视网膜-丘脑-皮质和胼胝体连接通过锰增强磁共振成像可视化,并通过通道追踪技术验证

R. Laing, D. Cross, J. Olavarria
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引用次数: 0

摘要

在Long Evans大鼠中,眼优势柱与斑块胼胝体连接相关(Laing et al., 2015)。我们探索了体内锰增强磁共振成像(MEMRI)作为纵向研究视网膜-丘脑-皮层和胼胝体通路可塑性变化的可能策略。将mcl2分别注入眼内或皮质内以标记这些通路。顺磁离子Mn 2+的转运分别通过对比眼内或皮质注射前和注射后36或12小时获得的图像来评估。在3T磁铁(Philips Achieva, Philips Healthcare, Andover, MA)上使用定制表面线圈和t1加权MPRAGE图像序列(TR/TE = 23/11 ms;Ti = 1000毫秒;FA= 10度获取矩阵432x432mm, 118片,体素大小0.11x0.11x0.2 mm 3)。为了验证Mn 2+的转运,每只动物也接受眼内注射经神经元示踪剂WGA-HRP,或皮质注射HRP。单眼注射MnCl - 2后,MRI图像显示SC、LGN和视觉皮质区域有明显的双侧Mn - 2+积累,这些区域与HRP标记的区域相对应。在出生时单眼去核的成年大鼠中,我们在剩余眼的对侧半球注射MnCl 2,试图检测先前报道的剩余眼同侧胼胝体模式的异常。扫描后,在注入MnCl - 2的半球注射HRP。MRI图像显示,在同一动物中,Mn 2+模式与HRP所显示的胼胝体模式非常相似。我们的研究结果表明,跨神经元的视网膜-丘脑-皮质以及皮质-皮质的Mn 2+运输为这些通路的可塑性变化的纵向研究提供了潜在的有用策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Retino-thalamo-cortical and callosal connections visualized with manganese-enhanced magnetic resonance imaging and validated with tract tracing techniques
Ocular dominance columns correlate with patchy callosal connections in Long Evans rats (Laing et al., 2015). We explored in vivo manganese-enhanced magnetic resonance imaging (MEMRI) as a possible strategy for longitudinal studies of plastic changes in the retino-thalamo-cortical and callosal pathways. MnCl 2 was injected either intraocularly or intracortically to label these pathways, respectively. The transport of the paramagnetic ion Mn 2+ was evaluated by comparing images acquired both before and 36 or 12 hours after intraocular or cortical injections, respectively. Images were acquired on a 3T magnet (Philips Achieva, Philips Healthcare, Andover, MA), using a custom surface coil and a T1-weighted MPRAGE image sequence (TR/TE = 23/11 ms; Ti=1000 ms; FA= 10 deg acquired matrix 432x432 mm over 118 slices, voxel size 0.11x0.11x0.2 mm 3 ). To validate the transport of Mn 2+ , each animal also received either an intraocular injection of the transneuronal tracer WGA-HRP, or cortical injections of HRP. Following monocular injections of MnCl 2 , MRI images showed significant, bilateral accumulations of Mn 2+ in regions of the SC, LGN and visual cortex that corresponded with regions labeled with HRP. In adult rats monocularly enucleated at birth, we injected MnCl 2 in the hemisphere contralateral to the remaining eye in an attempt to detect anomalies reported previously in the callosal pattern ipsilateral to the remaining eye. After the scans, the hemisphere injected with MnCl 2 was injected with HRP. MRI images revealed Mn 2+ patterns that closely resembled the callosal patterns demonstrated with HRP in the same animal. Our results suggest that both transneuronal retino-thalamo-cortical, as well as cortico-cortical transport of Mn 2+ provide potentially useful strategies for longitudinal studies of plastic changes in these pathways.
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