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简化定量 BOLD 检测健康受试者视觉刺激诱导的氧提取分数变化:迈向人类脑胶质瘤的临床应用。

Streamlined quantitative BOLD for detecting visual stimulus-induced changes in oxygen extraction fraction in healthy participants: toward clinical application in human glioma.

机构信息

Department of Radiology and Nuclear Medicine, Erasmus MC, Rotterdam, The Netherlands.

Department of Physics, Carleton University, Ottawa, ON, Canada.

出版信息

MAGMA. 2023 Dec;36(6):975-984. doi: 10.1007/s10334-023-01110-1. Epub 2023 Aug 9.

Abstract

OBJECTIVE

Monitoring brain oxygenation is critical in brain tumors, as low oxygenation influences tumor growth, pathological angiogenesis, and treatment resistance. This study examined the ability of the streamlined quantitative (sq)BOLD MRI technique to detect oxygenation changes in healthy individuals, as well as its potential application in a clinical setting.

METHODS

We used the asymmetric spin echo (ASE) technique with FLAIR preparation, along with model-based Bayesian inference to quantify the reversible transverse relaxation rate (R) and oxygen extraction fraction (OEF) across the brain at baseline and during visual stimulation in eight healthy participants at 3T; and two patients with glioma at rest only.

RESULTS

Comparing sqBOLD-derived parameters between baseline and visual stimulation revealed a decrease in OEF from 0.56 ± 0.09 at baseline to 0.54 ± 0.07 at the activated state (p = 0.04, paired t test) within a functional localizer-defined volume of interest, and a decline in R from 6.5 ± 1.3s at baseline to 6.2 ± 1.4s at the activated state (p = 0.006, paired t test) in the visual cortex.

CONCLUSION

The sqBOLD technique is sensitive enough to detect and quantify changes in oxygenation in the healthy brain and shows potential for integration into clinical settings to provide valuable information on oxygenation in glioma.

摘要

目的

监测脑氧合对于脑肿瘤至关重要,因为低氧合会影响肿瘤生长、病理性血管生成和治疗耐药性。本研究考察了简化定量(sq)BOLD MRI 技术检测健康个体氧合变化的能力,以及其在临床环境中的潜在应用。

方法

我们在 3T 下使用带有 FLAIR 准备的不对称自旋回波(ASE)技术,以及基于模型的贝叶斯推断,在 8 名健康参与者的整个大脑中定量基线和视觉刺激期间的可逆横向弛豫率(R)和氧提取分数(OEF);以及仅在休息时的 2 名胶质瘤患者。

结果

比较基线和视觉刺激之间的 sqBOLD 衍生参数,在功能局部器定义的感兴趣体积内,OEF 从基线时的 0.56±0.09 下降到激活状态时的 0.54±0.07(p=0.04,配对 t 检验),而 R 从基线时的 6.5±1.3s 下降到激活状态时的 6.2±1.4s(p=0.006,配对 t 检验)。

结论

sqBOLD 技术足够灵敏,可以检测和量化健康大脑中的氧合变化,并显示出整合到临床环境中的潜力,以提供关于胶质瘤氧合的有价值信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78e2/10667381/15396a4eb280/10334_2023_1110_Fig1_HTML.jpg

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