Literature DB >> 18760328

Effects of neostriatal 6-OHDA lesion on performance in a rat sequential reaction time task.

D Domenger1, R K W Schwarting.   

Abstract

Work in humans and monkeys has provided evidence that the basal ganglia, and the neurotransmitter dopamine therein, play an important role for sequential learning and performance. Compared to primates, experimental work in rodents is rather sparse, largely due to the fact that tasks comparable to the human ones, especially serial reaction time tasks (SRTT), had been lacking until recently. We have developed a rat model of the SRTT, which allows to study neural correlates of sequential performance and motor sequence execution. Here, we report the effects of dopaminergic neostriatal lesions, performed using bilateral 6-hydroxydopamine injections, on performance of well-trained rats tested in our SRTT. Sequential behavior was measured in two ways: for one, the effects of small violations of otherwise well trained sequences were examined as a measure of attention and automation. Secondly, sequential versus random performance was compared as a measure of sequential learning. Neurochemically, the lesions led to sub-total dopamine depletions in the neostriatum, which ranged around 60% in the lateral, and around 40% in the medial neostriatum. These lesions led to a general instrumental impairment in terms of reduced speed (response latencies) and response rate, and these deficits were correlated with the degree of striatal dopamine loss. Furthermore, the violation test indicated that the lesion group conducted less automated responses. The comparison of random versus sequential responding showed that the lesion group did not retain its superior sequential performance in terms of speed, whereas they did in terms of accuracy. Also, rats with lesions did not improve further in overall performance as compared to pre-lesion values, whereas controls did. These results support previous results that neostriatal dopamine is involved in instrumental behaviour in general. Also, these lesions are not sufficient to completely abolish sequential performance, at least when acquired before lesion as tested here.

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Year:  2008        PMID: 18760328     DOI: 10.1016/j.neulet.2008.08.048

Source DB:  PubMed          Journal:  Neurosci Lett        ISSN: 0304-3940            Impact factor:   3.046


  7 in total

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Review 4.  Where attention falls: Increased risk of falls from the converging impact of cortical cholinergic and midbrain dopamine loss on striatal function.

Authors:  Martin Sarter; Roger L Albin; Aaron Kucinski; Cindy Lustig
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5.  6-hydroxydopamine lesions in the rat neostriatum impair sequential learning in a serial reaction time task.

Authors:  Moritz Thede Eckart; Moriah Christina Huelse-Matia; Rebecca S McDonald; Rainer K -W Schwarting
Journal:  Neurotox Res       Date:  2010-04       Impact factor: 3.911

6.  Procedural Performance Benefits after Excitotoxic Hippocampal Lesions in the Rat Sequential Reaction Time Task.

Authors:  Sebastian Busse; Rainer K W Schwarting
Journal:  Neurotox Res       Date:  2015-08-02       Impact factor: 3.911

7.  Decoupling Actions from Consequences: Dorsal Hippocampal Lesions Facilitate Instrumental Performance, but Impair Behavioral Flexibility in Rats.

Authors:  Sebastian Busse; Rainer K W Schwarting
Journal:  Front Behav Neurosci       Date:  2016-06-08       Impact factor: 3.558

  7 in total

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