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用于实时阴茎勃起监测的可穿戴电子纺织品和 CNT 传感器无线测量系统。

Wearable E-Textile and CNT Sensor Wireless Measurement System for Real-Time Penile Erection Monitoring.

机构信息

Department of Medical and Digital Engineering, Hanyang University, Seoul 04763, Korea.

Smart Sensor Research Center, Korea Electronics Technology Institute, Seongnam 13509, Korea.

出版信息

Sensors (Basel). 2021 Dec 29;22(1):231. doi: 10.3390/s22010231.

Abstract

Erection measurements are the most important indicator of male urological disease diagnosis, treatment, and results. Rigiscan has been used widely in studies and diagnoses for nocturnal penile tumescence for evaluating erectile dysfunction by measuring the number and timing of erectile dysfunctions during sleep. However, this device has limitations such as the weight and bulk of the device and has been questioned for its role as a standard for ED Erectile Dysfunction (ED) diagnosis. In this study, we propose a real-time wearable monitoring system that can quantitatively measure the length and circumference of the penis using electronic textiles (E-textile) and carbon nanotube (CNT) sensors. The E-textile sensor is used to measure the length, circumference, and gradient with portability, convenience, and comfort. Sensors were created by coating CNTs on latex for flexibility. The CNT-based latex condom-type sensor in our proposed system shows the length, circumference, and curvature measurements with changes in resistance, and the E-textile performance shows a 1.44% error rate and a cavity radius of 110 to 300. The results of this conceptual study are for supplementary sensor development with a combination of new technologies with alternatives or existing methods for measuring erection function.

摘要

勃起测量是男性泌尿科疾病诊断、治疗和结果的最重要指标。Rigiscan 已广泛应用于夜间阴茎勃起研究和诊断中,通过测量睡眠期间勃起功能障碍的次数和时间来评估勃起功能障碍。然而,该设备存在设备重量和体积大等限制,其作为 ED 诊断的标准地位也受到质疑。在这项研究中,我们提出了一种实时可穿戴监测系统,该系统可以使用电子纺织品 (E-textile) 和碳纳米管 (CNT) 传感器来定量测量阴茎的长度和周长。E-textile 传感器具有便携性、方便性和舒适性,用于测量长度、周长和梯度。传感器是通过在乳胶上涂覆 CNT 来制造的,以提高其柔韧性。我们提出的系统中的基于 CNT 的乳胶套型传感器可以通过电阻变化来测量长度、周长和曲率,E-textile 的性能显示出 1.44%的误差率和 110 到 300 的腔半径。这项概念研究的结果是为补充传感器开发提供的,结合了新技术以及替代或现有的勃起功能测量方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b3b/8749841/7d33213b1525/sensors-22-00231-g001.jpg

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