By L. Qin, Harry K. Genant, J.F. Griffith, K.S. Leung
This publication offers a point of view at the present prestige of bioimaging applied sciences constructed to evaluate the standard of musculoskeletal tissue with an emphasis on bone and cartilage. It bargains reviews of scaffold biomaterials built for boosting the fix of musculoskeletal tissues. those bioimaging ideas contain micro-CT, nano-CT, pQCT/QCT, MRI, and ultrasound, which supply not just 2-D and 3-D photographs of the similar organs or tissues, but additionally quantifications of the correct parameters. the improvement bioimaging applied sciences constructed for the above purposes also are prolonged through incorporating imaging contrast-enhancement fabrics. therefore, this publication will offer a distinct platform for multidisciplinary collaborations in schooling and joint R&D between a variety of professions, together with biomedical engineering, biomaterials, and uncomplicated and scientific drugs.
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Extra info for Advanced Bioimaging Technologies in Assessment of the Quality of Bone and Scaffold Materials: Techniques and Applications
SPIE, Newport Beach, California, pp – Feldkamp LA, Goldstein SA, Parﬁtt AM, Jesion G, Kleerekoper M () The direct examination of three-dimensional bone architecture in vitro by computed tomography. J Bone Miner Res :– Genant HK, Engelke K, Fuerst T, Glüer CC, Grampp S, Harris ST, Jergas M, Lang T, Lu Y, Majumdar S, Mathur A, Takada M () Noninvasive assessment of bone mineral and structure: state of the art. J Bone Miner Res :– Gordon CL, Lang TF, Augat P, Genant HK () Image-based assessment of spinal trabecular bone structure from high-resolution CT images.
Bone Structure and Biomechanical Analyses Using Imaging and Simulation Technology 29 One such simulation software is the VIMS for biomechanical analysis (Chao ). This system contains three major parts: (a) the model-making programs; (b) the analysis tools; and (c) a virtual laboratory to execute experiments or theoretical studies while being able to inspect and document analysis results incorporated on a computer-based working platform (Fig. ). Although individualized working platforms are located in each laboratory or the investigator’s oﬃce, all users can be connected and interactive through the Internet.
This simulation technology unites the expertise in biomechanical analysis and graphic modelling to investigate joint and connective tissue mechanics and to visualize the results in both static and animated forms. Adaptable anatomical models, including implants and fracture ﬁxation devices and a computational infrastructure, are readily available for static, kinematic, inverse and forward dynamic, joint contact pressure, as well as stress and strain analyses under varying boundary and loading conditions (Fig.
Advanced Bioimaging Technologies in Assessment of the Quality of Bone and Scaffold Materials: Techniques and Applications by L. Qin, Harry K. Genant, J.F. Griffith, K.S. Leung