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Functional Ultrasound Imaging of the thalamo-cortical auditory tract in awake ferrets using ultrafast Doppler imaging

机译:使用超快多普勒成像技术对苏醒的雪貂的丘脑-皮质听觉道进行功能超声成像

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Large-scale functional imaging techniques are part of a fast growing field of neuroscience aiming at understanding whole brain activity. The recently introduced Functional Ultrasound Imaging (fUS), based on ultrafast Doppler, is a new very sensitive method monitoring changes in slow blood flow with a high spatial (~100μm) and temporal (down to the cardiac time scale) resolution for a typical imaged section of 15mm wide and 20mm deep (at 15MHz, typical for animal studies), which makes it an unequalled modality in the landscape or functional imaging. It opened a large field of applications in Neuroimaging from epilepsy to spatial representation. Here we present its use to study the functional organization of auditory cortex and thalamic nuclei in the awake ferret.
机译:大型功能成像技术是神经科学快速发展领域的一部分,旨在了解整个大脑的活动。最近推出的基于超快多普勒超声的功能超声成像(fUS)是一种新的非常灵敏的方法,可对慢速血流的变化进行监控,并以高空间(〜100μm)和时间(低至心脏时间标度)分辨率对典型图像进行成像宽度为15毫米,深度为20毫米的部分(在15MHz频率下,通常用于动物研究),这使其成为景观或功能成像领域无与伦比的模态。从癫痫到空间表征,它为Neuroimaging开辟了广阔的应用领域。在这里,我们介绍它的用途,以研究清醒的雪貂的听觉皮层和丘脑核的功能组织。

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