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Refinado por: Nome da Publicação: Journal of Biomechanics remover
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1
Open the pores – Polydimethylsiloxane influences the porous structure of cancellous bone surrogates for biomechanical testing of osteosyntheses
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Open the pores – Polydimethylsiloxane influences the porous structure of cancellous bone surrogates for biomechanical testing of osteosyntheses

Hollensteiner, Marianne ; Sandriesser, Sabrina ; Augat, Peter

Journal of biomechanics, 2024-03, Vol.165, p.112000-112000, Article 112000 [Periódico revisado por pares]

United States: Elsevier Ltd

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2
Bone cement augmentation of femoral nail head elements increases their cut-out resistance in poor bone quality– A biomechanical study
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Bone cement augmentation of femoral nail head elements increases their cut-out resistance in poor bone quality– A biomechanical study

Sermon, An ; Zderic, Ivan ; Khatchadourian, Roberto ; Scherrer, Simon ; Knobe, Matthias ; Stoffel, Karl ; Gueorguiev, Boyko

Journal of biomechanics, 2021-03, Vol.118, p.110301-110301, Article 110301 [Periódico revisado por pares]

United States: Elsevier Ltd

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3
A modelling approach demonstrating micromechanical changes in the tibial cemented interface due to in vivo service
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A modelling approach demonstrating micromechanical changes in the tibial cemented interface due to in vivo service

Srinivasan, Priyanka ; Miller, Mark A ; Verdonschot, Nico ; Mann, Kenneth A ; Janssen, Dennis

Journal of biomechanics, 2017-05, Vol.56, p.19-25 [Periódico revisado por pares]

United States: Elsevier Ltd

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4
Microdamage assessment of bone-cement interfaces under monotonic and cyclic compression
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Microdamage assessment of bone-cement interfaces under monotonic and cyclic compression

Tozzi, Gianluca ; Zhang, Qing-Hang ; Tong, Jie

Journal of biomechanics, 2014-11, Vol.47 (14), p.3466-3474 [Periódico revisado por pares]

United States: Elsevier Ltd

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5
Biomechanics of low-modulus and standard acrylic bone cements in simulated vertebroplasty: A human ex vivo study
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Biomechanics of low-modulus and standard acrylic bone cements in simulated vertebroplasty: A human ex vivo study

Holub, Ondrej ; López, Alejandro ; Borse, Vishal ; Engqvist, Håkan ; Kapur, Nik ; Hall, Richard M ; Persson, Cecilia

Journal of biomechanics, 2015-09, Vol.48 (12), p.3258-3266 [Periódico revisado por pares]

United States: Elsevier Ltd

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6
Thermal analysis of bone cement polymerisation at the cement–bone interface
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Thermal analysis of bone cement polymerisation at the cement–bone interface

Stańczyk, M. ; van Rietbergen, B.

Journal of biomechanics, 2004-12, Vol.37 (12), p.1803-1810 [Periódico revisado por pares]

United States: Elsevier Ltd

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7
Subject-specific planning of femoroplasty: A combined evolutionary optimization and particle diffusion model approach
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Subject-specific planning of femoroplasty: A combined evolutionary optimization and particle diffusion model approach

Basafa, Ehsan ; Armand, Mehran

Journal of biomechanics, 2014-07, Vol.47 (10), p.2237-2243 [Periódico revisado por pares]

United States: Elsevier Ltd

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8
Micro and nano MgO particles for the improvement of fracture toughness of bone–cement interfaces
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Micro and nano MgO particles for the improvement of fracture toughness of bone–cement interfaces

Khandaker, Morshed ; Li, Yanling ; Morris, Tracy

Journal of biomechanics, 2013-03, Vol.46 (5), p.1035-1039 [Periódico revisado por pares]

United States: Elsevier Ltd

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9
A subject-specific pelvic bone model and its application to cemented acetabular replacements
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A subject-specific pelvic bone model and its application to cemented acetabular replacements

Zhang, Qing-Hang ; Wang, Ji-Yuan ; Lupton, Colin ; Heaton-Adegbile, Phillip ; Guo, Zi-Xue ; Liu, Qin ; Tong, Jie

Journal of biomechanics, 2010-10, Vol.43 (14), p.2722-2727 [Periódico revisado por pares]

Kidlington: Elsevier Ltd

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10
Experimental and Computational Micromechanics at the Tibial Cement-Trabeculae Interface
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Experimental and Computational Micromechanics at the Tibial Cement-Trabeculae Interface

Srinivasan, Priyanka ; Miller, Mark A ; Verdonschot, Nico ; Mann, Kenneth A ; Janssen, Dennis

Journal of biomechanics, 2016-06, Vol.49 (9), p.1641-1648 [Periódico revisado por pares]

United States: Elsevier Ltd

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