首页> 外文期刊>Behavioural Brain Research: An International Journal >Attentional demands for demonstrating deficits following intrabasalis infusions of 192 IgG-saporin.
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Attentional demands for demonstrating deficits following intrabasalis infusions of 192 IgG-saporin.

机译:注意在基础内输注192种IgG-saporin后表现出缺陷。

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Previous research has shown that basal forebrain cholinergic inputs to the cerebral cortex are necessary for attentional processing. However, the key components of attention-demanding tasks for demonstrating deficits following loss of basal forebrain corticopetal cholinergic neurons are unclear. In the present experiment, rats were trained in a visual cued discrimination task with limited explicit attentional demands and then received intrabasalis infusions of the immunotoxin, 192 IgG-saporin, or saline. Postsurgically, attentional demands were increased by decreasing the signal duration or the intertrial interval or by increasing the variability of these parameters. Subsequently, rats were trained in a task that required discrimination of successively presented signals and blank increased by manipulating signal duration or the intertrial interval. Finally, all rats were trained in a task with both the signal duration and the intertrial interval designed to increase attentional demands. Compared to sham-lesioned animals, lesioned animals exhibited deficits in signal detection only during the successive discrimination task with both the signal duration and intertrial interval shorter and variable. The present data suggest that attentional deficits following loss of cortical cholinergic inputs result from overall attentional task demands rather than being dependent on any single task parameter.
机译:先前的研究表明,对大脑皮层的基底前脑胆碱能输入对于注意力加工是必要的。但是,尚不清楚用于表现出基础前脑皮质皮质瓣膜胆碱能神经元丧失后的缺陷的注意任务的关键组成部分。在本实验中,在视觉提示辨别任务中对大鼠进行了训练,只具有有限的明确注意力需求,然后接受了免疫毒素,192 IgG-saporin或盐水的基础内输注。术后,通过减少信号持续时间或间隔时间或通过增加这些参数的可变性来增加注意力需求。随后,对大鼠进行了一项任务训练,该任务要求辨别连续出现的信号,并通过操纵信号持续时间或间隔时间来增加空白。最后,所有老鼠都接受了信号持续时间和心律间隔训练,以增加注意力。与假病变动物相比,病变动物仅在连续的鉴别任务期间显示信号检测的缺陷,同时信号持续时间和间隔时间短且可变。本数据表明,皮质胆碱能输入丧失后的注意力缺陷是由整体注意力任务需求引起的,而不是取决于任何单个任务参数。

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