Do capsular pressure and implant motion interact to cause high pressure in the periprosthetic bone in total hip replacement?
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[1] U. Edlund,et al. Fluid pressure and flow as a cause of bone resorption , 2010, Acta orthopaedica.
[2] Mohammed Rafiq Abdul Kadir,et al. Interface Micromotion of Cementless Hip Stems in Simulated Hip Arthroplasty , 2009 .
[3] L. Johansson,et al. Bone resorption induced by fluid flow. , 2009, Journal of biomechanical engineering.
[4] H. Gill,et al. The femoral stem pump in cemented hip arthroplasty: an in vitro model. , 2008, Medical engineering & physics.
[5] P. Laugier,et al. Application of Biot's theory to ultrasonic characterization of human cancellous bones: determination of structural, material, and mechanical properties. , 2008, The Journal of the Acoustical Society of America.
[6] Yong-San Yoon,et al. Primary stability of cementless stem in THA improved with reduced interfacial gaps. , 2008, Journal of biomechanical engineering.
[7] A. Smailys,et al. Intracapsular pressure and elasticity of the hip joint capsule in osteoarthritis. , 2007, The Journal of arthroplasty.
[8] Eric A Nauman,et al. Effect of porosity on the fluid flow characteristics and mechanical properties of tantalum scaffolds. , 2005, Journal of biomedical materials research. Part B, Applied biomaterials.
[9] S. Santavirta,et al. The microenvironment around total hip replacement prostheses. , 2005, Clinical orthopaedics and related research.
[10] L. Ryd,et al. A comparison of structural and mechanical properties in cancellous bone from the femoral head and acetabulum , 2004, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[11] Robert B Bourne,et al. A quantitative analysis of bone support comparing cementless tapered and distal fixation total hip replacements. , 2004, The Journal of arthroplasty.
[12] P. Aspenberg,et al. PMMA particles and pressure—a study of the osteolytic properties of two agents proposed to cause prosthetic loosening , 2003, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[13] Sean S Kohles,et al. Linear poroelastic cancellous bone anisotropy: trabecular solid elastic and fluid transport properties. , 2002, Journal of biomechanical engineering.
[14] M. Freeman,et al. The natural history and significance of radiolucent lines at a cemented femoral interface. , 2002, The Journal of bone and joint surgery. British volume.
[15] M. Jeyam,et al. Synergistic effect of particles and cyclic pressure on cytokine production in human monocyte/macrophages: proposed role in periprosthetic osteolysis. , 2002, Bone.
[16] M. Viceconti,et al. Even a thin layer of soft tissue may compromise the primary stability of cementless hip stems. , 2001, Clinical biomechanics.
[17] M Honl,et al. Duration and frequency of every day activities in total hip patients. , 2001, Journal of biomechanics.
[18] G. Bergmann,et al. Hip contact forces and gait patterns from routine activities. , 2001, Journal of biomechanics.
[19] L Ryd,et al. Wear particle diffusion and tissue differentiation in TKA implant fibrous interfaces. , 2000, Journal of biomechanics.
[20] J. Fisher,et al. Biological reactions to wear debris in total joint replacement , 2000, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[21] C. Engh,et al. Migration of polyethylene wear debris in one type of uncemented femoral component with circumferential porous coating: an autopsy study of 5 femurs. , 2000, The Journal of arthroplasty.
[22] J J Callaghan,et al. Wear in total hip and knee replacements. , 2000, The Journal of bone and joint surgery. American volume.
[23] T. Bauer,et al. The pathology of total joint arthroplasty , 1999, Skeletal Radiology.
[24] John J. Callaghan,et al. Current Concepts Review - Wear in Total Hip and Knee Replacements* , 1999 .
[25] Freeman Ma. Radiolucent lines: a question of nomenclature. , 1999 .
[26] S. Cowin,et al. Estimates of the peak pressures in bone pore water. , 1998, Journal of biomechanical engineering.
[27] R. D. de Kleine,et al. Short periods of oscillating fluid pressure directed at a titanium-bone interface in rabbits lead to bone lysis. , 1998, Acta orthopaedica Scandinavica.
[28] P. Aspenberg,et al. Fluid pressure may cause periprosthetic osteolysis. Particles are not the only thing. , 1998, Acta orthopaedica Scandinavica.
[29] M. Freeman,et al. Number of polyethylene particles and osteolysis in total joint replacements. A quantitative study using a tissue-digestion method. , 1997, The Journal of bone and joint surgery. British volume.
[30] H. Wingstrand,et al. Biomechanics of the hip joint capsule -- a mathematical model and clinical implications. , 1997, Clinical biomechanics.
[31] K. Jonsson,et al. Intracapsular pressure and loosening of hip prostheses. Preoperative measurements in 18 hips. , 1997, Acta orthopaedica Scandinavica.
[32] P J Prendergast,et al. Biophysical stimuli on cells during tissue differentiation at implant interfaces , 1997 .
[33] A. Fedenko,et al. The Role of Access of Joint Fluid to Bone in Periarticular Osteolysis: A Report of Four Cases* , 1997, The Journal of bone and joint surgery. American volume.
[34] A. Hosokawa,et al. Ultrasonic wave propagation in bovine cancellous bone. , 1997, The Journal of the Acoustical Society of America.
[35] M. Brookes,et al. Blood supply to the human femoral diaphysis in youth and senescence. , 1996, Journal of anatomy.
[36] C. Engh,et al. Patterns of osteolysis around total hip components inserted with and without cement. , 1995, The Journal of bone and joint surgery. American volume.
[37] B. Mjöberg. Theories of wear and loosening in hip prostheses. Wear-induced loosening vs loosening-induced wear--a review. , 1994, Acta orthopaedica Scandinavica.
[38] W H Harris,et al. Osteolysis and particle disease in hip replacement. A review. , 1994, Acta orthopaedica Scandinavica.
[39] P. Schlesinger,et al. Acid and base effects on avian osteoclast activity. , 1993, The American journal of physiology.
[40] W. Harris,et al. Periprosthetic bone loss in total hip arthroplasty. Polyethylene wear debris and the concept of the effective joint space. , 1992, The Journal of bone and joint surgery. American volume.
[41] J. D. Spencer,et al. The blood supply of the greater trochanter. , 1992, The Journal of bone and joint surgery. British volume.
[42] S. Palmer,et al. The interaction of ultrasound with cancellous bone. , 1991, Physics in medicine and biology.
[43] W H Harris,et al. Micromotion of cemented and uncemented femoral components. , 1991, The Journal of bone and joint surgery. British volume.
[44] C. Howie,et al. Localised endosteal bone lysis in relation to the femoral components of cemented total hip arthroplasties. , 1990, The Journal of bone and joint surgery. British volume.
[45] H. Bertram,et al. Osteolysis in alloarthroplasty of the hip. The role of ultra-high molecular weight polyethylene wear particles. , 1990, Clinical orthopaedics and related research.
[46] J O Galante,et al. Endosteal erosion in association with stable uncemented femoral components. , 1990, The Journal of bone and joint surgery. American volume.
[47] H. Wingstrand,et al. Intracapsular and atmospheric pressure in the dynamics and stability of the hip. A biomechanical study. , 1990, Acta orthopaedica Scandinavica.
[48] T David,et al. Rheology of Bovine Bone Marrow , 1989, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[49] N. Goddard,et al. Intra-articular fluid pressure and pain in osteoarthritis of the hip. , 1988, The Journal of bone and joint surgery. British volume.
[50] P J Kelly,et al. Permeability of cortical bone of canine tibiae. , 1987, Microvascular research.
[51] J. Vegter. The influence of joint posture on intra-articular pressure. A study of transient synovitis and Perthes' disease. , 1987, The Journal of bone and joint surgery. British volume.
[52] P. Simkin,et al. Hydraulic resistance in bones of the canine shoulder. , 1985, Journal of biomechanics.
[53] D. Resnick,et al. Intracapsular pressure monitoring during arthrographic evaluation of painful hip prostheses. , 1983, AJR. American journal of roentgenology.
[54] R. Wixson,et al. Arthrography after total hip arthroplasty: a modified technique used in the diagnosis of pain. , 1983, Radiology.
[55] M. Jayson,et al. Intra-articular pressure and rheumatoid geodes (bone 'cysts'). , 1970, Annals of the rheumatic diseases.
[56] P. Kelly. Anatomy, physiology, and pathology of the blood supply of bones. , 1968, The Journal of bone and joint surgery. American volume.
[57] J. Landells. The bone cysts of osteoarthritis. , 1953, The Journal of bone and joint surgery. British volume.