A radiographic method of measuring axial rotation of bone in vivo.

Medical research engineering Pub Date : 1980-01-01
M A Strop, M S Moreland
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Abstract

Present techniques of assessing rotational alignment in bone are limited to gross anatomical and radiographic observations made at a single point in time. Because of these quantitative limitations, this paper describes a radiographic technique devised to give precise information elucidating the direction, magnitude and site of rotational change. This technique is based on the radiographic monitoring of a positional change, in vivo, of biologically inert marker pins in the long bones. Animal investigations have demonstrated the validity of the in vivo angular assessments and have also shown morphologic and biomechanical compatibility. Laboratory experiments simulating an in vivo deflection were performed with a correlation of 0.999 found between the calculated angles and those measured in vitro.

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一种测量体内骨轴向旋转的放射学方法。
目前评估骨旋转对齐的技术仅限于在单一时间点进行的大体解剖和放射学观察。由于这些数量上的限制,本文描述了一种射线照相技术,旨在提供精确的信息,阐明旋转变化的方向,大小和位置。该技术基于放射学监测长骨中生物惰性标记针的体内位置变化。动物研究证明了体内角度评估的有效性,也显示了形态和生物力学的相容性。在室内进行了模拟体内偏转的实验,计算角度与体外测量角度的相关性为0.999。
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Mapping of cerebral cortical strokes in Rhesus monkeys by laser Doppler spectroscopy. A radiographic method of measuring axial rotation of bone in vivo. Telemetry instrumentation for kinesiologic studies of knee motion. Science & technology as instruments of foreign policy. Biomedical Engineering at the Indian Institute of Technology, (Madras)-II.
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