Literature DB >> 6033930

A strand of cardiac muscle. Its ultrastructure and the electrophysiological implications of its geometry.

E A Johnson, J R Sommer.   

Abstract

The structure of a small strand of rabbit heart muscle fibers (trabecula carnea), 30-80 micro in diameter, has been examined with light and electron microscopy. By establishing a correlation between the appearance of regions of close fiber contact in light and electron microscopy, the extent and distribution of regions of close apposition of fibers has been evaluated in approximately 200 micro length of a strand. The distribution of possible regions of resistive coupling between fibers has been approximated by a model system of cables. The theoretical linear electrical properties of such a system have been analyzed and the implications of the results of this analysis are discussed. Since this preparation is to be used for correlated studies of the electrical, mechanical, and cytochemical properties of cardiac muscle, a comprehensive study of the morphology of this preparation has been made. The muscle fibers in it are distinguished from those of the rabbit papillary muscle, in that they have no triads and have a kind of mitochondrion not found in papillary muscle. No evidence of a transverse tubular system was found, but junctions of cisternae of the sarcoplasmic reticulum and the sarcolemma, peripheral couplings, were present. The electrophysiological implications of the absence of transverse tubules are discussed. The cisternae of the couplings showed periodic tubular extensions toward the sarcolemma. A regularly spaced array of Z line-like material was observed, suggesting a possible mechanism for sarcomere growth.

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Mesh:

Year:  1967        PMID: 6033930      PMCID: PMC2107301          DOI: 10.1083/jcb.33.1.103

Source DB:  PubMed          Journal:  J Cell Biol        ISSN: 0021-9525            Impact factor:   10.539


  37 in total

1.  Fine structural localization of adenine nucleoside phosphatase activity in the sarcoplasmic reticulum and the T system of rat myocardium.

Authors:  J Rostgaard; O Behnke
Journal:  J Ultrastruct Res       Date:  1965-06

2.  Cell division in Astasia longa.

Authors:  J R Sommer; J J Blum
Journal:  Exp Cell Res       Date:  1965-09       Impact factor: 3.905

Review 3.  Electron microscopy of sympathetic tissues.

Authors:  M A Grillo
Journal:  Pharmacol Rev       Date:  1966-03       Impact factor: 25.468

4.  The sarcoplasmic reticulum and transverse tubules of the frog's sartorius.

Authors:  L D Peachey
Journal:  J Cell Biol       Date:  1965-06       Impact factor: 10.539

5.  A comparison of the fine structures of frog slow and twitch muscle fibers.

Authors:  S G Page
Journal:  J Cell Biol       Date:  1965-08       Impact factor: 10.539

6.  Cell junctions in amphibian skin.

Authors:  M G Farquhar; G E Palade
Journal:  J Cell Biol       Date:  1965-07       Impact factor: 10.539

7.  Ultrastructure of somatic muscle cells in Ascaris lumbricoides. II. Intermuscular junctions, neuromuscular junctions, and glycogen stores.

Authors:  J Rosenbluth
Journal:  J Cell Biol       Date:  1965-08       Impact factor: 10.539

8.  Cytochemical studies of adenosine triphosphatase activity in the sarcoplasmic reticulum.

Authors:  G F Gauthier; H A Padykula
Journal:  J Cell Biol       Date:  1965-10       Impact factor: 10.539

9.  Correlated morphological and physiological studies on isolated single muscle fibers. I. Fine structure of the crayfish muscle fiber.

Authors:  P W Brandt; J P Reuben; L Girardier; H Grundfest
Journal:  J Cell Biol       Date:  1965-06       Impact factor: 10.539

10.  The sarcoplasmic reticulum, the T system, and the motor terminals of slow and twitch muscle fibers in the garter snake.

Authors:  A Hess
Journal:  J Cell Biol       Date:  1965-08       Impact factor: 10.539

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  54 in total

Review 1.  A synthetic strand of cardiac muscle: its passive electrical properties.

Authors:  M Lieberman; T Sawanobori; J M Kootsey; E A Johnson
Journal:  J Gen Physiol       Date:  1975-04       Impact factor: 4.086

2.  Electrophysiological properties of tissue cultured heart cells grown in a linear array.

Authors:  F Sachs
Journal:  J Membr Biol       Date:  1976-09-17       Impact factor: 1.843

3.  Axon voltage-clamp simulations. A multicellular preparation.

Authors:  F Ramón; N Anderson; R W Joyner; J W Moore
Journal:  Biophys J       Date:  1975-01       Impact factor: 4.033

4.  Formation of myocardial zonal lesions.

Authors:  N B Ratliff; R I Kopelman; R D Goldner; P T Cruz; D B Hackel
Journal:  Am J Pathol       Date:  1975-05       Impact factor: 4.307

5.  Structure and protein composition of sites of papillary muscle attachment to chordae tendineae in avian hearts.

Authors:  J G Tidball; K L Andolina
Journal:  Cell Tissue Res       Date:  1992-12       Impact factor: 5.249

6.  Extraocular muscles: light microscopy and ultrastructural features.

Authors:  A J Martinez; S Hay; K W McNeer
Journal:  Acta Neuropathol       Date:  1976-03-30       Impact factor: 17.088

7.  A quasi-one-dimensional theory for anisotropic propagation of excitation in cardiac muscle.

Authors:  J Wu; E A Johnson; J M Kootsey
Journal:  Biophys J       Date:  1996-11       Impact factor: 4.033

8.  The sarcoplasmic reticulum and associated plasma membrane of trunk muscle lamellae in Branchiostoma lanceolatum (pallas). A transmission and scanning electrom microscopic study including freeze-fractures, direct replicas and x-ray microanalysis of calcium oxalate deposits.

Authors:  P R Flood
Journal:  Cell Tissue Res       Date:  1977-07-11       Impact factor: 5.249

9.  Feet, bridges, and pillars in triad junctions of mammalian skeletal muscle: their possible relationship to calcium buffers in terminal cisternae and T-tubules and to excitation-contraction coupling.

Authors:  A F Dulhunty
Journal:  J Membr Biol       Date:  1989-07       Impact factor: 1.843

10.  One-way blocks in cardiac tissue: a mechanism for propagation failure in Purkinje fibres.

Authors:  M A Lewis; P Grindrod
Journal:  Bull Math Biol       Date:  1991       Impact factor: 1.758

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