Biomedizinische NMR Forschungs GmbH am Max-Planck-Institut für biophysikalische Chemie, 37070 Göttingen, Germany.
Cereb Cortex. 2009 Dec;19(12):2838-47. doi: 10.1093/cercor/bhp057. Epub 2009 Mar 27.
The impact of developmental ablation of Pax6 function on morphology and functional connectivity of the adult cerebrum was studied in cortex-specific Pax6 knockout mice (Pax6cKO) using structural magnetic resonance imaging (MRI), manganese-enhanced MRI, and diffusion tensor MRI in conjunction with fiber tractography. Mutants presented with decreased volumes of total brain and olfactory bulb, reduced cortical thickness, and altered layering of the piriform cortex. Tracking of major neuronal fiber bundles revealed a disorganization of callosal fibers with an almost complete lack of interhemispheric connectivity. In Pax6cKO mice intrahemispheric callosal fibers as well as intracortical fibers were predominantly directed along a rostrocaudal orientation instead of a left-right and dorsoventral orientation found in controls. Fiber disorganization also involved the septohippocampal connection targeting mostly the lateral septal nucleus. The hippocampus was rostrally extended and its volume was increased relative to that of the forebrain and midbrain. Manganese-induced MRI signal enhancement in the CA3 region suggested a normal function of hippocampal pyramidal cells. Noteworthy, several morphologic disturbances in gray and white matter of Pax6cKO mice were similar to observations in human aniridia patients. The present findings indicate an important role of Pax6 in the development of both the cortex and cerebral fiber connectivity.
使用结构磁共振成像(MRI)、锰增强 MRI 和扩散张量 MRI 结合纤维追踪技术,研究了发育性 Pax6 功能缺失对成年大脑形态和功能连接的影响。在皮质特异性 Pax6 敲除小鼠(Pax6cKO)中,突变体表现出总脑和嗅球体积减小、皮质厚度变薄以及梨形皮质分层改变。主要神经元纤维束的追踪显示胼胝体纤维的紊乱,几乎完全缺乏半球间连接。在 Pax6cKO 小鼠中,半球内胼胝体纤维以及皮质内纤维主要沿前后方向定向,而不是在对照中发现的左右和背腹方向。纤维紊乱还涉及到主要靶向外侧隔核的隔海马连接。海马体向头侧延伸,其体积相对于前脑和中脑增加。锰诱导的 CA3 区 MRI 信号增强表明海马锥体细胞的正常功能。值得注意的是,Pax6cKO 小鼠的灰质和白质的几种形态学紊乱与人类无虹膜患者的观察结果相似。本研究结果表明 Pax6 在皮质和大脑纤维连接的发育中具有重要作用。