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Basic Study on a Soft Tactile Sensor Based on Subcutaneous Tissue with Collagen Fibers

机译:基于胶原纤维的皮下组织的软触觉传感器的基础研究

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Humans have a high sensitivity and a broad receptive field in tactile function and the skin performs an important role to propagate mechanical stimulation to mechanoreceptors. Previously, a finite element analysis using a skin model with collagen fibers revealed that the collagen fibers disperse stress concentrations in subcutaneous tissue. Thus, this paper presents the development of a soft tactile sensor having a structure of the subcutaneous tissue composed of adipose tissue and the collagen fibers by using urethane resins. As a sensing element, the compression of the adipose tissue part occurred by deformation on the sensor's surface is measured by using the water level. A response of the proposed sensor is compared with a response of a sensor having a conventional uniform structure. The results indicate that the proposed sensor has a broad receptive field maintaining a high sensitivity as compared with the uniform sensor.
机译:人体在触觉功能上具有很高的敏感性和广阔的接受领域,皮肤在将机械刺激传播到机械感受器中起着重要作用。以前,使用带有胶原蛋白纤维的皮肤模型进行的有限元分析表明,胶原蛋白纤维可将应力集中在皮下组织中。因此,本文提出了通过使用氨基甲酸酯树脂开发具有由脂肪组织和胶原纤维组成的皮下组织的结构的软触觉传感器的开发。作为传感元件,通过使用水位测量由传感器表面变形引起的脂肪组织部位的压缩。将所提出的传感器的响应与具有常规均匀结构的传感器的响应进行比较。结果表明,与均匀传感器相比,拟议的传感器具有宽的接收场,可保持较高的灵敏度。

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