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Biomaterials
On the origin of the toughness of mineralized tissue: microcracking or crack bridging?
On the origin of the toughness of mineralized tissue: microcracking or crack bridging?
,
Nalla, R. K.
,
Kruzic J. J.
, and
Ritchie R. O.
, Bone, May, Volume 34, Number 5, p.790-798, (2004)
Papers:
Biomaterials
Fracture
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about On the origin of the toughness of mineralized tissue: microcracking or crack bridging?
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Aspects of in vitro fatigue in human cortical bone: time and cycle dependent crack growth
Aspects of in vitro fatigue in human cortical bone: time and cycle dependent crack growth
,
Nalla, R. K.
,
Kruzic J. J.
,
Kinney J. H.
, and
Ritchie R. O.
, Biomaterials, May, Volume 26, Number 14, p.2183-2195, (2005)
Papers:
Biomaterials
Fatigue
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about Aspects of in vitro fatigue in human cortical bone: time and cycle dependent crack growth
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Design of Biomaterials: The Balancing Act between Reductionism and Systems Thinking
Design of Biomaterials: The Balancing Act between Reductionism and Systems Thinking
,
Nychka, J. A.
, and
Kruzic J. J.
, JOM, Apr, Volume 65, Number 4, p.469-472, (2013)
Papers:
Biomaterials
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about Design of Biomaterials: The Balancing Act between Reductionism and Systems Thinking
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Mechanistic aspects of fracture and R-curve behavior in human cortical bone
Mechanistic aspects of fracture and R-curve behavior in human cortical bone
,
Nalla, R. K.
,
Kruzic J. J.
,
Kinney J. H.
, and
Ritchie R. O.
, Biomaterials, Jan, Volume 26, Number 2, p.217-231, (2005)
Papers:
Biomaterials
Fracture
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about Mechanistic aspects of fracture and R-curve behavior in human cortical bone
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Role of microstructure in the aging-related deterioration of the toughness of human cortical bone
Role of microstructure in the aging-related deterioration of the toughness of human cortical bone
,
Nalla, R. K.
,
Kruzic J. J.
,
Kinney J. H.
,
Balooch M.
,
Ager J. W.
, and
Ritchie R. O.
, Materials Science & Engineering C-Biomimetic and Supramolecular Systems, Sep, Volume 26, Number 8, p.1251-1260, (2006)
Papers:
Biomaterials
Fracture
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about Role of microstructure in the aging-related deterioration of the toughness of human cortical bone
Google Scholar
Biological materials science: An emerging art
Biological materials science: An emerging art
,
Nychka, J. A.
,
Kruzic J. J.
,
Bandyopadhyay A.
, and
Sarikaya M.
, Materials Science & Engineering C-Materials for Biological Applications, May, Volume 31, Number 4, p.713-715, (2011)
Papers:
Biomaterials
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about Biological materials science: An emerging art
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Propagation of surface fatigue cracks in human cortical bone
Propagation of surface fatigue cracks in human cortical bone
,
Kruzic, J. J.
,
Scott J. A.
,
Nalla R. K.
, and
Ritchie R. O.
, Journal of Biomechanics, Volume 39, Number 5, p.968-972, (2006)
Papers:
Biomaterials
Fatigue
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about Propagation of surface fatigue cracks in human cortical bone
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Detection of dentinal cracks using contrast-enhanced micro-computed tomography
Detection of dentinal cracks using contrast-enhanced micro-computed tomography
,
Landrigan, M. D.
,
Flatley J. C.
,
Turnbull T. L.
,
Kruzic J. J.
,
Ferracane J. L.
,
Hilton T. J.
, and
Roeder R. K.
, Journal of the Mechanical Behavior of Biomedical Materials, Feb, Volume 3, Number 2, p.223-227, (2010)
Papers:
Biomaterials
Fracture
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about Detection of dentinal cracks using contrast-enhanced micro-computed tomography
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Fatigue of mineralized tissues: Cortical bone and dentin
Fatigue of mineralized tissues: Cortical bone and dentin
,
Kruzic, J. J.
, and
Ritchie R. O.
, Journal of the Mechanical Behavior of Biomedical Materials, Jan, Volume 1, Number 1, p.3-17, (2008)
Papers:
Biomaterials
Fatigue
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about Fatigue of mineralized tissues: Cortical bone and dentin
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Comments on "Measurement of the microstructural fracture toughness of cortical bone using indentation fracture"
Comments on "Measurement of the microstructural fracture toughness of cortical bone using indentation fracture"
,
Kruzic, J. J.
, and
Ritchie R. O.
, Journal of Biomechanics, Volume 41, Number 6, p.1379-1380, (2008)
Papers:
Biomaterials
Fracture
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about Comments on "Measurement of the microstructural fracture toughness of cortical bone using indentation fracture"
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