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Multiscale Mechano-Biological Finite Element Modelling of Oncoplastic Breast Surgery—Numerical Study towards Surgical Planning and Cosmetic Outcome Prediction

机译:肿瘤整形外科手术的多尺度力学-生物学有限元建模—针对手术计划和美容结果预测的数值研究

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摘要

Surgical treatment for early-stage breast carcinoma primarily necessitates breast conserving therapy (BCT), where the tumour is removed while preserving the breast shape. To date, there have been very few attempts to develop accurate and efficient computational tools that could be used in the clinical environment for pre-operative planning and oncoplastic breast surgery assessment. Moreover, from the breast cancer research perspective, there has been very little effort to model complex mechano-biological processes involved in wound healing. We address this by providing an integrated numerical framework that can simulate the therapeutic effects of BCT over the extended period of treatment and recovery. A validated, three-dimensional, multiscale finite element procedure that simulates breast tissue deformations and physiological wound healing is presented. In the proposed methodology, a partitioned, continuum-based mathematical model for tissue recovery and angiogenesis, and breast tissue deformation is considered. The effectiveness and accuracy of the proposed numerical scheme is illustrated through patient-specific representative examples. Wound repair and contraction numerical analyses of real MRI-derived breast geometries are investigated, and the final predictions of the breast shape are validated against post-operative follow-up optical surface scans from four patients. Mean (standard deviation) breast surface distance errors in millimetres of 3.1 (±3.1), 3.2 (±2.4), 2.8 (±2.7) and 4.1 (±3.3) were obtained, demonstrating the ability of the surgical simulation tool to predict, pre-operatively, the outcome of BCT to clinically useful accuracy.
机译:早期乳腺癌的外科手术治疗首先需要保留乳房的疗法(BCT),在保留乳房形状的同时切除肿瘤。迄今为止,很少有人尝试开发可在临床环境中用于术前计划和肿瘤整形乳房手术评估的准确有效的计算工具。此外,从乳腺癌研究的角度来看,几乎没有任何努力来模拟涉及伤口愈合的复杂的机械生物学过程。我们通过提供一个集成的数值框架来解决这个问题,该数值框架可以模拟BCT在延长的治疗和恢复期内的治疗效果。提出了一种经过验证的三维多尺度有限元程序,该程序可以模拟乳房组织变形和生理性伤口愈合。在提出的方法中,考虑了用于组织恢复和血管生成以及乳腺组织变形的基于分区的连续数学模型。通过特定于患者的代表性示例说明了所提出的数字方案的有效性和准确性。对真实的MRI衍生的乳房几何形状的伤口修复和收缩数值分析进行了研究,并针对来自四名患者的术后随访光学表面扫描验证了乳房形状的最终预测。获得的乳房平均表面距离误差(标准偏差)以毫米为单位分别为3.1(±3.1),3.2(±2.4),2.8(±2.7)和4.1(±3.3),证明了手术模拟工具能够预测,预测-在手术中,BCT的结果达到临床有用的准确性。

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