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Robotic and imaging in urological surgery.

机译:泌尿外科手术中的机器人和成像。

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PURPOSE OF REVIEW: New imaging modalities and tissue navigation systems, which are adoptable to minimally invasive robotic urological surgical systems and prone to make the procedures more precise and easy, are reviewed. RECENT FINDINGS: Image-guided surgery as the general name of combining information of imaging modalities with real-time surgery has already found a place in open and minimally invasive procedures. Soft tissue navigation is a complex type of computer-assisted surgery for soft tissue interventions. Robotic surgery has advantages of superior degrees of freedom and three-dimensional stereotactic user interface. A combination of surgical robotics with image-assisted surgery and soft tissue navigation may offer advantages of more precise anatomical target localization and dissection with minimal damage to the tissue. Solving the problem of organ shift and as a result, unpredictable changing of intraoperative anatomy soft tissue navigation has the potential to increase the precision of minimally invasive robotic surgery. SUMMARY: Apart from less invasiveness, the concomitant use of minimal invasive robotic systems with soft tissue navigation enhances surgical precision. However, at present, abdominal navigation systems are in experimental use and not perfect enough for daily surgical routine.
机译:审查的目的:审查了可用于微创机器人泌尿外科手术系统的新成像方式和组织导航系统,并倾向于使手术更精确,更容易。最近的发现:图像引导手术是将成像方式信息与实时手术相结合的总称,已经在开放和微创手术中占有一席之地。软组织导航是用于软组织干预的复杂类型的计算机辅助手术。机器人手术具有优越的自由度和三维立体定向用户界面的优势。外科手术机器人与图像辅助手术以及软组织导航的结合可以提供更精确的解剖目标定位和解剖的优势,同时对组织的损害最小。解决器官移位的问题,从而解决术中无法预测的术中解剖学软组织导航变化,可能会提高微创机器人手术的精度。简介:除了具有较小的侵入性之外,同时使用具有软组织导航功能的最小侵入性机器人系统可提高手术精度。然而,目前,腹部导航系统处于实验用途,对于日常外科手术来说还不够完善。

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