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Role of Nd:YAG laser for prevention of neuroma formation: an in vivo experimental study

机译:Nd:YAG激光在预防神经瘤形成中的作用:一项体内实验研究

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摘要

Nerve transection is commonly followed by the development of neuroma at the proximal stump. It can be very painful especially at exposed sites. It may arise spontaneously or after mechanical irritation. Neuroma and its high recurrence rate might be resisting problems to treat. Various treatment modalities for neuroma and its recurrence have been proposed, but none has provided satisfactory results. The present study was conducted to evaluate the neodymium:yttrium aluminum garnet (Nd:YAG) laser (1,064 nm) nerve transection technique for prevention of neuroma formation. There were 48 facial nerves out of 24 Rex rabbits divided into two equal groups. The 24 left-sided facial nerves at group A were subjected to Nd:YAG laser for nerve transection, while the 24 right-sided facial nerves at group B were subjected to scalpel nerve transection. The results were grossly and histopathologically evaluated. Grossly, laser-transected nerves showed an infrequent incidence of neuroma formation. Histopathologically, laser-transected nerves showed photothermal degenerative changes of the axons and myelin sheaths with intact perineurium and endoneurium. No Schwann cell hyperactivity could also be elicited among laser-transected nerves. Nd:YAG laser was found to be an effective tool that could be applied, whenever it is possible, for division of major nerves to prevent the formation of the subsequent stump neuroma. Moreover, this technique should be considered during treatment of well-established neuroma to prevent the challenging reported high incidence of recurrence.
机译:神经横断通常是在近端残端发生神经瘤。特别是在裸露的地方,这可能会非常痛苦。它可能自发或在机械刺激后出现。神经瘤及其高复发率可能正在抵抗治疗难题。已经提出了神经瘤及其复发的各种治疗方式,但是没有一种提供令人满意的结果。本研究旨在评估钕:钇铝石榴石(Nd:YAG)激光(1,064 nm)神经横断技术在预防神经瘤形成中的作用。在24只獭兔中,有48条面神经被分为两组。 A组24只左侧面神经经Nd:YAG激光切断,B组24只右侧面神经经手术刀切断。对结果进行了粗略的和组织病理学评估。总体而言,激光横切的神经显示神经瘤形成的频率很低。组织病理学上,激光横切的神经显示出完整的会阴神经束和神经内膜的轴突和髓鞘的光热退行性改变。在激光横切的神经之间也不会引起雪旺氏细胞过度活跃。发现Nd:YAG激光是一种有效的工具,只要有可能,它就可用于分割主要神经,以防止随后的残端神经瘤形成。此外,在建立良好的神经瘤的治疗过程中应考虑使用该技术,以防止挑战性报道的高复发率。

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