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87 results for “Ciconia ciconia”
Figure 3 in A new mite species of the genus Neottialges (Acariformes: Hypoderatidae) from the black stork Ciconia nigra (Ciconiiformes: Ciconiidae) in Portugal
Figure 3 Neottialges (Caloenectes) ciconiae n. sp., details of deutonymph. A – gnathosomal plate, B – genital papillae, C–F – dorsal view of legs I–IV, respectively.
Figure 4 in Breeding biology of the Maguari Stork Ciconia maguari (Aves, Ciconiidae) in the Pampa, and an outline in other Brazilian biomes
Figure 4. Seasonal occurrence of records of the Maguari Stork (Ciconia maguari) involving juveniles in the Pampa biome, in Rio Grande do Sul state, southern Brazil. Records were obtained by citizens and gathered in the WikiAves database in June 2020. Arabic numerals after each month represent 10-days long periods – (I):– days 1-10, (II): days 11-20, (III): days 21-31 of each month.
Secrets of the night: roost sites and sleep disturbance factors during the autumn migration of first-year white stork Ciconia ciconia
<p>The migration phase of birds is divided into two main states: stopovers and actual migratory flights. For soaring birds, such as storks, nighttime is especially important to conserve energy and to start the next day in favourable weather conditions. Although there is a large number of recent studies on white stork Ciconia ciconia, for example using advanced technologies such as GPS technology, the nocturnal behaviour of the species is still an enigma. Thus, we GSM-GPS-tagged 90 immature storks and checked their nocturnal behaviour, especially roost disturbance, during their first autumn migration from breeding grounds in southern Poland to wintering places in Africa. Storks roosted on three types of site: on buildings, on the ground, or in trees. Birds that roosted on the ground had a higher probability of nighttime disturbance than those that used trees or buildings. The probability of disturbance at night was also related to longitude and latitude; the most easterly birds and those at the start of the migration route were disturbed more often during the night. Furthermore, and interestingly, environmental conditions at roosts were also significantly related to the probability of disturbance; birds roosting at tree sites with higher NDVI (greener) and with higher levels of artificial light both had a lower probability of disturbance. A possible explanation of this could be related to lower potential predatory pressure at night. We found that after long flights birds were disturbed more often at night, and that disturbed birds migrated further the next day. For a better understanding of the nocturnal behaviour of storks, as well as of other migratory birds, the use of modern technological tools with greater precision is recommended.</p>
Fig. 3 in A White Stork (Ciconia ciconia (Linnaeus, 1758)) nest - an unique case of multiple nesting commensalism of five species from Dragoman (W Bulgaria)
Fig. 3. Spanish sparrows nesting in a nest of White Stork, Dragoman, 19.05.2019. Photo: Z. Boev.
Fig. 2 in A White Stork (Ciconia ciconia (Linnaeus, 1758)) nest - an unique case of multiple nesting commensalism of five species from Dragoman (W Bulgaria)
Fig. 2. House sparrows nesting in a nest of White Stork, Dragoman, 19.05.2019. Photo: Z. Boev.
Figure 3 in Two-fold increase in White Stork (Ciconia ciconia) population in Lithuania: a consequence of changing agriculture?
Figure 3. Distance from recorded White Stork nests to the nearest neighbouring nest.
Figure 2 in Two-fold increase in White Stork (Ciconia ciconia) population in Lithuania: a consequence of changing agriculture?
Figure 2. Distance from recorded White Stork nests to the nearest building.
Figure 1 in Two-fold increase in White Stork (Ciconia ciconia) population in Lithuania: a consequence of changing agriculture?
Figure 1. Distribution of densities of occupied White Stork nests and colonies in Lithuania.
Fig. 2 in Syngamus trachea in free-ranging white stork (Ciconia ciconia) nestlings in Switzerland
Fig. 2. Stereo microscope image of a Syngamus trachea pair locked in permanent copulation.
Figure 1 in A new mite species of the genus Neottialges (Acariformes: Hypoderatidae) from the black stork Ciconia nigra (Ciconiiformes: Ciconiidae) in Portugal
Figure 1 Neottialges (Caloenectes) ciconiae n. sp., dorsal view of deutonymph.
Figure 2 in A new mite species of the genus Neottialges (Acariformes: Hypoderatidae) from the black stork Ciconia nigra (Ciconiiformes: Ciconiidae) in Portugal
Figure 2 Neottialges (Caloenectes) ciconiae n. sp., ventral view of deutonymph.
Figure 4 in A redescription of Neophilopterus tricolor (Burmeister, 1838) (Insecta: Phthiraptera: Ischnocera: Philopteridae) from the black stork Ciconia nigra (L.) (Aves) with notes on its prevalence
Figure 4. Terminal segments of the male Neophilopterus tricolor.
Figure 2 in A redescription of Neophilopterus tricolor (Burmeister, 1838) (Insecta: Phthiraptera: Ischnocera: Philopteridae) from the black stork Ciconia nigra (L.) (Aves) with notes on its prevalence
Figure 2. Female ventral view of Neophilopterus tricolor.
Figure 3 in A redescription of Neophilopterus tricolor (Burmeister, 1838) (Insecta: Phthiraptera: Ischnocera: Philopteridae) from the black stork Ciconia nigra (L.) (Aves) with notes on its prevalence
Figure 3. Copulatory apparatus of male Neophilopterus tricolor.
Figure 1 in A redescription of Neophilopterus tricolor (Burmeister, 1838) (Insecta: Phthiraptera: Ischnocera: Philopteridae) from the black stork Ciconia nigra (L.) (Aves) with notes on its prevalence
Figure 1. Female dorsal view of Neophilopterus tricolor.
Figure 6 in Breeding biology of the Maguari Stork Ciconia maguari (Aves, Ciconiidae) in the Pampa, and an outline in other Brazilian biomes
Figure 6. Aspects of colonial nesting sites (ninhais) in which Maguari Storks (Ciconia maguari) built nests in the Pampa, Rio Grande do Sul state, southern Brazil. (A) a nest with two nestlings at Dilermando de Aguiar (photo by Thiago Weigert); (B) black young in nests at São Gabriel (photo by Felipe Almansa); (C) a nest with three black juveniles at Rosário do Sul (photo by Lauren Rumpel); (D) a general view, outside the breeding season, of a lake bordered by gray shrubs (yellow arrows) commonly used by Maguari Storks for nesting at Rosário do Sul (photo by Lauren Rumpel). Photographs were gathered in the WikiAves database, except for D.
Figure 3 in Breeding biology of the Maguari Stork Ciconia maguari (Aves, Ciconiidae) in the Pampa, and an outline in other Brazilian biomes
Figure 3. Seasonal occurrence of records of the Maguari Stork (Ciconia maguari) involving incubation, nestlings, and black young in the Pampa biome, in Rio Grande do Sul state, southern Brazil. Records were obtained by citizens and gathered in the WikiAves database in June 2020. Arabic numerals after each month represent 10-days long periods – (I): days 1-10, (II): days 11-20, (III): days 21-31 of each month.
Figure 7 in Breeding biology of the Maguari Stork Ciconia maguari (Aves, Ciconiidae) in the Pampa, and an outline in other Brazilian biomes
Figure 7. Geographic distribution of the Pampa biome (purple line) in the state of Grande do Sul state, with municipalities (black dots) in which records with documented evidences of breeding activities of the Maguari Stork (Ciconia maguari) were obtained by citizens in Brazil between 2007 and 2019. Records were gathered in the WikiAves database in June 2020. The blue color refers to areas of the continent reached by the water from the ocean.
Figure 2 in Breeding biology of the Maguari Stork Ciconia maguari (Aves, Ciconiidae) in the Pampa, and an outline in other Brazilian biomes
Figure 2. Juveniles of the Maguari Stork (Ciconia maguari) recorded by citizens in the Pampa, Rio Grande do Sul state, southern Brazil. (A) a black juvenile at Dom Pedrito (photo by Diego Oliveira); (B) a black juvenile at Dilermando de Aguiar (photo by Thiago Weigert); (C) an intermediate juvenile flying at Mostardas (photo by Clécio Gomides); (D) an intermediate juvenile at Caçapava do Sul (photo by Guilherme Durante); (E) a white juvenile flying at Júlio de Castilhos (photo by Firmino Costa); (F) a white juvenile at Rio Grande (photo by Rafael Weber). Records were gathered in the WikiAves database, except for A and B.
Figure 4 in Breeding biology of the Maguari Stork Ciconia maguari (Aves, Ciconiidae) in the Pampa, and an outline in other Brazilian biomes
Figure 4. Seasonal occurrence of records of the Maguari Stork (Ciconia maguari) involving juveniles in the Pampa biome, in Rio Grande do Sul state, southern Brazil. Records were obtained by citizens and gathered in the WikiAves database in June 2020. Arabic numerals after each month represent 10-days long periods – (I):– days 1-10, (II): days 11-20, (III): days 21-31 of each month. Ardea alba Linnaeus, 1758 and Cocoi Herons Ardea cocoi Maguari Storks in Brazil. The information generated by Linnaeus, 1766 (Fig. 6). them was substantially more detailed than that provided These tall shrubs used as substratum for nests were by previous studies in the Brazilian territory (e.g., Belton, located at boundaries between grasslands and artificial 1984; Antas, 2004; Moura, 2009). The small proportion lakes (Fig. 6D; Appendix). Two species could be identified. (2.4%) of breeding records within the whole set of pho- One nest was on higher parts of a Phyllanthus sellowi- tographic records of the species indicates that gathering anus (Klotzsch) Müll.Arg., Phyllanthaceae (WA3115322). further records by citizens or scientists over large spatial Another nest was built on a Sebastiania schottiana (Müll. scales will be a hard task. Reinforcing this is the approach Arg.) Müll.Arg., Euphorbiaceae (WA1460435). Both spe- by Moura (2009) in the Pampa, that involved searches cies are known regionally as sarandis, and were estimat- for nests through a range of interviews, questionnaires, ed as 2.5 m in height. and other communication actions by contacting citizens, No nests had exposed eggs. Two nests (9%) were emp- conservationists and scientists.
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