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Patient-specific pediatric silicone heart valve models based on 3D ultrasound

机译:基于3D超声的患者专用小儿硅胶心脏瓣膜模型

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PURPOSE: Patient-specific heart and valve models have shown promise as training and planning tools for heart surgery, but physically realistic valve models remain elusive. Available proprietary, simulation-focused heart valve models are generic adult mitral valves and do not allow for patient-specific modeling as may be needed for rare diseases such as congenitally abnormal valves. We propose creating silicone valve models from a 3D-printed plastic mold as a solution that can be adapted to any individual patient and heart valve at a fraction of the cost of direct 3D-printing using soft materials. METHODS: Leaflets of a pediatric mitral valve, a tricuspid valve in a patient with hypoplastic left heart syndrome, and a complete atrioventricular canal valve were segmented from ultrasound images. A custom software was developed to automatically generate molds for each valve based on the segmentation. These molds were 3D-printed and used to make silicone valve models. The models were designed with cylindrical rims of different sizes surrounding the leaflets, to show the outline of the valve and add rigidity. Pediatric cardiac surgeons practiced suturing on the models and evaluated them for use as surgical planning and training tools. RESULTS: Five out of six surgeons reported that the valve models would be very useful as training tools for cardiac surgery. In this first iteration of valve models, leaflets were felt to be unrealistically thick or stiff compared to real pediatric leaflets. A thin tube rim was preferred for valve flexibility. CONCLUSION: The valve models were well received and considered to be valuable and accessible tools for heart valve surgery training. Further improvements will be made based on surgeons' feedback.
机译:目的:针对患者的心脏和瓣膜模型已被证明是用于心脏手术的培训和计划工具,但是物理上逼真的瓣膜模型仍然难以捉摸。可用的专有的,以仿真为重点的心脏瓣膜模型是普通的成人二尖瓣,不能像罕见疾病(例如先天性异常瓣膜)所需要的那样,进行针对患者的建模。我们建议使用3D打印的塑料模具创建硅胶阀模型,作为一种解决方案,它可以适应任何个人患者和心脏瓣膜,而使用软材料直接进行3D打印的成本却要低一些。方法:从超声图像中分割出小儿二尖瓣,小叶左心综合征患者的三尖瓣和完整的房室瓣小叶。开发了一个定制软件,可以根据分段为每个阀自动生成模具。这些模具经过3D打印,并用于制作硅胶阀模型。模型设计成在小叶周围具有不同大小的圆柱形边缘,以显示瓣膜的轮廓并增加刚度。小儿心脏外科医生对模型进行了缝合,并对其进行了评估,以用作外科手术计划和培训工具。结果:六分之三的外科医生报告说,瓣膜模型作为心脏手术的培训工具非常有用。在瓣膜模型的第一次迭代中,与真正的儿科小叶相比,小叶感觉不实际地厚或硬。为了阀的灵活性,最好使用细管沿。结论:瓣膜模型广受好评,被认为是用于心脏瓣膜手术培训的有价值且可访问的工具。将根据外科医生的反馈进行进一步的改进。

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