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基于 CCD 传感器的无创 MOEMS 辅助径向脉搏分析测量系统的验证。

Validation of noninvasive MOEMS-assisted measurement system based on CCD sensor for radial pulse analysis.

机构信息

Institute for Hi-Tech Development, Faculty of Mechanical Engineering and Mechatronics, Kaunas University of Technology, Studentu 65-209, Kaunas LT-51369, Lithuania.

出版信息

Sensors (Basel). 2013 Apr 22;13(4):5368-80. doi: 10.3390/s130405368.

Abstract

Examination of wrist radial pulse is a noninvasive diagnostic method, which occupies a very important position in Traditional Chinese Medicine. It is based on manual palpation and therefore relies largely on the practitioner's subjective technical skills and judgment. Consequently, it lacks reliability and consistency, which limits practical applications in clinical medicine. Thus, quantifiable characterization of the wrist pulse diagnosis method is a prerequisite for its further development and widespread use. This paper reports application of a noninvasive CCD sensor-based hybrid measurement system for radial pulse signal analysis. First, artery wall deformations caused by the blood flow are calibrated with a laser triangulation displacement sensor, following by the measurement of the deformations with projection moiré method. Different input pressures and fluids of various viscosities are used in the assembled artificial blood flow system in order to test the performance of laser triangulation technique with detection sensitivity enhancement through microfabricated retroreflective optical element placed on a synthetic vascular graft. Subsequently, the applicability of double-exposure whole-field projection moiré technique for registration of blood flow pulses is considered: a computational model and representative example are provided, followed by in vitro experiment performed on a vascular graft with artificial skin atop, which validates the suitability of the technique for characterization of skin surface deformations caused by the radial pulsation.

摘要

脉象检测是一种非侵入式的诊断方法,在中医中占有非常重要的地位。它基于手动触诊,因此在很大程度上依赖于医生的主观技术技能和判断。因此,它缺乏可靠性和一致性,限制了其在临床医学中的实际应用。因此,对脉象诊断方法进行可量化的描述是其进一步发展和广泛应用的前提。本文介绍了一种基于非侵入式 CCD 传感器的混合测量系统,用于桡动脉脉搏信号分析。首先,使用激光三角位移传感器对血流引起的动脉壁变形进行校准,然后使用投影云纹法测量变形。在组装的人工血流系统中使用不同的输入压力和不同粘度的流体,以测试通过放置在合成血管移植物上的微制造反射光学元件增强检测灵敏度的激光三角技术的性能。随后,考虑了双曝光全场投影云纹技术用于注册血流脉冲的适用性:提供了计算模型和代表性示例,然后在具有人造皮肤的血管移植物上进行了体外实验,验证了该技术适用于桡动脉搏动引起的皮肤表面变形的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a32b/3673142/a64f4e3c511b/sensors-13-05368f1.jpg

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