研究海洋动物生物电作为可再生能源发展基础的潜力。

IF 1.1 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Bioelectricity Pub Date : 2025-06-09 eCollection Date: 2025-06-01 DOI:10.1089/bioe.2025.0001
Fasih Bintang Ilhami, Tutut Nurita, Vivi Azmilah, Azzahra Vima Lika, Erina Maulidatul Komariyah, Hilmatul Aisyiyah, Frengki Adolf Tanaem
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引用次数: 0

摘要

海洋动物的电和磁感觉系统为进化适应及其技术潜力提供了非凡的见解。这项研究探索了诸如黄貂鱼、电鳗、海豚和双髻鲨等海洋物种的生物电能力,它们利用专门的器官进行狩猎、导航和自卫。这些适应激发了仿生学的创新,包括水下导航设备、生物电传感器和医疗诊断工具。这项研究使用描述性和定性的方法来展示像洛伦兹尼壶腹这样的电感受器是如何帮助身体接收小的电场和磁场的。这些能力对高效能源系统、先进导航工具和敏感医疗技术的发展具有重要意义。然而,伦理和生态方面的挑战出现了,特别是在海洋物种及其栖息地的保护方面。本研究强调了可持续整合仿生技术和促进进一步跨学科研究的必要性,以加强应用,同时保护海洋生态系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating the Potential of Marine Animal Bioelectricity as a Basis for Renewable Energy Development.

The electrical and magnetic sensory systems of marine animals provide remarkable insights into evolutionary adaptation and their technological potential. This study explores the bioelectric abilities of marine species such as stingrays, electric eels, dolphins, and hammerhead sharks, which utilize specialized organs for hunting, navigation, and self-defense. These adaptations have inspired biomimetic innovations, including underwater navigation devices, bioelectric sensors, and medical diagnostic tools. This study uses a descriptive and qualitative method to show how electroreceptors like the ampullae of Lorenzini help the body pick up on small electric and magnetic fields. These capabilities have significant implications for the development of efficient energy systems, advanced navigation tools, and sensitive medical technologies. However, ethical and ecological challenges arise, especially concerning the conservation of marine species and their habitats. This study highlights the necessity of sustainably integrating biomimetic technologies and promoting further interdisciplinary research to enhance applications while safeguarding marine ecosystems.

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来源期刊
Bioelectricity
Bioelectricity Multiple-
CiteScore
3.40
自引率
4.30%
发文量
33
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