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A Non-Contact Pulse Automatic Positioning Measurement System for Traditional Chinese Medicine

机译:中药非接触式脉冲自动定位测量系统

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摘要

This study is to construct a non-contact pulse automatic positioning measurement system for Traditional Chinese Medicine (TCM) using optical triangulation measurements. The system consists of a linear laser, a CMOS image sensor and image analysis software. The linear laser is projected on the pulse beat location on the wrists; the CMOS image sensor records the process and the software analyzes the images. The program mainly uses the optical centroid and fast Fourier transform (FFT) principles to calculate centroid changes (pulse amplitude changes) from the images taken by the CMOS image sensor. It returns the positions of cun, guan and chi pulses automatically in terms of the amplitudes and the signals are then transformed from the time domain (time-amplitude) into the frequency domain (frequency-amplitude) via FFT to obtain the waveforms and frequencies of the cun, guan and chi pulses. It successfully extracts the data from the TCM pulse reading and can be a medical aid system for TCM. Combining the advantages of optical measurement and computer automation, this system provides a non-contact, easy to operate, fast in detection and low-cost equipment design.
机译:这项研究是建立使用光学三角测量法的中药非接触式脉冲自动定位测量系统。该系统由线性激光器,CMOS图像传感器和图像分析软件组成。线性激光投射在手腕上的脉搏位置。 CMOS图像传感器记录该过程,然后软件对图像进行分析。该程序主要使用光学质心和快速傅立叶变换(FFT)原理从CMOS图像传感器拍摄的图像计算质心变化(脉冲幅度变化)。它会根据振幅自动返回cun,guan和chi脉冲的位置,然后通过FFT将信号从时域(time-amplitude)转换到频域(frequency-amplitude),以获得波形和频率。存,关和志脉。它可以成功地从中医脉搏读数中提取数据,并且可以成为中医的医疗辅助系统。结合光学测量和计算机自动化的优点,该系统提供了非接触式,易于操作,检测速度快和低成本的设备设计。

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