David H. Kohn

Affiliations: 
University of Michigan, Ann Arbor, Ann Arbor, MI 
Area:
Biomedical Engineering, Analytical Chemistry, Biomechanics Biophysics
Website:
https://dent.umich.edu/directory/dhkohn
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"David Kohn"
Bio:

https://www.seas.upenn.edu/~bmtlab/images/PaulDucheynecv.pdf

Parents

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Paul Ducheyne grad student 1989 Penn (E-Tree)
 (Mechanisms of failure in Porous Coated Tl-6A1-4V Alloy)
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Publications

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Bolger MW, Tekkey T, Kohn DH. (2023) The Contribution of Perilacunar Composition and Mechanical Properties to Whole-Bone Mechanical Outcomes in Streptozotocin-Induced Diabetes. Calcified Tissue International
Romanowicz GE, Terhune AH, Bielajew BJ, et al. (2022) Collagen cross-link profiles and mineral are different between the mandible and femur with site specific response to perturbed collagen. Bone Reports. 17: 101629
Bigelow EMR, Goulet RW, Ciarelli A, et al. (2022) Sex and External Size Specific Limitations in Assessing Bone Health From Adult Hand Radiographs. Jbmr Plus. 6: e10653
Mandair GS, Bigelow EMR, Viswanathan G, et al. (2022) Region-specific associations among tissue-level mechanical properties, porosity, and composition in human male femora. Journal of Biomechanics. 139: 111144
Bolger MW, Romanowicz GE, Bigelow EMR, et al. (2020) External bone size identifies different strength-decline trajectories for the male human femora. Journal of Structural Biology. 107650
Madsen E, Mededovic M, Kohn DH. (2020) Review on material parameters to enhance bone cell function in vitro and in vivo. Biochemical Society Transactions
Zhang H, Zhang Y, Terajima M, et al. (2020) Loss of BMP signaling mediated by BMPR1A in osteoblasts leads to differential bone phenotypes in mice depending on anatomical location of the bones. Bone. 115402
Mandair GS, Oest ME, Mann KA, et al. (2020) Radiation-induced changes to bone composition extend beyond periosteal bone. Bone Reports. 12: 100262
Bolger MW, Romanowicz GE, Kohn DH. (2019) Advancements in composition and structural characterization of bone to inform mechanical outcomes and modelling. Current Opinion in Biomedical Engineering. 11: 76-84
Ramaraju H, Kohn DH. (2019) Cell and Material-Specific Phage Display Peptides Increase iPS-MSC Mediated Bone and Vasculature Formation In Vivo. Advanced Healthcare Materials. e1801356
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