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首页> 外文期刊>The Journal of Physiology >Dynamic representation of whisker deflection by synaptic potentials in spiny stellate and pyramidal cells in the barrels and septa of layer 4 rat somatosensory cortex.
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Dynamic representation of whisker deflection by synaptic potentials in spiny stellate and pyramidal cells in the barrels and septa of layer 4 rat somatosensory cortex.

机译:由第4层大鼠体感皮层的桶状体和隔中的棘状星状和锥体细胞中的突触电位动态表示晶须偏转。

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摘要

Whole-cell voltage recordings were made in vivo from excitatory neurons (n = 23) in layer 4 of the barrel cortex in urethane-anaesthetised rats. Their receptive fields (RFs) for a brief whisker deflection were mapped, the position of the cell soma relative to barrel borders was determined for 15 cells and dendritic and axonal arbors were reconstructed for all cells. Three classes of neurons were identified: spiny stellate cells and pyramidal cells located in barrels and pyramidal cells located in septa. Dendritic and, with some exceptions, axonal arborisations of barrel cells were mostly restricted to the borders of a column with a cross sectional area of a barrel, defining a cytoarchitectonic barrel-column. Dendrites and axons of septum cells, in contrast, mostly extended across barrel borders. The subthreshold RFs measured by evoked postsynaptic potentials (PSPs) comprised a principal whisker (PW) and several surround whiskers (SuWs) indicating that deflection of a single whisker is represented in multiple barrels and septa. Barrel cells responded with larger depolarisation to stimulation of the PW (13.7 +/- 4.6 mV (mean +/- S.D.), n = 10) than septum cells (5.7 +/- 2.4 mV, n = 5), the gradient between peak responses to PW and SuW deflection was steeper and the latency of depolarisation onset was shorter (8 +/- 1.4 ms vs. 11 +/- 2 ms). In barrel cells the response onset and the peak to SuW deflection was delayed depending on the distance to the PW thus indicating that the spatial representation of a single whisker deflection in the barrel map is dynamic and varies on the scale of milliseconds to tens of milliseconds. Septum cells responded later and with comparable latencies to PW and SuW stimulation. Spontaneous (0.053 +/- 0.12 action potentials (APs) s(-1)) and evoked APs (0.14 +/- 0.29 APs per principal whisker (PW) stimulus) were sparse. We conclude that PSPs in ensembles of barrel cells represent dynamically the deflection of a single whisker with high temporal and spatial acuity, initially by theexcitation in a single PW-barrel followed by multi-barrel excitation. This presumably reflects the divergence of thalamocortical projections to different barrels. Septum cell PSPs preferably represent multiple whisker deflections, but less dynamically and with less spatial acuity.
机译:在氨基甲酸乙酯麻醉的大鼠中,从桶状皮质的第4层中的兴奋性神经元(n = 23)在体内进行全细胞电压记录。绘制了它们的晶须偏转短时的感受野(RF),确定了15个细胞的体细胞相对于桶形边界的位置,并为所有细胞重建了树突状和轴突的树突。鉴定出三类神经元:位于桶中的棘状星状细胞和锥体细胞,以及位于隔中的锥体细胞。桶状细胞的树突状和轴突树状除少数例外,大多限于具有桶形横截面的柱的边界,从而定义了细胞构造的桶形柱。相比之下,间隔细胞的树突和轴突大多延伸穿过桶形边界。通过诱发突触后电位(PSP)测得的亚阈值RF包括一个主要晶须(PW)和几个环绕晶须(SuWs),表明单个晶须的偏转以多个桶和隔片表示。与间隔细胞(5.7 +/- 2.4 mV,n = 5)相比,桶状细胞对PW的刺激(13.7 +/- 4.6 mV(平均值+/- SD),n = 10)的去极化反应更大,峰之间的梯度对PW和SuW偏转的响应更陡峭,去极化开始的潜伏期更短(8 +/- 1.4毫秒与11 +/- 2毫秒)。在桶形单元中,响应开始和SuW挠度的峰值会根据到PW的距离而延迟,因此表明桶形图中单个晶须挠度的空间表示是动态的,并且在毫秒到数十毫秒的范围内变化。隔垫细胞反应较晚,对PW和SuW刺激的反应潜伏期相当。稀疏的是自发性(0.053 +/- 0.12 APs s(-1))和诱发性AP(每个主要晶须(PW)刺激为0.14 +/- 0.29 APs)。我们得出的结论是,桶形电池集合体中的PSP动态地表示具有高时空灵敏度的单个晶须的偏转,首先是在单个PW桶中激发,然后是多桶激发。据推测,这反映出丘脑皮质投射物向不同桶的差异。隔膜细胞PSP最好代表多个晶须偏转,但动态性较低且空间敏锐度较低。

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