[HTML][HTML] Structural strength analyses for low brass filler biomaterial with anti-trauma effects in articular cartilage scaffold design

YY Lim, A Miskon, AMA Zaidi - Materials, 2022 - mdpi.com
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …

[PDF][PDF] Structural Strength Analyses for Low Brass Filler Biomaterial with Anti-Trauma Effects in Articular Cartilage Scaffold Design. Materials 2022, 15, 4446

YY Lim, A Miskon, AMA Zaidi - 2022 - researchgate.net
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …

[PDF][PDF] Structural Strength Analyses for Low Brass Filler Biomaterial with Anti-Trauma Effects in Articular Cartilage Scaffold Design. Materials 2022, 15, 4446

YY Lim, A Miskon, AMA Zaidi - 2022 - pdfs.semanticscholar.org
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …

Structural Strength Analyses for Low Brass Filler Biomaterial with Anti-Trauma Effects in Articular Cartilage Scaffold Design

YY Lim, A Miskon, AMA Zaidi - Materials, 2022 - ui.adsabs.harvard.edu
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …

Structural Strength Analyses for Low Brass Filler Biomaterial with Anti-Trauma Effects in Articular Cartilage Scaffold Design.

YY Lim, A Miskon, AMA Zaidi - Materials (Basel, Switzerland), 2022 - europepmc.org
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …

[HTML][HTML] Structural Strength Analyses for Low Brass Filler Biomaterial with Anti-Trauma Effects in Articular Cartilage Scaffold Design

YY Lim, A Miskon, AMA Zaidi - Materials, 2022 - ncbi.nlm.nih.gov
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …

Structural Strength Analyses for Low Brass Filler Biomaterial with Anti-Trauma Effects in Articular Cartilage Scaffold Design.

YY Lim, A Miskon, AMA Zaidi - Materials (1996-1944), 2022 - search.ebscohost.com
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …

Structural Strength Analyses for Low Brass Filler Biomaterial with Anti-Trauma Effects in Articular Cartilage Scaffold Design

YY Lim, A Miskon, AMA Zaidi - Materials (Basel …, 2022 - pubmed.ncbi.nlm.nih.gov
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …

Structural Strength Analyses for Low Brass Filler Biomaterial with Anti-Trauma Effects in Articular Cartilage Scaffold Design

YY Lim, A Miskon, AMA Zaidi - Materials, 2022 - search.proquest.com
The existing harder biomaterial does not protect the tissue cells with blunt-force trauma
effects, making it a poor choice for the articular cartilage scaffold design. Despite the …