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Patient-Specific IVR Endovascular Simulator with Augmented Reality for Medical Training and Robot Evaluation

机译:具有增强现实性的患者专用IVR血管内模拟器,用于医学培训和机器人评估

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摘要

Endovascular intervention using interventional radiology (IVR) is most commonly used in cerebralvascu-lar treatment. Medical imaging such as digital subtraction angiography (DSA) and vascular mapping make vasculature and catheters easier to read from fluoroscopy during endovascular intervention. We propose simulating IVR using augmented reality, reproducing fluoroscopic images and a patient-specific blood vessel model without X-ray imaging. The advantages of the patient-specific vascular model reproducing the human vasculature lumen with 13 μm resolution include 1) a realistic "feel," 2) excellent tool behavior simulation during intervention, and 3) surgical training alternative to physician training invitro. Simulated fluoroscopic images are created in two steps: First, the blood vessel model refraction index is matched to surrounding glycerin solution to conceal the vascular model, making the silicone vasculature appear human as seen in endovascular intervention. Second, an augmented reality (AR) environment is created using image subtraction and overlap, making model-based endovascular simulation more understandable for catheter use and fluoroscopy use and reading.
机译:使用介入放射学(IVR)进行血管内干预最常用于脑血管治疗。医学影像学,例如数字减影血管造影(DSA)和血管映射,使血管内介入过程中的血管系统和导管更容易从荧光检查中读取。我们建议使用增强现实模拟IVR,无需X射线成像即可复制透视图像和特定于患者的血管模型。特定患者的血管模型能够以13μm的分辨率复制人类脉管腔,其优点包括:1)逼真的“感觉”,2)干预期间出色的工具行为模拟,以及3)替代医师体外培训的外科手术培训。模拟的透视图像分为两个步骤:首先,使血管模型的折射率与周围的甘油溶液相匹配,以隐藏血管模型,从而使硅酮脉管系统在血管内干预中看起来像人一样。其次,使用图像减法和重叠创建增强现实(AR)环境,使基于模型的血管内模拟更易于导管使用,荧光检查和阅读使用。

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