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本文引用的文献

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Radiation Exposure of Patient and Operating Room Personnel by Fluoroscopy and Navigation during Spinal Surgery.脊柱手术中透视和导航对患者和手术室人员的辐射暴露。
Sci Rep. 2019 Nov 27;9(1):17652. doi: 10.1038/s41598-019-53472-z.
2
Image-guidance, Robotics, and the Future of Spine Surgery.影像引导、机器人技术与脊柱外科的未来。
Clin Spine Surg. 2020 Jun;33(5):179-184. doi: 10.1097/BSD.0000000000000809.
3
Integrating robotics into a minimally invasive transforaminal interbody fusion workflow.将机器人技术融入微创经椎间孔融合术工作流程中。
Neurosurg Focus. 2018 Jul;45(VideoSuppl1):V4. doi: 10.3171/2018.7.FocusVid.18111.
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Comparative Prospective Study Reporting Intraoperative Parameters, Pedicle Screw Perforation, and Radiation Exposure in Navigation-Guided versus Non-navigated Fluoroscopy-Assisted Minimal Invasive Transforaminal Lumbar Interbody Fusion.比较前瞻性研究报告导航引导与非导航荧光透视辅助下微创经椎间孔腰椎椎间融合术中的术中参数、椎弓根螺钉穿孔及辐射暴露情况。
Asian Spine J. 2018 Apr;12(2):309-316. doi: 10.4184/asj.2018.12.2.309. Epub 2018 Apr 16.
5
Critical analysis of trends in lumbar fusion for degenerative disorders revisited: influence of technique on fusion rate and clinical outcomes.对退行性疾病腰椎融合术趋势的批判性分析再探讨:技术对融合率和临床结果的影响
Eur Spine J. 2018 Aug;27(8):1868-1876. doi: 10.1007/s00586-018-5544-x. Epub 2018 Mar 15.
6
A retrospective comparison of intraoperative CT and fluoroscopy evaluating radiation exposure in posterior spinal fusions for scoliosis.一项评估脊柱侧弯后路脊柱融合术中术中CT与荧光透视辐射暴露的回顾性比较。
Patient Saf Surg. 2017 Dec 21;11:32. doi: 10.1186/s13037-017-0142-0. eCollection 2017.
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Application of Gelatin Sponge Impregnated with a Mixture of 3 Drugs to Intraoperative Nerve Root Block Combined with Robot-Assisted Minimally Invasive Transforaminal Lumbar Interbody Fusion Surgery in the Treatment of Adult Degenerative Scoliosis: A Clinical Observation Including 96 Patients.明胶海绵浸渍三种药物混合物在术中神经根阻滞联合机器人辅助微创经椎间孔腰椎椎间融合术治疗成人退变性脊柱侧凸中的应用:96例临床观察
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8
Comparative Study of C-arms for Intraoperative 3-dimensional Imaging and Navigation in Minimally Invasive Spine Surgery Part I: Applicability and Image Quality.用于微创脊柱手术术中三维成像和导航的C型臂比较研究 第一部分:适用性和图像质量
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9
Navigation and Robotics in Spinal Surgery: Where Are We Now?脊柱外科中的导航与机器人技术:我们目前的进展如何?
Neurosurgery. 2017 Mar 1;80(3S):S86-S99. doi: 10.1093/neuros/nyw077.
10
Internally Randomized Control Trial of Radiation Exposure Using Ultra-low Radiation Imaging Versus Traditional C-arm Fluoroscopy for Patients Undergoing Single-level Minimally Invasive Transforaminal Lumbar Interbody Fusion.使用超低辐射成像与传统C型臂荧光透视对接受单节段微创经椎间孔腰椎椎间融合术患者进行辐射暴露的内部随机对照试验。
Spine (Phila Pa 1976). 2017 Feb 15;42(4):217-223. doi: 10.1097/BRS.0000000000001720.

经椎间孔腰椎椎间融合术中术中影像引导的叙述性综述。

Narrative review of intraoperative image guidance for transforaminal lumbar interbody fusion.

作者信息

Weiner Joseph A, McCarthy Michael H, Swiatek Peter, Louie Philip K, Qureshi Sheeraz A

机构信息

Northwestern University Department of Orthopaedic Surgery, Chicago, IL, USA.

Hospital for Special Surgery Department of Orthopedic Surgery, New York, NY, USA.

出版信息

Ann Transl Med. 2021 Jan;9(1):89. doi: 10.21037/atm-20-1971.

DOI:10.21037/atm-20-1971
PMID:33553382
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7859762/
Abstract

Recent advancements in imaging technology have changed the landscape of transforaminal lumbar interbody fusion (TLIF) with the objective of improving safety and efficacy for the patient and surgical team. Spine surgery, and specifically TLIFs, involve challenging anatomy and command precise surgical accuracy, creating an essential role for intraoperative imaging, navigation, and robotics. Traditionally, surgeons have relied upon fluoroscopy for pedicle screw and interbody placement. More recently, intraoperative 3-dimensional navigation (ION) has risen in popularity in TLIF surgery. This technology utilizes intra-operative advanced imaging, such as computed tomography (CT) and 3D-fluroscopy, to accurately track instruments and implants in relation to the patient's anatomy. ION has demonstrated improved accuracy of pedicle screw placement, decreased operating room times, and lower radiation exposure to the surgeon and staff. However, conventional fluoroscopy, 3D fluoroscopy, intraoperative CT, image-guided navigation, and robot-assisted surgery all have a role in TLIF surgery. Numerous studies have been published regarding the benefits and pitfalls of these intraoperative tools in spine surgery, but there is a relative lack of research regarding some of the newer technologies surrounding TLIF. As future studies are published, and technology continues to evolve, surgeons must stay abreast of novel techniques to maximize patient safety and outcomes. Over the coming decade, we can expect intraoperative navigation and robotics to play a more significant role in spine surgery.

摘要

成像技术的最新进展改变了经椎间孔腰椎椎间融合术(TLIF)的局面,目的是提高患者和手术团队的安全性和疗效。脊柱手术,尤其是TLIF,涉及具有挑战性的解剖结构,需要精确的手术精度,这使得术中成像、导航和机器人技术发挥着至关重要的作用。传统上,外科医生依靠荧光透视来进行椎弓根螺钉和椎间融合器的置入。最近,术中三维导航(ION)在TLIF手术中越来越受欢迎。这项技术利用术中先进成像,如计算机断层扫描(CT)和三维荧光透视,来精确追踪器械和植入物与患者解剖结构的关系。ION已证明椎弓根螺钉置入的准确性提高、手术室时间缩短以及外科医生和工作人员所受辐射暴露降低。然而,传统荧光透视、三维荧光透视、术中CT、图像引导导航和机器人辅助手术在TLIF手术中都有各自的作用。关于这些术中工具在脊柱手术中的益处和缺陷,已经发表了大量研究,但对于围绕TLIF的一些较新技术的研究相对较少。随着未来研究的发表以及技术的不断发展,外科医生必须跟上新技术的步伐,以最大限度地提高患者安全性和手术效果。在未来十年,我们可以期待术中导航和机器人技术在脊柱手术中发挥更重要的作用。