Manganese-enhanced magnetic resonance imaging (MEMRI).
نویسندگان
چکیده
Manganese ion (Mn2+) is an essential metal that participates as a cofactor in a number of critical biological functions, such as electron transport, detoxification of free radicals and synthesis of neurotransmitters. Mn2+ can enter excitable cells using some of the same transport systems as Ca2+ and it can bind to a number of intracellular sites because it has high affinity for Ca2+ and Mg2+ binding sites on proteins and nucleic acids. Paramagnetic forms of manganese ions are potent MRI relaxation agents. Indeed, Mn2+ was the first contrast agent proposed for use in MRI. Recently, there has been renewed interest in combining the strong MRI relaxation effects of Mn2+ with its unique biology, in order to further expand the already broad assortment of useful information that can be measured by MRI. Such an approach has been continuously developed in the past several years to provide unique tissue contrast, to assess tissue viability, to act as a surrogate marker of calcium influx into cells and to trace neuronal connections. This special issue of NMR in Biomedicine on manganese-enhanced MRI (MEMRI) is aimed at providing the readers of this journal with an extensive review of some of the most prominent applications of MEMRI in biological systems. Written by several of the leaders in the field, the reviews and original research articles featured in this special issue are likely to offer an exciting and inspiring view of the broad range of applications of MEMRI.
منابع مشابه
Manganese-Enhanced MRI: Biological Applications in Neuroscience
Magnetic resonance imaging (MRI) is an excellent non-invasive tool to investigate biological systems. The administration of the paramagnetic divalent ion manganese (Mn(2+)) enhances MRI contrast in vivo. Due to similarities between Mn(2+) and calcium (Ca(2+)), the premise of manganese-enhanced MRI (MEMRI) is that the former may enter neurons and other excitable cells through voltage-gated Ca(2+...
متن کاملCocaine-induced brain activation detected by dynamic manganese-enhanced magnetic resonance imaging (MEMRI).
Dynamic manganese-enhanced magnetic resonance imaging (MEMRI) detects neuronal activity based on the passage of Mn(2+) into active neurons. Because this mechanism is independent of any hemodynamic response, it is potentially ideal for pharmacological studies and was applied to investigate the acute CNS effects of cocaine in the rat. Dose-dependent, region-specific MEMRI signals were seen mostly...
متن کاملManganese-enhanced MRI reveals multiple cellular and vascular layers in normal and degenerated retinas.
PURPOSE To use manganese-enhanced magnetic resonance imaging (MEMRI) at 25 × 25 × 800 μm(3) to image different retinal and vascular layers in the rat retinas. MATERIALS AND METHODS Manganese-chloride was injected intraocularly in normal (n = 5) and Royal College of Surgeons (RCS, an model of photoreceptor degeneration) (n = 5) rats at postnatal day 90. MEMRI at 4.7 T was performed 24 hours la...
متن کاملManganese enhanced magnetic resonance imaging (MEMRI): a powerful new imaging method to study tinnitus.
Manganese enhanced magnetic resonance imaging (MEMRI) is a method used primarily in basic science experiments to advance the understanding of information processing in central nervous system pathways. With this mechanistic approach, manganese (Mn(2+)) acts as a calcium surrogate, whereby voltage-gated calcium channels allow for activity driven entry of Mn(2+) into neurons. The detection and qua...
متن کاملMapping prefrontal circuits in vivo with manganese-enhanced magnetic resonance imaging in monkeys.
Manganese-enhanced magnetic resonance imaging (MEMRI) provides a powerful tool to study multisynaptic circuits in vivo and thereby to link information about neural structure and function within individual subjects. Making the best use of MEMRI in monkeys requires minimizing manganese-associated neurotoxicity, maintaining sensitivity to manganese-dependent signal changes and mapping transport th...
متن کاملMagnetic Resonance Imaging Modalities with
Abbreviations: BBB: Blood Brain Barrier; Ca: Calcium; CT: Computed Tomography; EM: Electro-Magnetic; EMA: European Medicines Agency; FDA: (U.S.) Food And Drug Administration; Fmri: Functional Magnetic Resonance Imaging; Gd: Gadolinium; GI: Gastro-Intestinal; IV: Intra-Venous; Mn: Manganese; MEMRI: Manganese-Enhanced MRI; Mn-DPDP: Chelated Manganese Nanoparticles; MRA: Magnetic Resonance Angiogr...
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ورودعنوان ژورنال:
- NMR in biomedicine
دوره 17 8 شماره
صفحات -
تاریخ انتشار 2004