Yuste Rafael, MacLean Jason N, Smith Jeffrey, Lansner Anders
Department of Biological Sciences, Columbia University, 1212 Amsterdam Avenue, Box 2435, New York 10027, USA.
Nat Rev Neurosci. 2005 Jun;6(6):477-83. doi: 10.1038/nrn1686.
Vertebrate spinal cord and brainstem central pattern generator (CPG) circuits share profound similarities with neocortical circuits. CPGs can produce meaningful functional output in the absence of sensory inputs. Neocortical circuits could be considered analogous to CPGs as they have rich spontaneous dynamics that, similar to CPGs, are powerfully modulated or engaged by sensory inputs, but can also generate output in their absence. We find compelling evidence for this argument at the anatomical, biophysical, developmental, dynamic and pathological levels of analysis. Although it is possible that cortical circuits are particularly plastic types of CPG ('learning CPGs'), we argue that present knowledge about CPGs is likely to foretell the basic principles of the organization and dynamic function of cortical circuits.
脊椎动物的脊髓和脑干中枢模式发生器(CPG)回路与新皮质回路有着深刻的相似之处。CPG能够在没有感觉输入的情况下产生有意义的功能性输出。新皮质回路可被视为类似于CPG,因为它们具有丰富的自发动力学,与CPG相似,这种动力学受到感觉输入的强烈调制或激发,但在感觉输入缺失时也能产生输出。我们在解剖学、生物物理学、发育、动力学和病理学分析层面找到了支持这一观点的有力证据。虽然皮质回路有可能是CPG的特殊可塑性类型(“学习型CPG”),但我们认为,目前关于CPG的知识很可能预示着皮质回路组织和动态功能的基本原理。