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Real-Time Needle Force Modeling for VR-Based Renal Biopsy Training with Respiratory Motion Using Direct Clinical Data

机译:使用直接临床数据的呼吸运动基于VR的肾活检训练的实时针力模型

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摘要

Realistic tool-tissue interactive modeling has been recognized as an essential requirement in the training of virtual surgery. A virtual basic surgical training framework integrated with real-time force rendering has been recognized as one of the most immersive implementations in medical education. Yet, compared to the original intraoperative data, there has always been an argument that these data are represented by lower fidelity in virtual surgical training. In this paper, a dynamic biomechanics experimental framework is designed to achieve a highly immersive haptic sensation during the biopsy therapy with human respiratory motion; it is the first time to introduce the idea of periodic extension idea into the dynamic percutaneous force modeling. Clinical evaluation is conducted and performed in the Yunnan First People’s Hospital, which not only demonstrated a higher fitting degree (AVG: 99.36%) with the intraoperation data than previous algorithms (AVG: 87.83%, 72.07%, and 66.70%) but also shows a universal fitting range with multilayer tissue. 27 urologists comprising 18 novices and 9 professors were invited to the VR-based training evaluation based on the proposed haptic rendering solution. Subjective and objective results demonstrated higher performance than the existing benchmark training simulator. Combining these in a systematic approach, tuned with specific fidelity requirements, haptically enabled medical simulation systems would be able to provide a more immersive and effective training environment.
机译:现实工具组织交互模型已被确认为在虚拟手术培训的基本要求。具有实时渲染力集成的虚拟基础外科培训框架已被公认为在医学教育中最身临其境的实现方式之一。然而,相比原来的术中数据,一直存在着,这些数据是通过在虚拟外科手术训练较低保真度表示的参数。在本文中,一个动态的生物力学试验框架被设计为实现所述活检治疗与人呼吸运动期间高度身临其境触觉感觉;这是第一次推出周期扩展思路的想法变成动态皮力模型。临床评价进行,在云南省第一人民医院,这不仅表现出较高的拟合度(AVG:99.36%)进行的比以前的算法(AVG:87.83%,72.07%和66.70%)在术中的数据也显示一个通用配件范围内具有多层组织。 27个泌尿科医生包括18个新手和9名教授被邀请到基础上,提出触觉描绘溶液基于VR-训练评估。主观和客观结果显示比现有基准训练模拟器更高的性能。在一个系统的方法,这些结合,与特定的保真度要求调整,触觉使能的医疗模拟系统将能够提供更逼真和有效的培训环境。

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