Literature DB >> 3409489

Coiled perimysial fibers of papillary muscle in rat heart: morphology, distribution, and changes in configuration.

T F Robinson1, M A Geraci, E H Sonnenblick, S M Factor.   

Abstract

The morphology, distribution, and configuration of coiled perimysial fibers of rat heart papillary muscle were studied. Methods included bright-field light microscopy of silver-stained sections, scanning and transmission electron microscopy, and differential interference contrast light microscopy of unfixed and unstained specimens. Coiled fibers, elliptical in cross section, are arranged in a branched network that diverges from the muscle-tendon junction and is continuous throughout the length of the muscle and into the ventricle wall. Most fibers range in diameter from less than 1 micron to 10 micron and are parallel with the long axis of the muscle, although branching is common and oblique orientations are seen. Several myocytes are associated with each coiled perimysial fiber. Constituent fibrils (diameter, 40-50 nm) occur in bundles twisted within the fiber. Small satellite elastic fibers are parallel to the collagen fiber axes. Stereo analysis of the coiled perimysial fibers reveals helical configurations, as opposed to planar waviness, that become less convoluted or even straighten as the resting muscle is stretched. Calculations based on cross-sectional areas of fibers, changes in fiber configurations, and tensile moduli reported for collagen fibers of other tissues show that the potential tensile strength of the network of coiled perimysial fibers is sufficient to contribute significantly to the mechanical properties of papillary muscle. Detailed evaluations of possible roles of the coiled perimysial collagen fiber system as a function of passive stretch and contraction in ventricular wall, as well as in papillary muscle, warrant further study.

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Year:  1988        PMID: 3409489     DOI: 10.1161/01.res.63.3.577

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  24 in total

1.  3-Dimensional configuration of perimysial collagen fibres in rat cardiac muscle at resting and extended sarcomere lengths.

Authors:  P J Hanley; A A Young; I J LeGrice; S G Edgar; D S Loiselle
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2.  Left ventricular perimysial collagen fibers uncoil rather than stretch during diastolic filling.

Authors:  D A MacKenna; J H Omens; J W Covell
Journal:  Basic Res Cardiol       Date:  1996 Mar-Apr       Impact factor: 17.165

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Authors:  E H Sonnenblick; M Zhao; C Eng; T H LeJemtel; S M Factor; J Capasso; P Anversa
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Review 4.  Left ventricular dysfunction in ischemic heart disease: fundamental importance of the fibrous matrix.

Authors:  H J Swan
Journal:  Cardiovasc Drugs Ther       Date:  1994-05       Impact factor: 3.727

Review 5.  In vitro cardiac tissue models: Current status and future prospects.

Authors:  Anurag Mathur; Zhen Ma; Peter Loskill; Shaheen Jeeawoody; Kevin E Healy
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Review 6.  Fibrous scaffolds for building hearts and heart parts.

Authors:  A K Capulli; L A MacQueen; Sean P Sheehy; K K Parker
Journal:  Adv Drug Deliv Rev       Date:  2015-12-04       Impact factor: 15.470

7.  Scanning Electron Microscopy of Macerated Tissue to Visualize the Extracellular Matrix.

Authors:  Matthew K Stephenson; Sean Lenihan; Roman Covarrubias; Ryan M Huttinger; Richard J Gumina; Douglas B Sawyer; Cristi L Galindo
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Review 8.  Myofibroblast-mediated mechanisms of pathological remodelling of the heart.

Authors:  Karl T Weber; Yao Sun; Syamal K Bhattacharya; Robert A Ahokas; Ivan C Gerling
Journal:  Nat Rev Cardiol       Date:  2012-12-04       Impact factor: 32.419

9.  Distribution of collagens and fibronectin in the subepicardium during avian cardiac development.

Authors:  J G Tidball
Journal:  Anat Embryol (Berl)       Date:  1992

Review 10.  Renin-angiotensin system and myocardial collagen matrix remodeling in hypertensive heart disease: in vivo and in vitro studies on collagen matrix regulation.

Authors:  C G Brilla; B Maisch; K T Weber
Journal:  Clin Investig       Date:  1993
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