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首页> 外文期刊>Ultrasound in Medicine and Biology >IDENTIFICATION OF THE POSITION AND THICKNESS OF THE FIRST ANNULAR PULLEY IN SONOGRAPHIC IMAGES
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IDENTIFICATION OF THE POSITION AND THICKNESS OF THE FIRST ANNULAR PULLEY IN SONOGRAPHIC IMAGES

机译:超声图像中第一环形带轮的位置和厚度的识别

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摘要

The purpose was to identify the A1 pulley's exact location and thickness by comparing measurements from a clinical high-frequency ultrasound scanner system (CHUS), a customized high-frequency ultrasound imaging research system (HURS) and a digital caliper. Ten cadaveric hands were used. We explored the pulley by layers, inserted guide pins and scanned it with the CHUS. After identifying the pulley, we measured each long finger's thickness using the CHUS and excised the pulley to measure its thickness with a digital caliper and the HURS. The thin hypo-echoic layer was revealed to be the synovial fluid space, and the pulley appears hyper-echoic regardless of scan direction. We also defined the pulley's boundaries. Moreover, the CHUS provided a significantly lower measurement of the pulley's thickness than the digital caliper and HURS. Likewise, based on the digital caliper's measurement, the HURS had significantly lower mean absolute and relative errors than the CHUS. (C) 2016 World Federation for Ultrasound in Medicine & Biology.
机译:目的是通过比较临床高频超声扫描仪系统(CHUS),定制的高频超声成像研究系统(HURS)和数字卡尺的测量值来确定A1皮带轮的确切位置和厚度。使用了十只尸体手。我们逐层探索滑轮,插入导向销并用CHUS对其进行扫描。识别滑轮后,我们使用CHUS测量了每个长手指的厚度,并切除了滑轮以使用数字卡尺和HURS测量其厚度。薄薄的低回声层显示为滑液空间,并且无论扫描方向如何,滑轮均表现为高回声。我们还定义了滑轮的边界。此外,与数字卡尺和HURS相比,CHUS提供的皮带轮厚度测量值要低得多。同样,根据数字卡尺的测量结果,与CHUS相比,HURS的平均绝对和相对误差要低得多。 (C)2016世界医学与生物学超声联合会。

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