Literature DB >> 21208686

Oscillations in cerebral blood flow and cortical oxygenation in Alzheimer's disease.

Arenda H E A van Beek1, Joep Lagro, Marcel G M Olde-Rikkert, Rong Zhang, Jurgen A H R Claassen.   

Abstract

In Alzheimer's disease (AD) cerebrovascular function is at risk. Transcranial Doppler, near-infrared spectroscopy, and photoplethysmography are noninvasive methods to continuously measure changes in cerebral blood flow velocity (CBFV), cerebral cortical oxygenated hemoglobin (O(2)Hb), and blood pressure (BP). In 21 patients with mild to moderate AD and 20 age-matched controls, we investigated how oscillations in cerebral blood flow velocity (CBFV) and O(2)Hb are associated with spontaneous and induced oscillations in blood pressure (BP) at the very low (VLF = 0.05 Hz) and low frequencies (LF = 0.1 Hz). We applied spectral and transfer function analysis to quantify dynamic cerebral autoregulation and brain tissue oxygenation. In AD, cerebrovascular resistance was substantially higher (34%, AD vs. control: Δ = 0.69 (0.25) mm Hg/cm/second, p = 0.012) and the transmission of very low frequency (VLF) cerebral blood flow (CBF) oscillations into O(2)Hb differed, with increased phase lag and gain (Δ phase 0.32 [0.15] rad; Δ gain 0.049 [0.014] μmol/cm/second, p both < 0.05). The altered transfer of CBF to cortical oxygenation in AD indicates that properties of the cerebral microvasculature are changed in this disease.
Copyright © 2012 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21208686     DOI: 10.1016/j.neurobiolaging.2010.11.016

Source DB:  PubMed          Journal:  Neurobiol Aging        ISSN: 0197-4580            Impact factor:   4.673


  29 in total

1.  Vascular coupling in resting-state fMRI: evidence from multiple modalities.

Authors:  David C Zhu; Takashi Tarumi; Muhammad Ayaz Khan; Rong Zhang
Journal:  J Cereb Blood Flow Metab       Date:  2015-07-15       Impact factor: 6.200

2.  Depth dependence of coherent hemodynamics in the human head.

Authors:  Kosar Khaksari; Giles Blaney; Angelo Sassaroli; Nishanth Krishnamurthy; Thao Pham; Sergio Fantini
Journal:  J Biomed Opt       Date:  2018-11       Impact factor: 3.170

3.  Blood Pressure and Cerebral Blood Flow in Alzheimer Disease.

Authors:  Daniel A Nation
Journal:  Hypertension       Date:  2018-05-29       Impact factor: 10.190

4.  Methodological comparison of active- and passive-driven oscillations in blood pressure; implications for the assessment of cerebral pressure-flow relationships.

Authors:  Jonathan D Smirl; Keegan Hoffman; Yu-Chieh Tzeng; Alex Hansen; Philip N Ainslie
Journal:  J Appl Physiol (1985)       Date:  2015-07-16

5.  Coupling between arterial pressure, cerebral blood velocity, and cerebral tissue oxygenation with spontaneous and forced oscillations.

Authors:  Caroline A Rickards; Justin D Sprick; Hannah B Colby; Victoria L Kay; Yu-Chieh Tzeng
Journal:  Physiol Meas       Date:  2015-03-23       Impact factor: 2.833

Review 6.  Cerebral autoregulation in Alzheimer's disease.

Authors:  Jurgen A H R Claassen; Rong Zhang
Journal:  J Cereb Blood Flow Metab       Date:  2011-05-04       Impact factor: 6.200

Review 7.  Quintessential risk factors: their role in promoting cognitive dysfunction and Alzheimer's disease.

Authors:  Mak Adam Daulatzai
Journal:  Neurochem Res       Date:  2012-08-12       Impact factor: 3.996

8.  Model-based quantification of cerebral hemodynamics as a physiomarker for Alzheimer's disease?

Authors:  V Z Marmarelis; D C Shin; M E Orme; R Zhang
Journal:  Ann Biomed Eng       Date:  2013-06-15       Impact factor: 3.934

Review 9.  Neurovascular coupling in humans: Physiology, methodological advances and clinical implications.

Authors:  Aaron A Phillips; Franco Hn Chan; Mei Mu Zi Zheng; Andrei V Krassioukov; Philip N Ainslie
Journal:  J Cereb Blood Flow Metab       Date:  2015-11-24       Impact factor: 6.200

10.  Model-based physiomarkers of cerebral hemodynamics in patients with mild cognitive impairment.

Authors:  V Z Marmarelis; D C Shin; M E Orme; R Zhang
Journal:  Med Eng Phys       Date:  2014-03-31       Impact factor: 2.242

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