Literature DB >> 11506984

Predicting cerebral blood flow response to orthostatic stress from resting dynamics: effects of healthy aging.

K Narayanan1, J J Collins, J Hamner, S Mukai, L A Lipsitz.   

Abstract

The transfer function relating arterial pressure (AP) to cerebral blood flow velocity (CBFV) during resting conditions has been used to predict the CBFV response to hypotension. We hypothesized that this approach could predict the CBFV response to posture change in elderly individuals if impaired autoregulation allowed changes in AP to be passively transferred to CBFV. AP (Finapres) and CBFV (middle cerebral artery transcranial Doppler) were measured in 10 healthy young (age 24 +/- 1 yr) and 10 healthy elderly (age 72 +/- 3 yr) subjects during 5 min of quiet sitting and 1 min of active standing while breathing was paced at 0.25 Hz. Transfer functions between AP and CBFV changes during sitting were estimated from each full waveform in both low-frequency (LF; 0.05-0.2 Hz) and heartbeat-frequency (HBF; 0.7-1.4 Hz) ranges. The impulse-response function was used to compute changes in CBFV during posture change. The LF transfer function did not predict orthostatic changes in CBFV in either group, suggesting normal cerebral autoregulation. In the HBF range, the prediction was high in elderly (R = 0.65 +/- 0.23) but not young subjects (R = 0.19 +/- 0.35; P < 0.003, young vs. elderly). Thus rapidly acting regulatory mechanisms that reduce the transmission of beat-to-beat changes in AP to CBFV may be engaged during posture change in young but not elderly subjects.

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Year:  2001        PMID: 11506984     DOI: 10.1152/ajpregu.2001.281.3.R716

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


  13 in total

1.  Spectral indices of human cerebral blood flow control: responses to augmented blood pressure oscillations.

Authors:  J W Hamner; Michael A Cohen; Seiji Mukai; Lewis A Lipsitz; J Andrew Taylor
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Authors:  Zhi Chen; Kun Hu; H Eugene Stanley; Vera Novak; Plamen Ch Ivanov
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9.  Assessing cerebral autoregulation via oscillatory lower body negative pressure and projection pursuit regression.

Authors:  J Andrew Taylor; Can Ozan Tan; J W Hamner
Journal:  J Vis Exp       Date:  2014-12-10       Impact factor: 1.355

10.  Reliability, asymmetry, and age influence on dynamic cerebral autoregulation measured by spontaneous fluctuations of blood pressure and cerebral blood flow velocities in healthy individuals.

Authors:  Santiago Ortega-Gutierrez; Nils Petersen; Arjun Masurkar; Andres Reccius; Amy Huang; Min Li; Jae H Choi; Randolph S Marshall
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