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Eyeblink Conditioning in Rats Using Pontine Stimulation as a Conditioned Stimulus

机译:使用Pontine刺激作为条件刺激在大鼠中进行眨眼调节

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Previous studies using rabbits and ferrets found that electrical stimulation of the pontine nuclei or middle cerebellar peduncle could serve as a conditioned stimulus (CS) in eyeblink conditioning (Bao, Chen, & Thompson, 2000; Hesslow, Svensson, & Ivarsson, 1999; Steinmetz, 1990; Steinmetz, Lavond, & Thompson, 1985; 1989; Steinmetz et al., 1986; Tracy, Thompson, Krupa, & Thompson, 1998). The current study used electrical stimulation of the pontine nuclei as a CS to establish eyeblink conditioning in rats. The goals of this study were to develop a method for directly activating the CS pathway in rodents and to compare the neural circuitry underlying eyeblink conditioning in different mammalian species. Rats were given electrical stimulation through a bipolar electrode implanted in the pontine nuclei paired with a periorbital shock unconditioned stimulus (US). Paired training was followed by extinction training. A subset of rats was given a test session of paired training after receiving an infusion of muscimol into the anterior interpositus nucleus. Rats given paired presentations of the stimulation CS and US developed CRs rapidly and showed extinction. Muscimol infusion prior to the test session resulted in a reversible loss of the eyeblink CR. The results demonstrate that electrical stimulation of the pontine nuclei can be used as a CS in rodents and that the CS pathway is similar in rats, rabbits, and ferrets. In addition, the loss of CRs following muscimol inactivation shows that the conditioning produced with pontine stimulation depends on cerebellar mechanisms.
机译:以前使用兔子和雪貂进行的研究发现,电刺激桥脑核或小脑中部小花梗可以作为眨眼调节中的条件刺激(CS)(Bao,Chen,&Thompson,2000; Hesslow,Svensson,&Ivarsson,1999; Steinmetz ,1990; Steinmetz,Lavond,&Thompson,1985; 1989; Steinmetz等人,1986; Tracy,Thompson,Krupa,&Thompson,1998)。当前的研究使用脑桥神经的电刺激作为CS建立大鼠的眨眼条件。这项研究的目的是开发一种直接激活啮齿动物CS途径的方法,并比较不同哺乳动物物种眨眼条件下的神经回路。通过植入在桥脑核中的双极电极对大鼠进行电刺激,并伴以眶周电击无条件刺激(US)。配对训练后进行灭绝训练。在将麝香酚输注到前位间核后,对一部分大鼠进行了配对训练的测试。给予配对刺激CS和US表现的大鼠快速发展出CR,并已灭绝。在测试之前输注麝香酚会导致眨眼CR的可逆损失。结果表明,脑桥神经的电刺激可以用作啮齿类动物的CS,并且在大鼠,兔子和雪貂中,CS途径相似。此外,在麝香酚灭活后,CRs的丢失表明,由脑桥刺激产生的调节取决于小脑机制。

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