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32 results on '"Meniscus chemistry"'

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1. Unveiling the mechanical role of radial fibers in meniscal tissue: Toward structural biomimetics.

2. Biodegradable Tyramine Functional Gelatin/6 Arms-PLA Inks Compatible with 3D Two Photon-Polymerization Printing and Meniscus Tissue Regeneration.

3. The influence of pH and salt concentration on the microstructure and mechanical properties of meniscus extracellular matrix-derived implants.

4. Postnatal morpho-functional development of a dog's meniscus.

5. Spaceflight and hind limb unloading induces an arthritic phenotype in knee articular cartilage and menisci of rodents.

6. Harnessing electrospun nanofibers to recapitulate hierarchical fibrous structures of meniscus.

7. Near-Infrared Spectroscopy for Mapping of Human Meniscus Biochemical Constituents.

9. Type III collagen is a key regulator of the collagen fibrillar structure and biomechanics of articular cartilage and meniscus.

10. A three-dimensional printed silk-based biomimetic tri-layered meniscus for potential patient-specific implantation.

11. AcidoCEST-UTE MRI for the Assessment of Extracellular pH of Joint Tissues at 3 T.

12. Articular cartilage and meniscus reveal higher friction in swing phase than in stance phase under dynamic gait conditions.

13. Development of decellularized meniscus extracellular matrix and gelatin/chitosan scaffolds for meniscus tissue engineering.

14. Analysis of human menisci degeneration via infrared attenuated total reflection spectroscopy.

15. Rates of cavity filling by liquids.

16. Meniscus-on-Demand Parallel 3D Nanoprinting.

17. Detection of calcium pyrophosphate dihydrate crystals in knee meniscus by dual-energy computed tomography.

18. Structure-Function relationships of equine menisci.

19. Temporal development of near-native functional properties and correlations with qMRI in self-assembling fibrocartilage treated with exogenous lysyl oxidase homolog 2.

20. Dynamic compression of human and ovine meniscal tissue compared with a potential thermoplastic elastomer hydrogel replacement.

21. Correlations between iron content in knee joint tissues and chosen indices of peripheral blood morphology.

22. Current advances in the development of natural meniscus scaffolds: innovative approaches to decellularization and recellularization.

23. Meniscus, articular cartilage and nucleus pulposus: a comparative review of cartilage-like tissues in anatomy, development and function.

24. Mechanical function near defects in an aligned nanofiber composite is preserved by inclusion of disorganized layers: Insight into meniscus structure and function.

25. A model system for developing a tissue engineered meniscal enthesis.

26. Micromechanical anisotropy and heterogeneity of the meniscus extracellular matrix.

27. Comparison of glutaraldehyde and carbodiimides to crosslink tissue engineering scaffolds fabricated by decellularized porcine menisci.

28. Anisotropy in the viscoelastic response of knee meniscus cartilage.

29. AMECM/DCB scaffold prompts successful total meniscus reconstruction in a rabbit total meniscectomy model.

30. Preparation of Designed Poly(trimethylene carbonate) Meniscus Implants by Stereolithography: Challenges in Stereolithography.

31. The meniscus vascularization: the direct correlation with tissue composition for tissue engineering purposes.

32. Change perspective to increase diagnostic accuracy of ultrasonography in calcium pyrophosphate dehydrate deposition disease! A new approach: the axial scan of the meniscus.

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