Development of a system for anatomical landmarks localization using ultrasonic signals

J. Kulon, M. Voysey, A. Partlow, P. Rogers, C. Gibson
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引用次数: 4

Abstract

A review of the current protocols and techniques for the anthropometric measurements and postural assessment for wheelchair users and individuals with severe musculoskeletal problems was given. It was concluded that both contact and non contact methods have a number of significant limitations including time consuming measurement procedure, high cost and risk of excessive exposure to radiation. Many current approaches do not enable clinicians to accurately record and analyze the patient's musculoskeletal configuration. The challenge still remains to combine the body shape data with the precise identification and localization of anatomical landmarks for postural assessment. To address the need for easy to use, low cost, reliable measurement of anatomical landmarks ultrasound measurement system has been proposed. The main elements of the system are: ultrasound transmitters, receiver, digital-analog converter, signal conditioning equipment and laptop executing the signal processing algorithm. The prototype of the system was build and tested. The preliminary measurements of ultrasonic signals were realized and demonstrated the potential for this technique to be used in anthropometric and postural assessments in the future.
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利用超声信号进行解剖标志定位系统的开发
对目前轮椅使用者和有严重肌肉骨骼问题的人的人体测量和姿势评估的方案和技术进行了回顾。得出的结论是,接触和非接触方法都有一些明显的局限性,包括测量程序耗时、成本高和过度暴露于辐射的风险。许多目前的方法不能使临床医生准确地记录和分析病人的肌肉骨骼结构。挑战仍然是将身体形状数据与精确识别和定位解剖标志相结合,以进行姿势评估。针对解剖标志测量简便、低成本、可靠的需要,提出了超声测量系统。该系统的主要组成部分是:超声波发射器、接收器、数模转换器、信号调理设备和执行信号处理算法的笔记本电脑。建立了该系统的原型并进行了测试。超声信号的初步测量已经实现,并证明了该技术在未来用于人体测量和姿势评估的潜力。
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