Obeso J A, Rodríguez-Oroz M C, Rodríguez M, Lanciego J L, Artieda J, Gonzalo N, Olanow C W
Dept of Neurology, Neuroscience Centre, Clinica Universitaria and Medical School, University of Navarra, Pamplona, Spain.
Trends Neurosci. 2000 Oct;23(10 Suppl):S8-19. doi: 10.1016/s1471-1931(00)00028-8.
Insight into the organization of the basal ganglia in the normal, parkinsonian and L-dopa-induced dyskinesia states is critical for the development of newer and more effective therapies for Parkinson's disease. We believe that the basal ganglia can no longer be thought of as a unidirectional linear system that transfers information based solely on a firing-rate code. Rather, we propose that the basal ganglia is a highly organized network, with operational characteristics that simulate a non-linear dynamic system.
深入了解正常、帕金森病及左旋多巴诱发的运动障碍状态下基底神经节的组织架构,对于开发治疗帕金森病更新且更有效的疗法至关重要。我们认为,基底神经节不能再被视为一个仅基于发放率编码来传递信息的单向线性系统。相反,我们提出基底神经节是一个高度有组织的网络,其运作特征类似于非线性动态系统。