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[使用5毫米光学镜头和3毫米套管针的微型腹腔镜检查]

[Minilaparoscopy with 5 mm optics and 3 mm trocars].

作者信息

Schmidt J

机构信息

Klinik für Allgemein‑, Viszeral- und Thoraxchirurgie, Krankenhaus Landshut-Achdorf, Akademisches Lehrkrankenhaus TU München, Achdorfer Weg 3, 84036, Landshut, Deutschland.

出版信息

Chirurg. 2017 Aug;88(8):647-655. doi: 10.1007/s00104-017-0437-9.

Abstract

Minilaparoscopy was introduced already 20 years ago. In spite of reduced diameter, technical performance of modern trocars and instruments has improved substantially. While carrying out a minilaparoscopic procedure, the required position of the trocars and the surgical strategy remain the same. The most important step towards minilaparoscopy is reduction of the diameter of the laparoscopes from 10 to 5 mm. The 5 mm laparoscopes show high resolution and transport enough energy to properly illuminate the surgical field. Minilaparoscopic procedures help to improve cosmetic results and reduce postoperative pain, but postoperative complication rates are not affected. Use of one 5 mm trocar causes higher tissue tension than two 3 mm trocars and an additionally placed 3 mm trocar will not increase the complication rate. Therefore, a reduced risk of trocar hernia formation may be expected when a minilaparoscopic approach is used. Efficiency has been proven for minilaparoscopic cholecystectomy, appendectomy, and hernioplasty (TAPP/TEP) whereas overall available evidence across the literature remains poor. Further miniaturization is linked directly to video editing: physical limitations in classic optic systems have already been reached; therefore, reduction of optical chip systems could be a possible alternative.

摘要

微型腹腔镜检查早在20年前就已问世。尽管直径减小,但现代套管针和器械的技术性能有了显著提高。在进行微型腹腔镜手术时,套管针的所需位置和手术策略保持不变。迈向微型腹腔镜检查的最重要一步是将腹腔镜的直径从10毫米减小到5毫米。5毫米的腹腔镜具有高分辨率,并能传输足够的能量以适当照亮手术视野。微型腹腔镜手术有助于改善美容效果并减轻术后疼痛,但术后并发症发生率不受影响。使用一个5毫米的套管针会比两个3毫米的套管针产生更高的组织张力,额外放置一个3毫米的套管针不会增加并发症发生率。因此,采用微型腹腔镜手术方法时,预计套管针疝形成的风险会降低。微型腹腔镜胆囊切除术、阑尾切除术和疝修补术(经腹腹膜前疝修补术/全腹膜外疝修补术)的效率已得到证实,而整个文献中的总体现有证据仍然不足。进一步的小型化直接与视频编辑相关:经典光学系统的物理限制已经达到;因此,减少光学芯片系统可能是一种可行的替代方案。

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