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Experimental validation of A-mode ultrasound acquisition system for computer assisted orthopaedic surgery

机译:计算机辅助骨科手术A型超声采集系统的实验验证

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Computer Assisted Orthopaedic Surgery (CAOS) systems improve the results and the standardization of surgical interventions. Anatomical landmarks and bone surface detection is straightforward to either register the surgical space with the pre-operative imaging space and to compute biomechanical parameters for prosthesis alignment.Surface points acquisition increases the intervention invasiveness and can be influenced by the soft tissue layer interposition (7-15mm localization errors).This study is aimed at evaluating the accuracy of a custom-made A-mode ultrasound (US) system for non invasive detection of anatomical landmarks and surfaces. A-mode solutions eliminate the necessity of US images segmentation, offers real-time signal processing and requires less invasive equipment. The system consists in a single transducer US probe optically tracked, a pulser/receiver and an FPGA-based board, which is responsible for logic control command generation and for real-time signal processing and three custom-made board (signal acquisition, blanking and synchronization).We propose a new calibration method of the US system. The experimental validation was then performed measuring the length of known-shape polymethylmethacrylate boxes filled with pure water and acquiring bone surface points on a bovine bone phantom covered with soft-tissue mimicking materials. Measurement errors were computed through MR and CT images acquisitions of the phantom. Points acquisition on bone surface with the US system demonstrated lower errors (1.2mm) than standard pointer acquisition (4.2mm).
机译:计算机辅助骨科手术(CAOS)系统改善了手术干预的结果和标准化。解剖标志和骨表面检测很容易直接将手术空间与术前成像空间对准,并计算用于假体对齐的生物力学参数。 采集表面点会增加介入治疗的侵入性,并且可能会受到软组织层插入(7-15mm的定位误差)的影响。 这项研究旨在评估定制的A模式超声(US)系统用于解剖学标志和表面的非侵入性检测的准确性。 A模式解决方案消除了对美国图像进行分割的必要性,提供了实时信号处理并且需要更少的侵入性设备。该系统包括一个光学跟踪的单传感器US探头,一个脉冲发生器/接收器和一个基于FPGA的板,该板负责逻辑控制命令的生成和实时信号处理,以及三个定制板(信号采集,消隐和同步)。 我们提出了一种新的美国系统校准方法。然后进行实验验证,测量装有纯水的已知形状的聚甲基丙烯酸甲酯盒的长度,并在覆盖有软组织模拟材料的牛骨模型上获取骨表面点。通过体模的MR和CT图像采集来计算测量误差。使用US系统在骨骼表面上获取的点显示的误差(1.2毫米)比标准指针获取的(4.2毫米)要低。

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