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Towards rapid prediction of personalised muscle mechanics: integration with diffusion tensor imaging

机译:朝着个性化肌肉力学的快速预测:与扩散张量成像集成

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Diffusion tensor imaging (DTI) has been widely used to characterise the 3D fascicle architecture in muscle mechanics. However, the computational expense associated with continuum models make their use in graphics and medical visualisation intractable. This study presents an integration of continuum muscle mechanics with partial least-squares regression to create a fast mechanostatistical model. We use the human gastrocnemius muscle (medial and lateral heads) as an example informed though DTI. Our statistical models predicted muscle shape (within 0.063 mm root-mean-square (RMS) error), musculotendon force (within 1% error), and tissue strain (within 8% max error during muscle contraction), compared to a finite-element model simulation. The technique presented here is a step towards integrating expensive continuum mechanics with fast rigid body solutions in biomechanics. While muscle force is a primary objective in rigid body solvers the additional information including 3D muscle shape and stress/strain fields may now be integrated. One of the key benefits is that muscle interaction with other soft tissues is accounted for, muscle moment arms are not estimated, and the detailed rich 3D continuum fascicle architecture is no longer simplified but plays a full role in biomechanics simulation. This has implications for musculoskeletal biomechanics, orthopaedics and medical visualisation.
机译:扩散张量成像(DTI)已被广泛用于在肌肉力学中表征3D Fascicle架构。然而,与连续模型相关的计算费用使其在图形和医学可视化难以处理的中使用。本研究介绍了连续肌肉力学与部分最小二乘回归的一体化,以创建快速的机械模型。我们使用人胃肠肌(内侧和横向头)作为示例,虽然DTI通知。与有限元素相比,我们的统计模型预测了肌肉形状(在0.063mm的根均方(RMS)误差中,肌肉育突(1%误差内)和组织菌株(在肌肉收缩期间的8%内)模型模拟。这里提出的技术是朝向在生物力学中与快速刚体溶液集成昂贵的连续体力学的步骤。虽然肌肉力是刚体中的主要目标,但现在可以集成包括3D肌肉形状和应力/应变场的附加信息。其中一个主要益处是,肌肉相互作用被占据了与其他软组织的互动,肌肉矩武器被估计,并且详细的富含3D连续体架构不再简化,但在生物力学模拟中发挥着全部作用。这对肌肉骨骼生物力学,骨科和医学可视化有影响。

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