By L. Qin, Harry K. Genant, J.F. Griffith, K.S. Leung
This ebook presents a point of view at the present prestige of bioimaging applied sciences built 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 strategies contain micro-CT, nano-CT, pQCT/QCT, MRI, and ultrasound, which offer not just 2-D and 3-D photos of the similar organs or tissues, but in addition quantifications of the appropriate parameters. the development bioimaging applied sciences built for the above functions also are prolonged through incorporating imaging contrast-enhancement fabrics. hence, this booklet will supply a distinct platform for multidisciplinary collaborations in schooling and joint R&D between a number of professions, together with biomedical engineering, biomaterials, and simple and scientific medication.
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This e-book offers a point of view at the present prestige of bioimaging applied sciences built to evaluate the standard of musculoskeletal tissue with an emphasis on bone and cartilage. It deals reviews of scaffold biomaterials constructed for reinforcing the fix of musculoskeletal tissues. those bioimaging thoughts comprise micro-CT, nano-CT, pQCT/QCT, MRI, and ultrasound, which offer not just 2-D and 3-D pictures of the comparable organs or tissues, but additionally quantifications of the proper parameters.
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Extra info for Advanced Bioimaging Technologies in Assessment of the Quality of Bone and Scaffold Materials: Techniques and Applications
Presented at the th Int bone Densitometry Workshop, 4 – 8 October , Wisconsin Engelke K, Hahn M, Takada M et al. () Structural analysis of high resolution in vitro MR images compared to stained grindings. Calcif Tissue Int :– Faulkner KG, Cann CE, Hasegawa BH () CT-derived ﬁnite element model to determine vertebral cortex strength In: Loew MH (ed) Medical imaging IC: image processing, vol . 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.
Rationales for Biomechanical Analysis in a Simulation Environment The “Virtual Human” provides an ideal environment for biomechanical analyses and simulation, which is demonstrated later in this chapter (Spitzer ). With further development, this technology will form a broad technical resource with full-featured analysis capability, robust model library and database, and a well-facilitated environment to conduct biomechanical analysis in a virtual laboratory for basic science and clinical investigations.
Dynamic MRI is being developed to provide time-related activity of soft tissues, oﬀering the most unique information to study musculoskeletal system function and degeneration. With further improvement in accuracy and resolution, tendon-to-bone insertion sites can be studied in a dynamic and totally non-invasive manner. The use of special radio energy emission labelling agents, such as the radio-isotope applied to speciﬁc tissue type, can produce D integrated multi-modality visualization, which will revolutionize musculoskeletal system biomechanical analysis in normal persons and patients with a wide variety of musculoskeletal conditions.
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