An examination of the micromechanics of failure of bone and antler by acoustic emission tests and Laser Scanning Confocal Microscopy.

scientific article published on May 1994

An examination of the micromechanics of failure of bone and antler by acoustic emission tests and Laser Scanning Confocal Microscopy. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/1350-4533(94)90039-6
P698PubMed publication ID8061906
P5875ResearchGate publication ID15137154

P50authorPeter ZiouposQ57024408
P2093author name stringSedman AJ
Currey JD
P433issue3
P921main subjectmicromechanicsQ3312239
P304page(s)203-212
P577publication date1994-05-01
P1433published inMedical Engineering and PhysicsQ15749231
P1476titleAn examination of the micromechanics of failure of bone and antler by acoustic emission tests and Laser Scanning Confocal Microscopy
P478volume16

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cites work (P2860)
Q30469283A non-invasive in vitro technique for the three-dimensional quantification of microdamage in trabecular bone
Q35189581A rate-dependent microcrack-bridging model that can explain the strain rate dependency of cortical bone apparent yield strength
Q50959374Acoustic Emission Signatures During Failure of Vertebra and Long Bone.
Q30501027Age-related factors affecting the postyield energy dissipation of human cortical bone
Q59295398Ageing Human Bone: Factors Affecting its Biomechanical Properties and the Role of Collagen
Q44893835Analysis of creep strain during tensile fatigue of cortical bone
Q40060550Analysis of micro fracture in human Haversian cortical bone under compression
Q45826833Analysis of plastic deformation in cortical bone after insertion of coated and non-coated self-tapping orthopaedic screws
Q37679147Biomimetics--a review
Q73710302Comparison of damage accumulation measures in human cortical bone
Q30474433Constitutive relationship of tissue behavior with damage accumulation of human cortical bone
Q63814532Contribution, development and morphology of microcracking in cortical bone during crack propagation
Q63814533Crack growth resistance in cortical bone: Concept of microcrack toughening
Q35202077Detecting microdamage in bone
Q73131325Development of a fluorescent light technique for evaluating microdamage in bone subjected to fatigue loading
Q30455235Effects of fatigue on microstructure and mechanical properties of bone organic matrix under compression.
Q30481143Evidence for an elementary process in bone plasticity with an activation enthalpy of 1 eV.
Q78673413Experimental validation of a microcracking-based toughening mechanism for cortical bone
Q59295446Experimentally determined microcracking around a circular hole in a flat plate of bone: comparison with predicted stresses
Q46289291Exploring the effects of hypermineralisation in bone tissue by using an extreme biological example.
Q53977217Fatigue damage-fracture mechanics interaction in cortical bone.
Q73998147Fatigue of cortical bone under combined axial-torsional loading
Q77596758Fluorescence-aided detection of microdamage in compact bone
Q30494296Hierarchy of Bone Microdamage at Multiple Length Scales
Q30489924Mechanical behavior of human cortical bone in cycles of advancing tensile strain for two age groups
Q57223311Mechanical properties of nacre and highly mineralized bone
Q44448146Microcrack accumulation at different intervals during fatigue testing of compact bone
Q36203370Microcracks in cortical bone: how do they affect bone biology?
Q30468701Nano-mechanical properties of individual mineralized collagen fibrils from bone tissue
Q44190536Nature's answer to breaching the skin barrier: an innovative development for amputees
Q52552247Noninvasive fatigue fracture model of the rat ulna.
Q57679345On-line analysis of cracking in cortical bone under wedge penetration
Q30502023Prediction of microdamage formation using a mineral-collagen composite model of bone
Q30483455Probabilistic failure analysis of bone using a finite element model of mineral-collagen composites
Q30480362Progressive post-yield behavior of human cortical bone in compression for middle-aged and elderly groups.
Q59295423Recent developments in the study of failure of solid biomaterials and bone: ‘fracture’ and ‘pre-fracture’ toughness
Q53361937Repair mechanisms for microdamage in bone.
Q30485554Small animal bone biomechanics
Q46046693Stiff and strong compressive properties are associated with brittle post-yield behavior in equine compact bone material
Q30397387Structural and mechanical repair of diffuse damage in cortical bone in vivo
Q57784251Structural role of osteocalcin and osteopontin in energy dissipation in bone
Q79106396Tensile damage and its effects on cortical bone
Q47890915The effect of strain rate on the mechanical properties of human cortical bone
Q61968595The effects of damage and microcracking on the impact strength of bone
Q40822776The effects of testing methods on the flexural fatigue life of human cortical bone
Q74639268The role of the lamellar interface during torsional yielding of human cortical bone
Q32004763Three-dimensional confocal images of microdamage in cancellous bone
Q87419278Three-dimensional morphology of microdamage in peri-screw bone: a scanning electron microscopy of methylmethacrylate cast replica
Q74144581Type I collagen mutation alters the strength and fatigue behavior of Mov13 cortical tissue

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