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配对的湍流和光线不会在艾氏海兔中产生超线性钙增加。

Paired turbulence and light do not produce a supralinear calcium increase in Hermissenda.

作者信息

Blackwell Kim T

机构信息

School of Computational Sciences, and the Krasnow Institute for Advanced Study, George Mason University, MS 2A1, Fairfax, VA 22030, USA.

出版信息

J Comput Neurosci. 2004 Jul-Aug;17(1):81-99. doi: 10.1023/B:JCNS.0000023866.88225.03.

Abstract

The sea slug Hermissenda learns to associate light and hair cell stimulation, but not when the stimuli are temporally uncorrelated. Memory storage, which requires an elevation in calcium, occurs in the photoreceptors, which receive monosynaptic input from hair cells that sense acceleration stimuli such as turbulence. Both light and hair cell activity increase calcium concentration in the photoreceptor, but it is unknown whether paired calcium signals combine supralinearly to initiate memory storage. A correlate of memory storage is an enhancement of the long lasting depolarization (LLD) after light offset, which is attributed to a reduction in voltage dependent potassium currents; however, it is unclear what causes the LLD in the untrained animal. These issues were addressed using a multi-compartmental computer model of phototransduction, calcium dynamics, and ionic currents of the Hermissenda photoreceptor. Simulations of the interaction between light and hair cell activity show that paired stimuli do not produce a greater calcium increase than unpaired stimuli. This suggests that hair cell activity is acting via some other pathway to initiate memory storage. In addition, simulations show that a potassium leak channel, which closes with an increase in calcium, is required to produce both the untrained LLD and the enhanced LLD due to the decrease in voltage dependent potassium currents. Thus, the expression of this correlate of classical conditioning may depend on a leak potassium current.

摘要

海蛞蝓Hermissenda学会将光与毛细胞刺激联系起来,但当刺激在时间上不相关时则不会。需要钙升高的记忆存储发生在光感受器中,光感受器接收来自毛细胞的单突触输入,毛细胞感知诸如湍流等加速刺激。光和毛细胞活动都会增加光感受器中的钙浓度,但尚不清楚配对的钙信号是否超线性组合以启动记忆存储。记忆存储的一个相关因素是光熄灭后持久去极化(LLD)的增强,这归因于电压依赖性钾电流的减少;然而,尚不清楚在未训练的动物中是什么导致了LLD。使用Hermissenda光感受器的光转导、钙动力学和离子电流的多室计算机模型解决了这些问题。光与毛细胞活动之间相互作用的模拟表明,配对刺激不会比未配对刺激产生更大的钙增加。这表明毛细胞活动是通过其他一些途径来启动记忆存储的。此外,模拟表明,一种随着钙增加而关闭的钾泄漏通道,对于产生未训练的LLD以及由于电压依赖性钾电流减少而增强的LLD都是必需的。因此,这种经典条件反射相关因素的表达可能取决于泄漏钾电流。

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