首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Electrical properties affecting discharge of units of the mid and posterolateral thalamus of conscious cats.
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Electrical properties affecting discharge of units of the mid and posterolateral thalamus of conscious cats.

机译:电学特性影响有意识的猫的中丘脑和后外侧丘脑单位放电。

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Discharge properties in response to intracellularly applied, rectangular currents were measured in units of the mid (lateralis dorsalis and centrolateral nuclei) and posterolateral (lateralis posterior and pulvinar nuclei) thalamus of conscious cats. A separate aim was to determine if neuronal excitability changed in association with changes in stimulus-evoked activity after the animals were trained to discriminate between two acoustic stimuli when performing a conditioned motor response.Low threshold spike (l.t.s.) discharges were observed in three of 272 cells given 1 nA intracellular, hyperpolarizing current pulses of 40 ms duration. This finding supports the view that thalamic neurons of conscious animals operate mainly in the relay as opposed to the oscillatory mode. Application of larger and longer hyperpolarizing currents in the cells produced rebound l.t.s. discharges, supporting the expectation that most thalamic neurons are capable of producing this type of discharge. Decrements of spike afterhyperpolarizations (AHP) and broadening of spike bases upon repeated discharge also were observed in each area of the thalamus studied.After conditioning, changes were found in the posterolateral thalamus (but not in the mid-thalamus) in the proportions of cells with spontaneous, rapid (>/=50 Hz), repetitive, discharges (RRD) and rapid, sustained discharges at rates >/=100 Hz during application of depolarizing current (RSD). In the posterolateral thalamus the percentage of units responding to 1 nA depolarization with RSD fell from 71% before conditioning to 45% after conditioning. The percentage of cells with RRD decreased from 69% to 46%. The changes were accompanied by a 3 mV hyperpolarization of the membrane potentials of the cells and a decrease in baseline activity.After conditioning, increases in excitability were found in cells of the mid thalamus that responded selectively to the click conditioned stimulus (CS) that elicited the conditioned response, and decreases in excitability were found in cells of the posterolateral thalamus that responded to the discriminative acoustic stimulus (DS) to which the animals were trained not to respond. An earlier study showed a potentiation of discharge in response to the CS in units of the midthalamus after similar conditioning and a reduction of the proportion of DS responsive units and peak discharge to the DS in units of the posterolateral thalamus.We conclude that the discharge properties of units of the mid and posterolateral thalamus can change to support discrimination between acoustic stimuli of different functional significance after conditioning.
机译:响应于细胞内施加的放电电流,以有意识的猫的中丘脑(外侧核和中央外侧核)和后外侧丘脑(外侧核位于后侧和枕核)的单位来测量矩形电流。另一个目的是确定在训练有条件的运动反应时,训练动物区分两种声刺激后,神经元兴奋性是否与刺激诱发的活动的变化有关.272个中的三个中观察到低阈值峰值(lts)放电给予1 nA细胞内持续时间40 ms的超极化电流脉冲。这一发现支持了这样一种观点,即有意识的动物的丘脑神经元主要在中继中起作用,而不是振荡模式。在电池中施加更大和更长的超极化电流会产生回弹l.t.s.放电,支持了大多数丘脑神经元能够产生这种放电的预期。在所研究的丘脑的每个区域中,还观察到了尖峰后超极化(AHP)的减少和反复放电时尖峰碱基的扩大。调节后,在后外侧丘脑(但在丘脑中部)中未发现细胞比例的变化在施加去极化电流(RSD)期间,自发,快速(> / = 50 Hz),重复放电(RRD)和快速,持续放电,速率> / = 100 Hz。在后外侧丘脑中,用RSD响应1 nA去极化的单位百分比从条件处理前的71%降至条件处理后的45%。患有RRD的细胞百分比从69%降至46%。这些变化伴随着细胞膜电位的3 mV超极化和基线活性的降低。调节后,丘脑中部的细胞发现兴奋性增加,该细胞对诱发的点击条件刺激(CS)有选择性的响应在对歧视性听觉刺激(DS)产生反应的后外侧丘脑细胞中发现了条件性反应和兴奋性降低,训练动物对它们没有反应。较早的一项研究表明,在类似条件下,以丘脑中部为单位的CS放电增强作用,以后外侧丘脑为单位的DS响应单位比例和DS的峰值放电减少。调节后,中丘脑和后外侧丘脑的单位可以改变以支持不同功能意义的声刺激之间的区别。

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