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The power of using functional fMRI on small rodents to study brain pharmacology and disease

机译:在小型啮齿动物上使用功能性功能磁共振成像研究大脑药理学和疾病的力量

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Functional magnetic resonance imaging (fMRI) is an excellent tool to study the effect of pharmacological modulations on brain function in a non-invasive and longitudinal manner. We introduce several blood oxygenation level dependent (BOLD) fMRI techniques, including resting state (rsfMRI), stimulus-evoked (st-fMRI), and pharmacological MRI (phMRI). Respectively, these techniques permit the assessment of functional connectivity during rest as well as brain activation triggered by sensory stimulation and/or a pharmacological challenge. The first part of this review describes the physiological basis of BOLD fMRI and the hemodynamic response on which the MRI contrast is based. Specific emphasis goes to possible effects of anesthesia and the animal’s physiological conditions on neural activity and the hemodynamic response. The second part of this review describes applications of the aforementioned techniques in pharmacologically induced, as well as in traumatic and transgenic disease models and illustrates how multiple fMRI methods can be applied successfully to evaluate different aspects of a specific disorder. For example, fMRI techniques can be used to pinpoint the neural substrate of a disease beyond previously defined hypothesis-driven regions-of-interest. In addition, fMRI techniques allow one to dissect how specific modifications (e.g., treatment, lesion etc.) modulate the functioning of specific brain areas (st-fMRI, phMRI) and how functional connectivity (rsfMRI) between several brain regions is affected, both in acute and extended time frames. Furthermore, fMRI techniques can be used to assess/explore the efficacy of novel treatments in depth, both in fundamental research as well as in preclinical settings. In conclusion, by describing several exemplary studies, we aim to highlight the advantages of functional MRI in exploring the acute and long-term effects of pharmacological substances and/or pathology on brain functioning along with several methodological considerations.
机译:功能磁共振成像(fMRI)是研究药理学调节以无创和纵向方式对脑功能的影响的出色工具。我们介绍了几种血液氧合水平依赖性(BOLD)fMRI技术,包括静息状态(rsfMRI),刺激诱发(st-fMRI)和药理MRI(phMRI)。这些技术分别允许评估休息期间的功能连通性以及由感觉刺激和/或药理学挑战触发的大脑激活。本综述的第一部分描述了BOLD fMRI的生理基础以及MRI对比所基于的血液动力学反应。特别强调麻醉和动物的生理状况对神经活动和血液动力学反应的可能影响。本综述的第二部分描述了上述技术在药理学诱导的以及创伤性和转基因疾病模型中的应用,并说明了如何将多种功能磁共振成像方法成功用于评估特定疾病的不同方面。例如,fMRI技术可用于查明疾病的神经底物,使其超出先前定义的假设驱动的感兴趣区域。此外,fMRI技术使人们能够剖析特定的修饰(例如治疗,病变等)如何调节特定大脑区域的功能(st-fMRI,phMRI)以及几个大脑区域之间的功能连接性(rsfMRI)如何受到影响,两者在紧急和延长的时间范围内。此外,功能磁共振成像技术可用于在基础研究以及临床前环境中深入评估/探索新型疗法的疗效。总之,通过描述一些示例性研究,我们旨在突出功能性MRI在探索药理物质和/或病理学对脑功能的急性和长期影响以及几种方法学考虑因素方面的优势。

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