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Electrophysiological Evidence for a Direct Link between the Main and Accessory Olfactory Bulbs in the Adult Rat

机译:成年大鼠主嗅球与附件嗅球之间直接联系的电生理证据

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It is accepted that the main- and accessory- olfactory systems exhibit overlapping responses to pheromones and odorants. We performed whole-cell patch-clamp recordings in adult rat olfactory bulb slices to define a possible interaction between the first central relay of these systems: the accessory olfactory bulb (AOB) and the main olfactory bulb (MOB). This was tested by applying electrical field stimulation in the dorsal part of the MOB while recording large principal cells (LPCs) of the anterior AOB (aAOB). Additional recordings of LPCs were performed at either side of the plane of intersection between the aAOB and posterior-AOB (pAOB) halves, or linea alba , while applying field stimulation to the opposite half. A total of 92 recorded neurons were filled during whole-cell recordings with biocytin and studied at the light microscope. Neurons located in the aAOB ( n = 6, 8%) send axon collaterals to the MOB since they were antidromically activated in the presence of glutamate receptor antagonists (APV and CNQX). Recorded LPCs evoked orthodromic excitatory post-synaptic responses ( n = 6, aAOB; n = 1, pAOB) or antidromic action potentials ( n = 8, aAOB; n = 7, pAOB) when applying field stimulation to the opposite half of the recording site (e.g., recording in aAOB; stimulating in pAOB, and vice-versa). Observation of the filled neurons revealed that indeed, LPCs send axon branches that cross the linea alba to resolve in the internal cellular layer. Additionally, LPCs of the aAOB send axon collaterals to dorsal-MOB territory. Notably, while performing AOB recordings we found a sub-population of neurons (24% of the total) that exhibited voltage-dependent bursts of action potentials. Our findings support the existence of: 1. a direct projection from aAOB LPCs to dorsal-MOB, 2. physiologically active synapses linking aAOB and pAOB, and 3. pacemaker-like neurons in both AOB halves. This work was presented in the form of an Abstract on SfN 2014 (719.14/EE17).
机译:公认的是,主要嗅觉系统和辅助嗅觉系统对信息素和气味剂表现出重叠的响应。我们在成年大鼠嗅球切片中进行了全细胞膜片钳记录,以定义这些系统的第一个中央继电器:辅助嗅球(AOB)和主嗅球(MOB)之间的可能相互作用。通过在MOB的背部施加电场刺激,同时记录前AOB(aAOB)的大型主细胞(LPC)进行测试。在aAOB和后AOB(pAOB)一半或linea alba相交平面的任一侧进行LPC的附加记录,同时对另一半施加场刺激。在全细胞记录过程中,用生物素填充了总共92个记录的神经元,并在光学显微镜下进行了研究。位于aAOB中的神经元(n = 6,8%)将轴突侧支发送至MOB,因为它们在存在谷氨酸受体拮抗剂(APV和CNQX)的情况下被抗自由基激活。当对记录的另一半施加场刺激时,记录的LPC引起正统兴奋性突触后反应(n = 6,aAOB; n = 1,pAOB)或抗躯体动作电位(n = 8,aAOB; n = 7,pAOB) (例如,在aAOB中记录;在pAOB中刺激,反之亦然)。对充满的神经元的观察显示,确实,LPC发出了穿越白线的轴突分支,并在内部细胞层中分解。此外,aAOB的LPC将轴突抵押品发送到MOB背侧。值得注意的是,在执行AOB录音时,我们发现了一个神经元亚群(占总数的24%),表现出电压依赖性的动作电位爆发。我们的发现支持以下方面的存在:1.从aAOB LPCs直接投射到背侧MOB; 2。连接aAOB和pAOB的生理活性突触;以及3.在两个AOB一半中都有起搏器样神经元。这项工作以SfN 2014(719.14 / EE17)的摘要形式呈现。

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