2D and 3D Quantification of Bone Structure and its Changes in Microgravity Condition by Measures of Complexity
暂无分享,去创建一个
D. Felsenberg | P. Fratzl | P. Saparin | G. Beller | J. Thomsen | C. Asbeck
[1] Jürgen Kurths,et al. Modeling Bone Resorption in 2D CT and 3D muct Images , 2005, Int. J. Bifurc. Chaos.
[2] Jesper Skovhus Thomsen,et al. Quantification of spatial structure of human proximal tibial bone biopsies using 3D measures of complexity. , 2005, Acta astronautica.
[3] S Prohaska,et al. Stereological measures of trabecular bone structure: comparison of 3D micro computed tomography with 2D histological sections in human proximal tibial bone biopsies , 2005, Journal of microscopy.
[4] Hans-Christian Hege,et al. Interactive exploration of large remote micro-CT scans , 2004, IEEE Visualization 2004.
[5] Sharmila Majumdar,et al. Trabecular Bone Microarchitecture Is Deteriorated in Men With Spinal Cord Injury , 2003, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[6] L. Mosekilde,et al. Predicting human vertebral bone strength by vertebral static histomorphometry. , 2002, Bone.
[7] J S Thomsen,et al. A new method of comprehensive static histomorphometry applied on human lumbar vertebral cancellous bone. , 2000, Bone.
[8] J. Zerwekh,et al. The Effects of Twelve Weeks of Bed Rest on Bone Histology, Biochemical Markers of Bone Turnover, and Calcium Homeostasis in Eleven Normal Subjects , 1998, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[9] J S Thomsen,et al. Relationships between static histomorphometry and bone strength measurements in human iliac crest bone biopsies. , 1998, Bone.
[10] H. Gundersen,et al. Quantification of connectivity in cancellous bone, with special emphasis on 3-D reconstructions. , 1993, Bone.
[11] L. Vico,et al. Bone tissue response to four-month antiorthostatic bedrest: A bone histomorphometric study , 1992, Calcified Tissue International.
[12] F. M. Carter,et al. The Mechanical Properties of the Canine Lumbar Disc and Motion Segment , 1992, Spine.
[13] A. Leblanc,et al. Bone mineral loss and recovery after 17 weeks of bed rest , 1990, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[14] B V Morukov,et al. Effects of a bisphosphonate (1-hydroxy ethylidene-1,1 bisphosphonic acid) on osteoclast number during prolonged bed rest in healthy humans. , 1989, Metabolism: clinical and experimental.
[15] B. Vernon‐roberts,et al. Variation in histomorphometric estimates across different sites of the iliac crest. , 1989, Journal of clinical pathology.
[16] D Chappard,et al. Effects of a 120 day period of bed-rest on bone mass and bone cell activities in man: attempts at countermeasure. , 1987, Bone and mineral.
[17] B Krølner,et al. Vertebral bone loss: an unheeded side effect of therapeutic bed rest. , 1983, Clinical science.
[18] F. Melsen,et al. An Evaluation of the Quantitative Parameters Applied in Bone Histology , 1978, Acta pathologica et microbiologica Scandinavica. Section A, Pathology.
[19] A. Nachemson,et al. Development of osteopenia in the fourth lumbar vertebra during prolonged bed rest after operation for scoliosis. , 1975, Acta orthopaedica Scandinavica.
[20] H. A. Ellis,et al. Quantitative observations on mineralized and non-mineralized bone in the iliac crest , 1972, Journal of clinical pathology.
[21] R. Müller,et al. Time-lapsed microstructural imaging of bone failure behavior. , 2004, Journal of biomechanics.
[22] P. Saparin,et al. Static Histomorphometry of the iliac crest after 360 days of antiorthostatic bed rest with and without countermeasures , 2004 .
[23] S. Prohaska,et al. Quantification of changes in human bone structure at different skeletal locations using measures of complexity , 2003 .
[24] H. Hege,et al. A Virtual Laboratory for Assessment of Bone Biopsies , 2003 .
[25] H. Hege,et al. Architectural Reasons for the Femoral Neck Fracture Location , 2003 .
[26] Jürgen Kurths,et al. 2D and 3D bone modelling for analysis of changes in the bone architecture and for evaluation of structural measures. , 2003 .
[27] D. Dempster,et al. Trabecular architecture in iliac crest bone biopsies: infra-individual variability in structural parameters and changes with age. , 1988, Bone.
[28] W. Visser,et al. Bone density in the iliac crest. , 1981, Metabolic bone disease & related research.
[29] Matsnev Ei,et al. Effect of antiorthostatic bed rest on the human body. , 1976 .
[30] Mikhaĭlov Vm,et al. Physiological effects induced by antiorthostatic hypokinesia. , 1976 .
[31] L. I. Kakurin,et al. Antiorthostatic hypokinesia as a method of weightlessness simulation. , 1976, Aviation, space, and environmental medicine.