Hellwig Maria, Martzok Alexander, Tichy Harald
Department of Neurobiology, Faculty of Life Sciences, University of Vienna, Vienna, Austria.
Front Physiol. 2019 Aug 7;10:943. doi: 10.3389/fphys.2019.00943. eCollection 2019.
The ON and OFF olfactory receptor neurons (ORNs) on the cockroach antenna display a high sensitivity for the rate at which odorant concentration changes. That rate of change acts as a gain control signal that improves the sensitivity of both ORNs for fluctuating concentration changes. By means of extracellular recording techniques, we find in both types of ORNs an increased gain for the rate of concentration change when the duration of the oscillation period increases. During long-period oscillations with slow concentration changes, the high gain for the rate of concentration change improves the ORNs ability to detect low rates of concentration changes when the fluctuations are weak. To be useful in plume tracking, gain control must be invariant to the air flow velocity. We describe that raising the level of the flow rate has no effect on the ON-ORN responses to concentration changes down to rates of 2%/s, but exerts a slight increase on the OFF-ORN response during these extremely low rates. At 4%/s, however, the OFF-ORN response is also unaffected by the flow rate level. The asymmetry corresponds with a generally higher sensitivity of the OFF-ORN to concentration changes. Nevertheless, the gain of both ORNs for the concentration rate change is robust against the air flow velocity. This makes possible an instantaneous analysis of the rate of concentration change for both directions of change by one or the other ORN. Therefore, the ON and OFF ORNs are optimized to encode concentration increments and decrements in a turbulent odorant plume.
蟑螂触角上的开型和关型嗅觉受体神经元(ORN)对气味浓度变化的速率表现出高灵敏度。该变化速率充当增益控制信号,提高了两种ORN对浓度波动变化的灵敏度。通过细胞外记录技术,我们发现在两种类型的ORN中,当振荡周期的持续时间增加时,浓度变化速率的增益会增加。在浓度变化缓慢的长周期振荡期间,当波动较弱时,浓度变化速率的高增益提高了ORN检测低浓度变化速率的能力。为了在羽流跟踪中有用,增益控制必须对气流速度不变。我们描述了提高流速水平对开型ORN对浓度变化的响应没有影响,直到2%/s的速率,但在这些极低速率期间对关型ORN的响应有轻微增加。然而,在4%/s时,关型ORN的响应也不受流速水平的影响。这种不对称与关型ORN对浓度变化通常更高的灵敏度相对应。尽管如此,两种ORN对浓度变化速率的增益对气流速度具有鲁棒性。这使得通过一种或另一种ORN对浓度变化的两个方向的变化速率进行即时分析成为可能。因此,开型和关型ORN经过优化,以编码湍流气味羽流中的浓度增量和减量。