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DESCRIPTION (provided by applicant): At excitatory synapses onto CA1 pyramidal cells, short-term plasticity causes synaptic strength to be modulated over a wide range in response to irregular stimulus patterns such as these synapses receive in vivo. This frequency-dependence of synaptic transmission enables computation at synapses, and determines the content of information transmitted between the pre- and post-synaptic cells. Very little is known, however, about short-term plasticity and frequency-dependence of synaptic transmission at excitatory synapses onto CA1 interneurons. Like CA1 pyramidal cells, interneurons in CA1 receive inputs from CA3 pyramidal cells via Schaffer collateral axons. However, the role of interneurons in the hippocampal circuit is quite different. Since these cells provide critical feed forward inhibition to the CA1 pyramidal cells, the frequency-dependence of their excitatory inputs will be crucial in determining the balance of excitation and inhibition in the circuit. The balance between inhibition and excitation is critical to the hippocampus, a brain region that is highly susceptible to epilepsy. Experiments in this proposal use electrophysiology to compare short-term plasticity and the frequency dependence of synaptic transmission at excitatory synapses onto CA1 interneurons vs. pyramidal cells, using traditional stimulus paradigms and temporally complex stimulus patterns based on in vivo recordings of action potential timing. These experiments will provide information about the role of the postsynaptic target cell in determining presynaptic properties, and how the frequency dependence of synaptic transmission is related to neural coding.
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DOI: 10.1002/hipo.20496
发表时间: 2009-02
期刊: HIPPOCAMPUS
影响因子: 3.5
作者: [Speed, Haley E., Dobrunz, Lynn E.]
通讯作者: Dobrunz, Lynn E.
DOI: 10.1111/ejn.12898
发表时间: 2015-05
期刊: The European journal of neuroscience
影响因子: --
作者: [Bartley AF, Dobrunz LE]
通讯作者: Dobrunz LE
Mechanisms of target-cell specific short-term plasticity at Schaffer collateral synapses onto interneurones versus pyramidal cells in juvenile rats.
幼年大鼠中间神经元与锥体细胞上谢弗侧支突触的靶细胞特异性短期可塑性机制。
DOI: 10.1113/jphysiol.2005.093948
发表时间: 2005
期刊: The Journal of physiology
影响因子: --
作者: [Sun,HuaYu, Lyons,SusanA, Dobrunz,LynnE]
通讯作者: Dobrunz,LynnE
Effects of NPY on Hippocampal Circuit Function
Effects of NPY on Hippocampal Circuit Function
Effects of NPY on Hippocampal Circuit Function
Effects of NPY on Hippocampal Circuit Function
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