By L. Qin, Harry K. Genant, J.F. Griffith, K.S. Leung

This e-book presents 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 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 photographs of the similar organs or tissues, but additionally quantifications of the correct parameters. the development bioimaging applied sciences constructed for the above purposes also are prolonged through incorporating imaging contrast-enhancement fabrics. hence, this booklet will offer a distinct platform for multidisciplinary collaborations in schooling and joint R&D between numerous professions, together with biomedical engineering, biomaterials, and uncomplicated and scientific drugs.

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Extra resources for Advanced Bioimaging Technologies in Assessment of the Quality of Bone and Scaffold Materials: Techniques and Applications

Example text

85MPa (Kempson et al.  mm (Athanasiou et al. ). Since the majority of the joint deformation under load occurs in the acetabulum and femoral head cartilage, the underlying subchondral bone structures were assumed to be rigid. In the DEA technique, small deformation was assumed and the system of equilibrium equations was derived using the minimum strain energy principle (Schuind et al. ; Genda et al. ). The rigid body displacement field provided the deformation of the springs, which approximated the joint contact area and pressure.

The power spectrum, density and distribution give the trabecular orientation and intensity for the architectural of the cancellous bone structure Bone Structure and Biomechanical Analyses Using Imaging and Simulation Technology 33 be studied qualitatively as well as quantitatively. , the surface and internal structure and topography of tissue and their collagen type, cellular structure, and chemical composition can be visualized and studied in detail. In un-decalcified osseous tissue, micro-indentation test may be performed to estimate the mechanical property of the tissue and correlate that with morphology.

Since the majority of the joint deformation under load occurs in the acetabulum and femoral head cartilage, the underlying subchondral bone structures were assumed to be rigid. In the DEA technique, small deformation was assumed and the system of equilibrium equations was derived using the minimum strain energy principle (Schuind et al. ; Genda et al. ). The rigid body displacement field provided the deformation of the springs, which approximated the joint contact area and pressure.

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Advanced Bioimaging Technologies in Assessment of the by L. Qin, Harry K. Genant, J.F. Griffith, K.S. Leung
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