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Corticospinal Tract Tracing in the Marmoset with a Clinical Whole-Body 3T Scanner Using Manganese-Enhanced MRI

机译:使用锰增强MRI的临床全身3T扫描仪在Mar猴中追踪皮质脊髓区

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摘要

Manganese-enhanced MRI (MEMRI) has been described as a powerful tool to depict the architecture of neuronal circuits. In this study we investigated the potential use of in vivo MRI detection of manganese for tracing neuronal projections from the primary motor cortex (M1) in healthy marmosets (Callithrix Jacchus). We determined the optimal dose of manganese chloride (MnCl2) among 800, 400, 40 and 8nmol that led to manganese-induced hyperintensity furthest from the injection site, as specific to the corticospinal tract as possible, and that would not induce motor deficit. A commonly available 3T human clinical MRI scanner and human knee coil were used to follow hyperintensity in the corticospinal tract 24h after injection. A statistical parametric map of seven marmosets injected with the chosen dose, 8 nmol, showed the corticospinal tract and M1 connectivity with the basal ganglia, substantia nigra and thalamus. Safety was determined for the lowest dose that did not induce dexterity and grip strength deficit, and no behavioral effects could be seen in marmosets who received multiple injections of manganese one month apart. In conclusion, our study shows for the first time in marmosets, a reliable and reproducible way to perform longitudinal ME-MRI experiments to observe the integrity of the marmoset corticospinal tract on a clinical 3T MRI scanner.
机译:锰增强MRI(MEMRI)被描述为描绘神经元回路结构的强大工具。在这项研究中,我们调查了体内MRI检测锰在追踪健康mar猴(Callithrix Jacchus)初级运动皮层(M1)的神经元投射中的潜在用途。我们确定了800、400、40和8nmol之间的氯化锰(MnCl2)的最佳剂量,该剂量可导致距注射部位最远的锰诱导的高强度,尽可能地针对皮质脊髓束,并且不会引起运动障碍。注射后24小时,使用通用的3T人类临床MRI扫描仪和人类膝关节线圈追踪皮质脊髓束的高强度。统计注射了选定剂量8 nmol的七个mar猴的统计参数图,显示了皮质脊髓束和M1与基底神经节,黑质和丘脑的连通性。确定了不会引起灵巧性和握力不足的最低剂量的安全性,并且在间隔一个月接受多次锰注射的mar猴中未观察到行为影响。总而言之,我们的研究首次在mar猴中展示了一种可靠且可重现的方法,可以进行纵向ME-MRI实验,以在临床3T MRI扫描仪上观察mar猴皮质脊髓束的完整性。

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