Literature DB >> 27888058

Cerebrovascular reactivity mapping without gas challenges.

Peiying Liu1, Yang Li2, Marco Pinho3, Denise C Park4, Babu G Welch5, Hanzhang Lu6.   

Abstract

Cerebrovascular reactivity (CVR), the ability of cerebral vessels to dilate or constrict, has been shown to provide valuable information in the diagnosis and treatment evaluation of patients with various cerebrovascular conditions. CVR mapping is typically performed using hypercapnic gas inhalation as a vasoactive challenge while collecting BOLD images, but the inherent need of gas inhalation and the associated apparatus setup present a practical obstacle in applying it in routine clinical use. Therefore, we aimed to develop a new method to map CVR using resting-state BOLD data without the need of gas inhalation. This approach exploits the natural variation in respiration and measures its influence on BOLD MRI signal. In this work, we first identified a surrogate of the arterial CO2 fluctuation during spontaneous breathing from the global BOLD signal. Second, we tested the feasibility and reproducibility of the proposed approach to use the above-mentioned surrogate as a regressor to estimate voxel-wise CVR. Third, we validated the "resting-state CVR map" with a conventional CVR map obtained with hypercapnic gas inhalation in healthy volunteers. Finally, we tested the utility of this new approach in detecting abnormal CVR in a group of patients with Moyamoya disease, and again validated the results using the conventional gas inhalation method. Our results showed that global BOLD signal fluctuation in the frequency range of 0.02-0.04Hz contains the most prominent contribution from natural variation in arterial CO2. The CVR map calculated using this signal as a regressor is reproducible across runs (ICC=0.91±0.06), and manifests a strong spatial correlation with results measured with a conventional hypercapnia-based method in healthy subjects (r=0.88, p<0.001). We also found that resting-state CVR was able to identify vasodilatory deficit in patients with steno-occlusive disease, the spatial pattern of which matches that obtained using the conventional gas method (r=0.71±0.18). These results suggest that CVR obtained with resting-state BOLD may be a useful alternative in detecting vascular deficits in clinical applications when gas challenge is not feasible.
Copyright © 2016 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Cerebrovascular reactivity; Global signal; Hypercapnia (CO(2)) inhalation; Moyamoya disease; Resting-state BOLD fMRI; Spontaneous CO(2) fluctuation

Mesh:

Year:  2016        PMID: 27888058      PMCID: PMC5321860          DOI: 10.1016/j.neuroimage.2016.11.054

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  52 in total

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3.  A case study of magnetic resonance imaging of cerebrovascular reactivity: a powerful imaging marker for mild traumatic brain injury.

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5.  The influence of carbon dioxide on brain activity and metabolism in conscious humans.

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10.  A simple breathing circuit allowing precise control of inspiratory gases for experimental respiratory manipulations.

Authors:  Felipe B Tancredi; Isabelle Lajoie; Richard D Hoge
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2.  ASL-MRICloud: An online tool for the processing of ASL MRI data.

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Review 6.  Cerebrovascular reactivity (CVR) MRI with CO2 challenge: A technical review.

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9.  Functional Magnetic Resonance Imaging Activation Optimization in the Setting of Brain Tumor-Induced Neurovascular Uncoupling Using Resting-State Blood Oxygen Level-Dependent Amplitude of Low Frequency Fluctuations.

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10.  Local Glioma Cells Are Associated with Vascular Dysregulation.

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