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Quantitative ultrasound imaging of spontaneous repair of porcine cartilage.

机译:猪软骨自发修复的定量超声成像。

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OBJECTIVE: Arthroscopy offers qualitative means to evaluate the surface of articular cartilage. However, possible degeneration of the deep cartilage and subchondral bone remains undetected. High frequency ultrasound imaging is an advanced cartilage evaluation method which is conceivable to arthroscopic use and brings diagnostic information also from deeper cartilage and subchondral bone. DESIGN: In this study, we characterized spontaneous repair of porcine cartilage in situ with quantitative 2D-ultrasound imaging. At the age of 7-8 months, a cartilage lesion (diameter 6mm, not penetrating into subchondral bone) was created on the lateral facet of the right femoral trochlea (n=8). The animals were sacrificed 3 months after the surgery. The lesion site, adjacent cartilage and the corresponding control area at the contralateral (left) knee were imaged in situ with 20 MHz ultrasound. Ultrasound reflection coefficients were determined from the cartilage surface (R) and from the cartilage-bone interface (R(bone)). Microtopography of the articular surface was quantified by calculating ultrasound roughness index (URI) parameter from the ultrasonically determined surface profile. RESULTS: Lesion site was spontaneously filled with visually cartilage-like soft tissue with smooth surface. However, ultrasonic images and histological analyses revealed erosion of subchondral bone under the lesion site. Ultrasound reflection (R) at the surface of the spontaneously repaired tissue was significantly lower (-73.5+/-7.6%, P<0.05) than at the surface of intact cartilage. R(bone) was lowest at the lesion site. The surface roughness of spontaneously repaired cartilage was significantly higher than that of the intact tissue (44.0+/-26.0 microm vs 7.5+/-2.3 microm, P<0.05). CONCLUSIONS: Quantitative ultrasound parameters offered diagnostic information revealing impaired structural integrity of the spontaneously repaired porcine cartilage and subchondral bone. These changes are not detectable by traditional arthroscopic means.
机译:目的:关节镜检查提供了评估关节软骨表面的定性方法。然而,仍未发现深软骨和软骨下骨的可能变性。高频超声成像是一种先进的软骨评估方法,可以在关节镜下使用,并且还可以从更深的软骨和软骨下骨中获取诊断信息。设计:在这项研究中,我们表征了定量2D超声成像对猪软骨的自发修复。在7-8个月大时,在右股骨滑车的外侧小面上形成了软骨病变(直径6mm,未穿透软骨下骨)(n = 8)。手术3个月后处死动物。用20 MHz超声原位对病变部位,相邻软骨和对侧(左)膝关节的相应控制区域进行成像。从软骨表面(R)和软骨-骨界面(R(bone))确定超声反射系数。通过根据超声确定的表面轮廓计算超声粗糙度指数(URI)参数,可以量化关节表面的微观形貌。结果:病变部位自发充满了表面光滑的可见软骨样软组织。然而,超声图像和组织学分析显示病变部位下方软骨下骨受到侵蚀。自发修复的组织表面的超声反射(R)显着低于完整软骨表面的超声反射(-73.5 +/- 7.6%,P <0.05)。 R(骨)在病变部位最低。自发修复的软骨的表面粗糙度明显高于完整组织的表面粗糙度(44.0 +/- 26.0微米与7.5 +/- 2.3微米,P <0.05)。结论:定量超声参数提供了诊断信息,揭示了自发修复的猪软骨和软骨下骨的结构完整性受损。传统的关节镜检查手段无法检测到这些变化。

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