首页> 美国卫生研究院文献>The Journal of Neuroscience >Medial Forebrain Bundle Lesions Fail to Structurally and Functionally Disconnect the Ventral Tegmental Area from Many Ipsilateral Forebrain Nuclei: Implications for the Neural Substrate of Brain Stimulation Reward
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Medial Forebrain Bundle Lesions Fail to Structurally and Functionally Disconnect the Ventral Tegmental Area from Many Ipsilateral Forebrain Nuclei: Implications for the Neural Substrate of Brain Stimulation Reward

机译:前脑内侧束病变无法从许多同侧前脑核的结构和功能上断开腹侧被盖区:对脑刺激奖励的神经基质的影响。

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摘要

Lesions in the medial forebrain bundle rostral to a stimulating electrode have variable effects on the rewarding efficacy of self-stimulation. We attempted to account for this variability by measuring the anatomical and functional effects of electrolytic lesions at the level of the lateral hypothalamus (LH) and by correlating these effects to postlesion changes in threshold pulse frequency (pps) for self-stimulation in the ventral tegmental area (VTA). We implanted True Blue in the VTA and compared cell labeling patterns in forebrain regions of intact and lesioned animals. We also compared stimulation-induced regional [14C]deoxyglucose (DG) accumulation patterns in the forebrains of intact and lesioned animals. As expected, postlesion threshold shifts varied: threshold pps remained the same or decreased in eight animals, increased by small but significant amounts in three rats, and increased substantially in six subjects. Unexpectedly, LH lesions did not anatomically or functionally disconnect all forebrain nuclei from the VTA. Most septal and preoptic regions contained equivalent levels of True Blue label in intact and lesioned animals. In both intact and lesioned groups, VTA stimulation increased metabolic activity in the fundus of the striatum (FS), the nucleus of the diagonal band, and the medial preoptic area. On the other hand, True Blue labeling demonstrated anatomical disconnection of the accumbens, FS, substantia innominata/magnocellular preoptic nucleus (SI/MA), and bed nucleus of the stria terminalis. [14C]DG autoradiography indicated functional disconnection of the lateral preoptic area and SI/MA. Correlations between patterns of True Blue labeling or [14C]deoxyglucose accumulation and postlesion shifts in threshold pulse frequency were weak and generally negative. These direct measures of connectivity concord with the behavioral measures in suggesting a diffuse net-like connection between forebrain nuclei and the VTA.
机译:前脑内侧束至刺激电极的病变对自我刺激的奖励功效有不同的影响。我们试图通过测量下丘脑外侧(LH)水平上的电解损伤的解剖学和功能效应,以及将这些效应与损伤后阈值脉搏频率(pps)的变化相关联,以对腹侧被盖区进行自我刺激,从而解释这种变异性区域(VTA)。我们将True Blue植入VTA中,并比较了完整和患病动物的前脑区域的细胞标记模式。我们还比较了完整和患病动物前脑中刺激诱导的区域[ 14 C]脱氧葡萄糖(DG)积累模式。正如预期的那样,病变后阈值变化各不相同:八只动物的阈值pps保持不变或降低,三只大鼠的阈值pps有所增加,但显着增加,而六名受试者则显着增加。出乎意料的是,LH病变并未从VTA解剖学上或功能上断开所有前脑核。在完整的和患病的动物中,大多数间隔和视前区域都含有同等水平的真蓝标签。在完整组和病变组中,VTA刺激均会增加纹状体(FS)眼底,对角带核和视前内侧区域的代谢活性。另一方面,True Blue标记显示伏隔,FS,无名实性/核细胞视前核(SI / MA)和终末纹的床核的解剖学分离。 [ 14 C] DG放射自显影显示侧视前区和SI / MA功能断开。真蓝标记或[ 14 C]脱氧葡萄糖积累模式与病变后阈值脉冲频率变化之间的相关性较弱,通常呈负相关。这些直接的连通性度量与行为度量相一致,暗示了前脑核与VTA之间存在弥散的网状连接。

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