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Impact of Synaptic Depression on Spike Timing at the Endbulb of Held

机译:突触抑制对所持球茎突峰时机的影响

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摘要

Many synapses show short-term depression, but it is not well understood what functional purpose depression serves and whether its effects are beneficial or detrimental to information processing. We study this issue at the synapse made by auditory-nerve (AN) fibers onto bushy cells (BCs) of the cochlear nucleus, called the “endbulb of Held.” AN fibers carry timing information about sounds and converge on BCs, which relay timing information to brain areas responsible for sound localization. Dynamic-clamp recordings of BCs in mouse brain slices indicated that nonphase-locked inputs influenced the contribution of phase-locked inputs when all inputs had equal strength. We evaluated whether this situation depended on activity-dependent synaptic plasticity. Voltage-clamp recordings indicated that the amount of depression varied over the population of endbulbs, but sibling endbulbs terminating on the same BC had similar plasticity. We tested the effects of endbulb depression on BC spiking using dynamic clamp. Under most conditions, increasing depression led to lower probability of BC spiking. However, the effects on spike timing were highly context dependent. When all inputs carried uniform timing information, depression indirectly affected BC spike precision, by determining how many inputs were required to cross threshold. Earlier work has indicated that this interacts with the temporal distribution of inputs to determine BC spike precision. When inputs carried different timing information, depression greatly improved BC precision by suppressing highly active inputs carrying little phase-locked information. These data suggest that endbulbs with different depression characteristics could produce BCs that enhance response probability or timing under different stimulus conditions.
机译:许多突触显示短期抑郁症,但人们对功能性抑郁症的作用及其功能是否有益或不利于信息处理尚不甚了解。我们通过听觉神经(AN)纤维在耳蜗核的丛状细胞(BCs)上形成的突触中研究了这个问题,这种神经突触被称为“ Hendbulb”。 AN纤维会携带​​有关声音的时序信息,并会聚在BC上,从而将时序信息中继到负责声音定位的大脑区域。小鼠脑切片中BC的动态钳位记录表明,当所有输入具有相同的强度时,非锁相输入会影响锁相输入的贡献。我们评估这种情况是否取决于活动依赖的突触可塑性。电压钳记录表明,抑郁症的数量随端灯泡的数量而变化,但终止于同一BC的同胞端灯泡具有相似的可塑性。我们使用动态钳夹测试了球根凹陷对BC增高的影响。在大多数情况下,情绪低落会导致BC发作的可能性降低。但是,对尖峰时序的影响在很大程度上取决于上下文。当所有输入均带有统一的时序信息时,压降通过确定需要越过阈值的输入间接影响BC峰值精度。早期的工作表明,这与输入的时间分布相互影响,以确定BC峰值精度。当输入端携带不同的时序信息时,抑制通过抑制携带很少锁相信息的高活性输入端,可以大大提高BC精度。这些数据表明,具有不同抑郁特征的鳞茎可能会产生BC,从而增强在不同刺激条件下的反应概率或时机。

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