Kavli Institute for Systems Neuroscience, Centre for Neural Computation, Egil and Pauline Braathen and Fred Kavli Center for Cortical Microcircuits, NTNU Norwegian University for Science and Technology, Trondheim, Norway.
Eur J Neurosci. 2019 Jul;50(1):1799-1819. doi: 10.1111/ejn.14395. Epub 2019 Mar 25.
The rat hippocampal formation (HF), parahippocampal region (PHR), and retrosplenial cortex (RSC) play critical roles in spatial processing. These regions are interconnected, and functionally dependent. The neuronal networks mediating this reciprocal dependency are largely unknown. Establishing the developmental timing of network formation will help to understand the emergence of this dependency. We questioned whether the long-range outputs from HF-PHR to RSC in Long Evans rats develop during the same time periods as previously reported for the intrinsic HF-PHR connectivity and the projections from RSC to HF-PHR. The results of a series of retrograde and anterograde tracing experiments in rats of different postnatal ages show that the postnatal projections from HF-PHR to RSC display low densities around birth, but develop during the first postnatal week, reaching adult-like densities around the time of eye-opening. Developing projections display a topographical organization similar to adult projections. We conclude that the long-range projections from HF-PHR to RSC develop in parallel with the intrinsic circuitry of HF-PHR and the projections of RSC to HF-PHR.
大鼠海马结构(HF)、海马旁区域(PHR)和后穹窿皮质(RSC)在空间处理中发挥着关键作用。这些区域相互连接,功能上相互依赖。介导这种相互依赖的神经元网络在很大程度上是未知的。确定网络形成的发展时间将有助于了解这种依赖性的出现。我们质疑长程从 HF-PHR 到 RSC 的输出是否在与之前报道的内在 HF-PHR 连接性以及从 RSC 到 HF-PHR 的投射相同的时间内发育。在不同出生后年龄的大鼠中进行的一系列逆行和顺行示踪实验的结果表明,HF-PHR 到 RSC 的出生后投射在出生周围密度较低,但在出生后第一周内发育,在睁眼时达到类似于成年的密度。发育中的投射显示出与成年投射相似的拓扑组织。我们得出结论,HF-PHR 到 RSC 的长程投射与 HF-PHR 的内在回路以及 RSC 到 HF-PHR 的投射平行发育。