Relationship between depth-wise refractive index and biomechanical properties of human articular cartilage
Julkaisuvuosi
2024
Tekijät
Khan, Bilour; Nippolainen, Ervin; Shahini, Fatemeh; Nonappa, Nonappa; Popov, Alexey; Töyräs, Juha; Afara, Isaac O.;
Tiivistelmä
<p><b>Significance:</b> Optical properties of biological tissues, such as refractive index (RI), are fundamental properties, intrinsically linked to the tissue's composition and structure. We hypothesize that, as the RI and the functional properties of articular cartilage (AC) are dependent on the tissue's structure and composition, the RI of AC is related to its biomechanical properties. Aim: This study aims to investigate the relationship between RI of human AC and its biomechanical properties.</p><p><b>Approach:</b> Human cartilage samples ( formula presented ) were extracted from the right knee joint of three cadaver donors (one female, aged 47 years, and two males, aged 64 and 68 years) obtained from a commercial biobank (Science Care, Phoenix, Arizona, United States). The samples were initially subjected to mechanical indentation testing to determine elastic [equilibrium modulus (EM) and instantaneous modulus (IM)] and dynamic [dynamic modulus (DM)] viscoelastic properties. An Abbemat 3200 automatic one-wavelength refractometer operating at 600 nm was used to measure the RI of the extracted sections. Similarly, Spearman's and Pearson's correlation coefficients were employed for non-normal and normal datasets, respectively, to determine the correlation between the depth-wise RI and biomechanical properties of the cartilage samples as a function of the collagen fibril orientation.</p><p><b>Results:</b> A positive correlation with statistically significant relations ( formula presented ) was observed between the RI and the biomechanical properties (EM, IM, and DM) along the tissue depth for each zone, e.g., superficial, middle, and deep zones. Likewise, a lower positive correlation with statistically significant relations ( formula presented ) was also observed for collagen fibril orientation of all zones with the biomechanical properties. Conclusions: The results indicate that, although the RI exhibits different levels of correlation with different biomechanical properties, the relationship varies as a function of the tissue depth. This knowledge paves the way for optically monitoring changes in AC biomechanical properties nondestructively via changes in the RI. Thus, the RI could be a potential biomarker for assessing the mechanical competency of AC, particularly in degenerative diseases, such as osteoarthritis.</p>
Näytä enemmänOrganisaatiot ja tekijät
Julkaisutyyppi
Julkaisumuoto
Artikkeli
Emojulkaisun tyyppi
Lehti
Artikkelin tyyppi
Alkuperäisartikkeli
Yleisö
TieteellinenVertaisarvioitu
VertaisarvioituOKM:n julkaisutyyppiluokitus
A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessäJulkaisukanavan tiedot
Volyymi
29
Numero
9
ISSN
Julkaisufoorumi
Julkaisufoorumitaso
2
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Kustantajan version lisenssi
CC BY
Rinnakkaistallennettu
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Rinnakkaistallenteen lisenssi
CC BY
Muut tiedot
Tieteenalat
Fysiikka; Sähkö-, automaatio- ja tietoliikennetekniikka, elektroniikka; Materiaalitekniikka; Ympäristötekniikka; Biolääketieteet
Avainsanat
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Kustantajan kansainvälisyys
Kansainvälinen
Kieli
englanti
Kansainvälinen yhteisjulkaisu
Kyllä
Yhteisjulkaisu yrityksen kanssa
Ei
DOI
10.1117/1.jbo.29.9.095003
Julkaisu kuuluu opetus- ja kulttuuriministeriön tiedonkeruuseen
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