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首页> 外文期刊>Orthopedics >A new experimental measurement and planning tool for sonographic-assisted navigation.
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A new experimental measurement and planning tool for sonographic-assisted navigation.

机译:一种用于超声辅助导航的新型实验测量和计划工具。

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摘要

In this study, we present a new 2.5-dimensional ultrasonic navigation system for measuring axes, lengths, and torsions preoperatively, intraoperatively, and postoperatively. The system comprises an ultrasound unit with a 5-MHz linear probe (TELEMED Echoblaster 128; Telemed, Vilnius, Lithuania) and a navigation system (OrthoPilot; B. Braun Aesculap, Tuttlingen, Germany) with a Polaris camera (Northern Digital, Waterloo, Canada). Specialized software developed for this application allows for selecting any body region on a virtual 3D skeleton. With a virtual ultrasound probe, planes needed for measurements can be defined. For each section, the respective surface contour of the bone, which is also shown in the ultrasound image, is displayed. Alternatively, the clinician can use established standard sections. Finally, the required length, axes, and torsions are defined. The accuracy and precision of the system were tested using a plastic model. The measurements of length, torsion, and axis values were accurate to -0.1 +/- 0.3 mm (95% CI), 0.1 degree +/- 0.2 degree (95% CI), and 0.0 degree +/- 0.006 degree (95% CI), respectively. The precision variances for length, torsion, and axis were 1.17 mm (standard deviation) and 0.94 degree and 0.66 degree. These results suggest that the new sonographic method is more accurate than conventional radiographic techniques.
机译:在这项研究中,我们提出了一个新的2.5维超声导航系统,用于在术前,术中和术后测量轴,长度和扭转。该系统包括一个带有5-MHz线性探头的超声波单元(TELEMED Echoblaster 128;立陶宛维尔纽斯Telemed)和一个导航系统(OrthoPilot;德国图特林根的B. Braun Aesculap),以及一个Polaris摄像头(Northern Digital,Waterloo,加拿大)。为此应用程序开发的专用软件允许选择虚拟3D骨架上的任何身体区域。使用虚拟超声探头,可以定义测量所需的平面。对于每个部分,都显示了骨骼的各个表面轮廓,这也显示在超声图像中。或者,临床医生可以使用已建立的标准部分。最后,定义了所需的长度,轴和扭转。使用塑料模型测试了系统的准确性和精确性。长度,扭转和轴值的测量精确到-0.1 +/- 0.3毫米(95%CI),0.1度+/- 0.2度(95%CI)和0.0度+/- 0.006度(95% CI)。长度,扭转和轴的精度差异为1.17毫米(标准偏差),分别为0.94度和0.66度。这些结果表明,新的超声检查方法比常规放射线照相技术更准确。

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