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June 1, 1972Acta Physiologica Scandinavica133 citations

Studies on Left Ventricular Receptors, Signalling in Non‐Medullated Vagal Afferents

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BÖBengt ÖBergPTPeter Thorén

Key Points

  • Characterize the distribution, activation patterns, and physiological reflex functions of left ventricular mechanoreceptors linked to non-medullated vagal afferents.
  • Recorded electrical impulse activity from non-medullated cardiac vagal afferent nerve fibres.
  • Assessed receptor activation via mechanical interventions including aortic occlusion, arterial pressure elevations, and volume expansion with saline or dextran.
  • Evaluated chemical excitability using veratrum alkaloids, nicotine, and digitalis alkaloids.
  • Receptors were diffusely distributed throughout superficial and deep myocardial layers, shifting from baseline irregular firing to rhythmic or continuous firing upon ventricular distension.
  • Endings functioned primarily as deformation mechanoreceptors excited by increases in intraventricular diastolic pressure and end-diastolic volume, as well as specific chemical agents.
  • Receptor discharge provoked reflex bradycardia, vasodilatation, and blood pressure reduction, functioning as a primary mediator of the Bezold-Jarisch reflex to prevent cardiac overloading.

Abstract

Abstract Left ventricular receptors, signalling in non‐medullated vagal fibres and displaying a low, irregular spontaneous activity, have been analysed by recordings of impulse activity in cardiac afferent nerves. The receptors were distributed diffusely all over the ventricle and in both superficial and deep layers of the myocardium. They were activated by occlusions of the ascending aorta, by substantial elevations of arterial blood pressure and by rapid infusions of saline or dextran, whenever these procedures produced a clearcut increase of intraventricular diastolic pressure and end‐diastolic volume. The endings were also excited by veratrum alkaloids, nicotine and digitalis alkaloids. When activated, the receptors usually displayed a cardiac rhytm, but with intense stimulation the activity usually became continuous. The receptors evidently function as mechano‐ or deformation receptors, responding primarily to a distension of the ventricle. Activation of the receptors causes a reflex bradycardia and, in all probability, vasodilatation and blood pressure fall. They may contribute to the homeostatic control of blood pressure and blood volume, but their main function seems to be to protect the heart from e.g . imminent overloading. The endings are probably of main importance for the emergence of the Bezold‐Jarisch reflex.

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Cite This Study

ÖBerg et al. (1972) studied this question.

synapsesocial.com/papers/6a7609d8554f5a6e3e613ac6https://doi.org/10.1111/j.1748-1716.1972.tb05246.x
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Also Consider

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

  1. 1Circulatory Responses to Stimulation of Medullated and Non‐medullated Afferents in the Cardiac Nerve in the Cat1973 · 96 citations
  2. 2Reflex Effects of Left Ventricular Distention1960 · 72 citations
  3. 3THE PHARMACOLOGY OF THE VERATRUM ALKALOIDS1946 · 210 citations
  4. 4Chemoreflexes From the Heart and Lungs1954 · 348 citations
  5. 5Tonic reflex regulation of the cat's blood pressure through vagal afferents from the cardiopulmonary region.1962 · 47 citations