Literature DB >> 21276818

Utility of transcranial Doppler ultrasound for the integrative assessment of cerebrovascular function.

C K Willie1, F L Colino, D M Bailey, Y C Tzeng, G Binsted, L W Jones, M J Haykowsky, J Bellapart, S Ogoh, K J Smith, J D Smirl, T A Day, S J Lucas, L K Eller, P N Ainslie.   

Abstract

There is considerable utility in the use of transcranial Doppler ultrasound (TCD) to assess cerebrovascular function. The brain is unique in its high energy and oxygen demand but limited capacity for energy storage that necessitates an effective means of regional blood delivery. The relative low cost, ease-of-use, non-invasiveness, and excellent temporal resolution of TCD make it an ideal tool for the examination of cerebrovascular function in both research and clinical settings. TCD is an efficient tool to access blood velocities within the cerebral vessels, cerebral autoregulation, cerebrovascular reactivity to CO(2), and neurovascular coupling, in both physiological states and in pathological conditions such as stroke and head trauma. In this review, we provide: (1) an overview of TCD methodology with respect to other techniques; (2) a methodological synopsis of the cerebrovascular exam using TCD; (3) an overview of the physiological mechanisms involved in regulation of the cerebral blood flow; (4) the utility of TCD for assessment of cerebrovascular pathology; and (5) recommendations for the assessment of four critical and complimentary aspects of cerebrovascular function: intra-cranial blood flow velocity, cerebral autoregulation, cerebral reactivity, and neurovascular coupling. The integration of these regulatory mechanisms from an integrated systems perspective is discussed, and future research directions are explored.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21276818     DOI: 10.1016/j.jneumeth.2011.01.011

Source DB:  PubMed          Journal:  J Neurosci Methods        ISSN: 0165-0270            Impact factor:   2.390


  142 in total

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Review 2.  Review of optical coherence tomography based angiography in neuroscience.

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3.  Adenosine receptor-dependent signaling is not obligatory for normobaric and hypobaric hypoxia-induced cerebral vasodilation in humans.

Authors:  Ryan L Hoiland; Anthony R Bain; Michael M Tymko; Mathew G Rieger; Connor A Howe; Christopher K Willie; Alex B Hansen; Daniela Flück; Kevin W Wildfong; Mike Stembridge; Prajan Subedi; James Anholm; Philip N Ainslie
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4.  Middle cerebral artery blood flow velocity during a 4 km cycling time trial.

Authors:  Ben Rattray; Brittany A Smale; Joseph M Northey; Disa J Smee; Nathan G Versey
Journal:  Eur J Appl Physiol       Date:  2017-04-13       Impact factor: 3.078

5.  Cerebral pressure-flow relationship in lowlanders and natives at high altitude.

Authors:  Jonathan D Smirl; Samuel J E Lucas; Nia C S Lewis; Gregory R duManoir; Gregory R Dumanior; Kurt J Smith; Akke Bakker; Aperna S Basnyat; Philip N Ainslie
Journal:  J Cereb Blood Flow Metab       Date:  2013-10-30       Impact factor: 6.200

6.  Indomethacin-induced impairment of regional cerebrovascular reactivity: implications for respiratory control.

Authors:  Ryan L Hoiland; Philip N Ainslie; Kevin W Wildfong; Kurt J Smith; Anthony R Bain; Chris K Willie; Glen Foster; Brad Monteleone; Trevor A Day
Journal:  J Physiol       Date:  2015-01-14       Impact factor: 5.182

7.  Carotid artery stiffness and hemodynamic pulsatility during cognitive engagement in healthy adults: a pilot investigation.

Authors:  Kevin S Heffernan; Nicole L Spartano; Jacqueline A Augustine; Wesley K Lefferts; William E Hughes; Gary F Mitchell; Randall S Jorgensen; Brooks B Gump
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8.  Effects of vasodilatation and pressor response on neurovascular coupling during dynamic exercise.

Authors:  Yuji Yamaguchi; Tsukasa Ikemura; Hideaki Kashima; Naoyuki Hayashi
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9.  Cerebrovascular reactivity is increased with acclimatization to 3,454 m altitude.

Authors:  Daniela Flück; Christoph Siebenmann; Stefanie Keiser; Adrian Cathomen; Carsten Lundby
Journal:  J Cereb Blood Flow Metab       Date:  2015-03-25       Impact factor: 6.200

10.  Acute volume expansion attenuates hyperthermia-induced reductions in cerebral perfusion during simulated hemorrhage.

Authors:  Zachary J Schlader; Thomas Seifert; Thad E Wilson; Morten Bundgaard-Nielsen; Niels H Secher; Craig G Crandall
Journal:  J Appl Physiol (1985)       Date:  2013-04-11
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