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首页> 外文期刊>Brain research >Optogenetic excitation of LDTg axons in the VTA reinforces operant responding in rats
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Optogenetic excitation of LDTg axons in the VTA reinforces operant responding in rats

机译:VTA中LDTG轴突的光学激发加强了大鼠响应的操作

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The laterodorsal tegmental nucleus (LDTg) importantly contributes to regulating firing activity of midbrain dopamine neurons and forebrain dopamine levels. Whether excitation of LDTg afferents to the ventral tegmental area (VTA) can reinforce operant behavior in rats is not known. Rats received adeno-associated viral vectors encoding channelrhodopsin2 (ChR2) and EYFP or EYFP only into the LDTg and were implanted with bilateral optic probes aimed at the VTA. LDTg ChR2-infected rats, but not LDTg EYFP-infected rats acquired lever pressing to obtain photostimulation into the VTA. During reversal testing, where contingencies between response levers were reversed, LDTg ChR2-infected rats learned to press the alternate, now reinforced, lever within one session. Following pretreatment with the broad-spectrum dopamine receptor blocker flupenthixol LDTg ChR2-infected rats initiated lever-pressing with normal latencies and lever-pressed normally for the first ten minutes of the session. Lever-pressing rates were strongly reduced thereafter. These results provide further support for an important role of LDTg inputs to the VTA in appetitively motivated behaviors. (C) 2015 Elsevier B.V. All rights reserved.
机译:横向性的Tegmental核(LDTG)主要有助于调节中脑多巴胺神经元和前脑多巴胺水平的烧制活性。是否对腹侧传统区域(VTA)的LDTG引义的激发可以增强大鼠的操作性行为是未知的。大鼠接受腺相关的病毒载体,仅在LDTG中编码沟道RHODOPSIN2(CHR2)和EYFP或EYFP,并植入瞄准VTA的双侧视神经探针。 LDTG CHR2感染的大鼠,但不是LDTG EYFP感染的大鼠获得的杠杆按压以获得光刺激成VTA。在逆转测试期间,在逆转响应杆之间的突发事件中,LDTG CHR2感染的大鼠学会了以在一次会议中按下替代,现在加强杠杆。在使用广谱多巴胺受体阻滞剂Flupenthixol LDTG CHR2感染大鼠的预处理后,通过正常延迟和正常杠杆压制,在会议的前十分钟中杠杆压力。此后强烈减少了杠杆压力率。这些结果提供了对LDTG输入对VTA的重要作用的进一步支持,其具有满足的动机行为。 (c)2015 Elsevier B.v.保留所有权利。

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