de la Peña E, Geijo-Barrientos E
Departamento de Fisiologia, Universidad de Alicante, Spain.
J Neurosci. 1996 Sep 1;16(17):5301-11. doi: 10.1523/JNEUROSCI.16-17-05301.1996.
One of the several types of ionic currents present in central neurons is the low-threshold, or T-type calcium current (LTCC). This current is responsible for the firing of low-threshold calcium spikes (LTS) and participates in the generation of rhythmic activity and bursts of action potentials in several brain nuclei. We have studied the distribution and properties of pyramidal neurons recorded from the guinea-pig medial frontal cortex that have this calcium current. Pyramidal neurons were recorded in an in vitro slice preparation using either current clamp or single-electrode voltage-clamp recording. Pyramidal neurons that generated LTS or had the LTCC were found only between 500 mm from the pial surface and the white matter (approximately layers V/VI) and were absent in more superficial layers. All pyramidal neurons that fired LTS or had the LTCC were characterized as regular spiking and had some important morphological and physiological differences from the rest of the pyramidal neurons studied. This group of neurons had shorter and less complex apical dendritic arbors, fired action potentials of lower amplitude and longer duration, and were the only type of pyramidal neurons able to generate bursts of action potentials. In addition, the inhibitory synaptic potentials elicited by stimulation of layer I were more powerful in this group of neurons. This research provides new evidence for the presence of the LTCC in subsets of cortical pyramidal neurons, which have specific and well defined morphological and physiological properties.
中枢神经元中存在的几种离子电流之一是低阈值或T型钙电流(LTCC)。这种电流负责低阈值钙峰(LTS)的发放,并参与几个脑核中节律性活动和动作电位爆发的产生。我们研究了从豚鼠内侧额叶皮质记录到的具有这种钙电流的锥体神经元的分布和特性。在体外脑片制备中使用电流钳或单电极电压钳记录来记录锥体神经元。产生LTS或具有LTCC的锥体神经元仅在距软膜表面500μm至白质之间(大约在V/VI层)被发现,而在更浅表的层中不存在。所有发放LTS或具有LTCC的锥体神经元都被表征为规则发放,并且与所研究的其他锥体神经元在形态和生理上存在一些重要差异。这组神经元具有更短且不太复杂的顶端树突分支,发放的动作电位幅度更低且持续时间更长,并且是唯一能够产生动作电位爆发的锥体神经元类型。此外,在这组神经元中,刺激I层所引发的抑制性突触电位更强。这项研究为皮质锥体神经元亚群中存在LTCC提供了新证据,这些锥体神经元具有特定且明确的形态和生理特性。