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3D Modelling of the Residual Freezing for Renal Cryoablation Simulation and Prediction

机译:肾脏冷冻消融的残余冷冻3D建模模拟和预测

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Percutaneous cryoablation has become a popular alternative to open surgery for the treatment of abdominal tumors. The preoperative planning of such interventions is an essential but complicated task. It consists in predicting the best placement for several cryoprobes to optimize the resulting iceball shape, that has to cover the whole tumor, while preserving healthy tissue and surrounding sensitive structures. In the past few years, methods have been proposed to simulate the propagation of cold within the tissue, in order to anticipate the final coverage. However, all the proposed models considered the source of cold as limited to the active tip of the cryoprobe, thus omitting a residual freezing along the probe's body. The lack of precision of the resulting models can cause an underestimation of the predicted iceball leading to potential damages to healthy tissue or pain. In this paper, we describe the extension of an existing freezing simulation model to account for this effect. We detail the experimentation of our model on 5 retrospective cases, and demonstrate the improvement of the accuracy and realism of our simulation.
机译:经皮冷冻消融已成为开放手术治疗腹部肿瘤的一种流行替代方法。此类干预的术前计划是一项必不可少但复杂的任务。它包括预测几个冷冻棒的最佳放置,以优化最终的冰球形状,该形状必须覆盖整个肿瘤,同时保留健康的组织和周围的敏感结构。在过去的几年中,已经提出了一些方法来模拟冷在组织内的传播,以便预测最终的覆盖范围。但是,所有提出的模型都将冷源限制在冷冻探头的活动尖端,从而消除了沿探头主体的残留冻结现象。所得模型缺乏精确性可能会导致对预测的冰球的估计过低,从而导致对健康组织或疼痛的潜在损害。在本文中,我们描述了现有冻结模拟模型的扩展,以解决此问题。我们详细介绍了5个回顾性案例的模型实验,并论证了模拟准确性和真实性的提高。

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