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大鼠体感皮层IV层局部兴奋性回路中的功能连接

Functional connectivity in layer IV local excitatory circuits of rat somatosensory cortex.

作者信息

Cowan Anna I, Stricker Christian

机构信息

Institute of Neuroinformatics, University of Zürich and Federal Institute of Technology (Eidgenössische Technische Hochschule), CH-8057 Zürich, Switzerland.

出版信息

J Neurophysiol. 2004 Oct;92(4):2137-50. doi: 10.1152/jn.01262.2003. Epub 2004 Jun 16.

Abstract

There are two types of excitatory neurons within layer IV of rat somatosensory cortex: star pyramidal (SP) and spiny stellate cells (SS). We examined the intrinsic properties and connectivity between these neurons to determine differences in function. Eighty-four whole cell recordings of pairs of neurons were examined in slices of rat barrel cortex at 36 +/- 1 degrees C. Only minimal differences in intrinsic properties were found; however, differences in synaptic strength could clearly be shown. Connections between homonymous pairs (SS-SS or SP-SP) had a higher efficacy than heteronymous connections. This difference was mainly a result of quantal content. In 42 pairs, synaptic dynamics were examined. Sequences of action potentials (3-20 Hz) in the presynaptic neuron consistently caused synaptic depression (E2/E1=0.53+/-0.18). The dominant component of depression was release-independent; this depression occurred even when preceding action potentials had failed to cause a response. The release-dependence of depression was target specific; in addition, release-independence was greater for postsynaptic SPs. In a subset of connections formed only between SP and any other cell type (43%), synaptic efficacy was dependent on the presynaptic membrane potential (Vm); at -55 mV, the connections were almost silent, whereas at -85 mV, transmission was very reliable. We suggest that, within layer IV, there is stronger efficacy between homonymous than between heteronymous excitatory connections. Under dynamic conditions, the functional connectivity is shaped by synaptic efficacy at individual connections, by Vm, and by the specificity in the types of synaptic depression.

摘要

大鼠体感皮层IV层内有两种兴奋性神经元:星形锥体神经元(SP)和棘状星形细胞(SS)。我们研究了这些神经元的内在特性及其之间的连接性,以确定功能上的差异。在36±1℃下,对大鼠桶状皮层切片中的84对神经元进行了全细胞记录。结果发现,它们的内在特性只有极小的差异;然而,突触强度的差异却很明显。同名对(SS-SS或SP-SP)之间的连接比异名连接具有更高的效能。这种差异主要是量子含量不同所致。在42对神经元中,研究了突触动力学。突触前神经元中动作电位序列(3-20Hz)持续引起突触抑制(E2/E1 = 0.53±0.18)。抑制的主要成分与释放无关;即使之前的动作电位未能引发反应,这种抑制也会发生。抑制的释放依赖性具有靶点特异性;此外,突触后SP的释放非依赖性更强。在仅由SP与任何其他细胞类型形成的连接子集中(43%),突触效能取决于突触前膜电位(Vm);在-55mV时,连接几乎沉默,而在-85mV时,传递非常可靠。我们认为,在IV层内,同名兴奋性连接之间的效能比异名连接更强。在动态条件下,功能连接性由单个连接的突触效能、Vm以及突触抑制类型的特异性所塑造。

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