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4.7-T diffusion tensor imaging of acute traumatic peripheral nerve injury

机译:4.7-T弥散张量成像在急性外伤性周围神经损伤中的作用

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摘要

Diagnosis and management of peripheral nerve injury is complicated by the inability to assess microstructural features of injured nerve fibers via clinical examination and electrophysiology. Diffusion tensor imaging (DTI) has been shown to accurately detect nerve injury and regeneration in crush models of peripheral nerve injury, but no prior studies have been conducted on nerve transection, a surgical emergency that can lead to permanent weakness or paralysis. Acute sciatic nerve injuries were performed microsurgically to produce multiple grades of nerve transection in rats that were harvested 1 hour after surgery. High-resolution diffusion tensor images from ex vivo sciatic nerves were obtained using diffusion-weighted spin-echo acquisitions at 4.7 T. Fractional anisotropy was significantly reduced at the injury sites of transected rats compared with sham rats. Additionally, minor eigenvalues and radial diffusivity were profoundly elevated at all injury sites and were negatively correlated to the degree of injury. Diffusion tensor tractography showed discontinuities at all injury sites and significantly reduced continuous tract counts. These findings demonstrate that high-resolution DTI is a promising tool for acute diagnosis and grading of traumatic peripheral nerve injuries.
机译:周围神经损伤的诊断和处理由于无法通过临床检查和电生理评估损伤的神经纤维的微结构特征而变得复杂。弥散张量成像(DTI)已显示可在周围神经损伤的暗恋模型中准确检测出神经损伤和再生,但是尚未进行过神经横切的先前研究,神经横切是一种外科手术,可能导致永久性无力或瘫痪。在手术后1小时收获的大鼠中,通过显微外科手术进行了急性坐骨神经损伤,以产生多级神经横断。使用弥散加权自旋回波在4.7 T下获取离体坐骨神经的高分辨率弥散张量图像。与假大鼠相比,横切大鼠的损伤部位的分数各向异性显着降低。此外,次要特征值和径向扩散率在所有损伤部位均显着升高,并且与损伤程度呈负相关。扩散张量束缚成像显示在所有损伤部位均不连续,并显着减少了连续束计数。这些发现表明,高分辨率DTI是用于创伤性周围神经损伤的急性诊断和分级的有前途的工具。

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