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Bone Reconstruction and Depth Control During Laser Ablation

机译:激光烧蚀过程中的骨重建和深度控制

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Cutting bones using laser light has been studied by several groups over the last decades. Yet, the risk of cutting nerves or soft tissues behind the bone is still an untackled problem. When performing tissue ablation such as bone, an acoustic signal is emitted. This paper presents a numerical framework that takes advantage of this acoustic signal to reconstruct not only the structure of the bone but also estimates the current cut position and depth. We employ an inverse problems approach to estimate the bone structure followed by an optimal control step to localize the position and depth of the signal source, i.e. the position of the cut. Besides the methodological description we also present numerical simulations in two dimensions with realistic mixed soft- and hard-tissue objects.
机译:在过去的几十年中,几组研究了使用激光切割骨头的方法。但是,切断骨头后的神经或软组织的风险仍然是一个尚未解决的问题。当执行诸如骨头的组织消融时,发出声信号。本文提出了一个数值框架,利用该声音信号不仅可以重建骨骼的结构,还可以估计当前的切割位置和深度。我们采用逆问题方法来估计骨骼结构,然后采用最佳控制步骤来定位信号源的位置和深度,即切口的位置。除了方法上的描述外,我们还提供了二维的数值模拟,其中包含了实际混合的软组织和硬组织对象。

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