An ex vivo model to study transport processes and fluid flow in loaded bone.
暂无分享,去创建一个
[1] H. Frost,et al. A determinant of bone architecture. The minimum effective strain. , 1983, Clinical orthopaedics and related research.
[2] G. Cochran,et al. A comparative analysis of streaming potentials in vivo and in vitro , 1992, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[3] J. J. Hamilton,et al. Bone strain sensation via transmembrane potential changes in surface osteoblasts: loading rate and microstructural implications. , 1993, Journal of biomechanics.
[4] Marvin W. Johnson,et al. Fluid flow in bone in vitro. , 1982, Journal of biomechanics.
[5] K. Piekarski,et al. Transport mechanism operating between blood supply and osteocytes in long bones , 1977, Nature.
[6] F. W. Rhinelander. CHAPTER 1 – Circulation in Bone , 1972 .
[7] W. Walsh,et al. Streaming potential of intact wet bone. , 1990, Journal of biomechanics.
[8] S C Cowin,et al. Implementation of strain rate as a bone remodeling stimulus. , 1995, Journal of biomechanical engineering.
[9] R Huiskes,et al. From structure to process, from organ to cell: recent developments of FE-analysis in orthopaedic biomechanics. , 1993, Journal of biomechanical engineering.
[10] H. Régis,et al. Use of labeled microspberes for simultaneous determination of total and regional blood flows in canine femur , 1980 .
[11] S. Cowin,et al. Candidates for the mechanosensory system in bone. , 1991, Journal of biomechanical engineering.
[12] A. van der Plas,et al. Sensitivity of osteocytes to biomechanical stress in vitro , 1995, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[13] P. Kelly,et al. Use of tracer microspheres to measure bone blood flow in conscious dogs , 1980, Calcified Tissue International.
[14] Dennis A. Chakkalakal,et al. Mechanoelectric transduction in bone , 1989 .
[15] S. Pollack,et al. The origin of stress‐generated potentials in fluid‐saturated bone , 1983, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[16] B. Siegel,et al. 19 – Bone Tracers: Radionuclide Imaging and Related Techniques , 1979 .
[17] J. P. Lavender,et al. Blood flow and tracer uptake in normal and abnormal canine bone: comparisons with Sr-85 microspheres, Kr-81m, and Tc-99m MDP. , 1979, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[18] L. Lanyon,et al. Regulation of bone formation by applied dynamic loads. , 1984, The Journal of bone and joint surgery. American volume.
[19] M W Otter,et al. Mechanotransduction in bone: do bone cells act as sensors of fluid flow? , 1994, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[20] P. Kelly,et al. 17 – Blood Flow and Ion Exchange in Bone , 1979 .
[21] D B Burr,et al. The effects of altered strain environments on bone tissue kinetics. , 1989, Bone.
[22] P. Niederer,et al. In vivo tracer transport through the lacunocanalicular system of rat bone in an environment devoid of mechanical loading. , 1998, Bone.
[23] A. Goodship,et al. Functional adaptation of bone to increased stress. An experimental study. , 1979, The Journal of bone and joint surgery. American volume.
[24] P. Kelly,et al. Interstitial fluid flow in cortical bone. , 1988, Microvascular research.
[25] J. Hert,et al. Reaction of bone to mechanical stimuli. 1. Continuous and intermittent loading of tibia in rabbit. , 1971, Folia morphologica.
[26] S. Cowin,et al. Mechanotransduction in Bone , 1998 .
[27] D. Gross,et al. Streaming potential and the electromechanical response of physiologically-moist bone. , 1982, Journal of biomechanics.
[28] P. Niederer,et al. Experimental elucidation of mechanical load-induced fluid flow and its potential role in bone metabolism and functional adaptation. , 1998, The American journal of the medical sciences.
[29] S. Pollack,et al. Electromechanical potentials in cortical bone--II. Experimental analysis. , 1987, Journal of biomechanics.
[30] F. P. Patterson,et al. Measurement of the rate and distribution of the nutrient and other arterial blood supply in long bones of the rabbit. A study of the relative contribution of the three arterial systems. , 1968, The Journal of bone and joint surgery. British volume.
[31] F. Margadant,et al. A precise light attenuation correction for confocal scanning microscopy with O(n4/3) computing time and O(n) memory requirements for n voxels , 1996 .
[32] J. Chalmers. Calcium, Parathyroid Hormone and the Calcitonins , 1973 .
[33] D. Carter. Mechanical loading history and skeletal biology. , 1987, Journal of biomechanics.
[34] M. Marcus,et al. Measurement of blood flow to bone and marrow in experimental animals by means of the microsphere technique. , 1981, The Journal of bone and joint surgery. American volume.
[35] R. Duncan,et al. Human osteoblast-like cells respond to mechanical strain with increased bone matrix protein production independent of hormonal regulation. , 1995, Endocrinology.
[36] W. Seliger. Tissue fluid movement in compact bone , 1970, The Anatomical record.
[37] G A Livesay,et al. The use of a universal force-moment sensor to determine in-situ forces in ligaments: a new methodology. , 1995, Journal of biomechanical engineering.
[38] Charkes Nd,et al. Studies of Skeletal Tracer Kinetics. III. Tc-99m(Sn)methylenediphosphonate Uptake in the Canine Tibia as a Function of Blood Flow , 1979 .
[39] L. Lanyon,et al. Mechanical function as an influence on the structure and form of bone. , 1976, The Journal of bone and joint surgery. British volume.
[40] J. Hert,et al. Reaction of bone to mechanical stimuli , 1972 .
[41] L. Lanyon,et al. Osteoregulatory nature of mechanical stimuli: Function as a determinant for adaptive remodeling in bone , 1987, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[42] E. Korostoff,et al. Stress-induced potentials in moist bone in vitro. , 1974, The Journal of bone and joint surgery. American volume.
[43] A Chamay,et al. Mechanical influences in bone remodeling. Experimental research on Wolff's law. , 1972, Journal of biomechanics.
[44] M P Akhter,et al. A noninvasive, in vivo model for studying strain adaptive bone modeling. , 1991, Bone.
[45] R. Dillaman,et al. Fluid movement in bone: theoretical and empirical. , 1991, Journal of biomechanics.
[46] R. Keanini,et al. A theoretical model of circulatory interstitial fluid flow and species transport within porous cortical bone. , 1995, Journal of biomechanics.