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蜜蜂(西方蜜蜂)控制蜂巢环境的观测系统。

Observation system for the control of the hive environment by the honeybee (Apis mellifera).

作者信息

Ohashi Mizue, Okada Ryuichi, Kimura Toshifumi, Ikeno Hidetoshi

机构信息

School of Human Science and Environment, University of Hyogo, Himeji, Hyogo, Japan.

出版信息

Behav Res Methods. 2009 Aug;41(3):782-6. doi: 10.3758/BRM.41.3.782.

Abstract

The honeybee can control its hive environment to survive drastic changes in the field environment. To study the control of multiple environmental factors by honeybees, in this experiment, we developed a continual and simultaneous monitoring system for the temperature, moisture, and carbon dioxide (CO2) concentration in a honeybee hive. Changes in hive weight, CO2 production rate, and honeybee behavior were also monitored to estimate energy costs and behavioral activity for the environmental regulation. Measurements were conducted in August 2008. We found that the honeybee hive has a microclimate different from the ambient climate, and that the difference was partly accompanied by changes in honeybee activity. Our results also suggest that hive temperature, humidity, and CO2 concentrations are controlled by different mechanisms. Additional monitoring of the hive environment and honeybee behavior for longer periods would enable us to understand the mechanisms of environmental control by honeybees, which is one of the behaviors that define honeybees as social insects.

摘要

蜜蜂能够控制其蜂巢环境,以在野外环境的剧烈变化中生存。为了研究蜜蜂对多种环境因素的控制,在本实验中,我们开发了一种用于连续同时监测蜜蜂蜂巢内温度、湿度和二氧化碳(CO2)浓度的系统。还监测了蜂巢重量、CO2产生率和蜜蜂行为的变化,以估计环境调节的能量成本和行为活动。测量于2008年8月进行。我们发现,蜜蜂蜂巢具有与周围气候不同的微气候,且这种差异部分伴随着蜜蜂活动的变化。我们的结果还表明,蜂巢温度、湿度和CO2浓度受不同机制控制。对蜂巢环境和蜜蜂行为进行更长时间的额外监测,将使我们能够了解蜜蜂的环境控制机制,而这是将蜜蜂定义为社会性昆虫的行为之一。

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