交互式医学模拟工具包(iMSTK):一个用于外科模拟的开源平台

IF 3.2 Q2 COMPUTER SCIENCE, SOFTWARE ENGINEERING Frontiers in virtual reality Pub Date : 2023-06-27 DOI:10.3389/frvir.2023.1130156
Jacob Moore, Harald Scheirich, Shreeraj Jadhav, A. Enquobahrie, B. Paniagua, Andrew Wilson, Aaron Bray, G. Sankaranarayanan, Rachel B. Clipp
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引用次数: 0

摘要

导读:人为失误是医疗差错的主要原因之一。据估计,人为失误每年导致25万至44万人死亡。医学模拟已被证明可以提高临床医生的技能和信心,并减少医疗错误。手术模拟对于训练外科医生进行复杂手术是至关重要的,在技能保留方面尤其有效。方法:交互式医学仿真工具包(iMSTK)是一个开源平台,具有基于位置的动力学,连续碰撞检测,光滑粒子流体动力学,集成触觉,兼容Unity和Unreal等功能。iMSTK通过灵活的开源许可(Apache 2.0)提供了广泛的实时模拟功能,鼓励在研究和商业模拟社区中采用。iMSTK使用扩展的基于位置的动力学和已建立的碰撞和约束实现来模拟生物组织及其与医疗工具和其他组织的相互作用。结果:该平台表现出良好的性能,即兼容实时仿真,融合了可视化和触觉。iMSTK已用于各种虚拟模拟,包括腹腔镜裂孔疝手术、腹腔镜胆囊切除术、截骨手术和肾活检手术。讨论:iMSTK目前支持为广泛的手术场景建立模拟。未来的工作包括扩展Unity支持,使其更易于使用,并提高计算速度,以允许更大的场景和更细的网格用于更大的外科手术。
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The interactive medical simulation toolkit (iMSTK): an open source platform for surgical simulation
Introduction: Human error is one of the leading causes of medical error. It is estimated that human error leads to between 250,000 and 440,000 deaths each year. Medical simulation has been shown to improve the skills and confidence of clinicians and reduce medical errors. Surgical simulation is critical for training surgeons in complicated procedures and can be particularly effective in skill retention. Methods: The interactive Medical Simulation Toolkit (iMSTK) is an open source platform with position-based dynamics, continuous collision detection, smooth particle hydrodynamics, integrated haptics, and compatibility with Unity and Unreal, among others. iMSTK provides a wide range of real-time simulation capabilities with a flexible open-source license (Apache 2.0) that encourages adoption across the research and commercial simulation communities. iMSTK uses extended position-based dynamics and an established collision and constraint implementations to model biological tissues and their interactions with medical tools and other tissues. Results: The platform demonstrates performance, that is, compatible with real-time simulation that incorporates both visualization and haptics. iMSTK has been used in a variety of virtual simulations, including for laparoscopic hiatal hernia surgery, laparoscopic cholecystectomy, osteotomy procedures, and kidney biopsy procedures. Discussion: iMSTK currently supports building simulations for a wide range of surgical scenarios. Future work includes expanding Unity support to make it easier to use and improving the speed of the computation to allow for larger scenes and finer meshes for larger surgical procedures.
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