Minimally Invasive Approaches to Spinal Cerebrospinal Fluid Leak Repair: Current Strategies and a Novel Technique.

IF 3 3区 医学 Q2 HEALTH CARE SCIENCES & SERVICES
Adham M Khalafallah, Bhavjeet S Sanghera, Michael Kader, James V Boddu, Timur Urakov
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引用次数: 0

Abstract

Spinal cerebrospinal fluid (CSF) leaks can be caused by tears in the dura and are challenging to treat. Traditional methods of treating spinal CSF leakage include nonsurgical management, epidural blood patches (EBP), and direct surgical repair. Minimally invasive surgery (MIS) is rapidly progressing within neurosurgery due to its advantages for patient safety and comfort. Existing MIS techniques to spine surgery utilize a rigid endoscope, which has limitations when reaching smaller areas requiring greater degrees of visualization. The simultaneous use of a flexible endoscope and wearable heads-up display (wHUD) improves access and visualization in these small areas while allowing the surgeon to maintain optimal ergonomics. In this article, we review minimally invasive approaches to spine surgery and the management of spinal CSF leaks. We also demonstrate a novel minimally invasive technique utilizing flexible endoscopy and a wHUD to treat a case of recurrent CSF leak. We describe the successful utilization of this technology and provide the groundwork for future practitioners to incorporate this approach into their practice.

脊髓脑脊液漏修复的微创方法:当前策略与新技术。
脊髓脑脊液(CSF)漏可由硬脑膜撕裂引起,治疗难度很大。治疗脊髓脑脊液漏的传统方法包括非手术治疗、硬膜外血补片(EBP)和直接手术修复。微创手术(MIS)因其在患者安全性和舒适性方面的优势而在神经外科领域迅速发展。现有的脊柱手术微创技术使用的是硬质内窥镜,这种内窥镜在到达需要更高可视度的较小区域时有局限性。同时使用柔性内窥镜和可穿戴平视显示器(wHUD)可改善这些小区域的通道和可视化,同时让外科医生保持最佳人体工程学设计。在本文中,我们回顾了脊柱手术的微创方法和脊柱 CSF 漏的处理。我们还展示了一种新颖的微创技术,利用柔性内窥镜和 wHUD 治疗一例复发性 CSF 漏。我们描述了这一技术的成功应用,并为未来从业者将这一方法纳入其实践奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Personalized Medicine
Journal of Personalized Medicine Medicine-Medicine (miscellaneous)
CiteScore
4.10
自引率
0.00%
发文量
1878
审稿时长
11 weeks
期刊介绍: Journal of Personalized Medicine (JPM; ISSN 2075-4426) is an international, open access journal aimed at bringing all aspects of personalized medicine to one platform. JPM publishes cutting edge, innovative preclinical and translational scientific research and technologies related to personalized medicine (e.g., pharmacogenomics/proteomics, systems biology). JPM recognizes that personalized medicine—the assessment of genetic, environmental and host factors that cause variability of individuals—is a challenging, transdisciplinary topic that requires discussions from a range of experts. For a comprehensive perspective of personalized medicine, JPM aims to integrate expertise from the molecular and translational sciences, therapeutics and diagnostics, as well as discussions of regulatory, social, ethical and policy aspects. We provide a forum to bring together academic and clinical researchers, biotechnology, diagnostic and pharmaceutical companies, health professionals, regulatory and ethical experts, and government and regulatory authorities.
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