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September 14, 2004The Anatomical Record Part A Discoveries in Molecular Cellular and Evolutionary Biology61 citationsOpen Access

Cytoarchitecture and intercalated disks of the working myocardium and the conduction system in the mammalian heart

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TSTatsuo ShimadaHKHiroaki KawazatoAYAiko Yasuda

Structured PICO

P
Population
Mammalian heart tissue (including sheep Purkinje cells)
I
Intervention
Transmission and scanning electron microscopy following NaOH/ultrasonication treatment
O
Outcome
Cytoarchitecture and intercalated disks structure of working myocardium and conduction system

This study details the ultrastructural differences in intercalated disks between working myocardium and the conduction system in mammalian hearts.

Abstract

Working and specialized cardiac myocytes and their intercalated disks (ID) in the mammalian heart were examined by transmission and scanning electron microscopy. The NaOH/ultrasonication treatment of cardiac tissues resulted in the digestion of collagen fibers and separation of intercellular junctions. Auricular and ventricular myocytes were cylindrical in shape, bifurcated, and connected end-to-end at the ID. The ID in the working myocardium showed a stair-like profile, consisting of steps (plicate segments) and corresponding risers (interplicate segments). The ventricular myocytes had many steps and risers. The steps were filled with numerous finger-like microprojections, including desmosomes, fasciae adherentes, and small gap junctions. The risers showed the smooth surface, including desmosomes and large gap junctions. The cell strands of the sinoatrial node were oriented linearly, while those of the atrioventricular node formed a reticular network. The ID in both nodal cells was underdeveloped, having few microprojections. Myocytes in the His bundle and its branches were arranged in parallel, and Purkinje cell strands formed reticular networks. The ID in the His-Purkinje system was irregular in appearance, and the microprojections were larger in size and smaller in number than those of working myocytes. There were few microprojections in the sheep Purkinje cells. The gap junctions in the conduction system were few or small in size in the nodal tissue, but large in the His-Purkinje system.

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Cite This Study

Shimada et al. (2004) studied this question.

synapsesocial.com/papers/6a1eec575b601e8f2e050448https://doi.org/10.1002/ar.a.20109
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Functional morphology of the conduction system and the myocardium in the sheep heart as revealed by scanning and transmission electron microscopic analyses.1986 · 21 citations
  2. 2The Intercalated Disc of Monkey Myocardial Cells and Purkinje Fibers as Revealed by Scanning Electron Microscopy.1996 · 22 citations
  3. 3Distribution and three-dimensional structure of intercellular junctions in canine myocardium.1989 · 257 citations
  4. 4THE ULTRASTRUCTURE OF THE CAT MYOCARDIUM1969 · 309 citations
  5. 5Structural differences in the cytoarchitecture and intercalated discs between the working myocardium and conduction system in the human heart2002 · 21 citations