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Shear wave elastography (SWE) is reliable method for testicular spermatogenesis evaluation after torsion

机译:剪切波弹性成像(SWE)是扭转后睾丸生精评估的可靠方法

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摘要

This study aims to investigate effect of torsion on testicular stiffness alteration in affected and concomitant testis using improved ultrasound method of shear wave elastography (SWE). We compared the morphology of the testicular spermatogenesis assessed with Johansen’s scale on histology specimens with a mean stiffness measured by SWE. A total of 18 New Zealand white male rabbits were divided into two groups (group A and group B), animals from group A were subjected to operation of right testicle torsion while left testicle remained intact. In group B both testicles were normal and right testicle was subjected to sham operation. The protocol of measurement for mean stiffness value was calculated from three elastographic images obtained from each testicle. Significant difference in mean stiffness value and Johnsen’ scaling was observed in both groups (A and B), as well as for normal and torted testicle in group A. The mean stiffness positively correlated with histologic grade on both sided testicles in group B, and left sided testicles in group A (P=0.045, r=0.43; group B; P=0.001, r=0.98), while histologic grade negatively correlated with mean stiffness in the group A, torted testicle (torsion P=0.012, r=-0.76). In this study testicular torsion, with consequently higher mean stiffness value determined by SWE, has qualitatively and quantitatively decreased spermatogenesis. Gradual morphology change in testicle unaffected by torsion has not been previously reported. This study confirmed that quantitative change in testicular tissue stiffness as well as change in testicular spermatogenesis can be reliably evaluated with SWE.
机译:本研究旨在使用改良的剪切波弹性成像(SWE)超声方法研究扭力对受影响和伴随睾丸睾丸硬度变化的影响。我们用Johansen量表在组织学标本上比较了睾丸生精的形态,并用SWE测量了其平均硬度。将总共​​18只新西兰白雄兔分成两组(A组和B组),A组的动物进行右睾丸扭转手术,而左睾丸保持完整。 B组睾丸均正常,右侧睾丸均假手术。根据从每个睾丸获得的三个弹性成像图像计算平均硬度值的测量方案。两组(A和B)以及正常和曲折睾丸的平均刚度值和Johnsen标度都存在显着差异。B组的两侧睾丸的平均刚度与组织学分级呈正相关,而B组的平均刚度与组织学分级呈正相关。 A组左侧睾丸(P = 0.045,r = 0.43; B组; P = 0.001,r = 0.98),而组织学分级与A组曲折睾丸的平均硬度呈负相关(扭转P = 0.012,r = -0.76)。在这项研究中,睾丸扭转具有较高的平均刚度,由SWE确定,已在质和量上减少了精子生成。先前尚未报道睾丸受扭转影响的形态逐渐变化。这项研究证实,使用SWE可以可靠地评估睾丸组织硬度的定量变化以及睾丸生精的变化。

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