Center for Modeling, Simulation and Imaging in Medicine (CeMSIM), Rensselaer Polytechnic Institute, Troy, NY, USA.
Intuitive Surgical Inc., Sunnyvale, CA, USA.
J Biomed Inform. 2017 Nov;75:48-62. doi: 10.1016/j.jbi.2017.09.010. Epub 2017 Sep 22.
Suturing with intracorporeal knot-tying is one of the five tasks of the Fundamentals of Laparoscopic Surgery (FLS), which is a pre-requisite for board certification in general surgery. This task involves placing a short suture through two marks in a penrose drain and then tying a double-throw knot followed by two single-throw knots using two needle graspers operated by both hands. A virtual basic laparoscopic skill trainer (VBLaST©) is being developed to represent the virtual versions of the FLS tasks, including automated, real time performance measurement and feedback. In this paper, we present the development of a VBLaST suturing simulator (VBLaST-SS©). Developing such a simulator involves solving multiple challenges associated with fast collision detection, response and force feedback.
In this paper, we present a novel projection-intersection based knot detection method, which can identify the validity of different types of knots at haptic update rates. A simple and robust edge-edge based collision detection algorithm is introduced to support interactive knot tying and needle insertion operations. A bimanual hardware interface integrates actual surgical instruments with haptic devices enabling not only interactive rendering of force feedback but also realistic sensation of needle grasping, which realizes an immersive surgical suturing environment.
Experiments on performing the FLS intracorporeal suturing task show that the simulator is able to run on a standard personal computer at interactive rates.
VBLaST-SS© is a computer-based interactive virtual simulation system for FLS intracorporeal knot-tying suturing task that can provide real-time objective assessment for the user's performance.
腔内打结缝合是腹腔镜手术基础(FLS)的五项任务之一,这是普通外科委员会认证的前提条件。这项任务涉及通过引流管上的两个标记放置一段短缝线,然后使用双手操作的两个持针器系一个双抛结,然后系两个单抛结。正在开发一个虚拟基本腹腔镜技能训练器(VBLaST©)来代表 FLS 任务的虚拟版本,包括自动、实时的性能测量和反馈。在本文中,我们介绍了 VBLaST 缝合模拟器(VBLaST-SS©)的开发。开发这样的模拟器涉及解决与快速碰撞检测、响应和力反馈相关的多个挑战。
在本文中,我们提出了一种新的基于投影-交叉的结检测方法,该方法可以在触觉更新率下识别不同类型结的有效性。引入了一种简单而稳健的基于边缘-边缘的碰撞检测算法,以支持交互式打结和针插入操作。双手硬件接口将实际手术器械与触觉设备集成在一起,不仅实现了力反馈的交互式呈现,还实现了真实的针抓握感,从而实现了沉浸式手术缝合环境。
在执行 FLS 腔内缝合任务的实验中,该模拟器能够在标准个人计算机上以交互速率运行。
VBLaST-SS©是一种基于计算机的 FLS 腔内打结缝合任务的交互式虚拟仿真系统,可为用户的性能提供实时客观评估。