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深海传感器和平台技术的深海探索。

Exo-Ocean Exploration with Deep-Sea Sensor and Platform Technologies.

机构信息

Instituto de Ciencias del Mar (ICM-CSIC), Barcelona, Spain.

Stazione Zoologica Anton Dohrn, Naples, Italy.

出版信息

Astrobiology. 2020 Jul;20(7):897-915. doi: 10.1089/ast.2019.2129. Epub 2020 Apr 8.

Abstract

One of Saturn's largest moons, Enceladus, possesses a vast extraterrestrial ocean ( exo-ocean) that is increasingly becoming the hotspot of future research initiatives dedicated to the exploration of putative life. Here, a new bio-exploration concept design for Enceladus' exo-ocean is proposed, focusing on the potential presence of organisms across a wide range of sizes ( from uni- to multicellular and animal-like), according to state-of-the-art sensor and robotic platform technologies used in terrestrial deep-sea research. In particular, we focus on combined direct and indirect life-detection capabilities, based on optoacoustic imaging and passive acoustics, as well as molecular approaches. Such biologically oriented sampling can be accompanied by concomitant geochemical and oceanographic measurements to provide data relevant to exo-ocean exploration and understanding. Finally, we describe how this multidisciplinary monitoring approach is currently enabled in terrestrial oceans through cabled (fixed) observatories and their related mobile multiparametric platforms ( Autonomous Underwater and Remotely Operated Vehicles, as well as crawlers, rovers, and biomimetic robots) and how their modified design can be used for exo-ocean exploration.

摘要

土卫二是土星最大的卫星之一,拥有一个巨大的外星海洋(外海洋),它正日益成为未来旨在探索假定生命的研究计划的热点。在这里,根据在地球深海研究中使用的最先进的传感器和机器人平台技术,提出了土卫二外海洋的一个新的生物探索概念设计,重点关注各种大小(从单细胞到多细胞和类似动物)的生物体的潜在存在。特别是,我们专注于基于光声成像和被动声学以及分子方法的组合直接和间接生命探测能力。这种生物导向的采样可以伴随着伴随的地球化学和海洋学测量,以提供与外海洋探索和理解相关的数据。最后,我们描述了如何通过海底观测站及其相关的多参数移动平台(自主水下和远程操作车辆,以及爬行器、漫游车和仿生机器人)在地球海洋中实现这种多学科监测方法,以及如何修改其设计以用于外海洋探索。

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