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Development of a Tonometric Sensor with a Decoupled Circular Array for Precisely Measuring Radial Artery Pulse

机译:具有解耦圆形阵列的眼压传感器的开发,用于精确测量Rad动脉脉搏

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The radial artery pulse is one of the major diagnostic indices used clinically in both Eastern and Western medicine. One of the prominent methods for measuring the radial artery pulse is the piezoresistive sensor array. Independence among channels and an appropriate sensor arrangement are important for effectively assessing the spatial-temporal information of the pulse. This study developed a circular-type seven-channel piezoresistive sensor array using face-down bonding (FDB) as one of the sensor combination methods. The three-layered housing structure that included independent pressure sensor units using the FDB method not only enabled elimination of the crosstalk among channels, but also allowed various array patterns to be created for effective pulse measurement. The sensors were arranged in a circular-type arrangement such that they could estimate the direction of the radial artery and precisely measure the pulse wave. The performance of the fabricated sensor array was validated by evaluating the sensor sensitivity per channel, and the possibility of estimating the blood vessel direction was demonstrated through a radial artery pulse simulator. We expect the proposed sensor to allow accurate extraction of the pulse indices for pulse diagnosis.
机译:Eastern动脉脉搏是东方和西方医学临床使用的主要诊断指标之一。压阻传感器阵列是测量the动脉脉搏的主要方法之一。通道之间的独立性和适当的传感器布置对于有效评估脉冲的时空信息很重要。这项研究开发了一种使用面朝下键合(FDB)作为传感器组合方法之一的圆形七通道压阻传感器阵列。三层外壳结构包括使用FDB方法的独立压力传感器单元,不仅可以消除通道之间的串扰,而且还可以创建各种阵列模式以进行有效的脉冲测量。传感器以圆形布置,以便它们可以估计estimate动脉的方向并精确测量脉搏波。通过评估每个通道的传感器灵敏度来验证所制造的传感器阵列的性能,并通过a动脉脉冲模拟器证明了估计血管方向的可能性。我们希望所提出的传感器能​​够准确提取脉搏指数以进行脉搏诊断。

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