Structural Aspects of the Extracellular Matrix of the Tendon: An Atomic Force and Scanning Electron Microscopy Study.
Author:
Affiliation:
1. Laboratory of Human Morphology, Insubria University
2. Department of Experimental Medicine, Parma University
Publisher
International Society of Histology & Cytology
Subject
Histology
Link
http://www.jstage.jst.go.jp/article/aohc/65/1/65_1_37/_pdf
Reference26 articles.
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2. BIRK, D. E., E. I. ZYCBAND, S. WOODRUFF, D. A. WlNKELMANN and R. L. TRELSTAD: Collagen fibrillogenesis in situ: fibril segments become long fibrils as the developing tendons matures. Devel. Dynam. 208 : 291-298 (1997).
3. CRAIG, A. S., M. J. BIRTLES, J. F. CONWAY and D. A. D. PARRY: An estimate of the mean length of collagen fibrils in rat tail-tendon as a function of age. Connect. Tiss. Res. 19: 51-62 (1989).
4. CRIBB, A. M. and J. E. SCOTT: Tendon response to tensile stress: an ultrastructural investigation of collagen-proteoglycan interaction in stressed tendon. J. Anat. 187: 423-428 (1995).
5. Binding Strength Between Cell Adhesion Proteoglycans Measured by Atomic Force Microscopy
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