Hattox Alexis M, Nelson Sacha B
Department of Biology, MS 008, Brandeis University, Waltham, MA 02454, USA.
J Neurophysiol. 2007 Dec;98(6):3330-40. doi: 10.1152/jn.00397.2007. Epub 2007 Sep 26.
Layer V pyramidal neurons are anatomically and physiologically heterogeneous and project to multiple intracortical and subcortical targets. However, because most physiological studies of layer V pyramidal neurons have been carried out on unidentified cells, we know little about how anatomical and physiological properties relate to subcortical projection site. Here we combine neuroanatomical tract tracing with whole cell recordings in mouse somatosensory cortex to test whether neurons with the same projection target form discrete subpopulations and whether they have stereotyped physiological properties. Our findings indicate that corticothalamic and -trigeminal neurons are two largely nonoverlapping subpopulations, whereas callosal and corticostriatal neurons overlap extensively. The morphology as well as the intrinsic membrane and firing properties of corticothalamic and corticotrigeminal neurons differ from those of callosal and corticostriatal neurons. In addition, we find that each class of projection neuron exhibits a unique compliment of hyperpolarizing and depolarizing afterpotentials that further suggests that cortical neurons with different subcortical targets are distinct from one another.
第五层锥体神经元在解剖学和生理学上具有异质性,并投射到多个皮质内和皮质下靶点。然而,由于大多数关于第五层锥体神经元的生理学研究是在未识别的细胞上进行的,我们对解剖学和生理学特性如何与皮质下投射位点相关联知之甚少。在这里,我们将神经解剖学示踪与小鼠体感皮层的全细胞记录相结合,以测试具有相同投射靶点的神经元是否形成离散的亚群,以及它们是否具有刻板的生理学特性。我们的研究结果表明,皮质丘脑神经元和皮质三叉神经元是两个基本不重叠的亚群,而胼胝体神经元和皮质纹状体神经元广泛重叠。皮质丘脑神经元和皮质三叉神经元的形态以及内在膜特性和放电特性与胼胝体神经元和皮质纹状体神经元不同。此外,我们发现每一类投射神经元都表现出独特的超极化和去极化后电位,这进一步表明具有不同皮质下靶点的皮质神经元彼此不同。