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A patient-specific FE-based methodology to simulate prosthesis insertion during an augmentation mammoplasty.

机译:一种基于患者特定FE的方法,可以在隆乳术中模拟假体的插入。

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摘要

Breast augmentation surgery is a widespread practice for aesthetic purposes. Current techniques, however, are not able to reliably predict the desired final aspect of the breast after the intervention, whose success relies almost completely on the surgeon's skill. In this way, patient-specific methodologies capable of predicting the outcomes of such interventions are of particular interest. In this paper, a finite element biomechanical model of the breast of a female patient before an augmentation mammoplasty was generated using computer tomography images. Prosthesis insertion during surgery was simulated using the theory of finite elasticity. Hyperelastic constitutive models were considered for breast tissues and silicone implants. The deformed geometry obtained from finite element analysis was compared qualitatively and quantitatively with the real breast shape of the patient lying in supine position, with root-mean-squared errors less than 3mm. The results indicate that the presented methodology is able to reasonably predict the aspect of the breast in an intermediate step of augmentation mammoplasty, and reveal the potential capabilities of finite element simulations for visualization and prediction purposes. However, further work is required before this methodology can be helpful in aesthetic surgery planning.
机译:隆胸手术是出于美学目的的广泛实践。然而,当前的技术不能在介入之后可靠地预测乳房的期望的最终方面,其成功几乎完全取决于外科医生的技能。通过这种方式,能够预测此类干预结果的特定于患者的方法尤为重要。在本文中,使用计算机断层扫描图像生成女性,在进行隆乳术前,乳房的有限元生物力学模型。使用有限弹性理论模拟了手术期间的假体插入。考虑用于乳腺组织和硅胶植入物的超弹性本构模型。从有限元分析中获得的变形几何形状与仰卧位患者的真实乳房形状进行了定性和定量比较,均方根误差小于3mm。结果表明,所提出的方法能够在隆乳术的中间步骤中合理地预测乳房的形态,并揭示了有限元模拟在可视化和预测方面的潜在能力。但是,在该方法有助于美学手术计划之前,需要做进一步的工作。

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