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Hirsch, Carl
1
;
Evans, F. Gaynor
2
Studies on some physical properties of infant compact bone
Acta Orthop Scand
. 1965;35(4):300-313
Affiliations
1
Department of Orthopaedic Surgery,
University of Gothenburg
2
Department of Anatomy,
University of Michigan
Links
DOI:
10.3109/17453676508989361
PubMed:
14295431
WoS:
A19656529000005
Cited Works (7)
Year
Entry
1959
Lease GO, Evans FG. Strength of human metatarsal bones under repetitive loading.
J Appl Physiol
. 1959;14(1):49-51.
1847
Wertheim MG. Mémoire sur l'élasticité et la cohésion des principaux tissus du corps humain.
Ann Chim Phys
. December 1847;21:385-414.
1951
Evans FG, Lebow M. Regional differences in some of the physical properties of the human femur.
J Appl Physiol
. 1951;3(9):563-572.
1957
Evans FG.
Stress and Strain in Bones: Their Relation to Fractures and Osteogenesis
. Springfield, IL: Charles C. Thomas; 1957.
1876
Rauber AA.
Elasticität Und Festigkeit Der Knochen: Anatomisch-Physiologische Studie
. Leipzig, Germany: Verlag Von Wilhelm Engelmann; 1876.
1961
Dempster WT, Coleman RF. Tensile strength of bone along and across the grain.
J Appl Physiol
. March 1961;16(2):355-360.
1952
Dempster WT, Liddicoat RT. Compact bone as a non-isotropic material.
Am J Anat
. 1952;91(3):331-362.
Cited By (22)
Year
Entry
1973
Evans FG.
Mechanical Properties of Bone
. Springfield, IL: Charles C. Thomas; 1973.
1970
Hirsch C. Biomechanics in orthopedic surgery: an account of aims and methods. In: Gurdjian ES, Lange WA, Patrick LM, Thomas LM, eds.
Impact Injury and Crash Protection
. Springfield, IL: Charles C. Thomas; 1970:125-140.
1990
Cowin SC. Properties of cortical bone and theory of bone remodeling. In: Mow VC, Ratcliffe A, Woo SL-Y, eds.
Biomechanics of Diarthrodial Joints
. Vol 2. New York, NY: Springer-Verlag; 1990:119-153.
2015
Arbogast KB, Maltese MR. Pediatric biomechanics. In: Yoganandan N, Nahum AM, Melvin JW, eds.
Accidental Injury: Biomechanics and Prevention
. 3rd ed. New York: Springer; 2015:643-696.
1998
Kleinberger M, Yoganandan N, Kumaresan S. Biomechanical considerations for child occupant protection. In:
42nd Annual Proceedings, Association for the Advancement of Automotive Medicine (AAAM)
. October 5-7, 1998; Charlottesville, VA.115-136.
1974
Wall JC, Hutton WC, Cyron BM. The effects of age and strain rate on the mechanical properties of bone. In:
Proceedings of the International Meeting on the Biomechanics of Trauma in Children
. September 17-19, 1974; Lyon, France.185-193.
2012
Forman JL, del Pozo de Dios E, Symeonidis I, Duart J, Kerrigan JR, Salzar RS, Balasubramanian S, Segui‐Gomez M, Kent RW. Fracture tolerance related to skeletal development and aging throughout life: 3‐point bending of human femurs. In:
Proceedings of the 2012 International IRCOBI Conference on the Biomechanics of Injury
. September 12-14, 2012; Dublin, Ireland.524-539.
2013
Subit D, Arregui C, Salzar R, Crandall J. Pediatric, adult and elderly bone material properties. In:
Proceedings of the 2013 International IRCOBI Conference on the Biomechanics of Injury
. September 11-13, 2013; Gothenburg, Sweden.760-769.
1984
Dejeammes M, Tarrière C, Thomas C, Kallieris D. Exploration of biomechanical data towards a better evaluation of tolerance for children involved in automotive accidents. In:
Proceedings of the SAE International Congress & Exposition
. 1984; Detroit, MI. Warrendale, PA: Society of Automotive Engineers. SAE 840530.
2009
Ivarsson BJ, Genovese D, Crandall JR, Bolton JR, Untaroiu CD, Bose D. The tolerance of the femoral shaft in combined axial compression and bending loading.
Stapp Car Crash J
. 2009;53:251-290. SAE 2009-22-0010.
1965
Sedlin ED. A rheologic model for cortical bone: a study of physical properties of human femoral samples.
Acta Orthop Scand
. 1965;(suppl 83):1-77.
1966
Sedlin ED, Hirsch C. Factors affecting the determination of the physical properties of femoral cortical bone.
Acta Orthop Scand
. 1966;37(1):29-48.
1970
Currey JD. The mechanical properties of bone.
Clin Orthop Relat Res
. November–December 1970;73:210-231.
2007
Franklyn M, Peiris S, Huber C, Yang KH. Pediatric material properties: a review of human child and animal surrogates.
Crit Rev Biomed Eng
. 2007;35(3-4):197-342.
1969
Burdi AR, Huelke DF, Snyder RG, Lowrey GH. Infants and children in the adult world of automobile safety design: pediatric and anatomical considerations for design of child restraints.
J Biomech
. July 1969;2(3):267-280.
1985
Vincentelli R, Grigoroi M. The effect of Haversian remodeling on the tensile properties of human cortical bone.
J Biomech
. 1985;18(3):201-207.
1975
Currey JD, Butler G. The mechanical properties of bone tissue in children.
J Bone Joint Surg
. September 1975;57A(6):810-814.
2000
Nafei A, Danielsen CC, Linde F, Hvid I. Properties of growing trabecular ovine bone, I: mechanical and physical properties.
J Bone Joint Surg
. August 2000;82B(6):910-920.
2000
Kleinberger M, Yoganandan N, Kumaresan S. Review: biomechanics of child occupant protection.
J Crash Prev Injury Control
. 2000;2(1):63-73.
2024
Szabo E.
Insights Into the Mechanical Behavior of Maturing Cortical Bone: A Porcine Model
[PhD thesis]. Cleveland, OH: Case Western Reserve University; May 2024.
2022
Zlock CM.
Finite Element Model of the Pediatric Hip Joint During the Barlow Maneuver
[Master's thesis]. Daytona Beach, FL: Embry-Riddle Aeronautical University; May 2022.
2014
Jameson JR.
Characterization of Bone Material Properties and Microstructure in Osteogenesis Imperfecta/brittle Bone Disease
[PhD thesis]. Marquette University; December 2014.