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Experimental osteoarthritic articular cartilage: in vitro visualization of lesions and three-dimensional surface reconstruction using 50 MHz ultrasound microscope

机译:实验性骨关节炎关节软骨:使用50 MHz超声显微镜对病变进行体外可视化和三维表面重建

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This study was performed to assess the possibility to detect early osteoarthritic changes with ultrasound. A backscatter ultrasound microscope operating at 50 MHz (30 microns axial resolution) was used to image knee joints cartilage of rats in vitro. Acquisition of backscattered radio frequency signals was performed at a sampling rate of 400 MHz during the three dimensional (3D) scanning of the cartilage. Control knees and knees which have been injected with mono-iodo-acetate (MIA) were included in this study (MIA causes rapid cartilage degeneration). Patellas and tibial plateaux were obtained after sacrifice and dissection of the knee joints. As multiplanar parallel scans were performed to provide 3D information, the 3D cartilage surface (CS) could be reconstructed and displayed. The articular cartilage thickness could be measured accurately. It varies in different parts of the knee joint and ranges between 250 microns and 400 microns. We show images of cartilage lesions occurring at early stage of osteoarthritis (hypertrophic repair). Disruptions and irregularities of CS and cartilage bone interface caused by an advanced stage of the disease and corresponding to fibrillations and ulcerations are also visualized on both B-scans and 3D images. This study suggests that with further technologic improvements, intra-articular. Ultrasonography of cartilage may provide a valuable method for early defection of osteoarthritis.
机译:进行这项研究是为了评估利用超声检测早期骨关节炎变化的可能性。使用在50 MHz(轴向分辨率为30微米)下运行的反向散射超声显微镜对大鼠的膝关节软骨进行体外成像。在软骨的三维(3D)扫描过程中,以400 MHz的采样率采集了反向散射的射频信号。这项研究包括了对照膝盖和注射了单碘乙酸盐(MIA)的膝盖(MIA会导致快速的软骨变性)。处死并解剖膝关节后获得骨和胫骨平台。由于执行了多平面并行扫描以提供3D信息,因此可以重建和显示3D软骨表面(CS)。关节软骨厚度可以准确测量。它在膝关节的不同部位变化,范围在250微米至400微米之间。我们显示了在骨关节炎(肥大性修复)的早期阶段发生的软骨病变的图像。在B扫描和3D图像上还可以看到由疾病的晚期引起的CS和软骨骨界面的破坏和不规则现象,并与原纤维化和溃疡相对应。这项研究表明,随着关节腔内技术的进一步改进。软骨超声检查可能为骨关节炎的早期清除提供有价值的方法。

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