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Development of a High Resolution 3D Infant Stomach Model for Surgical Planning

机译:用于手术计划的高分辨率3D婴儿胃模型的开发

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Medical surgical procedures have not changed much during the past century due to the lack of accurate low-cost workbench for testing any new improvement. The increasingly cheaper and powerful computer technologies have made computer-based surgery planning and training feasible. In our work, we have developed an accurate 3D stomach model, which aims to improve the surgical procedure that treats the infant pediatric and neonatal gastro-esophageal reflux disease (GERD). We generate the 3-D infant stomach model based on in vivo computer tomography (CT) scans of an infant. CT is a widely used clinical imaging modality that is cheap, but with low spatial resolution. To improve the model accuracy, we use the high resolution Visible Human Project (VHP) in model building. Next, we add soft muscle material properties to make the 3D model deformable. Then we use virtual reality techniques such as haptic devices to make the 3D stomach model deform upon touching force. This accurate 3D stomach model provides a workbench for testing new GERD treatment surgical procedures. It has the potential to reduce or eliminate the extensive cost associated with animal testing when improving any surgical procedure, and ultimately, to reduce the risk associated with infant GERD surgery.
机译:由于缺乏用于测试任何新改进的精确的低成本工作台,在过去的一个世纪中,医学外科手术程序没有太大变化。越来越便宜和强大的计算机技术使基于计算机的手术计划和培训变得可行。在我们的工作中,我们开发了一个精确的3D胃模型,旨在改善用于治疗婴儿和新生儿胃食管反流病(GERD)的手术程序。我们基于婴儿的体内计算机断层扫描(CT)扫描生成3-D婴儿胃部模型。 CT是一种价格低廉但空间分辨率低的被广泛使用的临床成像方法。为了提高模型的准确性,我们在模型构建中使用了高分辨率的可见人类项目(VHP)。接下来,我们添加软肌肉材料属性以使3D模型可变形。然后,我们使用虚拟现实技术(如触觉设备)使3D胃部模型在受到触摸时变形。这种精确的3D胃部模型为测试新的GERD治疗外科手术程序提供了一个工作台。当改进任何手术程序时,它有可能减少或消除与动物测试有关的大量费用,并最终降低与婴儿GERD手术有关的风险。

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