1991 |
Lanyon LE. Biomechanical properties of bone and response of bone to mechanical stimuli: functional strain as a controlling influence on bone modeling and remodeling behavior. In: Hall BK, ed. Bone. Volume 3: Bone Matrix and Bone Specific Products. Boca Raton, FL: Inc., CRC Press; 1991:79-108. |
8 |
8 |
1965 |
Zarek JM, Edwards J. Dynamic considerations of the human skeletal system. In: Kenedi RM, ed. Biomechanics and Related Bio-Engineering Topics: Proceedings of a Symposium Held in Glasgow, September 1964. Oxford, UK: Pergamon Press; 1965:187-203. |
15 |
15 |
1965 |
Scales JT, Duff-Barclay I, Burrows HJ. Some engineering and medical problems associated with massive bone replacement. In: Kenedi RM, ed. Biomechanics and Related Bio-Engineering Topics: Proceedings of a Symposium Held in Glasgow, September 1964. Oxford, UK: Pergamon Press; 1965:205-239. |
1 |
1 |
1965 |
Clark C, Cotton LT, Zarek JM. Venous blood flow characteristics. In: Kenedi RM, ed. Biomechanics and Related Bio-Engineering Topics: Proceedings of a Symposium Held in Glasgow, September 1964. Oxford, UK: Pergamon Press; 1965:265-284. |
0 |
0 |
1996 |
Enobakhare BO, Bader DL, Lee DA. Quantification of sulfated glycosaminoglycans in chondrocyte/alginate cultures, by use of 1,9-dimethylmethylene blue. Anal Ciochem. December 1, 1996;243(1):189-191. |
38 |
38 |
1993 |
Riggs CM, Lanyon LE, Boyde A. Functional associations between collagen fibre orientation and locomotor strain direction in cortical bone of the equine radius. Anat Embryol. March 1993;187(3):231-238. |
37 |
36 |
1993 |
Riggs CM, Vaughan LC, Evans GP, Lanyon LE, Boyde A. Mechanical implications of collagen fibre orientation in cortical bone of the equine radius. Anat Embryol. March 1993;187(3):239-248. |
60 |
59 |
1998 |
Bank RA, Bayliss MT, Lafeber FPJG, Maroudas A, Tekoppele JM. Ageing and zonal variation in post-translational modification of collagen in normal human articular cartilage: the age-related increase in non-enzymatic glycation affects biomechanical properties of cartilage. Biochem J. February 15, 1998;3301(1):345-351. |
46 |
43 |
1973 |
Kempson GE, Muir H, Pollard C, Tuke M. The tensile properties of the cartilage of human femoral condyles related to the content of collagen and glycosaminoglycans. Biochim Biophys Acta. February 28, 1973;297(2):456-472. |
111 |
105 |
1992 |
Lanyon LE. The success and failure of the adaptive response to functional load-bearing in averting bone fracture. Bone. 1992;13(2):S17-S21. |
25 |
24 |
1996 |
Lanyon LE. Using functional loading to influence bone mass and architecture: objectives, mechanisms, and relationship with estrogen of the mechanically adaptive process in bone. Bone. January 1996;18(1)(suppl):37S-43S. |
39 |
35 |
1999 |
Muir P, Johnson KA, Ruaux-Mason CP. In vivo matrix microdamage in a naturally occurring canine fatigue fracture. Bone. November 1999;25(5):571-576. |
25 |
25 |
2008 |
Sugiyama T, Saxon LK, Zaman G, Moustafa A, Sunters A, Price JS, Lanyon LE. Mechanical loading enhances the anabolic effects of intermittent parathyroid hormone (1–34) on trabecular and cortical bone in mice. Bone. August 2008;43(2):238-248. |
35 |
31 |
2010 |
Sugiyama T, Price JS, Lanyon LE. Functional adaptation to mechanical loading in both cortical and cancellous bone is controlled locally and is confined to the loaded bones. Bone. February 2010;46(2):314-321. |
41 |
37 |
1986 |
Lanyon LE, Rubin CT, Baust G. Modulation of bone loss during calcium insufficiency by controlled dynamic loading. Calcif Tiss Int. July 1986;38(4):209-216. |
23 |
12 |
1988 |
Pead MJ, Suswillo R, Skerry TM, Vedi S, Lanyon LE. Increased ³H-uridine levels in osteocytes following a single short period of dynamic bone loadingin vivo. Calcif Tiss Int. August 1988;43(2):92-96. |
46 |
31 |
2020 |
Lisk R, Yeong K, Fluck D, Fry CH, Han TS. The ability of the nottingham hip fracture score to predict mobility, length of stay and mortality in hospital, and discharge destination in patients admitted with a hip fracture. Calcif Tiss Int. October 2020;107(4):319-326. |
0 |
0 |
1960 |
Jowsey J. Age changes in human bone. Clin Orthop. 1960;17:210-218. |
53 |
53 |
1992 |
Evans GP, Behiri JC, Vaughan LC, Bonfield W. The response of equine cortical bone to loading at strain rates experienced in vivo by the galloping horse. Equine Vet J. March 1992;24(2):125-128. |
16 |
16 |
2013 |
Gänsslen A, Heidari N, Weinberg AM. Fractures of the pelvis in children: a review of the literature. Eur J Orthop Surg Traumatol. December 2013;23(8):847-861. |
0 |
0 |
2001 |
Roberts SR, Knight MM, Lee DA, Bader DL. Mechanical compression influences intracellular Ca²⁺ signaling in chondrocytes seeded in agarose constructs. J Appl Physiol. April 2001;90(4):1385-1391. |
27 |
26 |
1987 |
Lanyon LE. Functional strain in bone tissue as an objective, and controlling stimulus for adaptive bone remodelling. J Biomech. 1987;20(11-12):1083-1093. |
72 |
62 |
1995 |
Norman TL, Vashishth D, Burr DB. Fracture toughness of human bone under tension. J Biomech. March 1995;28(3):309-320. |
73 |
55 |
1997 |
Vashishth D, Behiri JC, Bonfield W. Crack growth resistance in cortical bone: concept of microcrack toughening. J Biomech. August 1997;30(8):763-769. |
138 |
113 |
1997 |
Schechtman H, Bader D. In vitro fatigue of human tendons. J Biomech. August 1997;30(8):829-835. |
19 |
19 |
2000 |
Lee DA, Knight MM, Bolton JF, Idowu BD, Kayser MV, Bader DL. Chondrocyte deformation within compressed agarose constructs at the cellular and sub-cellular levels. J Biomech. January 2000;33(1):81-95. |
39 |
37 |
2000 |
Vashishth D, Tanner KE, Bonfield W. Contribution, development and morphology of microcracking in cortical bone during crack propagation. J Biomech. September 2000;33(9):1169-1174. |
65 |
50 |
2003 |
Vashishth D, Tanner KE, Bonfield W. Experimental validation of a microcracking-based toughening mechanism for cortical bone. J Biomech. January 2003;36(1):121-124. |
64 |
56 |
2008 |
Zioupos P, Cook RB, Hutchinson JR. Some basic relationships between density values in cancellous and cortical bone. J Biomech. 2008;41(9):1961-1968. |
26 |
24 |
1970 |
Muir H, Bullough P, Maroudas A. The distribution of collagen in human articular cartilage with some of its physiological implications. J Bone Joint Surg. August 1970;52B(3):554-563. |
96 |
92 |
1992 |
Lanyon LE. Control of bone architecture by functional load bearing. J Bone Miner Res. December 1992;7(suppl 2):S369-S375. |
25 |
23 |
1997 |
Lee DA, Bader DL. Compressive strains at physiological frequencies influence the metabolism of chondrocytes seeded in agarose. J Orthop Res. March 1997;15(2):181-188. |
79 |
76 |
1998 |
Lee DA, Noguchi T, Knight MM, O'Donnell L, Bentley G, Bader DL. Response of chondrocyte subpopulations cultured within unloaded and loaded agarose. J Orthop Res. November 1998;16(6):726-733. |
40 |
39 |
2023 |
Adra M, Ghazal NE, Nakanishi H, Smayra K, Hong SS, Miangul S, Matar RH, Than CA, Tennent D. Platelet-rich plasma versus corticosteroid injections in the management of patients with rotator cuff disease: a systematic review and meta-analysis. J Orthop Res. January 2023;41(1):7-20. |
0 |
0 |
1968 |
Kempson GE, Freeman MAR, Swanson SAV. Tensile properties of articular cartilage. Nature. December 14, 1968;220(5172):1127-1128. |
79 |
73 |
2012 |
Moustafa A, Sugiyama T, Prasad J, Zaman G, Gross TS, Lanyon LE, Price JS. Mechanical loading-related changes in osteocyte sclerostin expression in mice are more closely associated with the subsequent osteogenic response than the peak strains engendered. Osteoporos Int. April 2012;23(4):1225-1234. |
35 |
31 |