Wilson D A, Sullivan R M
Department of Psychology, University of Oklahoma, Norman 73019.
Brain Res Dev Brain Res. 1990 May 1;53(2):215-21. doi: 10.1016/0165-3806(90)90009-n.
In Experiment 1, infant rats were implanted with a stimulating electrode in the medial forebrain bundle/lateral hypothalamus (MFB/LH) on postnatal day 12 (PN12). Four to 6 hours later, the pups underwent associative olfactory conditioning, with half of the pups trained with 30 temporal pairings of odor (5 s) and MFB/LH stimulation (200 Hz, 300 ms), and the other half trained with random presentations of odor and MFB/LH stimulation. On PN13, pups were tested for: (1) behavioral preference for the conditioned odor; (2) focal glomerular layer 2-DG uptake to the odor; or (3) mitral/tufted cell single-unit response pattern to the odor. Odor-MFB/LH pairings produced a relative behavioral preference, enhanced focal 2-DG uptake and a modified mitral/tufted cell response pattern to the conditioned odor. Random training resulted in none of these changes. In Experiment 2, PN12 pups were anesthetized with urethane and single-unit responses of mitral/tufted cells to MFB/LH stimulation were examined. MFB/LH stimulation produced a brief suppression of mitral/tufted cell activity followed either by a prolonged excitation (18/30 cells; 8-10 s duration) or a prolonged suppression (12/30 cells; 10-30 s). These results suggest that pairing olfactory nerve input with MFB/LH stimulation modifies subsequent behavioral and physiological responses to olfactory nerve input alone. Furthermore, the prolonged olfactory bulb response to MFB/LH stimulation may be critical in this modification.
在实验1中,出生后第12天(PN12)的幼鼠被植入内侧前脑束/外侧下丘脑(MFB/LH)的刺激电极。4至6小时后,幼鼠接受联合嗅觉条件反射训练,一半幼鼠接受气味(5秒)与MFB/LH刺激(200赫兹,300毫秒)的30次时间配对训练,另一半幼鼠接受气味和MFB/LH刺激的随机呈现训练。在PN13,对幼鼠进行以下测试:(1)对条件气味的行为偏好;(2)对该气味的局灶性肾小球层2-脱氧葡萄糖摄取;或(3)对该气味的二尖瓣/簇状细胞单单位反应模式。气味与MFB/LH的配对产生了相对的行为偏好、增强的局灶性2-脱氧葡萄糖摄取以及对条件气味的二尖瓣/簇状细胞反应模式改变。随机训练未导致这些变化。在实验2中,用氨基甲酸乙酯麻醉PN12的幼鼠,并检查二尖瓣/簇状细胞对MFB/LH刺激的单单位反应。MFB/LH刺激使二尖瓣/簇状细胞活动短暂抑制,随后要么是长时间兴奋(18/30个细胞;持续8至10秒),要么是长时间抑制(12/30个细胞;持续10至30秒)。这些结果表明,将嗅觉神经输入与MFB/LH刺激配对会改变随后对单独嗅觉神经输入的行为和生理反应。此外,嗅球对MFB/LH刺激的长时间反应可能在这种改变中起关键作用。