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1

LI, YANG, JUN-HUA HE, and XUE-XIN CHEN. "Review of six genera of Braconinae Nees (Hymenoptera, Braconidae) in China, with the description of eleven new species." Zootaxa 4818, no. 1 (2020): 1–74. http://dx.doi.org/10.11646/zootaxa.4818.1.1.

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The species of six genera (Atanycolus Foerster, Craspedolcus Enderlein, Ectemnoplax Enderlein, Shelfordia Cameron, Stenobracon Szépligeti and Vipio Latreille) of the subfamily Braconinae (Hymenoptera, Braconidae) from China are revised and 29 species are recognized, including 11 new species (Atanycolus carinatus sp. nov., A. longiquus sp. nov., A. maculipennis sp. nov., A. setosus sp. nov., Craspedolcus maculithorax sp. nov., C. nigrabdominalis sp. nov., Ectemnoplax bimaculosus sp. nov., Shelfordia fulva sp. nov., S. obscuripennis sp. nov., Stenobracon (Stenobracon) longatus sp. nov. and Vipio abnormis sp. nov.), which are described and illustrated. Ectemnoplax xizanginensis Wang, Chen et He, 2006, is proposed as a syn. nov. of E. peruliventris Enderlein, 1920. Two species, Shelfordia longicaudata van Achterberg, 1993, and Vipio mongolicus Telenga, 1936, are reported from China for the first time. Keys to the Chinese species of the genera Atanycolus, Craspedolcus, Ectemnoplax, Shelfordia, Stenobracon and Vipio are provided.
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2

Quicke, Donald L. J., Scott R. Shaw, Mian Inayatullah, and Buntika A. Butcher. "The genus Vipio Latreille (Hymenoptera, Braconidae) in the Neotropical Region." ZooKeys 925 (April 8, 2020): 89–140. https://doi.org/10.3897/zookeys.925.48457.

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The genus Vipio Latreille is revised for the Neotropical region (south of Nicaragua). All species are fully illustrated. Thirteen species are recognised of which five (V. boliviensis, V. carinatus, V. godoyi, V. hansoni, and V. lavignei) are described as new, all with descriptions attributable to Inayatullah, Shaw & Quicke. All previously described Neotropical species are redescribed. A key is included for the identification of the Vipio species known from the Americas south of Nicaragua, and all species are illustrated.
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3

Quicke, Donald L. J., Scott R. Shaw, Mian Inayatullah, and Buntika A. Butcher. "The genus Vipio Latreille (Hymenoptera, Braconidae) in the Neotropical Region." ZooKeys 925 (April 8, 2020): 89–140. http://dx.doi.org/10.3897/zookeys.925.48457.

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The genus Vipio Latreille is revised for the Neotropical region (south of Nicaragua). All species are fully illustrated. Thirteen species are recognised of which five (V. boliviensis, V. carinatus, V. godoyi, V. hansoni, and V. lavignei) are described as new, all with descriptions attributable to Inayatullah, Shaw & Quicke. All previously described Neotropical species are redescribed. A key is included for the identification of the Vipio species known from the Americas south of Nicaragua, and all species are illustrated.
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4

Kazama, Tatsuo, and Soichirou Shuri. "Recent Records of Grus vipio in Niigata Prefecture." Journal of the Yamashina Institute for Ornithology 18, no. 2 (1986): 73. http://dx.doi.org/10.3312/jyio1952.18.2_73.

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5

Inayatullah, Mian. "Phylogeny of genus Vipio latrielle (Hymenoptera: Braconidae) and the placement of Moneilemae group of Vipio species based on character weighting." International Journal of Biosciences (IJB) 3, no. 3 (2013): 115–20. http://dx.doi.org/10.12692/ijb/3.3.115-120.

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6

Abdinbekova, Arifa, Ellada Huseynova, and Ilhama Kerimova. "Braconidae (Hymenoptera) in the collection of the Institute of Zoology, NAS of the Azerbaijan Republic Part II. Subfamily Braconinae (Hymenoptera)." Beiträge zur Entomologie = Contributions to Entomology 60, no. 2 (2010): 441–62. http://dx.doi.org/10.21248/contrib.entomol.60.2.441-462.

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Die Arbeit wertet faunistische Daten von Sammlungsmaterial der Braconiden-Gattungen Iphiaulax, Atanycolus, Vipio, Pseudovipio, Ceratobracon, Baryproctus und Bracon (Unterfamilie Braconinae) aus. Das Material stammt aus dem Institut für Zoologie der Nationalen Akademie der Wissenschaften Aserbaidschans in Baku. Für jede Art werden Verbreitung, Fundorte in Aserbaidschan und Wirtsarten genannt.
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7

Rayhel, Laura, Copper Aitken-Palmer, Priscilla Joyner, et al. "HEMATOLOGY AND BIOCHEMISTRY IN CAPTIVE WHITE-NAPED CRANES (GRUS VIPIO)." Journal of Zoo and Wildlife Medicine 46, no. 4 (2015): 747–54. http://dx.doi.org/10.1638/2015-0027.1.

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8

Kwon, Y. K., W. J. Jeon, M. I. Kang, J. H. Kim, and Glenn H. Olsen. "Disseminated Visceral Coccidiosis in a Wild White-naped Crane (Grus vipio)." Journal of Wildlife Diseases 42, no. 3 (2006): 712–14. http://dx.doi.org/10.7589/0090-3558-42.3.712.

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9

Kang, Tae-Han, Seung-Hwa Yoo, Doo-Pyo Lee, and Ki-Sup Lee. "Current Status and Importance of Grus vipio Coming to Hangang Estuary." Journal of Korean Nature 2, no. 2 (2009): 93–97. http://dx.doi.org/10.1016/s1976-8648(14)60043-8.

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10

SHEPPARD, CHRISTINE. "Planning long-term captive management for the White-naped crane Grus vipio." International Zoo Yearbook 27, no. 1 (1987): 58–69. http://dx.doi.org/10.1111/j.1748-1090.1987.tb01514.x.

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11

SHEPPARD, CHRISTINE. "Planning long-term captive management for the White-naped crane Grus vipio." International Zoo Yearbook 27, no. 1 (2007): 58–69. http://dx.doi.org/10.1111/j.1748-1090.1988.tb03197.x.

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12

Ueta, Mutsuyuki, and Hiroyoshi Higuchi. "Difference in Migration Pattern Between Adult and Immature Birds Using Satellites." Auk 119, no. 3 (2002): 832–35. http://dx.doi.org/10.1093/auk/119.3.832.

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Abstract We satellite-tracked Steller's Sea Eagles (Haliaeetus pelagicus), Black-faced Spoonbills (Platalea minor), and White-naped Cranes (Grus vipio) to determine migration routes and stopover tactics of adult and immature birds. During spring migration, there were no significant differences between adult and immature birds in total migration distance and distance between stopover sites, but the migration period and resting period at stopover sites were significantly longer in immature individuals. There are two possible tactics for migrating without expending fat stores: longer rests or shorter migration distances between stopover sites. Our results suggest that immature birds try to increase fat stores by increasing time available for foraging at stopover sites.
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13

Rush, E. Marie, Thomas M. Turner, Ronald Montgomery, et al. "Implantation of a Titanium Partial Limb Prosthesis in a White-Naped Crane (Grus vipio)." Journal of Avian Medicine and Surgery 26, no. 3 (2012): 167–75. http://dx.doi.org/10.1647/2009-012r2.1.

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14

Kim, Yongbaek, Elizabeth W. Howerth, Nam-Sik Shin, Soo-Whan Kwon, Scott P. Terrell, and Dae-Yong Kim. "Disseminated Visceral Coccidiosis and Cloacal Cryptosporidiosis in a Japanese White-Naped Crane (Grus vipio)." Journal of Parasitology 91, no. 1 (2005): 199–201. http://dx.doi.org/10.1645/ge-378r.

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15

Bing, Gi-Chang, Woon-Kee Paek, Onolragchaa Ganbold, et al. "Migration and habitat strategies of the white-naped cranes Grus vipio in Mongolia and China." Korean Journal of Ornithology 29, no. 1 (2022): 10–17. http://dx.doi.org/10.30980/kjo.2022.6.29.1.10.

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16

Wharton, R. A., and Wrm Mason. "Vipio Latreille, 1804 (Insecta, Hymenoptera): proposed designation of Agathis longicauda Boheman, 1853 as the type species." Bulletin of zoological nomenclature. 48 (1991): 45–49. http://dx.doi.org/10.5962/bhl.part.672.

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17

Wu, Qing-ming, Hong-fei Zou, and Jian-zhang Ma. "Nest site selection of white-naped crane (Grus vipio) at Zhalong National Nature Reserve, Heilongjiang, China." Journal of Forestry Research 25, no. 4 (2014): 947–52. http://dx.doi.org/10.1007/s11676-014-0541-3.

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18

Kitagawa, Tamaki. "The Breeding Ecology of the White-naped Crane Grus vipio in Muraviovka Park, Southeast Russia." Journal of the Yamashina Institute for Ornithology 46, no. 1 (2014): 41–54. http://dx.doi.org/10.3312/jyio.46.41.

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19

Jia, Yifei, Yunzhu Liu, Shengwu Jiao, et al. "Shifting of the Migration Route of White-Naped Crane (Antigone vipio) Due to Wetland Loss in China." Remote Sensing 13, no. 15 (2021): 2984. http://dx.doi.org/10.3390/rs13152984.

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In the last 15 years, the west population of white-naped crane (Antigone vipio) decreased dramatically despite the enhanced conservation actions in both breeding and wintering areas. Recent studies highlighted the importance of protecting the integrity of movement connectivity for migratory birds. Widespread and rapid landcover changes may exceed the adaptive capacity of migrants, leading to the collapse of migratory networks. In this study, using satellite tracking data, we modeled and characterized the migration routes of the white-naped crane at three spatial levels (core area, migratory corridor, and migratory path) based on the utilization distribution for two eras (1990s and 2010s) spanning 20 years. Our analysis demonstrated that the white-naped crane shifted its migratory route, which is supported by other lines of evidences. The widespread loss of wetlands, especially within the stopover sites, might have caused this behavioral adaptation. Moreover, our analysis indicated that the long-term sustainability of the new route is untested and likely to be questionable. Therefore, directing conservation effects to the new route might be insufficient for the long-term wellbeing of this threatened crane and large-scale wetland restorations in Bohai Bay, a critical stopover site in the East Asian-Australasian flyway, are of the utmost importance to the conservation of this species.
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20

Yi, Kunpeng, Fanjuan Meng, Dehai Gu, and Qingyuan Miao. "Optimizing Water Level Management Strategies to Strengthen Reservoir Support for Bird’s Migration Network." Remote Sensing 15, no. 23 (2023): 5508. http://dx.doi.org/10.3390/rs15235508.

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Migratory waterbirds depend on a complex network of wetlands globally for their life cycles. However, habitat loss and degradation pose risks to these networks’ sustainability, potentially impacting wetland habitat availability. This study investigates the impact of water level changes in Beijing’s Miyun Reservoir on white-naped cranes’ (Antigone vipio) habitat use. We utilized satellite imagery from 2000–2021 and monthly data from 2018–2023 to observe changes in the reservoir’s water and land areas. Additionally, the study tracked 32 cranes using GSM-GPS loggers, yielding insights into their movement patterns and habitat preferences. Our findings emphasize the significant influence of reservoir water levels on habitat availability for these cranes. Notably, our results indicate that the decrease in suitable migratory bird habitats in the reservoir is primarily attributed to high-water level management strategies. This study highlights the necessity for balanced management of aquatic and terrestrial areas in reservoir ecosystems to preserve migratory waterbird habitats.
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21

Mudrik, E. A., O. A. Goroshko, S. G. Surmach, et al. "Gene Pool Homogeneity of Western and Eastern Populations of the White-Naped Crane Antigone vipio in Different Flyways." Russian Journal of Genetics 58, no. 5 (2022): 566–75. http://dx.doi.org/10.1134/s1022795422050064.

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22

Choi, Hyun-Ah, Eunjeong Lee, Eunjeong Kim, Insook Jung, and Donguk Han. "Avian species survey with citizen-science data in Janghang Wetland, Goyang, Republic of Korea." Biodiversity Data Journal 11 (May 31, 2023): e105580. https://doi.org/10.3897/BDJ.11.e105580.

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Monitoring of avian populations in Janghang Wetland, Goyang, Republic of Korea (ROK) is based on citizen science (also called community-based monitoring). This monitoring data can be used to track avian density, population status and waterbird census at local, national and regional levels. The Ministry of Environment (MoE) ROK has surveyed since 1999, including Odusan Unification Tower to Ilsan Bride, which connects the cities of Gimpo and Goyang along the Han River estuary. However, it has not covered Janghang Wetland, which is located in the Han River estuary at the transboundary between the two Koreas. The Janghang Wetland is a protected wetland in the Demilitarized Zone (DMZ) between the two Koreas. In 2019, Janghang Wetland was designated as a Flyway Network Site by Goyang City and the East Asian-Australasian Flyway Partnership. This Network site is a voluntary collaboration and includes many internationally significant wetlands for waterbirds that still lack formal national protection. In addition, it was designated as a Ramsar site in 2021. The wetland currently supports wintering population of White-naped Crane (<i>Grus vipio</i>), species listed as vulnerable and Tundra Bean Goose (<i>Anser cygnoides</i>), spring-autumn migration population of Swan Goose (<i>Anser cygnoid</i>), species listed as vulnerable and a breeding population of Black-faced Spoonbill (<i>Platalea minor</i>), species listed as endangered in summer.We provide data that the Janghang Wetland is a significant area for migration and breeding for waterbirds; and that Han River estuary is also internationally important for waterbirds during the migratory bird season. We observed 14 orders, 42 families and 132 species. The surveys also observed the critically-endangered Black-faced Spoonbill (<i>Platalea minor</i>), Swan Goose (<i>Anser cygnoides</i>), White-naped Crane (<i>Grus vipio</i>), Whooper Swan (<i>Cygnus cygnus</i>) and Peregrine Falcon (<i>Falco peregrinus</i>). We also observed the Black-faced Spoonbill, Great Egret, Little Egret, Great Cormorant, Eastern Spot-billed Duck, Pheasant and Brown-eared Bulbul at the sensor camera point and White-naped Crane, Hooded Crane, Bean Goose, White-fronted Goose, Snow Goose, Swan Goose, Great Cormorant and Eastern Spot-billed Duck at the closed-circuit television camera point from the camera-trap surveys. Based on the species recorded, the survey area is of clear importance for biodiversity conservation.
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23

Lang, Xuemin, Gankhuyag Purev-Ochir, Oyunchimeg Terbish, et al. "Luan River upper reaches: The important stopover site of the white-naped crane (Grus vipio) western population." Biodiversity Science 28, no. 10 (2020): 1213–21. http://dx.doi.org/10.17520/biods.2020100.

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Lang, Xuemin, Gankhuyag Purev-Ochir, Oyunchimeg Terbish, et al. "Luan River upper reaches: The important stopover site of the white-naped crane (Grus vipio) western population." Biodiversity Science 28, no. 10 (2020): 1213–21. http://dx.doi.org/10.17520/biods.2020100.

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25

Gadallah, Neveen, Emin Kaplan, and Yusuf A. Edmardash. "The Braconid Biodiversity (Hymenoptera: Ichneumonoidea: Braconidae) of Bingöl and Diyarbakır Provinces (Eastern of Türkiye)." Kahramanmaraş Sütçü İmam Üniversitesi Tarım ve Doğa Dergisi 28, no. 3 (2025): 778–92. https://doi.org/10.18016/ksutarimdoga.vi.1588413.

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In this study, a total of 19 braconid species have been collected in Bingöl province and Diyarbakır around Euphorbia macroclada Boiss in the period between 2017 and 2023. The collected species belong to seven subfamilies: Agathidinae (one genus, one species), Braconinae (five genera, seven species), Cheloninae (one genus, five species), Euphorinae (one genus, one unidentified species), Microgastrinae (one genus, one species), Opiinae (one genus, one species), and Rogadinae (one genus, three species, with one unidentified species). All species are recorded for the first time from Bingöl and Diyarbakır (except for Agathis anglica Marshall (Agathidinae), Chelonus obscuratus Herrich-Schäffer (Cheloninae), Bracon variator Nees, and Vipio mlokossewiczi Kokujev (Braconinae)), and as a first record in association with Euphorbia macroclada. An unidentified Aleiodes sp. (Rogadinae) collected from Diyarbakır, it is likely to be a new species, however, it is recommended not to be named until more specimens are collected, as it is just a single specimen, and is missing some of its body parts (as broken antenna and some legs). A full description with illustrations is provided.
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26

Achterberg, C. Van. "Comments On The Proposed Designation Of Agathis Longicauda Boheman, 1853 As The Type Species Of Vipio Latreille, 1804 (Insecta, Hymenoptera)." Bulletin of zoological nomenclature. 48 (1991): 248–50. http://dx.doi.org/10.5962/bhl.part.738.

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27

Mason, W. R. M. "Comments On The Proposed Designation Of Agathis longicauda Boheman 1853 As The Type Species Of Vipio Latreille 1804 Insecta Hymenoptera." Bulletin of zoological nomenclature. 48 (1991): 331–33. http://dx.doi.org/10.5962/bhl.part.768.

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28

BRADTER, UTE, SUNDEV GOMBOBAATAR, CHULUUNBAATAR UUGANBAYAR, TRACY E. GRAZIA, and KLAUS-MICHAEL EXO. "Reproductive performance and nest-site selection of White-naped Cranes Grus vipio in the Ulz river valley, north-eastern Mongolia." Bird Conservation International 15, no. 4 (2005): 313–26. http://dx.doi.org/10.1017/s0959270905000663.

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North-eastern Mongolia is an important breeding area for the globally threatened White-naped Crane Grus vipio. We studied reproductive performance and the influence of factors related to livestock grazing on reproduction and nest-site selection of the White-naped Crane population in the Ulz river valley, north-eastern Mongolia in 2000 and 2001. In 2001, 42 territorial pairs were found in 270 km of river basin. Recruitment was 18–22% resulting in 0.5–0.6 juveniles per territorial pair. The years 2000 and 2001 were within a dry period and recruitment might have been below the long-term average. White-naped Crane nests were significantly associated with river basin sections containing shallow water-bodies. The number and extent of shallow water-bodies are likely to be a limiting factor for breeding population size. Nest-sites in water-bodies were selected for high nest concealment, but nests were initiated even when concealing vegetation was not available. Only 26% of nests were &gt;90% concealed suggesting that appropriate cover was often not available. Nest-sites were also selected for low grazing intensity. No correlation was found between hatching or fledging success and nest concealment or grazing intensity. Brood-size of successful pairs was higher if the home range was ungrazed, but further investigations are needed to clarify whether this was caused by absence of livestock grazing or other factors. Both because of internationally important numbers and because of a potentially high reproductive output, the study area is of high importance for the species.
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29

Panyaboriban, Saritvich, Budhan Pukazhenthi, Megan E. Brown, et al. "Influence of cooling and thawing conditions and cryoprotectant concentration on frozen-thawed survival of white-naped crane (Antigone vipio) spermatozoa." Cryobiology 73, no. 2 (2016): 209–15. http://dx.doi.org/10.1016/j.cryobiol.2016.07.009.

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30

Batbayar, Nyambayar, Kunpeng Yi, Junjian Zhang, et al. "Combining Tracking and Remote Sensing to Identify Critical Year-Round Site, Habitat Use and Migratory Connectivity of a Threatened Waterbird Species." Remote Sensing 13, no. 20 (2021): 4049. http://dx.doi.org/10.3390/rs13204049.

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We tracked 39 western flyway white-naped cranes (Antigone vipio) throughout multiple annual cycles from June 2017 to July 2020, using GSM-GPS loggers providing positions every 10-min to describe migration routes and key staging areas used between their Mongolian breeding and wintering areas in China’s Yangtze River Basin. The results demonstrated that white-naped cranes migrated an average of 2556 km (±187.9 SD) in autumn and 2673 km (±342.3) in spring. We identified 86 critical stopover sites that supported individuals for more than 14 days, within a 100–800 km wide migratory corridor. This study also confirmed that Luan River catchment is the most important staging region, where white-naped cranes spent 18% of the annual cycle (in both spring and autumn) each year. Throughout the annual cycle, 69% of the tracking locations were from outside of the currently protected areas, while none of the critical staging areas enjoyed any form of site protection. We see further future potential to combine avian tracking data and remote-sensing information throughout the annual range of the white-naped crane to restore it and other such species to a more favourable conservation status.
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Bradter, Ute, Sundev Gombobaatar, Chuluunbaatar Uuganbayar, Tracy E. Grazia, and Klaus-Michael Exo. "Time budgets and habitat use of White-naped Cranes Grus vipio in the Ulz river valley, north-eastern Mongolia during the breeding season." Bird Conservation International 17, no. 3 (2007): 259–71. http://dx.doi.org/10.1017/s0959270907000767.

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AbstractHabitat loss and degradation are critical threats for the globally threatened White-naped Crane Grus vipio. We estimated the size of the area used per day and the time budgets of parental and non-parental White-naped Crane pairs in north-eastern Mongolia during 2000 and 2001. Six parental crane pairs used an area of 11–155 ha per day. The maximum distance of a focal parental crane from the roosting-site was 3,030 m. Habitat conservation measures for breeding White-naped Cranes need to be targeted to within at least 3 km of the roosting-site or nest-site. Parental cranes spent 79.6 ± 4.8% of the daylight period foraging and had reduced preening and resting behaviour to 4.4 ± 1.9%. Pairs without juveniles showed a pronounced period of resting and preening behaviour during midday, which was absent in parental cranes. This indicates that parental cranes may be time-stressed. We conclude that increases in feeding-related activities (e.g. caused by a decrease in food availability) are likely to be at the expense of parental vigilance. Conversely, increases in vigilance (due to e.g. increased disturbance) may have a negative impact on feeding-related activities. Both increases can potentially negatively affect reproductive success in this Vulnerable species.
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Fujita, Go, Guan Hong-Liang, Mutsuyuki Ueta, et al. "Comparing areas of suitable habitats along travelled and possible shortest routes in migration of White-naped Cranes Grus vipio in East Asia." Ibis 146, no. 3 (2004): 461–74. http://dx.doi.org/10.1111/j.1474-919x.2004.00286.x.

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Hartup, Barry K., and Robert H. Horwich. "Early Parental Care and Chick Development in a Cross-Fostering Trial With White-Naped (Grus vipio) and Greater Sandhill (Grus canadensis tabida) Cranes." Bird Behavior 10, no. 1 (1994): 21–27. http://dx.doi.org/10.3727/015613894791748944.

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34

Hu, Guilin, Lijia Wen, Huashan Dou, and Yumin Guo. "Integrated Assessment of Survival, Movement, and Reproduction in Migratory Birds: A Study on Evaluating Reinforcement Success." Animals 14, no. 21 (2024): 3128. http://dx.doi.org/10.3390/ani14213128.

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Conservation managers increasingly employ reinforcement techniques to bolster declining populations by reintroducing non-wild individuals born in captivity into natural habitats, but success rates remain modest. In this study, the success is evaluated of reinforcement efforts using satellite tracking and field observation data collected between 2010 and 2021. It focuses on 13 non-wild individuals, as follows: seven red-crowned cranes Grus japonensis, two white-naped cranes Antigone vipio, and four demoiselle cranes Anthropoides virgo, as well as five wild individuals including two red-crowned cranes and three white-naped cranes. The assessment criteria included survival, movement, and reproduction, utilizing a comprehensive scoring method. The scoring process indicates that more timely field observation records and the movement pattern scoring combining models and trajectories can improve the accuracy of estimation. From the results, although wild individuals generally achieve higher scores across these metrics, statistical differences were not significant possibly due to limited sample size. Notably, non-wild individuals frequently displayed residence, nomadic, or abnormal migration. In addition, field observations underscored the benefits of pairing non-wild individuals with their wild counterparts to enhance migration success. So in order to enhance migration success, it is advisable to release non-wild individuals approaching sexual maturity in proximity to wild subadult flocks during the breeding or summering periods. Additionally, during the overwintering phase, these individuals should be released in areas where wild populations are concentrated.
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Каюкова, С. Н., Н. А. Викулина та А. А. Колесова. "ИЗ ОПЫТА СОДЕРЖАНИЯ ЧЕРНОГО ГРИФА (AEGYPIUS MONACHUS L., 1766) В МБУК “ЧИТИНСКИЙ ГОРОДСКОЙ ЗООПАРК”". Вестник ИрГСХА, № 2(121) (26 квітня 2024): 124–33. https://doi.org/10.51215/1999-3765-2024-121-124-133.

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Содержание хищных птиц в неволе представляет определённый интерес, так как это вносит вклад в изучение их морфологии, физиологии, поведенческих реакций, что весьма труднодоступно для наблюдения в природе. Статья посвящена особенностям содержания чёрного грифа (Aegypius monachus) в условиях Муниципального бюджетного учреждения культуры “Читинский городской зоопарк”, который был создан в 1994 году. Зоопарк включает в себя 7 секций – ”Хищные животные”, “Копытные животные”, “Орнитология”, “Ночной мир. Экзотические животные”, “Ластоногие”, “Ихтиология”, “Виварий”. Учреждение занимает площадь более 0.7 гектара. В июле 2006 года Читинский зоопарк открыл структурное подразделение – зоопитомник “Амодово” - центр воспроизводства редких видов животных, занесенных в Красную книгу России и международную Красную книгу, который занимает площадь 11.9914 га. Сейчас коллекция животных Читинского зоопарка и зоопитомника Амодово составляет 2034 особи. В коллекции Читинского городского зоопарка представлены обитатели не только Забайкальского края, но и редкие виды, виды, находящиеся под угрозой исчезновения, экзотические представители – даурский журавль (Grus vipio), серый журавль (Grus grus), обыкновенный павлин (Pavo cristatus), африканский страус (Struthio camelus), чёрный гриф (Aegypius monachus), различные виды попугаев и многие другие. Чёрный гриф (Aegypius monachus L., 1766) – самый крупный из пернатых хищников, редкий, находящийся под угрозой исчезновения, является падальщиком. Вид является малоизученным, крайне интересным объектом наблюдения, кроме того, литературы по описанию его биологии и экологии, особенностям поведения, особенностям содержания в неволе не так достаточно. В статье рассмотрены основные поведенческие реакции чёрного грифа, особенности питания и содержания. Кроме собственных наблюдений, при написании статьи использовались и были изучены ежегодники рабочей группы ЕАРАЗА (Евроазиатская региональная ассоциация зоопарков и аквариумов) ”Хищные птицы в зоопарках и питомниках”.
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Dutta-Roy, Amitava. "Microsoft Office Visio 2007: Inside Out (Walker, M.H.); Visio 2008 Bible (Biafore, B.); and Visualizing Information with Microsoft Office Visio 2007: Smart Diagrams for Business Users {reviews of "Microsoft Vizio 2007 Professional Edition" and "Microsoft Vizio 2007 Standard Edition" (Parker, D.J.) [Software Reviews." IEEE Transactions on Professional Communication 53, no. 1 (2010): 84–86. http://dx.doi.org/10.1109/tpc.2009.2038740.

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TAKASE, Kozo, Yuko HARAGUCHI, Akira SUZUKI, and Takeshi OBI. "Fracture status of wild cranes (Grus monacha and G. vipio) found dead or in a weak condition at Izumi Plain in Japan." Journal of Veterinary Medical Science 82, no. 6 (2020): 823–26. http://dx.doi.org/10.1292/jvms.19-0273.

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Gorlov, P. I., and A. V. Matsyura. "Pre-migratory congregations of Red-crowned (Grus japonensis), White-naped (G. vipio) and Hooded (G. monacha) cranes in the Muraviovka Park for Sustainable Land Use in 1992." Biosystems Diversity 25, no. 2 (2017): 132–40. http://dx.doi.org/10.15421/011720.

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GILBERT, MARTIN, BAYARBAATAR BUUVEIBAATAR, AMANDA E. FINE, LOSOLMAA JAMBAL, and SAMANTHA STRINDBERG. "Declining breeding populations of White-naped Cranes in Eastern Mongolia, a ten-year update." Bird Conservation International 26, no. 4 (2016): 490–504. http://dx.doi.org/10.1017/s0959270915000301.

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SummaryEastern Mongolia supports one of the most important breeding populations of the White-naped Crane Antigone vipio (WNC), which is classified as ‘Vulnerable’ by the IUCN. Large numbers of WNCs were found to be breeding at high densities within the Ulz River basin during surveys conducted in 2000 and 2001, along a 270 km section of the river. Following these surveys, an extended drought continuing for at least a decade has threatened wetland ecosystems throughout Eastern Mongolia. This study reports the findings of surveys conducted in 2010 and 2011 along the same section of the Ulz River surveyed a decade earlier, as well as a generalised survey of other sites where breeding WNCs had previously been recorded. Along the Ulz River, populations declined from 42 territorial pairs in 2001 to 17 in 2011. Estimates of detection probability using distance sampling and occupancy methods at two locations gave consistent results of 23%–27% detectability. With a minimum population of 234 WNCs observed across all sites in 2011, these detection probabilities suggest that the areas surveyed support the majority of breeding WNCs in the western population. Although we cannot exclude the movement of WNCs beyond the survey area, these findings also suggest that the population has declined between 2001 and 2011. Exploration of key habitat variables using occupancy models and generalized linear mixed models found that WNCs favoured areas of high wet vegetation (estimated as ‘wet meadow’ coverage and using normalized difference vegetation index), and low grazing pressure. Given the importance of water resources to WNCs and nomadic herding communities, use of wetland habitat must be carefully managed to balance the needs of cranes and people, particularly during periods of drought.
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Duan, Houlang, Yiwen Pan, Xiubo Yu, and Shaoxia Xia. "Effects of Habitat Change on the Wintering Waterbird Community in China’s Largest Freshwater Lake." Remote Sensing 15, no. 18 (2023): 4582. http://dx.doi.org/10.3390/rs15184582.

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Poyang Lake wetland in the middle and lower Yangtze River floodplain provides important wintering sites for migratory waterbirds. Extreme climatic events and human activities have resulted in the degradation and redistribution of habitat over the last few decades. However, the effects of habitat changes on the abundance of waterbirds remain unclear. We used long-term waterbird monitoring data and Landsat remote-sensing data to characterize changes in abundance and the relationship between habitat variation and abundance. A total of 113 waterbird species were recorded in the wintering period between 1999 and 2021, including 23 globally threatened species. Greater White-fronted Goose (Anser albifrons), Swan Goose (Anser cygnoides), Bean Goose (Anser fabalis), and Tundra Swan (Cygnus columbianus) were the dominant species. A total of 46 species with more than 6 annual surveys and average abundance &gt;100 were recorded between 1999 and 2021. For most species, the mean abundance across all sub-lakes was higher in the first year than in the last year, and no obvious changes were observed over the last 20 years. The mean abundances of the vulnerable species Hooded Crane (Grus monacha) and White-naped Crane (Grus vipio) significantly declined between 1999 and 2021. No significant changes in the mean abundance of all foraging groups were observed. The area of water bodies increased, and the area of mudflats decreased. For most species with significant changes in abundance, habitat change did not greatly contribute to variation in mean abundance. The reduction in the area of mudflats greatly contributed to declines in the mean abundance of the gray heron (Ardea cinerea) and gadwall (Anas strepera).
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Mi, Chunrong, Falk Huettmann, Yumin Guo, Xuesong Han, and Lijia Wen. "Why choose Random Forest to predict rare species distribution with few samples in large undersampled areas? Three Asian crane species models provide supporting evidence." PeerJ 5 (January 12, 2017): e2849. http://dx.doi.org/10.7717/peerj.2849.

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Species distribution models (SDMs) have become an essential tool in ecology, biogeography, evolution and, more recently, in conservation biology. How to generalize species distributions in large undersampled areas, especially with few samples, is a fundamental issue of SDMs. In order to explore this issue, we used the best available presence records for the Hooded Crane (Grus monacha,n = 33), White-naped Crane (Grus vipio,n = 40), and Black-necked Crane (Grus nigricollis,n = 75) in China as three case studies, employing four powerful and commonly used machine learning algorithms to map the breeding distributions of the three species: TreeNet (Stochastic Gradient Boosting, Boosted Regression Tree Model), Random Forest, CART (Classification and Regression Tree) and Maxent (Maximum Entropy Models). In addition, we developed an ensemble forecast by averaging predicted probability of the above four models results. Commonly used model performance metrics (Area under ROC (AUC) and true skill statistic (TSS)) were employed to evaluate model accuracy. The latest satellite tracking data and compiled literature data were used as two independent testing datasets to confront model predictions. We found Random Forest demonstrated the best performance for the most assessment method, provided a better model fit to the testing data, and achieved better species range maps for each crane species in undersampled areas. Random Forest has been generally available for more than 20 years and has been known to perform extremely well in ecological predictions. However, while increasingly on the rise, its potential is still widely underused in conservation, (spatial) ecological applications and for inference. Our results show that it informs ecological and biogeographical theories as well as being suitable for conservation applications, specifically when the study area is undersampled. This method helps to save model-selection time and effort, and allows robust and rapid assessments and decisions for efficient conservation.
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Panov, E. N., E. Yu Pavlova, and V. A. Nepomnyashchikh. "Signal behavior in cranes (the Siberian Crane Sarcogeranus leucogeranus, the White-naped Crane Grus vipio, and the Red-crowned Crane Grus japonensis) in the context of the ritualization hypothesis." Biology Bulletin 37, no. 9 (2010): 915–40. http://dx.doi.org/10.1134/s1062359010090062.

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Krause, Frank-Lothar, and Helmut Jansen. "Demonstrationszentrum-ViPro." ZWF Zeitschrift für wirtschaftlichen Fabrikbetrieb 98, no. 6 (2003): 270–73. http://dx.doi.org/10.3139/104.100644.

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Mohammed, Umar, Simon J. D. Prince, and Jan Kautz. "Visio-lization." ACM Transactions on Graphics 28, no. 3 (2009): 1–8. http://dx.doi.org/10.1145/1531326.1531363.

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Karina Yulia Ariska and Adam Mudinillah. "PENGEMBANGAN MEDIA PEMBELAJARAN IPA PERUBAHAN WUJUD BENDA KELAS II SDN 18 PAYAKUMBUH BERBASIS APLIKASI ANIMIZ ANIMATION MAKER." Al-Ibda: Jurnal Pendidikan Guru Madrasah Ibtidaiyah 2, no. 01 (2022): 1–10. http://dx.doi.org/10.54892/jpgmi.v2i01.173.

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Artikel ini bertujuan untuk menjelaskan materi pembelajaran ilmu pengetahuan alam berbasis aplikasi animiz animation maker. metode penelitian dengan menelusuri kajian pustaka sebagai rujukan untuk mendapatkan data yang dapat dipercaya. hasil dari vidio pembelajaran untuk pelajaran IPA di sekolah dasar kelas II diantaranya : vidio presentasi pembelajaran perubahan wujud benda. ketika akan memulai proses pembelajaran hal yang perlu dilakukan atau diperhatikan : 1. perangkat pendukung (laptop, spiker, dan proyektor), 2. keterampilan guru dalam menggunakan vidio pembelajaran, 3. vidio seperti kesesuaian vidio dengan tema, kualitas vidio (gambar yang ditampilkan jernih) dan durasi vidio ( 3-7 menit), 4. Mengapload media pembelajaran berupa vidio animasi di youtube sehingga dapat di akses oleh peserta didik dengan mudah sehingga pembelajaran dapat berjalan seperti biasa meski di rumah saja. adapun keunggulan dari vidio pembelajran berbasis animiz animation maker yaitu dapat memberi pengalaman secara langsung dengan lebih nyata dan merupakan media pembelajaran yang mudah digunakan dan kelemahan media tersebut tidak interaktif.
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Vinnari, Markus. "Teknologiauskoisen visio ruokavallankumouksesta." Alue ja Ympäristö 47, no. 2 (2018): 72–73. http://dx.doi.org/10.30663/ay.75802.

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PIRAS, A. "Visio Avestica I." Studia Iranica 27, no. 2 (1998): 163–85. http://dx.doi.org/10.2143/si.27.2.2003923.

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Nurhayati, Riska, Arista Niken Maharani, Carel Eka Arfinda, and Rian Damariswara. "Analisis Minat Belajar Mahasiswa UNP Kediri Pada Tugas Membuat Video." EDUKATIF : JURNAL ILMU PENDIDIKAN 5, no. 4 (2023): 1693–702. http://dx.doi.org/10.31004/edukatif.v5i4.5219.

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Sumber media belajar memiliki peran sebagai alat pembelajaran yang memudahkan tenaga pendidik untuk meningkatkan proses pembelajaran terhadap mahasiswa maka tugas membuat vidio mempunyai pengaruh terhadap proses pembelajaran. Tujuan penelitian ini adalah untuk (1) menganalisis minat dalam kegiatan pembelajaran yang dilakukan mahasiswa UNP kediri dalam tugas membuat vidio (2) mendiskripsikan faktor- faktor yang mempengaruhi minat belajar mahasiwa Universitas Nusantara PGRI Kediri (3) untuk mengetahui kekurangan dan kelebihan dari tugas berbasis vidio. Metode penelitian yang digunakan adalah metode penelitian kuantitatif deskriptif dengan menggunakan pengambilan sempel data dengan studi dokumen, atau kuisioner. Penelitian ini diikuti oleh 32 responden yang tersebar dari 5 prodi yang ada di lingkungan Fakultas Keguruan dan Ilmu Pendidikan Universitas Nusantara PGRI Kediri. Penelitian ini menyoroti pentingnya unsur minat, kualitas kepuasan, dan pengembangan media vidio. Dalam pembelajaran tugas berbasis vidio menyatakan bahwa minat belajar yang ada di dalam diri mahasiswa tergolong rendah. Minat belajar tersebut dipengaruhi oleh adanya faktor intrinsik dan faktor ekstrinsik yang menjadi faktor utama timbulnya minat di dalam diri mahasiswa. faktor intrinsik meliputi rasa malas, merasa keberatan, kemampuan public speaking, merasa tugas berbasis vidio itu terlalu ribet, kurangnya percaya diri saat membuat vidio, kekurangan kemampuan dalam mengedit, merasa lebih memilih tugas makalah atau ppt dibanding dengan tugas vidio. Kemudian untuk faktor ekstrinsik itu meliputi media alat yang kurang memadai dan kurangnya aplikasi editing di dalam gadget mahasiswa. Kekurangan dari tugas berbasis vidio adalah kurangnya kualitas vidio yang kurang baik, selanjutnya masalah kualitas gambar disebabkan karena gadget dari mahasiswa yang berbeda- beda spesifikasinnya, tidak menggunakan kamera yang berevolusi tinggi serta faktor pembatasan kapasitas vidio 100kb. Kemudian untuk kelebihan pada proses pembuatan vidio adalah sangat membantu tenaga pengajar dalam mencapai efektifitas pembelajaran
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Murtalib, Murtalib, and Gunawan Gunawan. "Responsif Mahasiswa Matematika Menggunakan Video Interaktif Berbantuan Edpuzzle dalam Perkuliahan Daring." DIKSI: Jurnal Kajian Pendidikan dan Sosial 3, no. 2 (2022): 75–84. http://dx.doi.org/10.53299/diksi.v3i2.206.

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Kendala yang dialami peneliti ketika mahasiswa menonton materi perkuliahan dalam bentuk vidio di youtube dosen tidak bisa mengontrol aktivitas mahasiswa saat menonton vidio apakah mahasiswa sungguh-sungguh telah menonton materi pembelajaran yang disampaikan melalui video. Salah satu platform media pembelajaran daring yang dapat mengontrol aktivitas mahasiwa saat mengamati vidio pembelajaran adalah edpuzzle. Edpuzzle adalah media pembelajaran daring yang berbasis video interaktif sehingga dosen dapat memodifikasi sendiri video pembelajaran dan dapat mengontrol aktivitas mahasiswa saat menonton vidio pembelajaran secara detail seperti durasi ketuntasan mahasiswa menonton vidio, mengetahui statistik penyelesaian soal-soal yang dikerjakan mahasiswa. Tujuan penelitian ini adalah untuk mendeskripsikan respon mahasiswa menggunakan vidio pembelajaran interaktif berbantuan Edpuzzle. Metode penelitian yang digunakan adalah penelitian deskriptif kuantitatif dengan menggunakan angket sebagai instrumen. Berdasarkan hasil penelitian disimpulkan bahwa respon mahasiswa matematika menggunakan vidio interaktif berbantuan edpuzzle dalam perkuliahan daring sangat positif sebesar 88,61%.
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Filza Arifa and Adam Mudinillah. "PEMANFAATAN APLIKASI KINEMASTER SEBAGAI MEDIA PEMBELAJARAN YANG KREATIF PADA PEMBELAJARAN PKN PADA KELAS III SDN 03 SUKA JADI MALIGI DI MASA PANDEMI COVID-19." MUBTADI: Jurnal Pendidikan Ibtidaiyah 3, no. 2 (2022): 106–22. http://dx.doi.org/10.19105/mubtadi.v3i2.5236.

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Abstrak&#x0D; Pembelajaran jarak jauh adalah pembelajaran yang dilakukan secara daring antara guru dengan siswa, jadi guru harus membuat media pembelajaran yang mmenarik yaitu berbentuk vidio, agar kualitas vidio bagus, salah satu cara yang penting dilakukan yaitu dengan cara editing, adapun aplikasi yang cocok digunakan adalah aplikasi kinemaster. Aplikasi kinemaster sangat dibutuhkan oleh guru untuk pengeditan vidio pembelajaran. Tujuan dari penelitian ini adalah untuk mengetahui cara pemanfaatan aplikasi kinemaster dalam membuat vidio pembelajaran PKN Kelas III di SDN 03 Suka Jadi Maligi, Pasaman Barat, serta langkah-langkah yang digunakan dalam mengedit vidio. Adapun pengumpulan data dilakukan dengan observasi landung ke lokasi dan melakukan wawancara kepada guru. Kegiatan ini dilakukan untuk meningkatkan kreatifitas dalam membuat vidio pembelajaran di masa pandemi covid-19 dan menarik minat belajar siswa. Hasil dari kegiatan penelitian ini ternyata masih banyak guru SDN 03 Suka Jadi Maligi yang belum bisa menggunakan aplikasi kinemaster untuk mengedit vidio.&#x0D; Kata Kunci: Kinemaster, Media Pembelajaran, Pandemi
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