许晓青, 蒲宝婧, 余楚萌, 等. 声学手段辅助自然保护地生物多样性监测现状及应用建议[J]. 自然保护地,2023,3(4):34−44. DOI: 10.12335/2096-8981.2023081202
引用本文: 许晓青, 蒲宝婧, 余楚萌, 等. 声学手段辅助自然保护地生物多样性监测现状及应用建议[J]. 自然保护地,2023,3(4):34−44. DOI: 10.12335/2096-8981.2023081202
XU Xiaoqing, PU Baojing, YU Chumeng, et al. Situtaion of Acoustic Tools to Assist Biodiversity Monitoring in Nature Reserves and Application Recommendations[J]. Natural Protected Areas, 2023, 3(4): 34−44. DOI: 10.12335/2096-8981.2023081202
Citation: XU Xiaoqing, PU Baojing, YU Chumeng, et al. Situtaion of Acoustic Tools to Assist Biodiversity Monitoring in Nature Reserves and Application Recommendations[J]. Natural Protected Areas, 2023, 3(4): 34−44. DOI: 10.12335/2096-8981.2023081202

声学手段辅助自然保护地生物多样性监测现状及应用建议

Situtaion of Acoustic Tools to Assist Biodiversity Monitoring in Nature Reserves and Application Recommendations

  • 摘要: 建立自然保护地是保护生物多样性最为有效的措施,构建以国家公园为主体的自然保护地体系是我国推进生态文明建设的重大举措。声学监测是一种通过记录自然环境中物种声音类型和声音变化以研究生物多样性的新型方法,其在自然保护地生物多样性监测中的应用越来越广泛。梳理了声学监测在自然保护地保护工作中的优劣势、应用,以及监测实施要点。声学监测实现了被动式的采集,可以获得连续、完整和相对低成本的数据,提高了更大物种规模监测的可能性。它有助于促进物种名录清单建立、监测类群数量评估和动态观察等工作,同时可利用动物声音判断其生理状态和栖息地质量。但目前仍然存在标准化和资源共享的声学数据库缺乏、长期监测方案仍较少、设备差异产生的数据不一致、以指数为主的生物多样性评估存在保真度和准确度争议等问题,未来仍然需要通过大量的科学研究进一步提升声学对生物多样性预测的能力。基于此,提出了对我国自然保护地开展声学监测的若干建议,从而推动自然保护地体系的生物多样性监测与保护。

     

    Abstract: The establishment of nature reserves can be the most effective measure to conserve biodiversity and the construction of a nature reserve system with national parks as the main body has been a major initiative to promote the construction of ecological civilization in China. Acoustic monitoring has been a new method to estimate biodiversity by recording the types and changes of species’ sounds in the natural environment, and its application in biodiversity monitoring in nature reserves has become more and more widespread. In this paper, the advantages and disadvantages of acoustic monitoring in the biodiversity conservation of nature reserves, its application, and the key points of monitoring implementation were sorted out. Acoustic monitoring realized passive collection, which allowed for continuous, complete, and relatively low-cost data, increasing the possibility of monitoring at larger species scales. It can help to facilitate the establishment of species list inventories, the assessment of monitored taxa populations, and the observation of dynamics, while animal sounds can be used to determine their physiological status and habitat quality. However, there was still a lack of standardized and resource-sharing acoustic databases, few long-term monitoring programs, inconsistent data from equipment differences, and controversy over the fidelity and accuracy of index-based biodiversity assessment. In the future, the need to further improve the ability of acoustics for biodiversity prediction through a large number of scientific studies will still be needed. Based on this, several recommendations for the use of acoustics as a monitoring tool in China’s nature reserves were proposed to promote the monitoring and conservation of biodiversity in the nature reserve system.

     

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