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基于计算机的多分辨率物理面部皮瓣和唇裂重建模拟

Computer-based Simulation of Facial Flap and Cleft Lip Reconstruction Using Multiresolution Physics.

作者信息

Wang Qisi, Cutting Court B, Sifakis Eftychios

机构信息

From the Computer Graphics Laboratory, University of Wisconsin, Madison, WI.

Hansjorg Wyss Department of Plastic Surgery, New York University Medical Center, New York, NY.

出版信息

Plast Reconstr Surg Glob Open. 2025 Jun 2;13(6):e6820. doi: 10.1097/GOX.0000000000006820. eCollection 2025 Jun.

Abstract

Computer-based simulation of complex local flap reconstructions of the face requires very high-density finite elements to render accurately due to the intricate incision designs frequently used. This is particularly true in detailed cleft lip/nose repairs. If the entire anatomic model is embedded in a high-resolution solid lattice, the element count becomes so high that simulator performance is very slow, even on a high-performance workstation. This article introduces a simulator in which the model is initially presented at a low, but acceptable physical resolution. As the surgeon operates on the model, only the areas impacted are recut at very high resolution. This surgical subvolume is then merged back into the rest of the model. The dramatic reduction in finite element count results in a surgical simulation program that is quite fast, even on a modest personal computer. This article presents examples of this simulator used in a variety of facial flap and cleft lip reconstructions. Future uses in plastic surgery for patient-specific simulation, education, and illustration are discussed. The simulator is available as free, open-source software.

摘要

由于面部复杂局部皮瓣重建经常使用复杂的切口设计,基于计算机的模拟需要非常高密度的有限元才能精确呈现。这在详细的唇裂/鼻修复中尤为如此。如果将整个解剖模型嵌入高分辨率的实体晶格中,单元数量会变得非常高,以至于即使在高性能工作站上,模拟器的性能也会非常缓慢。本文介绍了一种模拟器,其中模型最初以低但可接受的物理分辨率呈现。当外科医生在模型上操作时,只有受影响的区域以非常高的分辨率重新切割。然后将这个手术子体积合并回模型的其余部分。有限元数量的大幅减少使得手术模拟程序即使在普通个人计算机上也相当快。本文展示了该模拟器在各种面部皮瓣和唇裂重建中的应用实例。还讨论了其在整形手术中用于患者特定模拟、教育和图示的未来用途。该模拟器作为免费的开源软件提供。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b4e/12133145/cba14833639c/gox-13-e6820-g001.jpg

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