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Pressure sensors for the monitoring of diseases in surgical care

机译:压力传感器,用于监测外科护理中的疾病

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摘要

Microtechnology components are already pointing the way forwards in minimally invasive diagnosis, therapy and therapy monitoring, in implants and medication dosage systems. The latest developments show a wide range of new possible uses for microtechnology in medical applications. The world market in physical pressure, temperature and acceleration sensors was worth several hundred billion euros in 2003. Given the extreme miniaturisation now possible through micro-and nanotechnology, such sensors readily suggest themselves for medical applications. If physical sensors are linked to a telemetric unit for wireless data transmission, are biocompatibly packaged or are implanted in a minimally invasive procedure, then bodily functions such as the acceleration of vessel walls, blood pressure, temperature or nerve streams can be measured permanently and wirelessly, Regarding pressure sensors, surgical diagnosis is yielding a range of possibilities extending from pressure measurements in the brain following a trauma, compartment pressure measurements in the abdomen, organs or extremities through to bladder pressure measurements for injury patients with compartment syndrome. The present work gives a surgery-based overview of the latest developments and trends in this high technology field.
机译:微技术组件已经为植入物和药物剂量系统中的微创诊断,治疗和治疗监测指明了前进的方向。最新的发展显示了微技术在医疗应用中的广泛的新用途。 2003年,全球物理压力,温度和加速度传感器市场价值达数千亿欧元。鉴于现在通过微米和纳米技术实现的极端小型化,此类传感器很容易在医疗应用中崭露头角。如果将物理传感器链接到遥测单元以进行无线数据传输,以生物兼容方式包装或以微创程序植入,则可以永久性地无线测量身体功能,例如血管壁的加速度,血压,温度或神经流关于压力传感器,外科诊断产生了一系列可能性,从创伤后脑部的压力测量,腹部,器官或四肢的隔室压力测量到患有隔室综合征的受伤患者的膀胱压力测量。本工作以手术为基础,概述了该高科技领域的最新发展和趋势。

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