...
首页> 外文期刊>ICES Journal of Marine Science >Microprocessor-based prototype bycatch reduction device reduces bait consumption by spiny dogfish and sandbar shark
【24h】

Microprocessor-based prototype bycatch reduction device reduces bait consumption by spiny dogfish and sandbar shark

机译:基于微处理器的原型兼捕减少装置,减少了刺dog鱼和沙洲鲨的诱饵消耗

获取原文
获取原文并翻译 | 示例
           

摘要

Elasmobranchs contribute heavily to bycatch in longline fisheries globally, and an effective method of deterring them from baited fishing gear is needed. Electrosensory stimulus holds promise as a method of disrupting elasmobranch close-range feeding responses as their electric sense guides their final strike during prey capture. We used laboratory experiments to test the hypothesis that weak electric stimuli generated by a prototype electronic bycatch reduction device (BRD) could deter sandbar shark (Carcharhinus plumbeus) and spiny dogfish (Squalus acanthias) from eating bait. Voltage gradients 1mVcm(-1) at the location of bait were produced by an Arduino microcontroller powered by a 9 V battery and attached to carbon electrodes. Median bait consumption by groups of juvenile sandbar shark declined by 74% when bait was located 10 cm vs. 2m from active electrodes. Spiny dogfish median bait consumption halved when bait was located 10 cm from active vs. inactive electrodes. Although laboratory studies often produce a larger effect for electrosensory shark deterrents than can be demonstrated during field trials, if the effects seen in our laboratory studies produced similar effects in the field, it could meet fishermen's requirements for a BRD.
机译:las鱼在全球延绳钓渔业的兼捕中发挥了重要作用,因此需要一种有效的方法来阻止它们脱离诱饵的渔具。电感应刺激有望成为一种破坏分支近距离觅食反应的方法,因为它们的电感应引导捕获猎物的最后一击。我们使用实验室实验测试了这样的假设,即由原型电子兼捕减少装置(BRD)产生的弱电刺激可以阻止诱饵中的沙鲨(Carcharhinus plumbeus)和多刺S鱼(Squalus acanthias)。诱饵位置的电压梯度<1mVcm(-1)是由Arduino微控制器产生的,该微控制器由9 V电池供电,并连接至碳电极。当诱饵位于距活动电极2m的地方10厘米(相对于2m)时,少年沙洲鲨的诱饵消耗量中值下降了74%。当诱饵位于距离活动电极和非活动电极10 cm处时,带刺的fish鱼的饵料中值消耗减少了一半。尽管实验室研究通常对电感鲨鱼威慑作用的效果要大于田间试验所证明的效果,但如果我们实验室研究中看到的效果在田间产生相似的效果,则可以满足渔民对BRD的要求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号