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Titlebook: Computational Biomechanics for Medicine; Imaging, Modeling an Grand R. Joldes,Barry Doyle,Karol Miller Conference proceedings 2016 Springer

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https://doi.org/10.1007/3-540-27715-3ella, the quadriceps tendon, the cartilage, and knee ligaments was developed in ANSYS. For the model evaluation, 23 fresh frozen knee joints were tested in flexion/extension using a validated device. The model-predicted response was within or at the limits of the experimental corridors for all trans
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Structure Formation in Solutiones into non-overlapping constituents with different material properties. To eliminate segmentation, we propose Fuzzy C-Means (FCM) classification to assign material properties at the integration points of a finite element mesh. In this study, we present an application of the FCM tissue classificatio
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Robert G. Crittenden,Neil G. Turokion results show realistic velocity and pressure distributions of the retinal blood flow in a healthy retina compared to in-vivo measurements in the literature. This work is an initial step towards creating comprehensive patient-specific models of the retinal vasculature based on readily available f
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Quintessence and Cosmic Acceleration ones in simulated middle time-point images. This present framework also allows to introduce desired atrophy patterns at different time points to simulate non-linear progression of atrophy. This opens a way to use a biophysical model of brain deformation to evaluate methods that study the temporal p
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Structure Function Correlation on Rat Kidneyon model to the target vessel boundaries. Our experiments show that constructed coronary artery geometry from CT imaging is not only water-tight but also accurate by comparing to the manual annotated ground-truths.
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Conference proceedings 2016e computational engineering community is to extend the success of computational mechanics to fields outside traditional engineering, in particular to biology, the biomedical sciences, and medicine. We hope the research presented within this book series will contribute to overcoming this grand challenge..
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Effective Interactions between Macroions 1,le to identify the position of the tracheal bifurcation and jugular notch landmarks with a mean ± SD error of 6.1 ± 5.2 mm, with 9.1 % of the errors greater than 10 mm. This result was three times better than the standard template matching method, which gave a mean ± SD error of 18.9 ± 21.7 mm, with 33 % of the errors greater than 10 mm.
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