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Sensitivity of Honeybee Hygroreceptors to Slow Humidity Changes and Temporal Humidity Variation Detected in High Resolution by Mobile Measurements

机译:通过移动测量以高分辨率检测蜜蜂湿度感受器对缓慢的湿度变化和时间湿度变化的敏感性

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摘要

The moist cell and the dry cell on the antenna of the male honeybee were exposed to humidities slowly rising and falling at rates between –1.5%/s and +1.5%/s and at varying amplitudes in the 10 to 90% humidity range. The two cells respond to these slow humidity oscillations with oscillations in impulse frequency which depend not only on instantaneous humidity but also on the rate with which humidity changes. The impulse frequency of each cell was plotted as a function of these two parameters and regression planes were fitted to the data points of single oscillation periods. The regression slopes, which estimate sensitivity, rose with the amplitude of humidity oscillations. During large-amplitude oscillations, moist and dry cell sensitivity for instantaneous humidity and its rate of change was high. During small-amplitude oscillations, their sensitivity for both parameters was low, less exactly reflecting humidity fluctuations. Nothing is known about the spatial and temporal humidity variations a honeybee may encounter when flying through natural environments. Microclimatic parameters (absolute humidity, temperature, wind speed) were measured from an automobile traveling through different landscapes of Lower Austria. Landscape type affected extremes and mean values of humidity. Differences between peaks and troughs of humidity fluctuations were generally smaller in open grassy fields or deciduous forests than in edge habitats or forest openings. Overall, fluctuation amplitudes were small. In this part of the stimulus range, hygroreceptor sensitivity is not optimal for encoding instantaneous humidity and the rate of humidity change. It seems that honeybee's hygroreceptors are specialized for detecting large-amplitude fluctuations that are relevant for a specific behavior, namely, maintaining a sufficiently stable state of water balance. The results suggest that optimal sensitivity of both hygroreceptors is shaped not only by humidity oscillation amplitudes but also according to their impact on behavior.
机译:雄性蜜蜂天线上的湿细胞和干细胞暴露于缓慢上升和下降的湿度下,湿度在–1.5%/ s和+ 1.5%/ s之间,并且在10%到90%的湿度范围内变化。这两个单元以脉冲频率的振荡来响应这些缓慢的湿度振荡,这不仅取决于瞬时湿度,还取决于湿度的变化速率。将每个单元的脉冲频率绘制为这两个参数的函数,并将回归平面拟合到单个振荡周期的数据点。估计灵敏度的回归斜率随湿度振荡幅度的增加而增加。在大振幅振荡期间,湿电池和干电池对瞬时湿度的敏感度及其变化率很高。在小振幅振荡期间,它们对两个参数的灵敏度均很低,无法准确反映湿度波动。蜜蜂在自然环境中飞行时可能会遇到的时空湿度变化一无所知。微气候参数(绝对湿度,温度,风速)是通过在下奥地利州不同景观中行驶的汽车测量的。景观类型影响极端值和湿度平均值。在开阔的草地或落叶林中,湿度波动的高峰和低谷之间的差异通常小于边缘生境或森林开阔地带。总体而言,波动幅度很小。在这部分刺激范围内,对于编码瞬时湿度和湿度变化率,吸湿器灵敏度不是最佳的。似乎蜜蜂的湿度感受器专门用于检测与特定行为相关的大幅度波动,即保持足够稳定的水平衡状态。结果表明,两个湿度感受器的最佳灵敏度不仅受湿度振荡幅度的影响,而且还取决于其对行为的影响。

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    Harald Tichy; Wolfgang Kallina;

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  • 年(卷),期 -1(9),6
  • 年度 -1
  • 页码 e99032
  • 总页数 15
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