Matches in SemOpenAlex for { <https://semopenalex.org/work/W2741381013> ?p ?o ?g. }
- W2741381013 endingPage "3058" @default.
- W2741381013 startingPage "3050" @default.
- W2741381013 abstract "Tendon-bone insertion is a functionally graded tissue, transitioning from 200 MPa tensile modulus at the tendon end to 20 GPa tensile modulus at the bone, across just a few hundred micrometers. In this study, we examine the porcine digital flexor tendon insertion tissue to provide a quantitative description of its collagen orientation and mineral concentration by using Fast Fourier Transform (FFT) based image analysis and mass spectrometry, respectively. Histological results revealed uniformity in global collagen orientation at all depths, indicative of mechanical anisotropy, although at mid-depth, the highest fiber density, least amount of dispersion, and least cellular circularity were evident. Collagen orientation distribution obtained through 2D FFT of histological imaging data from fluorescent microscopy agreed with past measurements based on polarized light microscopy. Results revealed global fiber orientation across the tendon-bone insertion to be preserved along direction of physiologic tension. Gradation in the fiber distribution orientation index across the insertion was reflective of a decrease in anisotropy from the tendon to the bone. We provided elemental maps across the fibrocartilage for its organic and inorganic constituents through time-of-flight secondary ion mass spectrometry (TOF-SIMS). The apatite intensity distribution from the tendon to bone was shown to follow a linear trend, supporting past results based on Raman microprobe analysis. The merit of this study lies in the image-based simplified approach to fiber distribution quantification and in the high spatial resolution of the compositional analysis. In conjunction with the mechanical properties of the insertion tissue, fiber, and mineral distribution results for the insertion from this may potentially be incorporated into the development of a structural constitutive approach toward computational modeling. Characterizing the properties of the native insertion tissue would provide the microstructural basis for developing biomimetic scaffolds to recreate the graded morphology of a fibrocartilaginous insertion. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 3050–3058, 2017." @default.
- W2741381013 created "2017-08-08" @default.
- W2741381013 creator A5000475421 @default.
- W2741381013 creator A5025313402 @default.
- W2741381013 creator A5040757627 @default.
- W2741381013 creator A5051624424 @default.
- W2741381013 date "2017-08-19" @default.
- W2741381013 modified "2023-09-24" @default.
- W2741381013 title "Composition and structure of porcine digital flexor tendon‐bone insertion tissues" @default.
- W2741381013 cites W1849717170 @default.
- W2741381013 cites W1922899201 @default.
- W2741381013 cites W1965722658 @default.
- W2741381013 cites W1967127058 @default.
- W2741381013 cites W1971877746 @default.
- W2741381013 cites W1971950350 @default.
- W2741381013 cites W1985713695 @default.
- W2741381013 cites W1988534831 @default.
- W2741381013 cites W1990179223 @default.
- W2741381013 cites W1996929913 @default.
- W2741381013 cites W2009446343 @default.
- W2741381013 cites W2010426476 @default.
- W2741381013 cites W2013663489 @default.
- W2741381013 cites W2016583814 @default.
- W2741381013 cites W2017620534 @default.
- W2741381013 cites W2019575274 @default.
- W2741381013 cites W2022082866 @default.
- W2741381013 cites W2028670767 @default.
- W2741381013 cites W2030610672 @default.
- W2741381013 cites W2031614623 @default.
- W2741381013 cites W2035662858 @default.
- W2741381013 cites W2045830142 @default.
- W2741381013 cites W2049855790 @default.
- W2741381013 cites W2050108052 @default.
- W2741381013 cites W2053940228 @default.
- W2741381013 cites W2061150546 @default.
- W2741381013 cites W2063251522 @default.
- W2741381013 cites W2063381680 @default.
- W2741381013 cites W2063826843 @default.
- W2741381013 cites W2064202896 @default.
- W2741381013 cites W2077472932 @default.
- W2741381013 cites W2088958649 @default.
- W2741381013 cites W2091137026 @default.
- W2741381013 cites W2099540110 @default.
- W2741381013 cites W2104997193 @default.
- W2741381013 cites W2110162714 @default.
- W2741381013 cites W2114251007 @default.
- W2741381013 cites W2125281023 @default.
- W2741381013 cites W2127054999 @default.
- W2741381013 cites W2127722806 @default.
- W2741381013 cites W2140887772 @default.
- W2741381013 cites W2156622891 @default.
- W2741381013 cites W2167279371 @default.
- W2741381013 cites W2168687312 @default.
- W2741381013 cites W2594093994 @default.
- W2741381013 cites W2951620206 @default.
- W2741381013 cites W4246453068 @default.
- W2741381013 doi "https://doi.org/10.1002/jbm.a.36162" @default.
- W2741381013 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28758368" @default.
- W2741381013 hasPublicationYear "2017" @default.
- W2741381013 type Work @default.
- W2741381013 sameAs 2741381013 @default.
- W2741381013 citedByCount "9" @default.
- W2741381013 countsByYear W27413810132018 @default.
- W2741381013 countsByYear W27413810132019 @default.
- W2741381013 countsByYear W27413810132020 @default.
- W2741381013 countsByYear W27413810132021 @default.
- W2741381013 countsByYear W27413810132022 @default.
- W2741381013 countsByYear W27413810132023 @default.
- W2741381013 crossrefType "journal-article" @default.
- W2741381013 hasAuthorship W2741381013A5000475421 @default.
- W2741381013 hasAuthorship W2741381013A5025313402 @default.
- W2741381013 hasAuthorship W2741381013A5040757627 @default.
- W2741381013 hasAuthorship W2741381013A5051624424 @default.
- W2741381013 hasConcept C105702510 @default.
- W2741381013 hasConcept C112950240 @default.
- W2741381013 hasConcept C120665830 @default.
- W2741381013 hasConcept C121332964 @default.
- W2741381013 hasConcept C136229726 @default.
- W2741381013 hasConcept C142724271 @default.
- W2741381013 hasConcept C159985019 @default.
- W2741381013 hasConcept C192562407 @default.
- W2741381013 hasConcept C204787440 @default.
- W2741381013 hasConcept C2776164576 @default.
- W2741381013 hasConcept C2780105995 @default.
- W2741381013 hasConcept C2781218938 @default.
- W2741381013 hasConcept C3020332539 @default.
- W2741381013 hasConcept C519885992 @default.
- W2741381013 hasConcept C71924100 @default.
- W2741381013 hasConcept C85725439 @default.
- W2741381013 hasConceptScore W2741381013C105702510 @default.
- W2741381013 hasConceptScore W2741381013C112950240 @default.
- W2741381013 hasConceptScore W2741381013C120665830 @default.
- W2741381013 hasConceptScore W2741381013C121332964 @default.
- W2741381013 hasConceptScore W2741381013C136229726 @default.
- W2741381013 hasConceptScore W2741381013C142724271 @default.
- W2741381013 hasConceptScore W2741381013C159985019 @default.
- W2741381013 hasConceptScore W2741381013C192562407 @default.
- W2741381013 hasConceptScore W2741381013C204787440 @default.