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健康受试者静息态脑血流变异性的来源:¹³³Xe SPECT 测量研究。

Sources of variability of resting cerebral blood flow in healthy subjects: a study using ¹³³Xe SPECT measurements.

机构信息

Functional Imaging Unit, Department of Diagnostics, Glostrup University Hospital, Glostrup, Denmark.

出版信息

J Cereb Blood Flow Metab. 2013 May;33(5):787-92. doi: 10.1038/jcbfm.2013.17. Epub 2013 Feb 13.

Abstract

Measurements of cerebral blood flow (CBF) show large variability among healthy subjects. The aim of the present study was to investigate the relative effect of established factors influencing CBF on the variability of resting CBF. We retrospectively analyzed spontaneous variability in 430 CBF measurements acquired in 152 healthy, young subjects using (133)Xe single-photon emission computed tomography. Cerebral blood flow was correlated positively with both end-tidal expiratory PCO₂ (PETCO₂) and female gender and inversely with hematocrit (Hct). Between- and within-subject CO₂ reactivity was not significantly different. Including PETCO₂, Hct and gender in the model reduced between-subject and within-subject variance by 14% and 13.5%, respectively. Within-subject variability was mainly influenced by PETCO₂ and between-subject variability mostly by Hct, whereas gender appeared to be of little added value when Hct was also accounted for. The present study confirms large between-subject variability in CBF measurements and that gender, Hct, and PETCO₂ explain only a small part of this variability. This implies that a large fraction of CBF variability may be due to unknown factors such as differences in neuron density or metabolism that could be subject for further studies.

摘要

脑血流(CBF)的测量在健康受试者中存在很大的变异性。本研究旨在探讨影响 CBF 的既定因素对静息 CBF 变异性的相对影响。我们使用(133)Xe 单光子发射计算机断层扫描对 152 名健康年轻受试者的 430 次 CBF 测量进行了回顾性分析。脑血流与呼气末二氧化碳分压(PETCO₂)和女性性别呈正相关,与红细胞压积(Hct)呈负相关。受试者间和受试者内的 CO₂反应性无显著差异。在模型中纳入 PETCO₂、Hct 和性别可分别使受试者间和受试者内方差降低 14%和 13.5%。受试者内变异性主要受 PETCO₂影响,而受试者间变异性主要受 Hct 影响,而当 Hct 也被考虑在内时,性别似乎没有增加太多价值。本研究证实了 CBF 测量中的大受试者间变异性,并且性别、Hct 和 PETCO₂仅解释了这种变异性的一小部分。这意味着 CBF 变异性的很大一部分可能是由于神经元密度或代谢等未知因素引起的,这些因素可能是进一步研究的课题。

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