implementation, all the prescription signals that the treatment instrument can generate can also be obtained, and then the information of the prescription signals corresponding to these all prescription signals is obtained, and a verification plan is formulated. The verification plan is used to sequentially control the treatment instrument to generate all the prescription signals according to the information of the prescription signal in a predetermined order. After all the prescription signals pass the verification, it is determined that the treatment instrument passes the verification.
[0038] Alternatively, after the first verification of the treatment instrument is passed, adjust the order in which the treatment instrument generates the prescription signal in the verification plan, and then execute the adjusted verification plan again. If the adjusted verification technique also passes the verification, then the treatment instrument passes the verification.
[0039] If a certain attribute value of the prescription signal is a range value, each range can be divided into multiple segments to be tested, and a value is selected in each segment to be tested. If a second verification is performed, on the basis of changing the order of generating the prescription signal, the value selected in this segment is also changed.
[0040] In this embodiment, a system for verifying the output prescription of a treatment instrument is also provided, including: a test device for obtaining the prescription signal output by the treatment instrument according to the information of the prescription signal, wherein the test device obtains the prescription signal through the prescription signal output interface of the treatment instrument; software for executing the above method. This software can also be referred to as a computer program.
[0041] In this embodiment, an electronic device is provided, including a memory and a processor. A computer program is stored in the memory, and the processor is set to run the computer program to execute the method in the above embodiments.
[0042] The above program can run in the processor or can also be stored in the memory (or referred to as a computer-readable medium). The computer-readable medium includes permanent and non-permanent, removable and non-removable media, and information storage can be achieved by any method or technology. The information can be computer-readable instructions, data structures, program modules, or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassette tapes, magnetic disk storage or other magnetic storage devices, or any other non-transmission medium that can be used to store information accessible by a computing device. As defined herein, computer-readable media does not include transitory computer-readable media, such as modulated data signals and carrier waves.
[0043] These computer programs can also be loaded onto a computer or other programmable data processing device, so that a series of operation steps are executed on the computer or other programmable device to generate computer-implemented processing. Thus, the instructions executed on the computer or other programmable device provide for realizing the processing in the process Figure 1One process or multiple processes and / or boxes Figure 1 Steps of functions specified in one box or multiple boxes. Corresponding to different steps, different modules can be used to implement them. In this embodiment, such a device is provided, which is called a device for checking and verifying the output prescription of a therapeutic instrument. The device includes: a receiving module, configured to receive information of a prescription signal, where the information of the prescription signal is the basis for the therapeutic instrument to generate the prescription signal, the prescription signal is a physical signal generated by the therapeutic instrument, and the information of the prescription signal is used to indicate the physical attributes of the prescription signal; an obtaining module, configured to obtain the prescription signal output by the therapeutic instrument according to the information of the prescription signal through a testing device, where the testing device obtains the prescription signal through the prescription signal output interface of the therapeutic instrument; a verification module, configured to verify whether the prescription signal output by the therapeutic instrument conforms to the information of the prescription signal received in advance; and a determining module, configured to determine that the verification of the output prescription signal of the therapeutic instrument passes when they conform.
[0044] This device corresponds to the above method. The modules in this device correspond to the steps in the method. Those that have been described in the above method will not be elaborated here.
[0045] For example, the verification module is configured to: obtain the range values corresponding to various physical attributes of the prescription signal in the information of the prescription signal; compare the values of various physical attributes of the prescription signal output by the therapeutic instrument with the corresponding range values; and if the values of various physical attributes of the prescription signal output by the therapeutic instrument all fall within the corresponding range values, then the prescription signal output by the therapeutic instrument conforms to the information of the prescription signal. Optionally, the verification module is configured to: receive the prescription signals generated by the therapeutic instrument multiple times according to the information of the prescription signal; and determine that the verification of the output prescription signal of the therapeutic instrument passes when the prescription signal output by the therapeutic instrument each time conforms to the information of the prescription signal.
[0046] For another example, the above device may further include: a display module, configured to display the values of the physical attributes in the prescription signal that do not fall within the corresponding range values, and the difference between the value of the physical attribute and the corresponding range value.
[0047] This embodiment solves the problem that the method of relying on human perception to verify the output of the therapeutic instrument cannot objectively verify the output of the therapeutic instrument, and improves the accuracy and objectivity of the therapeutic instrument test.
[0048] The above are only embodiments of the present application and are not intended to limit the present application. For those skilled in the art, various changes and modifications can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the scope of the claims of the present application.
Claims
1. A method for checking and verifying a prescription output by a therapeutic device, characterized in that: include: receiving information of a prescription signal, wherein the information of the prescription signal is a basis for the therapeutic device to generate the prescription signal, the prescription signal is a physical signal generated by the therapeutic device, and the information of the prescription signal is used to indicate a physical property of the prescription signal; The prescription signal output by the therapeutic apparatus according to the information of the prescription signal is obtained through a testing device, wherein the testing device obtains the prescription signal through a prescription signal output interface of the therapeutic apparatus, Verifying whether the prescription signal output by the therapeutic device is consistent with information of the prescription signal received in advance; In the case of consistency, it is determined that the verification of the output prescription signal of the therapeutic device has passed; wherein, all prescription signals that the therapeutic device can generate are obtained, and then the information of the prescription signals corresponding to all these prescription signals is obtained, and a verification plan is formulated. The verification plan is used to control the therapeutic device to generate all prescription signals according to the information of the prescription signals in a predetermined order. After the first verification of the therapeutic device is passed, the order in which the therapeutic device generates prescription signals in the verification plan is adjusted, and then the adjusted verification plan is executed again. If the adjusted verification plan is also verified, the therapeutic device is verified. If the attribute value of the prescription signal is a range value, each range is divided into multiple test segments, and a value is selected in each test segment for verification. If a second verification is performed, the value selected in the test segment is also changed based on the order of changing the order of generating the prescription signals.
2. The method according to claim 1, characterized in that Verifying whether the prescription signal output by the therapeutic device is consistent with information of the prescription signal received in advance includes: Obtaining range values corresponding to various physical properties of the prescription signal from the information of the prescription signal; comparing the values of various physical properties of the prescription signal output by the therapeutic device with the corresponding range values; When the values of various physical properties of the prescription signal output by the therapeutic device fall within the corresponding range values, the prescription signal output by the therapeutic device is consistent with the information of the prescription signal.
3. The method according to claim 2, characterized in that Also includes: The values of the physical properties in the prescription signal that do not fall within the corresponding range value and the gap between the values of the physical properties and the corresponding range value are displayed.
4. The method according to any one of claims 1 to 3, characterized in that In the event of compliance, determining that the output prescription signal of the therapeutic device has been verified includes: receiving prescription signals generated multiple times by the therapeutic apparatus based on information of the prescription signal; In the case that the prescription signal outputted by the therapeutic apparatus each time is consistent with the information of the prescription signal, it is determined that the verification of the output prescription signal of the therapeutic apparatus is passed.
5. The method according to any one of claims 1 to 3, characterized in that The prescription signal includes at least one of the following: a vibration prescription signal and a current prescription signal.
Citation Information
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