Greenberg B, Bindokas V P, Gauger J R
Bioelectromagnetics. 1981;2(4):315-28. doi: 10.1002/bem.2250020404.
Honeybee colonies exposed under a 765-kV, 60-Hz transmission line at 7 kV/m show the following sequence of effects: 1) increased motor activity with transient increase in hive temperature; 2) abnormal propolization; 3) impaired hive weight gain; 4) queen loss and abnormal production of queen cells; 5) decreased sealed brood; and 6) poor winter survival. When colonies were exposed at 5 different E fields (7, 5.5, 4.1, 1.8, and 0.65-0.85 kV/m) at incremental distances from the line, different thresholds for biologic effects were obtained. Hive net weights showed significant dose-related lags at the following exposures: 7 kV/m, one week; 5.5 kV/m, 2 weeks; and 4.1 kV/m, 11 weeks. The two lowest exposure groups had normal weight after 25 weeks. Abnormal propolization of hive entrances did not occur below 4.1 kV/m. Queen loss occurred in 6 of 7 colonies at 7 kV/m and 1 of 7 at 5.5 kV/m, but not below. Foraging rates were significantly lower only at 7 and 5.5 kV/m. Hive weight impairment and abnormal propolization occur at lower E-field intensity than other effects and limit the "biological effects corridor" of the transmission line to approximately 23 m beyond a ground line projection of each outer phase wire. Intrahive E fields of 15-100 kV/m were measured with a displacement current sensor. Step-potential-induced currents up to 0.5 microA were measured in an electrically equivalent bee model placed on the honeycomb in a hive exposed at 7 kV/m. At 1.8 kV/m body currents were a few nanoamperes, or two orders of magnitude lower, and these colonies showed no effects. E-field versus electric shock mechanisms are discussed.
暴露于765千伏、60赫兹输电线下,电场强度为7千伏/米的蜂群会出现以下一系列效应:1)运动活性增加,蜂巢温度短暂升高;2)蜂胶异常分泌;3)蜂巢增重受损;4)蜂王损失以及王台生产异常;5)封盖子脾减少;6)冬季存活率低。当蜂群在距线路不同增量距离处,暴露于5种不同电场强度(7、5.5、4.1、1.8和0.65 - 0.85千伏/米)下时,获得了不同的生物效应阈值。蜂巢净重显示在以下暴露水平下存在显著的剂量相关滞后:7千伏/米,滞后一周;5.5千伏/米,滞后两周;4.1千伏/米,滞后11周。两个最低暴露组在25周后体重正常。蜂巢入口处的蜂胶异常分泌在4.1千伏/米以下不会出现。7千伏/米时,7个蜂群中有6个出现蜂王损失,5.5千伏/米时,7个中有1个出现蜂王损失,但更低电场强度下未出现。仅在7千伏/米和5.5千伏/米时,采集率显著降低。蜂巢重量受损和蜂胶异常分泌在比其他效应更低的电场强度下就会出现,并且将输电线路的“生物效应走廊”限制在每条外侧相线地面投影之外约23米处。使用位移电流传感器测量到蜂巢内电场强度为15 - 100千伏/米。在暴露于7千伏/米的蜂巢中,放置在蜂巢脾上的电等效蜜蜂模型中测量到高达0.5微安的跨步电位感应电流。在1.8千伏/米时,身体电流为几纳安,低两个数量级,并且这些蜂群未表现出效应。文中讨论了电场与电击机制。