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April 1, 1968Circulation101 citationsOpen Access

The Anatomic Atrial Connections Between Sinus and A-V Node

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JMJohn MeridethMayo ClinicJTJack L. TitusRegions Hospital

Key Result

Serial histological sectioning confirmed the presence of three anatomic pathways connecting the sinus and A-V nodes in the human heart, which may facilitate orderly atrial depolarization.

PICO

P
Population
Human heart anatomy
E
Exposure / Comparator
Anatomic pathways between sinus and A-V nodes
O
Primary Outcome
Presence of connecting pathways between sinus and A-V nodes

Abstract

The morphology of the sinus and atrioventricular (A-V) nodes of human hearts was studied and connecting pathways between these nodes were sought. The cells of both nodes differed from ordinary atrial and ventricular myocardium in respect to size, shape, number, and arrangement of cytoplasmic organelles. Using the criteria of fiber-to-fiber connection, shown by means of serial histological sectioning, this study confirmed previous reports of three pathways between the sinus and A-V nodes in the human heart. It was not required that these pathways be composed of classic Purkinje-type fibers, though many of the fibers did possess some of the features of Purkinje fibers. While recent evidence reveals that specialized atrial pathways do demonstrate increased conduction velocity, their prime functional significance may be in the facilitation of orderly atrial depolarization, the maintenance of sinus node control of ventricular depolarization under various physiological conditions, and the provision of an orderly "input" into the A-V node, a tissue generally acknowledged to have a low margin of safety.

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Cite This Study

Merideth et al. (1968) studied Human heart anatomy. Anatomic pathways between sinus and A-V nodes was evaluated on Presence of connecting pathways between sinus and A-V nodes. Serial histological sectioning confirmed the presence of three anatomic pathways connecting the sinus and A-V nodes in the human heart, which may facilitate orderly atrial depolarization.

synapsesocial.com/papers/6a4460521851a54078f3d310https://doi.org/10.1161/01.cir.37.4.566
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