Virtual design of a measuring device integrated in electroacupuncture stimulator on Arduino

Gadir Gafarov
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引用次数: 1

Abstract

The object of research is the electrical conductivity of biologically active points. Biologically active points as a method of non-traditional medical procedures and diagnostics, as well as being used for therapeutic purposes. Although this method has become the subject of mass research, a complete theory of the method has not yet been formed. Based on research, it is possible to say that there are different approaches to explaining the mechanism of action. These independent studies suggest the existence of unique electrical properties in the areas of the skin where biologically active points are located. However, due to technical and methodological problems, it was not in the interest of the scientific community, and as a result of solving the problem mentioned in recent history, interest in research in this field has increased. Nerve endings, called biologically active points or acupuncture points, are widely used in alternative medicine. The first step in electrostimulation of acupuncture points is the localization of the point. Localization is based on measuring the electrical conductivity of acupuncture points. The article discusses the virtual design of the measuring device, which is expected to be integrated with electrostimulators. As a result of the simulation, measurements were made and the accuracy class of the device was determined. Thus, it is possible to accurately measure electrical conductivity in biological objects through this device. The proposed device is designed on the basis of a modern element base. The basic element of the device is Arduino. A voltage divider scheme was used to determine the electrical conductivity of Arduino-based biologically active points. The purpose of using a voltage divider circuit is to protect the Arduino's analog input from overvoltage. Based on the measurements, the accuracy class of the proposed device was determined. As a result of the simulations, it was determined that the absolute error of the device is 0.463056, the relative error is 0.005742, and the accuracy class is 0.0463056.
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基于Arduino的电针刺激器集成测量装置的虚拟设计
研究的对象是生物活性点的电导率。生物活性点作为一种非传统医疗程序和诊断方法,以及用于治疗目的。虽然该方法已成为大量研究的课题,但尚未形成完整的理论。根据研究,可以说有不同的方法来解释作用机制。这些独立的研究表明,在生物活性点所在的皮肤区域存在独特的电特性。然而,由于技术和方法上的问题,它不符合科学界的利益,并且由于解决了近代史上提到的问题,对这一领域的研究兴趣增加了。神经末梢被称为生物活性点或穴位,在替代医学中被广泛使用。电刺激穴位的第一步是定位穴位。定位是基于测量穴位的电导率。本文讨论了测量装置的虚拟设计,以期与电刺激器集成。根据仿真结果进行了测量,确定了该装置的精度等级。因此,可以通过该装置精确测量生物物体的电导率。所提出的装置是在现代元件基础上设计的。该设备的基本元件是Arduino。采用分压器方案来确定基于arduino的生物活性点的电导率。使用分压器电路的目的是保护Arduino的模拟输入免受过电压的影响。根据测量结果,确定了所提出装置的精度等级。仿真结果表明,该装置的绝对误差为0.463056,相对误差为0.005742,精度等级为0.0463056。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
0.00%
发文量
89
审稿时长
8 weeks
期刊最新文献
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