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一种用于经自然腔道远端胰腺切除术的新型机器人平台。

A novel, new robotic platform for natural orifice distal pancreatectomy.

作者信息

Thakkar Shyam, Awad Michael, Gurram Krishna C, Tully Steven, Wright Cornell, Sanan Siddharth, Choset Howie

机构信息

West Penn Allegheny Health System, Pittsburgh, PA, USA

Washington University, St Louis, MO, USA.

出版信息

Surg Innov. 2015 Jun;22(3):274-82. doi: 10.1177/1553350614554232. Epub 2014 Oct 15.

DOI:10.1177/1553350614554232
PMID:25320108
Abstract

Laparoendoscopic technology has revolutionized the practice of surgery; however, surgeons have not widely accepted laparoscopic techniques for pancreatic surgeries due to the complexity of the operation. Natural orifice transluminal endoscopic surgery (NOTES) offers a great new potential for pancreatic procedures, with early data showing benefits of reduced visible scarring and the potential for decreased wound infections, hernias, pain, and postoperative complications. However, there are significant limitations to the currently used flexible endoscopy tools, including a diminished visual field, spatial orientation and tissue manipulation issues, and 2-dimensional visual feedback. We have adopted a novel snake-like robot, the minimally invasive cardiac surgery (MICS) robot, which addresses these issues. In the current pilot study, the MICS robot was evaluated for transrectal distal pancreas exploration and resection in 2 nonsurvival porcine models. Abdominal navigation and accessing the pancreas was investigated in the first pig, and based on its success, pancreas resection was studied in pig 2. The MICS robot was successful in accessing and visualizing the right upper, left upper, and left lower quadrants of the abdomen in pig 1 and was able to perform a successful complex NOTES procedure with distal pancreas resection in pig 2, with only minimal laparoscopic retraction assistance. In conclusion, preliminary results showing the MICS robot in natural orifice distal pancreatectomy are positive. Enhancements to optics and instrumentation will help further increase the usability in pancreatic interventions. Future indications may include transgastric NOTES approaches, endoluminal procedures, and single-port applications.

摘要

腹腔镜内镜技术彻底改变了外科手术的实践方式;然而,由于手术的复杂性,外科医生尚未广泛接受腹腔镜技术用于胰腺手术。经自然腔道内镜手术(NOTES)为胰腺手术提供了巨大的新潜力,早期数据显示其具有减少可见疤痕的益处,以及降低伤口感染、疝气、疼痛和术后并发症的可能性。然而,目前使用的柔性内镜工具存在重大局限性,包括视野缩小、空间定向和组织操作问题以及二维视觉反馈。我们采用了一种新型蛇形机器人——微创心脏手术(MICS)机器人,它解决了这些问题。在当前的试点研究中,在2个非存活猪模型中对MICS机器人进行经直肠远端胰腺探查和切除的评估。在第一头猪中研究腹部导航和进入胰腺的情况,并基于其成功经验,在第二头猪中研究胰腺切除。MICS机器人成功进入并可视化了第一头猪腹部的右上、左上和左下象限,并且在第二头猪中仅在最小程度的腹腔镜牵拉辅助下成功进行了复杂的NOTES手术及远端胰腺切除。总之,初步结果表明MICS机器人用于自然腔道远端胰腺切除术是积极的。光学和器械方面的改进将有助于进一步提高其在胰腺干预中的可用性。未来的适应症可能包括经胃NOTES方法、腔内手术和单孔应用。

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A novel, new robotic platform for natural orifice distal pancreatectomy.一种用于经自然腔道远端胰腺切除术的新型机器人平台。
Surg Innov. 2015 Jun;22(3):274-82. doi: 10.1177/1553350614554232. Epub 2014 Oct 15.
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