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Optimization of Coral Video Transect Technique for Coral Reef Survey: Comparison with Intercept Transect Technique

机译:用于珊瑚礁调查的珊瑚视频样带技术的优化:与拦截样带技术的比较

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Variety in video sampling protocol for coral reef survey worldwide has prompted this study to?create an optimized protocol for Coral Video Transect (CVT) technique for coral reef survey in Malaysia. The effect of different vertical distance of the camera above the substrate during video recording, number of frames and points analyzed as well as time spent during field and analysis were examined to determine an optimal protocol for CVT technique at different coral reef conditions in Malaysia’s water. Video recording taken at 0.5 m camera distance was selected as optimize vertical distance above the substrate as it can identify more benthic categories than 1.0 m with lesser time taken as well as frames extracted than 0.2 m. Respectively, 80% of total frames extracted from 20 m transect and analyzed with 50 points per frames were chosen as an optimized sample size for its ability to precisely estimate percent cover and accurately identify benthic categories.?This optimized protocol was then compared with Line Intercept Transect (LIT) method. No clear difference in estimating percentage cover of major benthic categories between CVT and LIT method, but CVT recorded a significantly higher number of benthic categories with lesser time spent during field survey as compared to LIT method. This implied that the optimize CVT method can precisely estimate percent cover and accurately identify benthic categories in coral communities and are thus more suitable for scientific research and management purposes than LIT method. Other advantages of using this technique are by providing a permanent data that can be reassessed later on, lesser field time and wider survey area. Overall, this study showed that CVT technique is an acceptable alternative method of coral reef survey in Malaysia.
机译:全世界范围内用于珊瑚礁调查的视频采样协议的多样性促使这项研究“为马来西亚珊瑚礁调查的珊瑚视频横断面(CVT)技术创建了优化的协议。在视频记录过程中,相机在基板上方不同垂直距离的影响,所分析的帧数和点数以及在野外和分析过程中所花费的时间均经过检查,以确定在马来西亚水中不同珊瑚礁条件下进行CVT技术的最佳方案。选择摄像机距离为0.5 m的视频记录是为了优化基板上方的垂直距离,因为它可以识别比1.0 m更多的底栖类别,并且花费的时间更少,并且提取的帧小于0.2 m。分别从20 m断面提取并以每帧50个点进行分析的总帧中的80%被选为优化的样本大小,因为它能够准确估算覆盖率并准确识别底栖动物类别。然后将该优化协议与Line进行比较截断(LIT)方法。与LIT方法相比,CVT和LIT方法在估计主要底栖动物种类的覆盖率方面没有明显差异,但是CVT记录的底栖动物种类数量明显较多,而在实地调查中花费的时间更少。这意味着优化的CVT方法可以精确地估计覆盖百分比,并准确地识别珊瑚群落中的底栖动物类别,因此比LIT方法更适合于科学研究和管理目的。使用此技术的其他优点是可以提供永久性数据,以便以后重新评估,减少现场时间并扩大调查范围。总的来说,这项研究表明,CVT技术是马来西亚可以接受的珊瑚礁调查的替代方法。

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