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先进的内镜技术。

Advanced endoscopic technologies.

作者信息

Reavis Kevin M, Melvin W Scott

机构信息

Division of General Surgery, The Ohio State University, RM N 729 Doan Hall, 410 W. Tenth Avenue, Columbus, OH 43210, USA.

出版信息

Surg Endosc. 2008 Jun;22(6):1533-46. doi: 10.1007/s00464-008-9831-1. Epub 2008 Apr 10.

Abstract

The use of endoscopy for diagnosing and treating ailments of the alimentary tract has evolved steadily over the past few decades, with tremendous growth and innovation in the past few years. Initially, endoscopy relied on rigid telescopes, direct visualization, and dangerously exothermic sources of illumination. The introduction of fiber optics, charge-coupled-device cameras, and increasingly efficient light sources has enabled researchers to investigate areas of the human gastrointestinal tract through flexible endoscopy not previously thought to be reachable without formal surgical exploration. The more recent advances in scope platforms, devices, and techniques have allowed researchers to push the envelope of endoscopic diagnostics and therapeutics to greater heights. Specific new platforms include ColonoSight and mother-daughter endoscopes such as the ShapeLock TransPort and the SpyGlass direct visualization system. Specific devices include the EndoCinch suturing system, the full-thickness Plicator procedure, Esophyx, the Stretta system, and the HALO(360) system. Specific new techniques include small-caliber endoscopy, endoscopic mucosal and submucosal resection, and natural orifice translumenal endoscopic surgery (NOTES). This article describes the most relevant recent advances in endoscopic innovation with regard to platform design, devices, and techniques anticipated to serve as the foundation for further research and design for developing generations of endoscopic technologies to come.

摘要

在过去几十年里,用于诊断和治疗消化道疾病的内窥镜技术一直在稳步发展,在过去几年中更是取得了巨大的进步和创新。最初,内窥镜依靠刚性望远镜、直接可视化以及危险的放热照明源。光纤、电荷耦合器件相机和日益高效的光源的引入,使研究人员能够通过柔性内窥镜研究人体胃肠道中以前认为不进行正式手术探查就无法到达的区域。内窥镜平台、设备和技术方面的最新进展,使研究人员能够将内窥镜诊断和治疗的边界推向更高水平。具体的新平台包括结肠视野系统以及子母内窥镜,如ShapeLock TransPort和SpyGlass直接可视化系统。具体的设备包括EndoCinch缝合系统、全层折叠器手术、Esophyx、Stretta系统和HALO(360)系统。具体的新技术包括小口径内窥镜检查、内窥镜黏膜和黏膜下切除术以及经自然腔道内镜手术(NOTES)。本文介绍了内窥镜创新方面最近最相关的进展,涉及平台设计、设备和技术,预计这些将为未来几代内窥镜技术的进一步研究和设计奠定基础。

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