Mitchell S J, Rawlins J N, Steward O, Olton D S
J Neurosci. 1982 Mar;2(3):292-302. doi: 10.1523/JNEUROSCI.02-03-00292.1982.
This study was designed to determine (1) which brain area paces the theta rhythm in the medial entorhinal cortex (MEC) of rats and (2) the extent to which the behavioral effects of lesions in the medial septal area (MSA), which disrupt the cholinesterase-related pathway to the hippocampal formation, resemble the effects previously reported to result from fimbria-fornix lesions. MSA lesions abolished or decreased theta rhythm in dorsal hippocampus (DHPC) and MEC; acetylcholinesterase (AChE) staining was depleted or diminished in all of the hippocampus and entorhinal cortex. Rats with MSA lesions were impaired on acquisition of a radial arm maze task. Unilateral fimbria lesions left theta rhythm and AChE staining essentially unaltered in ipsilateral DHPC and MEC but depleted AChE in ipsilateral ventral hippocampus (VHPC) and ventral lateral entorhinal cortex (LEC). A lesion of the dorsal fornix at the level of the hippocampal flexure left ipsilateral DHPC theta rhythm and AChE stain unaltered while causing a substantial reduction in theta rhythm and depletion of AChE in ipsilateral MEC. AChE staining was complete in VHPC and LEC. These results suggest tha MSA paces MEC theta rhythm and that the presumed cholinergic projection which mediates this function travels in the dorsal fornix. The fimbria carries a presumed cholinergic projection to ventral LEC. Rats with MSA lesions can learn a radial arm maze task, unlike rats with fimbria-fornix lesions, but they learn significantly slower than normal rats.
(1)大鼠内侧内嗅皮质(MEC)中θ节律的起搏脑区;(2)内侧隔区(MSA)损伤破坏了通向海马结构的胆碱酯酶相关通路,其行为学效应与先前报道的穹窿海马伞损伤的效应相似程度。MSA损伤消除或降低了背侧海马(DHPC)和MEC中的θ节律;海马和内嗅皮质中的乙酰胆碱酯酶(AChE)染色减少或消失。MSA损伤的大鼠在放射状臂迷宫任务的习得方面受损。单侧穹窿海马伞损伤使同侧DHPC和MEC中的θ节律和AChE染色基本未改变,但同侧腹侧海马(VHPC)和腹侧外侧内嗅皮质(LEC)中的AChE减少。在海马弯曲水平的背侧穹窿损伤使同侧DHPC的θ节律和AChE染色未改变,同时导致同侧MEC中的θ节律大幅降低和AChE减少。VHPC和LEC中的AChE染色完整。这些结果表明,MSA起搏MEC的θ节律,介导该功能的假定胆碱能投射经背侧穹窿传导。穹窿海马伞向腹侧LEC传递假定的胆碱能投射。与穹窿海马伞损伤的大鼠不同,MSA损伤的大鼠可以学会放射状臂迷宫任务,但它们的学习速度明显慢于正常大鼠。