Department of Neurology, David Geffen School of Medicine at UCLA, University of California, Los Angeles, Los Angeles, CA, United States.
Neuroscience Interdepartmental Program, David Geffen School of Medicine at UCLA, University of California, Los Angeles, Los Angeles, CA, United States.
Front Neural Circuits. 2018 Jul 23;12:56. doi: 10.3389/fncir.2018.00056. eCollection 2018.
The first three postnatal weeks in rodents are a time when sensory experience drives the maturation of brain circuits, an important process that is not yet well understood. Alterations in this critical period of experience-dependent circuit assembly and plasticity contribute to several neurodevelopmental disorders, such as autism, epilepsy, and schizophrenia. Therefore, techniques for recording network activity and tracing neuronal connectivity over this time period are necessary for delineating circuit refinement in typical development and how it deviates in disease. Calcium imaging with GCaMP6 and other genetically encoded indicators is rapidly becoming the preferred method for recording network activity at the single-synapse and single-cell level , especially in genetically identified neuronal populations. We describe a protocol for intracortical injection of recombinant adeno-associated viruses in P1 neonatal mice and demonstrate its use for longitudinal imaging of GCaMP6s in the same neurons over several weeks to characterize the developmental desynchronization of cortical network activity. Our approach is ideally suited for chronic two-photon calcium imaging of neuronal activity from synapses to entire networks during the early postnatal period.
在啮齿动物出生后的前三个星期,感官体验驱动着大脑回路的成熟,这是一个尚未被很好理解的重要过程。在这个依赖经验的回路组装和可塑性的关键时期,体验的改变会导致几种神经发育障碍,如自闭症、癫痫和精神分裂症。因此,在这段时间内记录网络活动和追踪神经元连接的技术对于描述典型发育过程中的回路细化以及疾病中的回路变化是必要的。钙成像与 GCaMP6 和其他基因编码指示剂一起,正在迅速成为在单突触和单细胞水平记录网络活动的首选方法,特别是在基因鉴定的神经元群体中。我们描述了一种在 P1 新生小鼠皮层内注射重组腺相关病毒的方案,并展示了其在数周内对同一神经元中的 GCaMP6 进行纵向成像的用途,以描述皮层网络活动的发育去同步化。我们的方法非常适合在早期产后阶段对神经元活动进行慢性双光子钙成像,从突触到整个网络。