生物
生物神经网络
神经科学
功能(生物学)
认知科学
脊椎动物
神经发育
计算神经科学
分歧(语言学)
计算机科学
中间神经元
多样性(控制论)
封面(代数)
趋同(经济学)
神经系统
人工神经网络
进化发育生物学
钥匙(锁)
电子线路
人工智能
神经系统网络模型
桥(图论)
主题(计算)
神经拓扑的进化获取
神经元回路
物理神经网络
神经系统
开发(拓扑)
发育生物学
模仿
作者
Laura C. Andreae,Justus M. Kebschull,Anthony M. Zador
标识
DOI:10.1101/cshperspect.a041969
摘要
explores how brains are built, diversified, and adapted in a variety of species, integrating perspectives from evolutionary biology, developmental neuroscience, and systems neurobiology. Recent advances in molecular genetics, neuroanatomy, physiology, imaging, and computational modeling have enabled unprecedented insights into the mechanisms that shape neural circuits. This collection brings together contributions from leading investigators who examine the architecture and function of neural circuits from multiple angles. Key themes include the evolutionary divergence and convergence of circuit motifs, the conserved molecular and developmental building blocks that underlie connectivity, and the selective pressures that sculpt neural systems to support behavior and cognition. Articles cover topics ranging from retinal mapping and interneuron diversity to thalamocortical connectivity, prefrontal circuit maturation, and the computational modeling of both normal and abnormal circuit development. Collectively, these essays reveal how molecular signaling, cellular variability, and theoretical principles converge to shape the formation and function of circuits across vertebrate and invertebrate brains.
科研通智能强力驱动
Strongly Powered by AbleSci AI