Tactile sensor system for detection of prostate cancer and hypertrophy

M. Tanaka, C. Ji-Young, S. Chonan, Y. Tanahashi
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引用次数: 1

Abstract

This paper is a study on the optimum design of a palpation sensor for detecting prostatic cancer and hypertrophy. The receptor of the sensor is a polyvinylidene fluoride(PVDF) film placed on the surface of the matrix rubber base. The sensor is pressed against the prostate gland and driven sinusoidally, with a constant amplitude. The voltage signal from the PVDF film is integrated over the sampling period and is used as the output of the sensor for evaluating the stiffness of the pressed prostate gland. The output strength of the sensor is dependent on the relative stiffness of the sensor base rubber to the stiffness of the object prostate gland. Thus, the stiffness of the base rubber is of great importance to make the sensor output maximum and achieve the best discrimination of the normality and abnormality of the organ. The FEM analysis is introduced for the optimum design of sensor, and the best fit stiffness of the matrix rubber base is determined. Verification test is also carried out and good agreement between the analysis and the experimental results is confirmed.
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触觉传感系统用于检测前列腺癌和肥大
本文研究了一种用于检测前列腺癌和前列腺肥大的触诊传感器的优化设计。传感器的受体是一层聚偏氟乙烯(PVDF)薄膜,放置在基体橡胶基底的表面上。传感器被压在前列腺上,并以恒定的振幅正弦驱动。来自PVDF薄膜的电压信号在采样周期内被集成,并用作传感器的输出,用于评估被压前列腺的刚度。传感器的输出强度取决于传感器底座橡胶对目标前列腺刚度的相对刚度。因此,基底橡胶的刚度对于使传感器输出最大,实现对器官正常与异常的最佳判别至关重要。采用有限元分析方法对传感器进行优化设计,确定了基体橡胶底座的最佳配合刚度。并进行了验证试验,分析结果与实验结果吻合较好。
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