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Surface deformation tracking and modeling of soft materials

机译:软材料的表面变形跟踪和建模

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摘要

Characterizing the mechanical properties of skin may lead to improvements in surgical scarring, burns treatments, artificial skin science, and disease detection. We present a method of validating a phase-based crosscorrelation method of material point tracking, used to measure surface deformations in soft tissues, using a silicone gel phantom. Tracking of a high spatial-resolution speckle pattern was validated using independent fluorescent microsphere markers. A finite element mesh was deformed according to the tracked speckle pattern, and used to predict the location of the markers. Predictions of microsphere location were compared to stereo-reconstructions. Under a 2900 μm indentation, markers under rms displacements of 125 μm produced a discrepancy between prediction and reconstruction of 23 μm. The same deformation conditions were used to illustrate the use of surface tracking for identifying mechanical properties. A force-driven finite element mesh, using a Neo-Hookean constitutive model, reproduced the surface deformation with an rms error of 172 μm.
机译:表征皮肤的机械特性可能会导致手术疤痕,烧伤治疗,人工皮肤科学和疾病检测的改善。我们提出一种验证基于相位的材料点跟踪的互相关方法的方法,该方法用于使用硅胶体模来测量软组织中的表面变形。使用独立的荧光微球标记验证了对高空间分辨率斑点图案的跟踪。根据跟踪的斑点图案使有限元网格变形,并用于预测标记的位置。将微球位置的预测与立体重建进行了比较。在2900μm的压痕下,有效值位移为125μm的标记在预测和重建之间存在23μm的差异。使用相同的变形条件来说明使用表面跟踪来识别机械性能。力驱动的有限元网格使用Neo-Hookean本构模型重现了表面变形,均方根误差为172μm。

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