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NILAX Sensor system for the determination of knee laxities

NILAX Sensor system for the determination of knee laxities
NILAX 传感器系统用于确定膝关节松弛度
批准号:
222567169
负责人:
Professor Dr. Hermann Mayr
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2012
资助国家:
德国
项目状态:
已结题
起止时间:
2011-12-31 至 2021-12-31

项目摘要

项目成果

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中文摘要
翻译
该项目的目的是开发和测试一种通用的,易于使用的诊断系统,基于高弹性应变计,用于客观评估十字韧带损伤及其愈合过程。该项目的结果是一个传感器系统,它可以以可伸缩袜子的形式穿在病人身上,允许动态测量。该设备旨在支持日常临床实践中膝关节手术或治疗的决策过程。简单的适用性也使得在患者家庭环境中测量治疗结果的控制成为可能。本项目建立在之前DFG对高弹性聚合物应变计开发的预研究经验的基础上。在该研究中,建立了一个过程,用于应变计和读出电子设备的构造,用于从模拟膝盖获得测量值。这为今后的临床研究奠定了基础。该项目的第一阶段是将现有的传感器系统用于十字韧带的临床研究。系统的开发是在前期工作的基础上进行的,包括先证者和患者的测量结果,并考虑到已经开发的传感器系统的特点。最终的传感器设计在已经建立的体外试验台上进行优化。最初,静态比较测量是在先证物的帮助下用简单的测量条进行的。这些结果用于传感器系统的优化。传感器系统的第一个功能模式用于在健康先证者中进行进一步的测试。项目二期将利用优化后的传感器系统进行临床研究。在生理动态条件下,结合膝关节的旋转松弛度(旋转滑动)实时测量ap-松弛度。此外,正在进行工作,以增加测量系统的特异性和灵敏度,并使传感器生产自动化。与传统方法相比,该系统的优势在于可以同时监测膝盖松弛的三个组成部分(前后、外侧、内侧、旋转和滑动),而传统方法一次只能单独确定一个。此外,矫形器可以在正常运动时进行监测。该项目将在微系统工程系(IMTEK)和弗赖堡大学医学中心整形外科和创伤学系的密切合作下进行。
英文摘要
The aim of this project is the development and testing of a universal, easy-to-use diagnostic system, based on highly elastic strain gauges, for the objective assessment of cruciate ligament injuries and their healing process. The project result is a sensor system which can be worn on the patient in the form of a stretchable sock, which allows dynamic measurements. The device is intended to support the decision process for an operation or therapy of the knee in everyday clinical practice. The simple applicability also makes measurements in the patient's home environment possible for the control of the treatment outcome. This project builds upon the experiences of a prior DFG pre-study into the development of a highly elastic polymer strain gauge. In that study, a process was established for the construction of strain gauges and read-out electronics for use in obtaining measurements from a simulated knee. This lays the groundwork for future clinical studies. The first phase of the project is to adapt the existing sensor system for a clinical study on cruciate ligament. The development of the system is carried out based on the preliminary work, including the results of measurements on probands and patients, and taking into account the characteristics of the sensor system already developed. The final sensor design is optimized at the already established in vitro test stand. Initially, static comparative measurements are performed with simple measuring strips with the help of probands. These results were used for optimization of the sensor system. The first functional patterns of the sensor system are used to carry out further tests in healthy probands. In the second project phase, a clinical study will be carried out with the optimized sensor system. The ap-laxity is measured in combination with the rotational laxity (rotational slide) of the knee joint under physiologically dynamic conditions in real time. In addition, work is being carried out to increase the specificity and sensitivity of the measuring system and to automate sensor production. The system holds an advantage over conventional methods in that the three components of knee laxity (anterior-posterior, lateral-medial, rotation and slipping) can be simultaneously monitored, whereas the conventional methods can only individually determine one at a time. Additionally, the orthosis enables monitoring during normal motion. The project will be carried out in close cooperation between the Department of Microsystems Engineering (IMTEK) and the Department for Orthopedics and Traumatic Injuries at the University Medical Center Freiburg.
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国内基金
海外基金
人类NADPH sensor蛋白HSCARG调控机制研究
  • 批准号:
    30930020
  • 项目类别:
    重点项目
  • 资助金额:
    170.0万元
  • 批准年份:
    2009
  • 负责人:
    郑晓峰
  • 依托单位:
基于sensor agent的营养液组分动态测量与建模研究
  • 批准号:
    60775014
  • 项目类别:
    面上项目
  • 资助金额:
    28.0万元
  • 批准年份:
    2007
  • 负责人:
    陈锋
  • 依托单位: