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An innocuous bias in whisker use in adult rats modifies receptive fields of barrel cortex neurons

机译:成年大鼠晶须使用中的无害偏倚会改变桶状皮质神经元的感受野

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摘要

The effect of innocuously biasing the flow of sensory activity from the whiskers for periods of 3–30 d in awake, behaving adult rats on the receptive field organization of rat SI barrel cortex neurons was studied. One pair of adjacent whiskers, D2 and either D1 or D3, remained intact unilaterally (whisker pairing), all others being trimmed throughout the period of altered sensation. Receptive fields of single cells in the contralateral D2 barrel were analyzed under urethane anesthesia by peristimulus time histogram (PSTH) and latency histogram analysis after 3, 7–10, and 30 d of pairing and compared with controls, testing all whiskers cut to the same length. Response magnitudes to surround receptive field in-row whiskers D1 and D3 were not significantly different for control animals. The same was found for surround in-arc whiskers C2 and E2. However, after 3 d of whisker pairing a profound bias occurred in response to the paired D-row surround whisker relative to the opposite trimmed surround D-row whisker and to the C2 and E2 whiskers. This bias increased with the duration of pairing, regardless of which surround whisker (D1 or D3) was paired with D2. For all three periods of pairing the mean response to the paired surround whisker was increased relative to controls, but peaked at 7–10 d. Response to the principal center-receptive (D2) whisker was increased for the 3 and 7–10 d groups and then decreased at 30 d. Responses to trimmed arc surround whiskers (C2 and E2) were decreased in proportion to the duration of changed experience. Analysis of PSTH data showed that earliest discharges (5–10 msec poststimulus) to the D2 whisker increased progressively in magnitude with duration of pairing. For the paired surround whisker similar early discharges newly appeared after 30 d of pairing. At 3 and 7–10 d of pairing, increases in response to paired whiskers and decreases to cut surround whiskers were confined to late portions of the PSTH (10–100 msec poststimulus). Changes at 3–10 d can be attributed to alterations in intracortical synaptic relay between barrels. Longer-term changes in response to both paired whisker inputs (30 d) largely appear to reflect increases in thalamocortical synaptic efficacy. Our findings suggest that novel innocuous somatosensory experiences produce changes in the receptive field configuration of cortical cells that are consistent with Hebbian theories of experience-dependent potentiation and weakening of synaptic efficacy within SI neocortical circuitry, for correlated and uncorrelated sensory inputs, respectively.
机译:研究了成年大鼠在清醒状态下无意识地使晶须的感觉活动流偏向3-30 d对大鼠SI桶状皮层神经元的感受野组织的影响。一对相邻的晶须D2和D1或D3单边保持完整(晶须配对),在感官变化的整个过程中,所有其他晶须都会被修剪。在尿烷麻醉下,配对3、7-10和30 d后通过刺激时间直方图(PSTH)和潜伏期直方图分析分析对侧D2桶中单细胞的感受野,并与对照进行比较,测试所有晶须均切成相同长度。对照动物对周围感受野行须须D1和D3的响应幅度没有显着差异。环绕式弧须C2和E2也发现了同样的情况。但是,在晶须配对3天后,相对于相对的修整的环绕D行晶须和C2和E2晶须,配对的D行环绕晶须产生了很大的偏差。无论配对的晶须(D1或D3)是否与D2配对,该偏置都会随着配对的持续时间而增加。在所有三个配对期间,对配对环绕晶须的平均响应均相对于对照组有所增加,但在7-10 d达到峰值。 3和7-10 d组对主要中枢晶须(D2)晶须的响应增加,然后在30 d时下降。对修整的弧形环绕晶须(C2和E2)的响应与更改体验的持续时间成比例地降低。对PSTH数据的分析表明,最早的D2晶须放电(刺激后5-10毫秒)随配对时间的延长而逐渐增加。对于配对的晶须,配对30 d后,新出现了类似的早期放电。在配对的第3天和第7-10天,对成对的胡须的响应增加而对周围胡须的减少则仅限于PSTH的后期部分(刺激后10-100毫秒)。 3-10 d的变化可归因于桶之间的皮质内突触中继的改变。对两个晶须输入(30 d)的响应的长期变化在很大程度上似乎反映了丘脑皮质突触功效的增加。我们的发现表明,新颖无害的体感体验会改变皮质细胞的感受野构型,这与希伯比亚经验依赖的增强作用和SI新皮质电路内突触功效减弱的Hebbian理论相一致,分别用于相关和不相关的感觉输入。

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