一种简单的原位标记方法和适当的工具,用于水下生态研究的照片和视频样方

IF 0.4 Q4 Engineering
B. Moreno
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引用次数: 3

摘要

生态学研究在陆地和海洋科学中使用样方来收集定性(1/0)和定量(密度和表面覆盖)信息。根据评估的时空尺度,这可以是一个试点或监测调查。为了监测调查,有必要为样方本身(原位标记)和数字文件(非原位编码)制定一个代码,最好是为两者制定一个代码。用于这些研究的样方的设计必须通过某些规格来完成人体工程学,例如:由高度耐药的材料制成;负浮力但重量轻;防腐(特别适用于海洋环境);能停留在海底栖息地的;并与原位标记技术兼容。本文对不同材料和宽度的样方进行了比较,包括原位和非原位编码技术的实施。建议是经过几个测试小时的抽样与样方。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A simple in situ labelling approach and adequate tools for photo and video quadrats used in underwater ecological studies
Ecological studies use quadrats to gather qualitative (1/0) and quantitative (density and surface coverage) information in terrestrial and marine sciences. Depending on the spatiotemporal scale of the assessment, this could be a pilot or a monitoring survey. For monitoring surveys, it is necessary to develop a code for the quadrat itself (in situ labelling), for the digital file (ex situ codification), and ideally, for both. The design of the quadrat used for these studies must accomplish ergonomics through certain specifications such as: made of highly resistant material; negative-buoyant but lightweight; anticorrosive (specially for marine environments); able to stay positioned on seafloor habitat; and compatible with the in situ labelling technique. The present paper is a comparison of quadrats of different materials and widths, including the implementation of an in situ and ex situ codification technique. Recommendations are made after several test hours sampling with quadrats.
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来源期刊
UNDERWATER TECHNOLOGY
UNDERWATER TECHNOLOGY ENGINEERING, OCEAN-
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