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A cadaveric study using the ultra-minimally invasive thread transection technique to decompress the superficial peroneal nerve in the lower leg

机译:使用超微量侵入式跨越技术在下腿上减压浅表腓骨神经的尸体研究

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Background After successful applications of the ultra-minimally invasive thread transecting technique (Guo Technique) for both thread carpal tunnel release and thread trigger finger release, we hypothesized that this technique could be used for superficial peroneal nerve release in the lower leg by selective crural fasciectomy. This study is aimed at testing the operative feasibility of performing the thread superficial peroneal nerve release (TSPNR) procedure in cadavers. Methods The TSPNR procedure was performed on 15 fresh frozen cadaveric lower-extremity specimens under ultrasound guidance. All cadaveric specimens were dissected and visually assessed immediately after the procedures. Results All 15 legs demonstrated a complete transection of the crural fasciae along the course of the superficial peroneal nerve (SPN) including where it penetrated and traversed the crural fascia. There was no evidence of any iatrogenic damage to the neurovascular bundle or adjacent tendons. The average operating time was less than 20 min. Conclusion This cadaveric study demonstrated that the technique of TSPNR was accurate, reliable, and feasible while causing no injury to adjacent neurovascular structures and avoiding having to make a skin incision. Further studies are warranted to verify the results of this study before implementing this new technique in the clinical setting.
机译:背景技术在螺纹腕管释放和螺纹触发手指释放的超微创线路横切技术(GUO技术)成功应用后,我们假设该技术可用于通过选择性复古裂缝术中的小腿浅表腓骨神经释放。本研究旨在测试在尸体中进行螺纹表面腓骨神经释放(TSPNR)程序的可操作可行性。方法在超声引导下对15个新鲜冷冻尸体下肢试样进行TSPNR程序。所有尸体标本都被解剖并在手术后立即进行视觉评估。结果所有15条腿都展示了浅层围岩性骨髓神经(SPN)的过程中,包括穿透和穿过复古筋膜的过程。没有证据表明神经血管束或相邻肌腱损伤。平均操作时间小于20分钟。结论这种尸体研究表明,TSPNR的技术精确,可靠,可行,同时对相邻的神经血管结构没有损伤,避免患有皮肤切口。在在临床环境中实施这种新技术之前,有必要进一步研究来核实本研究结果。

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