Bruinsma Tyler J, Sarma Vidur V, Oh Yoonbae, Jang Dong Pyo, Chang Su-Youne, Worrell Greg A, Lowe Val J, Jo Hang Joon, Min Hoon-Ki
Department of Radiology, College of Medicine, Mayo Clinic, Rochester, MN, United States.
Department of Pharmaceutics and Brain Barriers Research Center, College of Pharmacy, University of Minnesota, Minneapolis, MN, United States.
Front Neurosci. 2018 Apr 10;12:238. doi: 10.3389/fnins.2018.00238. eCollection 2018.
Functional magnetic resonance imaging (fMRI) is widely used in investigations of normal cognition and brain disease and in various clinical applications. Pharmacological fMRI (pharma-fMRI) is a relatively new application, which is being used to elucidate the effects and mechanisms of pharmacological modulation of brain activity. Characterizing the effects of neuropharmacological agents on regional brain activity using fMRI is challenging because drugs modulate neuronal function in a wide variety of ways, including through receptor agonist, antagonist, and neurotransmitter reuptake blocker events. Here we review current knowledge on neurotransmitter-mediated blood-oxygen-level dependent (BOLD) fMRI mechanisms as well as recently updated methodologies aimed at more fully describing the effects of neuropharmacologic agents on the BOLD signal. We limit our discussion to dopaminergic signaling as a useful lens through which to analyze and interpret neurochemical-mediated changes in the hemodynamic BOLD response. We also discuss the need for future studies that use multi-modal approaches to expand the understanding and application of pharma-fMRI.
功能磁共振成像(fMRI)广泛应用于正常认知和脑部疾病的研究以及各种临床应用中。药物功能磁共振成像(pharma-fMRI)是一种相对较新的应用,正被用于阐明药物对脑活动的调节作用及其机制。利用fMRI来表征神经药理学药物对局部脑活动的影响具有挑战性,因为药物通过多种方式调节神经元功能,包括通过受体激动剂、拮抗剂和神经递质再摄取阻断事件。在此,我们综述了关于神经递质介导的血氧水平依赖(BOLD)fMRI机制的当前知识,以及旨在更全面描述神经药理学药物对BOLD信号影响的最新方法。我们将讨论局限于多巴胺能信号传导,将其作为一个有用的视角,通过它来分析和解释血流动力学BOLD反应中神经化学介导的变化。我们还讨论了未来研究的必要性,这些研究需要采用多模态方法来扩展对pharma-fMRI的理解和应用。