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A system for the training of persons for carrying out of minimally invasive surgical procedures

机译:一种用于进行微创外科手术的人员培训系统

摘要

A system for producing highly realistic, real-time simulated operating conditions for interactive training of persons to perform minimally invasive surgical procedures involving implements that are inserted and manipulated through small incisions in the patient. The virtual environment for this training system includes a housing with a small opening. An implement simulating a surgical implement is inserted into the opening and manipulated relative to the housing. A movement guide and sensor assembly monitors the location of the implement relative to the housing and provides data about the implement's location and orientation within the housing. The reported data is interpolated by a computer processor, which utilizes a database of information representing a patient's internal landscape to create a computer model of the internal landscape of the patient. With reference to this computer model, the processor controls the occurrence of force feedback opposing the motion of the implement. A two-dimensional image representing the implement as it would appear within the patient is generated by a processor-controlled video imaging system based on the computer model of the patient's internal landscape. This computer image of the implement is then merged with a video image loop of a patient's internal landscape as it appears through a heartbeat and breathing cycle, and the merged image is displayed on a video display. The combined elements of real-time visual representation and interactive tactile force feedback provide a virtual training simulation with all elements of actual operation conditions, minus a live patient.
机译:一种用于产生高度逼真的,实时模拟操作条件的系统,用于对人员进行交互式培训,以执行微创外科手术,包括通过患者小切口插入和操作的器械。该培训系统的虚拟环境包括带有小开口的外壳。模拟手术工具的工具插入开口中,并相对于壳体进行操作。运动导向器和传感器组件监视机具相对于壳体的位置,并提供有关机具在壳体内的位置和方向的数据。所报告的数据由计算机处理器进行插值,该计算机处理器利用表示患者内部景观的信息数据库来创建患者内部景观的计算机模型。参考该计算机模型,处理器控制与工具的运动相反的力反馈的发生。由处理器控制的视频成像系统根据患者内部风景的计算机模型生成表示器械在患者体内出现的二维图像。然后,在通过心跳和呼吸周期出现时,该工具的计算机图像会与患者内部景观的视频图像环合并,并且合并后的图像会显示在视频显示器上。实时视觉表示和交互式触觉力反馈相结合的要素提供了虚拟训练模拟,其中包括实际操作条件的所有要素,减去了活着的患者。

著录项

  • 公开/公告号DE69738073T2

    专利类型

  • 公开/公告日2008-01-03

    原文格式PDF

  • 申请/专利权人

    申请/专利号DE1997638073T

  • 发明设计人

    申请日1997-07-17

  • 分类号G09B23/28;

  • 国家 DE

  • 入库时间 2022-08-21 19:47:35

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