Bimodal distribution of osteocyte lacunar size in the human femoral cortex as revealed by micro-CT.
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F. De Carlo | A. Peele | F. De Carlo | C. Thomas | J. Clement | K.M. Hannah | C.D.L. Thomas | J.G. Clement | A.G. Peele | K. Hannah | J. G. Clement | F. D. Carlo | Kevin. Hannah | A. G. Peele
[1] Ralph Müller,et al. Hierarchical microimaging of bone structure and function , 2009, Nature Reviews Rheumatology.
[2] G. Bourne,et al. The biochemistry and physiology of bone , 1956 .
[3] Francesco De Carlo,et al. X-ray tomography system, automation, and remote access at beamline 2-BM of the Advanced Photon Source , 2006, SPIE Optics + Photonics.
[4] Mark L. Johnson,et al. Osteocytes, mechanosensing and Wnt signaling. , 2008, Bone.
[5] Minqi Li,et al. A histological assessment on the distribution of the osteocytic lacunar canalicular system using silver staining , 2007, Journal of Bone and Mineral Metabolism.
[6] Ralph Müller,et al. In silico biology of bone modelling and remodelling: adaptation , 2009, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[7] T. Buckley,et al. A Method For The Study of Internal Spaces in Hard Tissue Matrices By SEM, With Special Reference to Dentine , 1978, Journal of microscopy.
[8] R. L. Holmes,et al. Progress in anatomy , 1981 .
[9] Theo H Smit,et al. A Case for Strain‐Induced Fluid Flow as a Regulator of BMU‐Coupling and Osteonal Alignment , 2002, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[10] M. K. Knothe Tate,et al. The osteocyte. , 2004, The international journal of biochemistry & cell biology.
[11] Theo H Smit,et al. Osteocyte morphology in human tibiae of different bone pathologies with different bone mineral density--is there a role for mechanosensing? , 2009, Bone.
[12] A. Boyde. CHAPTER 8 – Scanning Electron Microscope Studies of Bone , 1972 .
[13] J. Klein-Nulend,et al. MECHANOTRANSDUCTION IN BONE : ROLE OF THE LACUNOCANALICULAR NETWORK , 1999 .
[14] H. Riesemeier,et al. Going beyond histology. Synchrotron micro-computed tomography as a methodology for biological tissue characterization: from tissue morphology to individual cells , 2009, Journal of The Royal Society Interface.
[15] Robert Lupton,et al. A Modified Magnitude System that Produces Well-Behaved Magnitudes, Colors, and Errors Even for Low Signal-to-Noise Ratio Measurements , 1999, astro-ph/9903081.
[16] E. Bonucci. The osteocyte: the underestimated conductor of the bone orchestra , 2009 .
[17] Donald L. Cooper,et al. Influence of cortical canal architecture on lacunocanalicular pore pressure and fluid flow , 2008, Computer methods in biomechanics and biomedical engineering.
[18] T. Smit,et al. Is BMU‐Coupling a Strain‐Regulated Phenomenon? A Finite Element Analysis , 2000, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[19] Benedikt Hallgrímsson,et al. Three-dimensional microcomputed tomography imaging of basic multicellular unit-related resorption spaces in human cortical bone. , 2006, The anatomical record. Part A, Discoveries in molecular, cellular, and evolutionary biology.
[20] M. Hamrick,et al. Spatial Distribution of Osteocyte Lacunae in Equine Radii and Third Metacarpals: Considerations for Cellular Communication, Microdamage Detection and Metabolism , 2005, Cells Tissues Organs.
[21] Teruko Takano-Yamamoto,et al. Three-dimensional reconstruction of chick calvarial osteocytes and their cell processes using confocal microscopy. , 2005, Bone.
[22] N. Rushton,et al. Osteocyte Lacunar Occupancy in the Femoral Neck Cortex: An Association with Cortical Remodeling in Hip Fracture Cases and Controls. , 2001, Calcified Tissue International.
[23] F. Peyrin,et al. Investigation of bone with synchrotron radiation imaging: from micro to nano , 2009, Osteoporosis International.
[24] Andrei L. Turinsky,et al. Age-dependent change in the 3D structure of cortical porosity at the human femoral midshaft. , 2007, Bone.