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Advanced Bioimaging Technologies in Assessment of the Quality of Bone and Scaffold Materials

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Table of Contents

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    Book Overview
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    Chapter 1 Perspectives on Advances in Bone Imaging for Osteoporosis
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    Chapter 2 Bone Structure and Biomechanical Analyses Using Imaging and Simulation Technology
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    Chapter 3 Imaging Technologies for Orthopaedic Visualization and Simulation
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    Chapter 4 In-Vivo Bone Mineral Density and Structures in Humans: From Isotom Over Densiscan to Xtreme-CT
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    Chapter 5 Calibration of Micro-CT Data for Quantifying Bone Mineral and Biomaterial Density and Microarchitecture
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    Chapter 6 Repositioning of the Region of Interest in the Radius of the Growing Child in Follow-up Measurements by pQCT
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    Chapter 7 Non-invasive Bone Quality Assessment Using Quantitative Ultrasound Imaging and Acoustic Parameters
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    Chapter 8 Cortical Bone Mineral Status Evaluated by pQCT, Quantitative Backscattered Electron Imaging and Polarized Light Microscopy
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    Chapter 9 High-Fidelity Histologic Three-Dimensional Analysis of Bone and Cartilage
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    Chapter 10 Application of Laser Scanning Confocal Microscopy in Musculoskeletal Research
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    Chapter 11 Fiber-optic Nano-biosensors and Near-Field Scanning Optical Microscopy for Biological Imaging
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    Chapter 12 Changes of Biological Function of Bone Cells and Effect of Anti-osteoporosis Agents on Bone Cells
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    Chapter 13 Bone Histomorphometry in Various Metabolic Bone Diseases Studied by Bone Biopsy in China
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    Chapter 14 Cell Traction Force Microscopy
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    Chapter 15 Contrast-Enhanced Micro-CT Imaging of Soft Tissues
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    Chapter 16 Materials Selection and Scaffold Fabrication for Tissue Engineering in Orthopaedics
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    Chapter 17 Quantification of Porosity, Connectivity and Material Density of Calcium Phosphate Ceramic Implants Using Micro-Computed Tomography
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    Chapter 18 Bone Densitometries in Assessing Bone Mineral and Structural Profiles in Patients with Adolescent Idiopathic Scoliosis
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    Chapter 19 Application of Nano-CT and High-Resolution Micro-CT to Study Bone Quality and Ultrastructure, Scaffold Biomaterials and Vascular Networks
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    Chapter 20 Bio-imaging Technologies in Studying Bone-Biomaterial Interface: Applications in Experimental Spinal Fusion Model
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    Chapter 21 Assessment of Bone, Cartilage, Tendon and Bone Cells by Confocal Laser Scanning Microscopy
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    Chapter 22 TEM Study of Bone and Scaffold Materials
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    Chapter 23 Material and Structural Basis of Bone Fragility: A Rational Approach to Therapy
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    Chapter 24 Application of Micro-CT and MRI in Clinical and Preclinical Studies of Osteoporosis and Related Disorders
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    Chapter 25 CT-Based Microstructure Analysis for Assessment of Bone Fragility
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    Chapter 26 Discrimination of Contributing Factors to Bone Fragility Using vQCT In Vivo
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    Chapter 27 Osteoporosis Research with the vivaCT40
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    Chapter 28 Mechanical Properties of Vertebral Trabeculae with Ageing Evaluated with Micro-CT
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    Chapter 29 MRI Evaluation of Osteoporosis
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    Chapter 30 Multiple Bio-imaging Modalities in Evaluation of Epimedium-Derived Phytoestrogenic Fraction for Prevention of Postmenopausal Osteoporosis
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    Chapter 31 Areal and Volumetric Bone Densitometry in Evaluation of Tai Chi Chuan Exercise for Prevention of Postmenopausal Osteoporosis
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    Chapter 32 Enhancement of Osteoporotic Bone Using Injectable Hydroxyapatite in OVX Goats Evaluated by Multi-imaging Modalities
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    Chapter 33 Quality of Healing Compared Between Osteoporotic Fracture and Normal Traumatic Fracture
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    Chapter 34 Monitoring Fracture Healing Using Digital Radiographies
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    Chapter 35 Fracture Callus Under Anti-resorptive Agent Treatment Evaluated by pQCT
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    Chapter 36 Volumetric Measurement of Osteonecrotic Femoral Head Using Computerized MRI and Prediction For Its Mechanical Properties
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    Chapter 37 Biomedical Engineering in Surgical Repair of Osteonecrosis: the Role of Imaging Technology
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    Chapter 38 Contrast-Enhanced MRI and Micro-CT Adopted for Evaluation of a Lipid-Lowering and Anticoagulant Herbal Epimedium-Derived Phytoestrogenic Extract for Prevention of Steroid-Associated Osteonecrosis
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    Chapter 39 Nanomechanics of Bone and Bioactive Bone-Cement Interfaces
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    Chapter 40 Subchondral Bone Microarchitecture Changes in Animal Models of Arthritis
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    Chapter 41 Microarchitectural Adaptations of Primary Osteoarthrotic Subchondral Bone
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    Chapter 42 Ultrasonic Characterization of Dynamic Depth-Dependent Biomechanical Properties of Articular Cartilage
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    Chapter 43 Mechanical Property of Trabecular Bone of the Femoral Heads from Osteoarthritis and Osteoporosis Patients
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Title
Advanced Bioimaging Technologies in Assessment of the Quality of Bone and Scaffold Materials
Published by
Springer Berlin Heidelberg, July 2007
DOI 10.1007/978-3-540-45456-4
ISBNs
978-3-54-045454-0, 978-3-54-045456-4
Editors

Qin, Ling, Genant, Harry K., Griffith, James F., Leung, Kwok Sui

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Mendeley readers

The data shown below were compiled from readership statistics for 69 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 1%
Portugal 1 1%
Belgium 1 1%
Unknown 66 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 20 29%
Researcher 12 17%
Student > Master 11 16%
Student > Bachelor 3 4%
Professor 2 3%
Other 12 17%
Unknown 9 13%
Readers by discipline Count As %
Engineering 14 20%
Medicine and Dentistry 10 14%
Agricultural and Biological Sciences 10 14%
Materials Science 8 12%
Chemistry 3 4%
Other 9 13%
Unknown 15 22%