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Blood pressure changes are consciously perceived by the human brain
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INSUFFICIENT LEANING
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the weight of evidence
3 sources for · 0 against

The available literature discusses central neural regulation and heartbeat awareness correlates, but does not provide direct evidence that blood pressure changes are consciously perceived by the human brain.

Evidence for · 3
2020 · cited by 11
Low dose ketamine is a leading medication used to provide analgesia in pre‐hospital and hospital settings. Low dose ketamine is increasingly used off‐label to treat conditions such as depression. In animals, ketamine stimulates the sympathetic nervous system and increases blood pressure, but these physiological consequences have not been studied in conscious humans. Our data suggest that low dose ketamine administration blunts pain perception and reduces blood pressure, but not muscle sympathetic nerve activity burst frequency, responses during a cold pressor test in healthy humans. These mechanistic, physiological results inform risk‐benefit analysis for clinicians administering low dose ketamine in humans.
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rails:sufficiency:partial_only:for=0+3p:against=0+0p | v55:multi_partial_one_side:lean=lean_partial:for:one_sided

More for · 2
2023 · cited by 5
The vestibular apparatus is highly specialized for detecting linear and angular acceleration, contributing importantly to perception of our position in the gravitational field and to motion in the three spatial axes. Beginning in the inner ear, spatial information is relayed toward higher cortical regions for processing, though the specific locations at which this action takes place remain somewhat ambiguous. This article aims to highlight brain regions known to be involved in the processing of spatial information, as well as those that contribute to a less widely documented function of the vestibular system—its capacity to regulate blood pressure via vestibulosympathetic reflexes. As we go from lying to standing, there is a proportional increase in muscle sympathetic nerve activity (MSNA) to the legs that prevents the fall in blood pressure associated with the pooling of blood toward the feet. While feedback from baroreceptors is partially responsible, vestibulosympathetic reflexes operate in a feed‐forward manner to compensate for postural changes in the gravitational field. The cortical and subcortical network comprising the central sympathetic connectome shares certain elements with the vestibular system, and it is known that vestibular afferents project via the vestibular nuclei to the rostral ventrolateral medulla (RVLM)—the final output nucleus for generating MSNA. Here we consider how vestibular afferents interact with other components of the central sympathetic connectome, with particular emphasis on the potential roles of the insula and dorsolateral prefrontal cortex (dlPFC) as possible core integrative sites for vestibular and higher cortical processes. © 2023 American Physiological Society. Compr Physiol 13:4811‐4832, 2023.
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Differences in heartbeat awareness among males with higher and lower levels of systolic blood pressure - PubMed Save Email Send to Display options Full text links Cite Display options ## Abstract Recent empirical findings related to the baroreceptor hypothesis indicate that elevated heart rate, pulse pressure, and blood pressure may dampen exteroception and interoception. We thus predicted that persons with elevated systolic blood pressure would be less able to accurately perceive their heartbeats and profit from feedback training. This study examined the plausibility of this hypothesis by exposing 57 male students (11 with elevated SBP levels and 46 with normotensive SBP levels) to the Whitehead heartbeat perception task with, and without, feedback training. Results indicated that participants with elevated SBP levels were more able to accurately perceive their heartbeats prior to, and after, feedback training. Participants with elevated SBP levels also showed a significant increase in heartbeat perception accuracy when they were provided with feedback training while participants with normotensive blood pressure levels did not show a significant response to feedback trainin
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