Cover image for Computer Methods, Imaging and Visualization in Biomechanics and Biomedical Engineering II Selected Papers from the 17th International Symposium CMBBE and 5th Conference on Imaging and Visualization, September 7-9, 2021
Title:
Computer Methods, Imaging and Visualization in Biomechanics and Biomedical Engineering II Selected Papers from the 17th International Symposium CMBBE and 5th Conference on Imaging and Visualization, September 7-9, 2021
Author:
Tavares, João Manuel R. S. editor.
ISBN:
9783031100154
Edition:
1st ed. 2023.
Physical Description:
XIII, 292 p. 136 illus., 111 illus. in color. online resource.
Series:
Lecture Notes in Computational Vision and Biomechanics, 38
Contents:
A Spatial Markov Chain Cellular Automata Model for the Spread of Viruses -- A Novel Review of Temporomandibular Joint Replacement Options -- Could an Exoskeleton-driven Rehabilitation Treatment Improve Muscle Forces Generation in PD? A Pilot Study -- EMG Signals as a Way to Control Soft Actuators -- Movement Optimization through Musculoskeletal Modeling and Multidimensional Surface Interpolation -- Simulating the Dynamics of a Human-Exoskeleton System Using Kinematic Data with Misalignment between the Human and Exoskeleton Joints -- Modeling of Nonlinear Ultrasound Propagation in Trans-cranial MRgFUS Technique: A 2D-FEM Analysis -- Predicting Neurological Effects Associated with Traumatic Brain Injuries Using Video Analysis and Finite Element Modeling -- Dense-discrete Phase Simulations of Blood Flow in a Stenotic Coronary -- Predicting the Efficacy of Stalk Cells Following Leading Cells through a Micro-Channel Using Morphoelasticity and a Cell Shape Evolution Model -- Simulation of Cell Proliferation using a Meshless Tool -- Explicit Non-linear Finite Element Analysis for Prediction of Primary Stability in Uncemented Total Hip Arthroplasty -- Hemodynamic Effects of Entry Versus Exit Tear Size and Tissue Stiffness in Simulations of Aortic Dissection -- Reproducibility of in Vivo Constitutive Parameter Identi-Fication Based on 4D Ultrasound Strain Imaging -- A Systematic Review of the Uses and Benefits of 3-D printing in Orthopaedic Surgery.
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