陈振跃
- 教师英文名称: Zhenyue Chen
- 教师拼音名称: chen zhenyue
- 学历: 博士研究生毕业
- 学位: 工学博士学位
- 毕业院校: 北京理工大学
- 学科:光学
生物医学工程
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影响因子:17.521
DOI码:10.1002/advs.202205191
发表刊物:Advanced Science
关键字:brain activation electrical paw stimulation functional magnetic resonance imaging multimodal imaging multispectral optoacoustic tomography neuroimaging
摘要:Functional magnetic resonance imaging (fMRI) has massively contributed to the understanding of mammalian brain function. However, the origin and interpretation of the blood oxygen level-dependent (BOLD) signals retrieved by fMRI remain highly disputed. This article reports on the development of a fully hybridized system enabling concurrent functional magnetic resonance optoacoustic tomography (MROT) measurements of stimulus-evoked brain-wide sensory responses in mice. The highly complementary angiographic and soft tissue contrasts of both modalities along with simultaneous multi-parametric readings of stimulus-evoked hemodynamic responses are leveraged in order to establish unequivocal links between the various counteracting physiological and metabolic processes in the brain. The results indicate that the BOLD signals are highly correlated, both spatially and temporally, with the total hemoglobin readings resolved with volumetric multi-spectral optoacoustic tomography. Furthermore, the differential oxygenated and deoxygenated hemoglobin optoacoustic readings exhibit superior sensitivity as compared to the BOLD signals when detecting stimulus-evoked hemodynamic responses. The fully hybridized MROT approach greatly expands the neuroimaging toolset to comprehensively study neurovascular and neurometabolic coupling mechanisms and related diseases.
合写作者:Gezginer, Irmak,Augath, Mark Aurel,Liu, Yu Hang,Ni, Ruiqing,Deán Ben, Xosé Luís
第一作者:Chen, Zhenyue
论文类型:期刊论文
通讯作者:Razansky, Daniel
卷号:10
期号:3
页面范围:e2205191
ISSN号:2198-3844
是否译文:否
发表时间:2023-01-01
收录刊物:SCI