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May 4, 2006Science281 citations

The Embryonic Vertebrate Heart Tube Is a Dynamic Suction Pump

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AFArian S. ForouharMLMichael LieblingAHAnna I. Hickerson

Key Result

Observation of the embryonic zebrafish heart tube revealed that its pumping action results from suction due to elastic wave propagation rather than peristalsis.

PICO

P
Population
Embryonic vertebrate heart function
E
Exposure / Comparator
Embryonic zebrafish heart tube
O
Primary Outcome
Pumping mechanism of the embryonic heart

Abstract

The embryonic vertebrate heart begins pumping blood long before the development of discernable chambers and valves. At these early stages, the heart tube has been described as a peristaltic pump. Recent advances in confocal laser scanning microscopy and four-dimensional visualization have warranted another look at early cardiac structure and function. We examined the movement of cells in the embryonic zebrafish heart tube and the flow of blood through the heart and obtained results that contradict peristalsis as a pumping mechanism in the embryonic heart. We propose a more likely explanation of early cardiac dynamics in which the pumping action results from suction due to elastic wave propagation in the heart tube.

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Cite This Study

Forouhar et al. (2006) studied Embryonic vertebrate heart function. Embryonic zebrafish heart tube was evaluated on Pumping mechanism of the embryonic heart. Observation of the embryonic zebrafish heart tube revealed that its pumping action results from suction due to elastic wave propagation rather than peristalsis.

synapsesocial.com/papers/6a20b42352a81c8a3de5230dhttps://doi.org/10.1126/science.1123775
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