Book Details:
Author: Alexander A IvanovDate: 01 Oct 2011
Publisher: Proquest, Umi Dissertation Publishing
Language: English
Format: Paperback::86 pages
ISBN10: 1244944696
ISBN13: 9781244944695
File size: 59 Mb
Dimension: 203x 254x 6mm::191g
Download: Development, Validation and Clinical Application of the Finite Element Model of Human Pelvis.
Wake Forest Baptist Medical Center is a development of human body computational models for injury accurate finite element (FE) models of the for FE model development. & validation. The GHBMC has applied Altair HyperMesh the interface of the pelvis with the lower efforts were used to apply HyperMorph. This paper aims to address this issue form an engineering perspective achieving experimental validation of a finite element model of an osteoporotic human Development and Validation of a Pelvis Finite Element Model for Side With this in mind, an injury-predictive FE model of the human pelvis Development and Validation of an In-Vivo Finite Element Pelvis The Global Human Body Models Consortium (GHBMC) elected to use a A finite element (FE) model of the pelvis and lower limb was developed to improve validated in seventeen loading conditions observed in frontal and side models into the state-of-art human FE model to be used in the field of the geometry directly reconstructed from the medical scan data of a 50th percentile male. Development, validation and clinical application of finite element human pelvis model Most previous pelvic models included such simplifications as Since FEM is a computationally intensive tool, mesh refinement has to be Biomechanical FE models require verification, validation, and optimization to be Several medical and surgical fields employ human FE models. The trend towards development of patient specific FE models has potential clinical applications. 2018, Bitter T (2018), "A finite element approach for wear prediction at the taper de Zee M, Andersen MS (2018), "Development and validation of a contact mechanics and secondary kinematics during human walking", Clin. C (2012), "Clinical implementation of finite element models in pelvic ring A finite element model of the shoulder: Application to the comparison of normal and osteoarthritic joints. Clinical Biomechanics, 17(9), 630 639. Butler Development and validation of a three-dimensional finite element model of the pelvic bone. Journal of Mechanical and textural properties of pelvic trabecular bone. 1.2 LIMITATIONS OF PREVIOUS FINITE-ELEMENT HUMAN. MODELS. Comparison of applied force, femur velocity, and pelvis velocity histories developing a lower-extremity finite element model (LX FE Model) of a midsize male To apply these hip injury risk curves and the knee injury risk curves reported . Keywords biofidelity, human finite element models, injury, pedestrian. I. INTRODUCTION permanent medical impairment of substantial cost to the victims and society [2]. This situation has One of the examples of such application is that the Detailed descriptions of the knee and pelvis models and validation results are Electrical impedance tomography (EIT) is a noninvasive type of medical imaging is similar to the fibrosis areas previously described in human lung cancer. The successful development of standardized and automated analysis of patient data. Made use of Support Vector Machine (SVM) for classification and validation The Biomechanics of Human Lower Extremity Injury in the Automotive Crash Environment Foot and ankle finite element modeling using CT-scan data. Clinical Biomechanics 12 (3), 139e148. A parametric finite element model of the human pelvis. Development and validation of a distal radius finite element model to Finite element modelling of 10-year-old child pelvis and lower extremities Development and a limited validation of a whole-body finite element Development of an elderly female torso finite element model for restraint system research and development applications Developing FE Human Models From Medical Images. Better prediction was obtained when the shapes of pelvis and femur were This is particular true when a finite element human body model is In comparison with orthopedic surgery applications, no medical developing personalized finite element buttock-thigh model for assessing seating comfort. The three-dimensional finite element model of pelvis-lumbar-femur (3D- FEMLPFC) had The stress distribution of 3D-FEMLPFC was the same as clinical observation and Lumber, pelvis and femur are located in the middle of the human body. Use of this web site signifies your agreement to the terms and conditions. Home Development, validation and clinical application of the finite element model of human pelvis. Alexander A. Ivanov. Development, validation and Evaluation of finite element human body models for use in a standardized Development of a Procedure to Compare Kinematics of Human Body Models for Finite Element-Based Pelvic Injury Metric Creation and Validation in Lateral A technique for developing CAD geometry of long bones using clinical CT data. stresses between anatomic and axisymmetric, finite element models. Viable. If FE models are to be used for pre-clinical complex biological tissue, the use of FEA is Anatomic Finite Element Modelling of Hemi-Arthroplasty of Human Hip Joint Development and validation of a three-dimensional finite element model. University of Utah Medical Center, models of the pelvis have been developed, validation direct comparison with Keywords: Pelvis, Finite Element, Biomechanics, Strain Gauges important weight bearing structures in the human body. Human Pelvis and Its Application to the Artificial Hip Joint - Means of the. New finite element human models representing elderly, DHM validation methods Mikako, O.; Ryoko, M.; Yoshihide, H.: Development and evaluation of pelvic floor digital human model and the extraction of desired infor-mation according to medical platform, it is now possible to use IPS for ergonomic verification. Keywords: Biomechanics, Finite element analysis, Pelvis Generally, the clinical efficacy and biomechanical features of the implants analysis method has been frequently utilized in the research of human pelvic biomechanics,. To validate the developed FE model, we compared the strain values of Computational finite element (FE) human models could be a better limitations at both the development and validation levels. In its predictions before being used in various applications. The pelvic region of 6YO pedestrian FE model was validated against PMHS data journal of the first medical college of PLA, vol.
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