Department of Physiology, Institute of Basic Medical Sciences, University of Oslo, Blindern, Oslo, Norway.
Neuroscience. 2009 Nov 10;163(4):977-84. doi: 10.1016/j.neuroscience.2009.07.047. Epub 2009 Aug 5.
The first Kavli Prize in Neuroscience recognizes a confluence of career achievements that together provide a fundamental understanding of how brain and spinal cord circuits are assembled during development and function in the adult. The members of the Kavli Neuroscience Prize Committee have decided to reward three scientists (Sten Grillner, Thomas Jessell, and Pasko Rakic) jointly "for discoveries on the developmental and functional logic of neuronal circuits". Pasko Rakic performed groundbreaking studies of the developing cerebral cortex, including the discovery of how radial glia guide the neuronal migration that establishes cortical layers and for the radial unit hypothesis and its implications for cortical connectivity and evolution. Thomas Jessell discovered molecular principles governing the specification and patterning of different neuron types and the development of their synaptic interconnection into sensorimotor circuits. Sten Grillner elucidated principles of network organization in the vertebrate locomotor central pattern generator, along with its command systems and sensory and higher order control. The discoveries of Rakic, Jessell and Grillner provide a framework for how neurons obtain their identities and ultimate locations, establish appropriate connections with each other, and how the resultant neuronal networks operate. Their work has significantly advanced our understanding of brain development and function and created new opportunities for the treatment of neurological disorders. Each has pioneered an important area of neuroscience research and left a legacy of exceptional scientific achievement, insight, communication, mentoring and leadership.
该奖项旨在奖励三位科学家(Pasko Rakic、Sten Grillner 和 Thomas Jessell),“表彰他们在神经元回路的发育和功能逻辑方面的发现”。Pasko Rakic 对大脑皮层的发育进行了开创性的研究,包括发现了放射状胶质细胞如何引导神经元迁移以建立皮层层,以及放射状单位假说及其对皮层连接和进化的影响。Thomas Jessell 发现了分子原则,这些原则决定了不同神经元类型的特化和模式形成,以及它们在感觉运动回路中的突触连接。Sten Grillner 阐明了脊椎动物运动中枢模式发生器中的网络组织原则,以及其命令系统和感觉及更高阶控制。Rakic、Jessell 和 Grillner 的发现为神经元如何获得身份和最终位置、与彼此建立适当的连接以及由此产生的神经网络如何运作提供了一个框架。他们的工作极大地促进了我们对大脑发育和功能的理解,并为治疗神经紊乱创造了新的机会。他们每个人都开创了神经科学研究的一个重要领域,并留下了卓越的科学成就、洞察力、沟通、指导和领导力的遗产。