兽类学报 ›› 2024, Vol. 44 ›› Issue (6): 781-794.DOI: 10.16829/j.slxb.150959
张瀹文1,2, 王江月1,2, 李晟1,2
收稿日期:
2024-05-16
修回日期:
2024-09-11
出版日期:
2024-11-30
发布日期:
2024-12-02
通讯作者:
李晟,E-mail:shengli@pku.edu.cn
作者简介:
张瀹文(2001-),女,博士研究生,主要从事野生动物生态学研究.
基金资助:
ZHANG Yuewen1,2, WANG Jiangyue1,2, LI Sheng1,2
Received:
2024-05-16
Revised:
2024-09-11
Online:
2024-11-30
Published:
2024-12-02
摘要: 大型猫科动物是其所在陆地生态系统中的顶级捕食者,具有至关重要的生态功能,在维持生态系统稳定和生物多样性方面发挥着重要作用。然而,大型猫科动物通常活动隐蔽、对人类警惕性强,为其野外调查与生态研究带来诸多困难。随着技术的发展,颈圈追踪为大型猫科动物生态学研究带来了新的机遇,并逐渐成为研究的重要手段。为全面了解大型猫科动物颈圈追踪研究的现状,本研究系统检索并梳理了1985—2024年全球范围内12种大型猫科动物的颈圈追踪文献,分析了研究的空间分布、追踪信息和研究领域等,旨在揭示目前全球大型猫科动物追踪研究的重点和趋势,识别研究空缺,并对未来颈圈追踪技术的发展和应用进行展望。本研究共收集到491篇相关文献;2010年以来,大型猫科动物追踪的文献数量明显增多。从研究的空间分布来看,研究地点(n=501)覆盖欧洲、亚洲、非洲、北美洲、南美洲共49个国家,北美洲、非洲南部、欧洲西北部和亚洲南部是大型猫科动物颈圈追踪研究的热点区域,而中国、俄罗斯、南美洲北部等国家和地区则存在较为明显的研究空缺。美洲狮(Puma concolor)、欧亚猞猁(Lynx lynx)、狮(Panthera leo)、豹(P.pardus)、虎(P.tigris)的追踪研究数量较多。2010年之后,卫星定位颈圈因具有定位精度高、采集数据量大、覆盖范围广、人力资源消耗少等优势,逐渐超越传统的VHF无线电遥测颈圈,成为当前追踪研究的主流技术。研究领域主要集中在捕食或食性分析、生境选择和利用、家域范围、运动模式和种群动态等方面。本研究建议,应加强国内颈圈追踪研究的力度,拓展研究的深度和广度,推动追踪技术创新,建立标准化的颈圈追踪研究范式,并加强多学科合作与数据共享,以促进大型猫科动物的有效保护和管理。
中图分类号:
张瀹文, 王江月, 李晟. 全球大型猫科动物颈圈追踪研究的空间分布与研究领域分析[J]. 兽类学报, 2024, 44(6): 781-794.
ZHANG Yuewen, WANG Jiangyue, LI Sheng. The spatial distribution and research field of global large felid studies based on collar tracking[J]. ACTA THERIOLOGICA SINICA, 2024, 44(6): 781-794.
Atzeni L, Ilany A, Geffen E, Cushman S, Kaszta Ż, Macdonald D. 2024. Reviving the Arabian leopard: Harnessing historical data to map habitat and pave the way for reintroduction. Biological Conservation, 291. DOI: 10. 1016/j. biocon. 2024. 110440. Bai W K, Zhang J D, Yang X, Chi W F, Dong X, Li C, Gu X D, Zhou C Q. 2017. GIS-based research on giant panda habitat selection and use in Wolong Nature Reserve. Ecology and Environmental Sciences, 26 (1): 73-80. (in Chinese) Beukes M, Radloff F G T, Ferreira S M. 2017. Estimating lion’s prey species profile in an arid environment. Journal of Zoology, 303(2): 136-144. Blake L W, Gese E M. 2016. Cougar predation rates and prey composition in the Pryor Mountains of Wyoming and Montana. Northwest Science, 90 (4): 394-410. Blecha K A, Alldredge M W. 2015. Improvements on GPS location cluster analysis for the prediction of large carnivore feeding activities: Ground-truth detection probability and inclusion of activity sensor measures. PLoS ONE, 10 (9). DOI: 10. 1371/journal.pone. 0138915. Bothma J, Knight M, Van Hensbergen H, Riche E A N. 1997. Range size of southern Kalahari leopards. South African Journal of Wildlife Research, 27: 94-99. Broekhuis F, Madsen E K, Keiwua K, Macdonald D W. 2019. Using GPS collars to investigate the frequency and behavioural outcomes of intraspecific interactions among carnivores: a case study of male cheetahs in the Maasai Mara, Kenya. PLoS ONE, 14 (4).DOI: 10. 1371/journal. pone. 0213910. Bryce C M, Wilmers C C, Williams T M. 2017. Energetics and evasion dynamics of large predators and prey: pumas vs. hounds.PeerJ, 5. DOI: 10. 7717/peerj. 3701. Burt W H. 1943. Territoriality and home range concepts as applied to mammals. Journal of Mammalogy, 24 (3): 346. Cerqueira R C, De Rivera O R, Jaeger J A G, Grilo C. 2021. Direct and indirect effects of roads on space use by jaguars in Brazil.Scientific Reports, 11 (1). DOI: 10. 1038/s41598-021-01936-6. Chu G Z, Hou Y Q, Zhang G G, Liu D P, Dai M, Jiang H X. 2008.Satellite tracking of the migration routes of the waterbirds breeding in Qinghai Lake. Chinese Journal of Nature, 30 (2): 84-89, 126. (in Chinese) Clark J M. 2018. The 3Rs in research: A contemporary approach to replacement, reduction and refinement. British Journal of Nutrition, 120 (s1): S1-S7. Cochran W W, Warner D W, Tester J R, Kuechle V B. 1965. Automatic radio-tracking system for monitoring animal movements.BioScience, 15 (2): 98-100. Čonč Š, Oliveira T, Portas R, Černe R, Breg Valjavec M, Krofel M. 2022. Dolines and cats: remote detection of karst depressions and their application to study wild felid ecology. Remote Sensing, 14(3). DOI: 10. 3390/rs14030656. Davoli F, Schmidt K, Kowalczyk R, Randi E. 2013. Hair snaring and molecular genetic identification for reconstructing the spatial structure of Eurasian lynx populations. Mammalian Biology, 78(2): 118-126. Dellinger J A, Gustafson K D, Gammons D J, Ernest H B, Torres S G. 2020. Minimum habitat thresholds required for conserving mountain lion genetic diversity. Ecology and Evolution, 10 (19):10687-10696. Dewhirst O P, Roskilly K, Hubel T Y, Jordan N R, Golabek K A, McNutt J W, Wilson A M. 2017. An exploratory clustering approach for extracting stride parameters from tracking collars on free-ranging wild animals. Journal of Experimental Biology, 220(3): 341-346. Diogo R, Pastor F, De Paz F, Potau J M, Bello-Hellegouarch G, Ferrero E M, Fisher R E. 2012. The head and neck muscles of the serval and tiger: Homologies, evolution, and proposal of a mammalian and a veterinary muscle ontology. The Anatomical Record, 295(12): 2157-2178. Du Preez B, Hart T, Loveridge A J, Macdonald D W. 2015. Impact of risk on animal behaviour and habitat transition probabilities. Animal Behaviour, 100: 22-37. Fattebert J, Balme G A, Robinson H S, Dickerson T, Slotow R, Hunter L T B. 2016. Population recovery highlights spatial organization dynamics in adult leopards. Journal of Zoology, 299 (3):153-162. Fattebert J, Balme G, Dickerson T, Slotow R, Hunter L. 2015.Density-dependent natal dispersal patterns in a leopard population recovering from over-harvest. PLoS ONE, 10 (4). DOI:10. 1371/journal. pone. 0122355. Girard I, Ouellet J P, Courtois R, Dussault C, Breton L. 2002. Effects of sampling effort based on GPS telemetry on home-range size estimations. The Journal of Wildlife Management, 66 (4): 1290-1300. Goldingay R L. 2015. A review of home-range studies on Australian terrestrial vertebrates: adequacy of studies, testing of hypotheses, and relevance to conservation and international studies. Australian Journal of Zoology, 63 (2): 136-146. Goodrich J M, Kerley L L, Smirnov E N, Miquelle D G, McDonald L, Quigley H B, Hornocker M G, McDonald T. 2008. Survival rates and causes of mortality of Amur tigers on and near the SikhoteAlin Biosphere Zapovednik. Journal of Zoology, 276 (4):323-329. Gottwald J, Royauté R, Becker M, Geitz T, Höchst J, Lampe P, Leister L, Lindner K, Maier J, Rösner S, Schabo D G, Freisleben B, Brandl R, Müller T, Farwig N, Nauss T. 2023. Classifying the activity states of small vertebrates using automated VHF telemetry.Methods in Ecology and Evolution, 14 (1): 252-264. Gula R, Theuerkauf J. 2013. The need for standardization in wildlife science: Home range estimators as an example. European Journal of Wildlife Research, 59 (5): 713-718. Gunner R M, Wilson R P, Holton M D, Hopkins P, Bell S H, Marks N J, Bennett N C, Ferreira S, Govender D, Viljoen P, Bruns A, Van Schalkwyk O L, Bertelsen M F, Duarte C M, Van Rooyen M C, Tambling C J, Göppert A, Diesel D, Scantlebury D M. 2022. Decision rules for determining terrestrial movement and the consequences for filtering high-resolution global positioning system tracks: a case study using the African lion (Panthera leo). Journal of The Royal Society Interface, 19 (186). DOI: 10. 1098/rsif. 2021. 0692. Hebblewhite M, Percy M, Merrill E H. 2007. Are all Global Positioning System collars created equal? Correcting habitat-induced bias using three brands in the central Canadian Rockies. The Journal of Wildlife Management, 71 (6): 2026-2033. Hubel T Y, Golabek K A, Rafiq K, McNutt J W, Wilson A M. 2018.Movement patterns and athletic performance of leopards in the Okavango Delta. Proceedings of the Royal Society B: Biological Sciences, 285 (1877). DOI: 10. 1098/rspb. 2017. 2622. Johansson O, Kachel S, Weckworth B. 2022. Guidelines for telemetry studies on snow leopards. Animals, 12 (13). DOI: 10. 3390/ani12131663. Johansson Ö, Malmsten J, Mishra C, Lkhagvajav P, McCarthy T. 2013. Reversible immobilization of free-ranging snow leopards(Panthera uncia) with a combination of medetomidine and tiletamine-zolazepam. Journal of Wildlife Diseases, 49 (2):338-346. Jones J. 2001. Habitat selection studies in avian ecology: A critical review. The Auk, 118 (2): 557-562. Kerley L L, Goodrich J M, Miquelle D G, Smirnov E N, Quigley H B, Hornocker M G. 2003. Reproductive parameters of wild female Amur (Siberian) tigers (Panthera tigris altaica). Journal of Mam malogy, 84 (1): 288-298. Klein K, Jaeger S, Melzheimer J, Wachter B, Hofer H, Baltabayev A, Schreiber F. 2021. Visual analytics of sensor movement data for cheetah behaviour analysis. Journal of Visualization, 24 (4):807-825. Kong Y Q, Liu Y L, He C W, Li T T, Li Q L, Ma C X, Wang D J, Li S. 2022. Determining the daily activity pattern of Chinese mountain cat (Felis bieti): a comparative study based on camera-trapping and satellite collar tracking data. Biodiversity Science, 30 (9).DOI: 10. 17520/biods. 2022081. (in Chinese) Kuijper D P J, Sahlén E, Elmhagen B, Chamaillé-Jammes S, Sand H, Lone K, Cromsigt J P G M. 2016. Paws without claws? Ecological effects of large carnivores in anthropogenic landscapes. Proceedings of the Royal Society B: Biological Sciences, 283 (1841).DOI: 10. 1098/rspb. 2016. 1625. Laguardia A, Kamler J F, Li S, Zhang C, Zhou Z, Shi K. 2017. The current distribution and status of leopards Panthera pardus in China. Oryx, 51 (1): 153-159. Laidre K L, Durner G M, Lunn N J, Regehr E V, Atwood T C, Rode K D, Aars J, Routti H, Wiig Ø, Dyck M, Richardson E S, Atkinson S, Belikov S, Stirling I. 2022. The role of satellite telemetry data in 21st century conservation of polar bears (Ursus maritimus).Frontiers in Marine Science, 9. DOI: 10. 3389/fmars. 2022. 816666. Lamberski N. 2015. Felidae. Fowler’s Zoo and Wild Animal Medicine, 8: 467-476. Li J, Weckworth B V, McCarthy T M, Liang X C, Liu Y L, Xing R, Li D Q, Zhang Y G, Xue Y D, Jackson R, Xiao L Y, Cheng C, Li S, Xu F, Ma M, Yang X, Diao K P, Gao Y F, Song D Z, Nowell K, He B, Li Y H, McCarthy K, Paltsyn M Y, Sharma K, Mishra C,Schaller G B, Lu Z, Beissinger S R. 2020. Defining priorities for global snow leopard conservation landscapes. Biological Conservation, 241. DOI: 10. 1016/j. biocon. 2019. 108387. Li S. 2020. Development progress and outlook of the wildlife camera-trapping networks in China. Biodiversity Science, 28 (9):1045-1048. (in Chinese) Li S, Wang D J, Xiao Z S, Li X H, Wang T M, Feng L M, Wang Y. 2014. Camera-trapping in wildlife research and conservation in China: review and outlook. Biodiversity Science, 22 (6): 685-695. (in Chinese) Li S, Wang T M. 2022. Progress in the research and conservation of China’s Felidae species. Biodiversity Science, 30 (9): 22560. (in Chinese) Li Z L, Duo L A, Li S, Wang T M. 2021. Competition and coexistence among terrestrial mammalian carnivores. Biodiversity Science, 29 (1): 81-97. (in Chinese) Li Z Z, Du M T, Zhu Y X, Wang D W, Li Z L, Wang T M. 2023. A practical guide for estimating the density of unmarked populations using camera traps. Biodiversity Science, 31 (3). DOI: 10. 17520/biods. 2022422. (in Chinese) Liu K, Liu Y L, Li S. 2023. The current distribution and prediction of suitable habitat of Eurasian lynx (Lynx lynx) in China. Acta Theriologica Sinica, 43 (6): 652-663. (in Chinese) Liu Y F, Dodge S, Simcharoen A, Ahearn S C, Smith J L D. 2024.Analyzing tiger interaction and home range shifts using a time geographic approach. Movement Ecology, 12 (1). DOI: 10. 1186/s40462-024-00454-0. Lu B Y, Li K, Wang C X, Li S. 2024. The application and outlook of wildlife tracking using sensor-based tags in China. Biodiversity Science, 32 (5). DOI: 10. 17520/biods. 2023497. (in Chinese) Maruping-Mzileni N T, Ferreira S, Young K, Funston P J. 2020. Ecological drivers of female lion (Panthera leo) reproduction in the Kruger National Park. Ecology and Evolution, 10 (15): 7995-8006. Meena V, Jhala Y V, Chellam R, Pathak B. 2011. Implications of diet composition of Asiatic lions for their conservation. Journal of Zoology, 284 (1): 60-67. Mills M G L, Broomhall L S, Du Toit J T. 2004. Cheetah Acinonyx jubatus feeding ecology in the Kruger National Park and a comparison across African savanna habitats: Is the cheetah only a successful hunter on open grassland plains? Wildlife Biology, 10 (3):177-186. Morrison S A, Boyce W M. 2009. Conserving connectivity: Some lessons from mountain lions in southern California. Conservation Biology, 23 (2): 275-285. Murphy S M, Wilckens D T, Augustine B C, Peyton M A, Harper G C. 2019. Improving estimation of puma (Puma concolor) population density: Clustered camera-trapping, telemetry data, and generalized spatial mark-resight models. Scientific Reports, 9 (1). DOI:10. 1038/s41598-019-40926-7. Nájera F, Hearn A J, Ross J, Ramírez Saldivar D A, Evans M N, Guerrero-Sánchez S, Nathan S K S S, De Gaspar Simón I, Macdonald D W, Goossens B, Revuelta Rueda L. 2017. Chemical immobilization of free-ranging and captive Sunda clouded leopards(Neofelis diardi) with two anesthetic protocols: medetomidine ketamine and tiletamine-zolazepam. Journal of Veterinary Medical Science, 79 (11): 1892-1898. Norton A B, Lawson P M. 1985. Radio tracking of leopards and caracals in the Stellenbosch area, Cape Province. South African Journal of Wildlife Research, 15 (1): 17-24. Odden J, Nilsen E B, Linnell J D C. 2013. Density of wild prey modulates lynx kill rates on free-ranging domestic sheep. PLoS ONE, 8(11). DOI: 10. 1371/journal. pone. 79261. Olson L E, Bjornlie N, Hanvey G, Holbrook J D, Ivan J S, Jackson S, Kertson B, King T, Lucid M, Murray D, Naney R, Rohrer J, Scully A, Thornton D, Walker Z, Squires J R. 2021. Improved prediction of Canada lynx distribution through regional model transferability and data efficiency. Ecology and Evolution, 11 (4):1667-1690. O’Malley C, Elbroch L M, Kusler A, Peziol M, Quigley H. 2018.Aligning mountain lion hunting seasons to mitigate orphaning dependent kittens. Wildlife Society Bulletin, 42 (3): 438-443. Portas R, Aschenborn O H K, Melzheimer J, Le Roux M, Uiseb K H, Czirják G Á, Wachter B. 2021. GPS telemetry reveals a zebra with anthrax as putative cause of death for three cheetahs in the Namib Desert. Frontiers in Veterinary Science, 8. DOI: 10. 3389/fvets. 2021. 714758. R Core Team. 2023. R: A Language and Environment for Statistical Computing. R Foundation for Statistical Computing, Vienna, Austria. Rabinowitz A R, Nottingham B G. 1986. Ecology and behaviour of the Jaguar (Panthers onca) in Belize, Central America. Journal of Zoology, 210 (1): 149-159. Rafiq K, Hayward M W, Wilson A M, Meloro C, Jordan N R, Wich S A, McNutt J W, Golabek K A. 2020. Spatial and temporal overlaps between leopards (Panthera pardus) and their competitors in the African large predator guild. Journal of Zoology, 311 (4):246-259. Ray-Brambach R R, Stommel C, Rödder D. 2018. Home ranges, activity patterns and habitat preferences of leopards in Luambe National Park and adjacent Game Management Area in the Luangwa Valley, Zambia. Mammalian Biology, 92: 102-110. Ripple W J, Estes J A, Beschta R L, Wilmers C C, Ritchie E G, Hebblewhite M, Berger J, Elmhagen B, Letnic M, Nelson M P, Schmitz O J, Smith D W, Wallach A D, Wirsing A J. 2014. Status and ecological effects of the world’s largest carnivores. Science, 343(6167). DOI: 10. 1126/science. 1241484. Schmidt K. 1998. Maternal behaviour and juvenile dispersal in the Eurasian lynx. Acta Theriologica, 43 (4): 391-408. Shao X N, Lu Q, Liu M Z, Xiong M Y, Bu H L, Wang D J, Liu S Y, Zhao J D, Li S, Yao M. 2021. Generalist carnivores can be effective biodiversity samplers of terrestrial vertebrates. Frontiers in Ecology and the Environment, 19 (10): 557-563. Simcharoen S, Barlow A C D, Simcharoen A, Smith J L D. 2008.Home range size and daytime habitat selection of leopards in Huai Kha Khaeng Wildlife Sanctuary, Thailand. Biological Conservation, 141 (9): 2242-2250. Smereka C A, Frame P F, Edwards M A, Frame D D, Slater O M, Derocher A E. 2020. Seasonal habitat selection of cougars Puma concolor by sex and reproductive state in west-central Alberta, Canada. Wildlife Biology, 2020 (4): 1-14. Smith J L D. 1993. The role of dispersal in structuring the Chitwan tiger population. Behaviour, 124 (3/4): 165-195. Soisalo M K, Cavalcanti S M C. 2006. Estimating the density of a jaguar population in the Brazilian Pantanal using camera-traps and capture-recapture sampling in combination with GPS radio telemetry. Biological Conservation, 129 (4): 487-496. Squires J R, DeCesare N J, Olson L E, Kolbe J A, Hebblewhite M, Parks S A. 2013. Combining resource selection and movement behavior to predict corridors for Canada lynx at their southern range periphery. Biological Conservation, 157: 187-195. Sun Y, Zhang Y Y. 2009. Radio tracking in zoological research. Journal of Beijing Normal University (Natural Science), 45 (3): 268-274. (in Chinese) Tambling C J, Laurence S D, Bellan S E, Cameron E Z, Du Toit J T, Getz W M. 2012. Estimating carnivoran diets using a combination of carcass observations and scats from GPS clusters. Journal of Zoology, 286 (2): 102-109. Wei F W, Yang Q S, Wu Y, Jiang X L, Liu S Y, Li B G, Yang G, Li M, Zhou J, Li S, Hu Y B, Ge D Y, Li S, Yu W H, Chen B Y, Zhang Z J, Zhou C Q, Wu S B, Zhang L, Chen Z Z, Chen S D, Deng H Q, Jiang T L, Zhang L B, Shi H Y, Lu X L, Li Q, Liu Z, Cui Y Q, Li Y C. 2021. Catalogue of mammals in China (2021). Acta Theriologica Sinica, 41 (5): 487-501. (in Chinese) Wei F W. 2022. Taxonomy and Distribution of Mammals in China.Beijing: Science Press. Whetten A B. 2021. Smoothing splines of apex predator movement:Functional modeling strategies for exploring animal behavior and social interactions. Ecology and Evolution, 11 (24): 17786-17800. Wickham H. 2016. ggplot2: Elegant Graphics for Data Analysis.Springer-Verlag New York. Wolf C, Ripple W J. 2017. Range contractions of the world’s large carnivores. Royal Society Open Science, 4 (7). DOI: 10. 1098/rsos. 170052. Wolfe M L, Gese E M, Terletzky P, Stoner D C, Aubry L M. 2016.Evaluation of harvest indices for monitoring cougar survival and abundance. The Journal of Wildlife Management, 80 (1): 27-36. Xiao Z S, Xiao W H, Wang T M, Li S, Lian X M, Song D Z, Deng X Q, Zhou Q H. 2022. Wildlife monitoring and research using camera-trapping technology across China: The current status and future issues. Biodiversity Science, 30 (10). DOI: 10. 17520/biods. 2022451. (in Chinese) Xue Y D, Li D Q, Sun Z C, Yuan H F. 2017. Using satellite tracking collars to monitor released captive-bred wild Bactrian camels.Acta Theriologica Sinica, 37 (4): 336-343. (in Chinese) Yu C X, Ding N F, Li Y B, Liu Y X, Lyu Z, Munkhtsog B, Wu J L, Ma Z B, Se Y, Pei W, Gao Y Y, Zhang Y, Han Q, Shi K. 2022. Preliminary results from applying satellite-tracking on snow leopards for the first time in China. Global Ecology and Conservation, 40. DOI: 10. 1016/j. gecco. 2022. e02346. 孔玥峤,刘炎林,贺成武,李天醍,李全亮,马存新,王大军,李晟.2022.评估荒漠猫的日活动节律:基于红外相机与卫星颈圈数据的对比.生物多样性,30(9).DOI:10.17520/biods.2022081. 白文科,张晋东,杨霞,迟文峰,董鑫,李程,古晓东,周材权.2017. 基于GIS的卧龙自然保护区大熊猫生境选择与利用.生态环境学报,26(1):73-80. 吕叶.2021.关于我国野生动物保护政策的研究:以“完达山一号”为例.法制与社会,19:13-15. 刘轲,刘炎林,李晟.2023.欧亚猞猁在中国的分布现状与适宜栖息地预测.兽类学报,43(6):652-663. 孙岳,张雁云.2009.无线电遥测技术在动物学研究中的应用.北京师范大学学报(自然科学版),45(3):268-274. 李治霖,多立安,李晟,王天明.2021.陆生食肉动物竞争与共存研究概述.生物多样性,29(1):81-97. 李珍珍,杜梦甜,朱原辛,王大伟,李治霖,王天明.2023.基于红外相机的不可个体识别动物种群密度估算方法.生物多样性,31(3).DOI:10.17520/biods.2022422. 李晟,王大军,肖治术,李欣海,王天明,冯利民,王云.2014.红外相机技术在我国野生动物研究与保护中的应用与前景.生物多样性,22(6):685-695. 李晟,王天明.2022.中国猫科动物研究与保护进展.生物多样性,30(9):5-9. 李晟.2020.中国野生动物红外相机监测网络建设进展与展望.生物多样性,28(9):1045-1048. 肖治术,肖文宏,王天明,李晟,连新明,宋大昭,邓雪琴,周岐海.2022.中国野生动物红外相机监测与研究:现状及未来.生物多样性,30(10).DOI:10.17520/biods.2022451. 鲁彬悦,李坤,王晨溪,李晟.2024.基于传感器标记的野生动物追踪技术在中国的应用现状与展望.生物多样性,32(5).DOI:10.17520/biods.2023497. 楚国忠,侯韵秋,张国钢,刘冬平,戴铭,江红星.2008.卫星跟踪青海湖繁殖水鸟的迁徙.自然杂志,30(2):84-89,126. 薛亚东,李迪强,孙志成,袁海峰.2017.利用卫星追踪颈圈对圈养野生双峰驼野化放归的监测.兽类学报,37(4):336-343. 魏辅文,杨奇森,吴毅,蒋学龙,刘少英,李保国,杨光,李明,周江,李松,胡义波,葛德燕,李晟,余文华,陈炳耀,张泽钧,周材权,吴诗宝,张立,陈中正,陈顺德,邓怀庆,江廷磊,张礼标,石红艳,卢学理,李权,刘铸,崔雅倩,李玉春.2021.中国兽类名录(2021版).兽类学报,41(5):487-501. 魏辅文主编.2022.中国兽类分类与分布.北京:科学出版社. |
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