Pedroni Andrea, Ampatzis Konstantinos
Karolinska Institutet, Department of Neuroscience, 171 77 Stockholm, Sweden.
Karolinska Institutet, Department of Neuroscience, 171 77 Stockholm, Sweden.
iScience. 2019 Sep 27;19:1189-1201. doi: 10.1016/j.isci.2019.09.010. Epub 2019 Sep 10.
The development of nervous system atlases is a fundamental pursuit in neuroscience, since they constitute a fundamental tool to improve our understanding of the nervous system and behavior. As such, neurotransmitter maps are valuable resources to decipher the nervous system organization and functionality. We present here the first comprehensive quantitative map of neurons found in the adult zebrafish spinal cord. Our study overlays detailed information regarding the anatomical positions, sizes, neurotransmitter phenotypes, and the projection patterns of the spinal neurons. We also show that neurotransmitter co-expression is much more extensive than previously assumed, suggesting that spinal networks are more complex than first recognized. As a first direct application, we investigated the neurotransmitter diversity in the putative glutamatergic spinal V2a-interneuron assembly. These studies shed new light on the diverse and complex functions of this important interneuron class in the neuronal interplay governing the precise operation of the central pattern generators.
神经系统图谱的绘制是神经科学的一项基本追求,因为它们是增进我们对神经系统和行为理解的基本工具。因此,神经递质图谱是解读神经系统组织和功能的宝贵资源。我们在此展示了成年斑马鱼脊髓中神经元的首张全面定量图谱。我们的研究叠加了有关脊髓神经元的解剖位置、大小、神经递质表型和投射模式的详细信息。我们还表明,神经递质共表达比先前设想的更为广泛,这表明脊髓网络比最初认识到的更为复杂。作为首个直接应用,我们研究了假定的谷氨酸能脊髓V2a中间神经元组合中的神经递质多样性。这些研究为这一重要中间神经元类群在控制中枢模式发生器精确运作的神经元相互作用中的多样而复杂的功能提供了新的见解。