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Published on: August 30, 2013
Resolving the True Ventricular Mural Architecture
Robert S Stephenson1, Peter Agger2, Camilla Omann3
1Comparative Medicine Lab, Department of Clinical Medicine, Aarhus University, DK-8200 Aarhus, Denmark. robert.stephenson@clin.au.dk.
Insights
Cardiomyocytes in the heart ventricles form a complex three-dimensional myocardial mesh, not sheets or bands. This mesh structure explains how the ventricular myocardium functions as a muscular hydrostat.
Area of Science:
- Cardiovascular Anatomy
- Cardiac Electrophysiology
- Biomedical Engineering
Background:
- The arrangement of cardiomyocytes within the ventricular walls has been debated for centuries.
- Previous models proposed 'sheets,' 'sheetlets,' or 'myocardial bands,' but lacked definitive anatomical evidence.
- The spiraling nature of cardiomyocyte chains has been recognized since the late 19th century.
Purpose of the Study:
- To review historical accounts of ventricular wall structure.
- To present anatomical evidence supporting a novel 'myocardial mesh' model.
- To elucidate the functional implications of this mesh structure for ventricular mechanics.
Main Methods:
- Review of historical anatomical descriptions.
- Analysis of anatomical evidence supporting the myocardial mesh model.
- Correlation of structural findings with functional properties of the myocardium.
Main Results:
- Cardiomyocytes aggregate within a fibrous matrix to form a three-dimensional myocardial mesh.
- This mesh structure challenges previous models of ventricular wall organization.
- The myocardial mesh functions antagonistically, supporting the muscular hydrostat theory.
Conclusions:
- The ventricular myocardium is best described as a myocardial mesh, not sheets or bands.
- This mesh structure is crucial for the heart's function as a muscular hydrostat.
- Further research into cardiac anatomy can refine our understanding of heart mechanics.
Abstract:
The precise nature of packing together of the cardiomyocytes within the ventricular walls has still to be determined. The spiraling nature of the chains of interconnected cardiomyocytes has long been recognized. As long ago as the end of the nineteenth century, Pettigrew had emphasized that the ventricular cone was not arranged on the basis of skeletal muscle. Despite this guidance, subsequent anatomists described entities such as “bulbo-spiral muscles”, with this notion of subunits culminating in the suggestion that the ventricular cone could be unwrapped so as to produce a “ventricular myocardial band”. Others, in contrast, had suggested that the ventricular walls were arranged on the basis of “sheets”, or more recently “sheetlets”, with investigators seeking to establishing the angulation of these entities using techniques such as magnetic resonance imaging. Our own investigations, in contrast, have shown that the cardiomyocytes are aggregated together within the supporting fibrous matrix so as to produce a three-dimensional myocardial mesh. In this review, we summarize the previous accounts, and provide the anatomical evidence we have thus far accumulated to support the model of the myocardial mesh. We show how these anatomic findings underscore the concept of the myocardial mesh functioning in antagonistic fashion. They lend evidence to support the notion that the ventricular myocardium works as a muscular hydrostat.
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