Literature DB >> 15591094

Middle cerebral artery flow velocity and pulse pressure during dynamic exercise in humans.

Shigehiko Ogoh1, Paul J Fadel, Rong Zhang, Christian Selmer, Øivind Jans, Niels H Secher, Peter B Raven.   

Abstract

Exercise challenges cerebral autoregulation (CA) by a large increase in pulse pressure (PP) that may make systolic pressure exceed what is normally considered the upper range of CA. This study examined the relationship between systolic blood pressure (SBP), diastolic blood pressure (DBP), and mean arterial pressure (MAP) and systolic (V(s)), diastolic (V(d)). and mean (V(m)) middle cerebral artery (MCA) blood flow velocity during mild, moderate, and heavy cycling exercise. Dynamic CA and steady-state changes in MCA V in relation to changes in arterial pressure were evaluated using transfer function analysis. PP increased by 37% and 57% during moderate and heavy exercise, respectively (P < 0.05), and the pulsatility of MCA V increased markedly. Thus exercise increased MCA V(m) and V(s) (P < 0.05) but tended to decrease MCA V(d) (P = 0.06). However, the normalized low-frequency transfer function gain between MAP and MCA V(m) and between SBP and MCA V(s) remained unchanged from rest to exercise, whereas that between DBP and MCA V(d) increased from rest to heavy exercise (P < 0.05). These findings suggest that during exercise, CA is challenged by a rapid decrease rather than by a rapid increase in blood pressure. However, dynamic CA remains able to modulate blood flow around the exercise-induced increase in MCA V(m), even during high-intensity exercise.

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Year:  2004        PMID: 15591094     DOI: 10.1152/ajpheart.00979.2004

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  23 in total

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9.  The effect of changes in cardiac output on middle cerebral artery mean blood velocity at rest and during exercise.

Authors:  Shigehiko Ogoh; R Matthew Brothers; Quinton Barnes; Wendy L Eubank; Megan N Hawkins; Sushmita Purkayastha; Albert O-Yurvati; Peter B Raven
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10.  Influence of baroreflex-mediated tachycardia on the regulation of dynamic cerebral perfusion during acute hypotension in humans.

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