首页> 外文会议>Applied Sciences in Biomedical and Communication Technologies, 2009. ISABEL 2009 >A ligament laxity telemetry system architecture for a knee replacement prosthesis
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A ligament laxity telemetry system architecture for a knee replacement prosthesis

机译:用于膝关节置换假体的韧带松弛度遥测系统架构

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In this paper the feasibility of a novel instrumented orthopaedic implant for total knee replacement is studied. The system aims at providing an indication on the balance of the lateral ligaments. The measures will be used to estimate the wear out of the polyethylene part of the prosthesis and will also facilitate the patient rehab. The data will be transmitted outside the body through an RF link. Unlike other instrumented implants, the system will be self-powered. Piezo ceramics will be used both as pressure sensors and as power generators. This implies that the measurement system must be ultra low power as the available power is less than 1.8mW. First simulation results are given for a 0.35µm CMOS process.
机译:在本文中,研究了新型器械化骨科植入物用于全膝关节置换的可行性。该系统旨在提供有关外侧韧带平衡的指示。这些措施将用于估计假体的聚乙烯部分的磨损,也将有助于患者康复。数据将通过RF链接发送到体外。与其他仪器植入物不同,该系统将自行供电。压电陶瓷将既用作压力传感器又用作发电机。这意味着测量系统必须具有超低功率,因为​​可用功率小于1.8mW。给出了针对0.35µm CMOS工艺的第一模拟结果。

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