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脊髓组织的生物力学特性——脊髓背根入髓区(DREZ)手术改良发展的基础

[Biomechanical characteristics of spinal cord tissue--basis for the development of modifications of the DREZ (dorsal root entry zone) operation].

作者信息

Spaić M, Mikicić D, Ilić S, Milosavljević I, Ivanović S, Slavik E, Antić B

机构信息

Klinika za neurohirurgiju, Vojnomedicinska akademija, Beograd.

出版信息

Acta Chir Iugosl. 2004;51(4):59-64. doi: 10.2298/aci0404059s.

Abstract

Mechanical properties of the spinal cord tissue--biological basis for the development of the modality of the DREZ surgery lesioning technique Succesful treatment of the chronic neurogenic pain of spinal cord and cauda equina injury origin remains a significant management problem. The mechanism of this pain phenomenon has been shown to be related to neurochemical changes that lead to the state of hypereactivity of the second order dorsal horn neurons. The DREZ surgery (Dorsal Root Entry Zone lesion), designed to destroy anatomy structures involved in pain generating thus interrupting the neurogenic pain mechanism, as a causative procedure in treating this chronic pain, has been performed by using different technical modalities: Radiofrequency (RF) coagulation technic, Laser, Ultrasound and Microsurgical DREZotomy technic. The purpose of the study was to assess the possibility for the establishment of the lesioning technic based on the natural difference in the mechanical properties between the white and gray cord substance. We experimentally deteminated mechanical properties of the human cadaveric cord white versus gray tissue for the purpose of testing possibility of selective suction of the dorsal horn gray substance as a DREZ lesioning procedure. Based on the fact of the difference in tissue elasticity between white and gray cord substance we established a new and simple DREZ surgical lesioning technique that was tested on cadaver cord. For the purpose of testing and comparing the size and shape of the DREZ lesion axchieved the DREZ surgery has been performed on cadaver cord by employing selective dorsal horn suction as a lesioning method. After the procedure cadaver cord underwent histological fixation and analysis of the DREZ lesions achieved. Our result revealed that the white cord substance with longitudinal fiber structure had four time higher dynamical viscosity than gray substance of local neuronal network structure (150 PaS versus 37.5 PaS) that provided possibility for the safe and selective suction of the gray substance of the dorsal horn. Technic includes incision of the dorsolateral sulcus according to Sindous Microsurgical DREZotomy technic than suction under visual control of the dorsal horn gray matter using succer adopted from the lumbar puncture nidle. Operative experimental testing and hystological analysis confirmed expected size and shape of the DREZ lesion performed by dorsal horn suction as DREZ lesioning technique. The utility, selectivity and safety of this technic has been provided by the natural mechanical properties of the cord tissue itself. Application of the Dorsal horn suction as a DREZ lesioning in humans confirmed this technic as a safe and reliable DREZ lesioning method.

摘要

脊髓组织的力学特性——脊髓背根入髓区(DREZ)手术损伤技术模式发展的生物学基础

成功治疗脊髓和马尾神经损伤所致的慢性神经源性疼痛仍然是一个重大的治疗难题。已证明这种疼痛现象的机制与导致二级背角神经元反应过度状态的神经化学变化有关。旨在破坏参与疼痛产生的解剖结构从而中断神经源性疼痛机制的DREZ手术(背根入髓区损伤),作为治疗这种慢性疼痛的病因性手术,已采用不同的技术模式进行:射频(RF)凝固技术、激光、超声和显微外科DREZ切开术技术。本研究的目的是评估基于白质和灰质之间力学特性的自然差异建立损伤技术的可能性。我们通过实验测定了人类尸体脊髓白质与灰质组织的力学特性,以测试选择性抽吸背角灰质作为一种DREZ损伤手术的可能性。基于白质和灰质组织弹性差异这一事实,我们建立了一种新的、简单的DREZ手术损伤技术,并在尸体脊髓上进行了测试。为了测试和比较所实现的DREZ损伤的大小和形状,通过采用选择性背角抽吸作为损伤方法,在尸体脊髓上进行了DREZ手术。手术后,对尸体脊髓进行组织学固定并分析所实现的DREZ损伤。我们的结果显示,具有纵向纤维结构的白质的动态粘度比局部神经网络结构的灰质高四倍(150帕斯卡秒对37.5帕斯卡秒),这为安全、选择性地抽吸背角灰质提供了可能性。该技术包括按照辛杜斯显微外科DREZ切开术技术切开背外侧沟,然后在视觉控制下使用从腰椎穿刺针改装的吸引器抽吸背角灰质。手术实验测试和组织学分析证实了通过背角抽吸作为DREZ损伤技术所实现的DREZ损伤的预期大小和形状。该技术的实用性、选择性和安全性由脊髓组织本身的自然力学特性提供。在人体中应用背角抽吸作为DREZ损伤证实了该技术是一种安全可靠的DREZ损伤方法。

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