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Baroreceptor activity impacts upon controlled but not automatic distractor processing.

Lisa Pramme1, Hartmut Schächinger2, Christian Frings1

  • 1Cognitive Psychology Department, Institute of Psychology, University of Trier, Germany.

Biological Psychology
|July 3, 2015
PubMed
Summary
This summary is machine-generated.

Baroreceptor activity, influenced by body position, affects cognitive control. Specifically, controlled distractor processing (Negative Priming) was modulated, while automatic processing (distractor-response binding) was not.

Keywords:
BaroreceptorsBaroreflexCardiac cycleDistractor processingNegative primingSelective attentionStimulus–response binding

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Area of Science:

  • Neuroscience
  • Cardiovascular Physiology
  • Cognitive Psychology

Background:

  • Cardiovascular system changes impact cognitive functions like memory and arousal.
  • Baroreceptor afferents, crucial for blood pressure regulation, connect to brain regions involved in cognitive processing.
  • The effect of baroreceptor activity on cognitive control remains largely unexplored.

Purpose of the Study:

  • To investigate if baroreceptor activation influences selective information processing.
  • To determine the impact of baroreceptor activity on automatic and controlled distractor processing.

Main Methods:

  • A sequential distractor priming task was employed.
  • Baroreceptor activation was manipulated by varying body position.
  • Distractor-response binding and Negative Priming were measured as indicators of automatic and controlled processing, respectively.

Main Results:

  • Body position significantly modulated Negative Priming, indicating an effect on controlled distractor processing.
  • Distractor-response binding, an index of automatic processing, was not affected by body position.
  • This suggests baroreceptor activity selectively impacts controlled cognitive processes.

Conclusions:

  • Baroreceptor activity, modulated by body position, influences controlled, but not automatic, distractor processing.
  • These findings highlight a link between cardiovascular regulation and higher-order cognitive functions.
  • Further research is needed to elucidate the precise neural mechanisms underlying this interaction.