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FIG. 5. Correlation between the spatial distribution index and population density. A in Demographic and spatial structure at the stage of expansion in the populations of some alien land snails in Belgorod city (Central Russian Upland)
FIG. 5. Correlation between the spatial distribution index and population density. A. For Brephulopsis cylindrica and Xeropicta derbentina at 160 plots for three years. B. For Harmozica ravergiensis in nine sites×20 plots for two years. РИС. 5. Корреляция меЖду индексом пространственного распределения и плотностью популяции. А. Для Brephulopsis cylindrica и Xeropicta derbentina на 160 плоЩадках За три года. В. Для Harmozica ravergiensis на девяти участках по 20 плоЩадок За два года.
Data distribution of Constraints on the cosmic expansion history from the GWTC-3
<p>This is the data distribution associated with the publication "Constraints on the cosmic expansion history from the GWTC--3". Please, refer to the README_icarogw.md and README_gwcosmo.md files for a description of the data distribution files.</p>
Fig. 3 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 3. Predicted distribution of Salamandra infraimmaculata under current climatic conditions. Warm colors (red and yellow) show suitable habitats, whereas the blue color represents unsuitable habitats for S. infraimmaculata.
Fig. 2 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 2. Distribution patterns of Salamandra infraimmaculata throughout southern Anatolia together with the new locality record.
Fig. 1 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 1. Samples of Salamandra infraimmaculata captured from the new locality: (A) male and (B) female.
Fig. 4 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 4. The marginal response curves of S. infraimmaculata to (A) Minimum Temperature of Coldest Month (Bio6), (B) Mean Temperature of Wettest Quarter (Bio8), and (C) Precipitation of Warmest Quarter (Bio18). The red lines and blue shading respectively show the mean responses of the 30 replicate MaxEnt runs and the mean plus/minus one standard deviation.
Figs. 4A-B in New record and expansion of the geographic distribution of Parodia mueller-melchersii (Frič ex BAckeb.) N. P. TAylor (CActAceAe) in the Southern region of Rio GrAnde do Sul, BrAZil
Figs. 4A-B. Parodia mueller-melchersii habitat in Jaguarão, RS. A. Rocky outcrop; B. Surrounding vegetation.
Figs. 2A-D. Parodia mueller-melchersii.A in New record and expansion of the geographic distribution of Parodia mueller-melchersii (Frič ex BAckeb.) N. P. TAylor (CActAceAe) in the Southern region of Rio GrAnde do Sul, BrAZil
Figs. 2A-D. Parodia mueller-melchersii.A. General appearance (frontal view); B. General appearance (lateral view); C. Habitus; D. Juvenile specimens.
Fig. 1 in Short Communication Westward expansion of the brown shrimp Penaeus aztecus Ives 1891 (Decapoda: Penaeidae) in the Mediterranean Sea: a review on the Mediterranean distribution and first record from Spain
Fig. 1 - Specimens of Penaeus aztecus caught in Spain. a) The specimen caught at Altea. b) The specimen caught at Moraira. c) The specimens caught at Cullera. See site nr. 27 (red circle) in Fig. 2. / Esemplari di Penaeus aztecus catturati in Spagna. a) L'esemplare catturato ad Altea. b) L'esemplare catturato a Moraira. c) Gli esemplari catturati a Cullera. Si veda il sito n. 27 (cerchio rosso) nella Fig. 2.
Fig. 2 in Short Communication Westward expansion of the brown shrimp Penaeus aztecus Ives 1891 (Decapoda: Penaeidae) in the Mediterranean Sea: a review on the Mediterranean distribution and first record from Spain
Fig. 2 - Known distribution of Penaeus aztecus in the Mediterranean Sea (in chronological order). Black squares indicate published records, the red circle the area of the three records reported in this study: / Distribuzione nota di Penaeus aztecus nel Mar Mediterraneo (in ordine cronologico). I quadrati neri indicano i record pubblicati, il cerchio rosso l'area dei tre records riportati in questo studio: 1) Antalya, Turkey, (Deval et al., 2010); 2) Finike, Antalya, Adama, Mersin, Iskenderun Turkey (Bilecenoglu et al., 2013); 3) Damietta, Egypt, (Sadek et al., 2018); 4) Thermaikos Gulf, Greece (Nikolopoulou et al., 2013); 5) Boka Kotorska, Montenegro (Marković et al., 2014); 6) Corfu Island, Greece (Kapiris et al., 2014); 7) Thermaikos Gulf, Greece (Kevrekidis, 2014); 8) Thermaikos Gulf, Nestos river estuaries, Greece (Minos et al., 2015); 9) Castiglione, Italy (Cruscanti et al., 2015); 10) Kyllini, Greece (Crocetta et al., 2015); 11) Chalki Island, Greece (Kondylatos & Corsini-Foka, 2015); 12) Faliraki Rhodes, Greece (Kondylatos et al., 2020); 13) Gulf of Lion, France and Palmahim, Israel (Galil et al., 2017); 14) Mazara del Vallo, Porto Empedocle e Gela, Italy (Scannella et al., 2017); 15) Ildır Bay, Turkey (Bakır & Aydin, 2016); 16) Golfo di Corigliano, Italy, Kerkyraikos Gulf, Maliakos Gulf, North Ionian Sea, Patraikos Gulf, Saronikos Gulf, South Ionian, Thracian-Limnos, Lakonikos Gulf, Kyklades (Syros Island), Greece (Mytilineou et al., 2016); 17) Mersin Bay-Iskenderun, Turkey (Özcan et al., 2019); 18) Gulf of Gabes, Tunisia (Ben Jarray et al., 2019); 19) Central Aegean Sea, Greece (Kapiris & Minos, 2017); 20) Termoli and Mola di Bari, Italy (Zava et al., 2018); 21) Marzamemi, Italy, Albania, Erakleion Crete, Greece (Kampouris et al., 2018); 22) Augusta, Italy (Stern et al., 2019); 23) Alexandria, Egypt (El Deeb et al., 2020); 24) Umm- Ufayn, Libya (Abdulrraziq et al., 2021); 25) Hvarski kanal, Neretvanski kanal, Viski kanal, Murtesko more, Cavtat, Adriatic Sea, Croatia (Ugarković et al., 2021); 26) Ancona and San Benedetto del Tronto, Roccella Ionica, Italy (Froglia & Scanu, 2023). ed circle indicates the present record: 27) Altea, Moraira, Cullera, Comunitat Valenciana, Spain (present study).
Figure 2 in Expansion of Lobate Lac Scale Distribution into Oahu Forest Systems
Figure 2. Location of sites for lobate lac scale survey on the island of Oahu. Red dots indicate trail/sites where the scale was not found. Blue dots indicate trail/sites where the scale was found.
Figure 1 in Expansion of Lobate Lac Scale Distribution into Oahu Forest Systems
Figure 1. High density of lobate lac scale infestation can lead to branch dieback on Dodonaea viscosa (left) and Ficus spp. (right).
Fig. 2 in Updating the distributions of four Uruguayan hylids (Anura: Hylidae): recent expansions or lack of sampling effort?
Fig. 2. Occurrence of Dendropsophus minutus (n = 15), D. nanus (n = 15), Lysapsus limellum (n = 6), and Scinax nasicus (n = 21) in different types of environments. Crops include rainfed crops, rice, sugar cane, and Eucalyptus and/or Pinus afforestations; Natural includes the grasslands, wetlands, and native forests with low anthropic influence (i.e., extensive livestock farming); and Urban refers to urban and peri-urban areas, routes, or industrial plants.
Fig. 1 in Updating the distributions of four Uruguayan hylids (Anura: Hylidae): recent expansions or lack of sampling effort?
Fig. 1. Distribution of Dendropsophus minutus, D. nanus, Lysapsus limellum, and Scinax nasicus in Uruguay. Shaded areas correspond to estimated distributions according to Carreira and Maneyro (2019, yellow), and the closest national protected areas (green). Black dots indicate previous literature records from Gudynas and Rudolf (1983), Langone and Basso (1987), Olmos et al. (1997), Kolenc et al. (2003), Núñez et al. (2004), and Prigioni et al. (2011). New records in the present study are indicated in red. Department names are indicated as follows: AR, Departamento de Artigas; SA, Departamento de Salto; PA, Departamento de Paysandú; RN, Departamento de Río Negro; CL, Departamento de Cerro Largo; and TT, Departamento de Treinta y Tres.
FIGURE 7 in Redescription and expansion of the geographic distribution of Phenacorhamdia nigrolineata (Siluriformes: Heptapteridae)
FIGURE 7 | Unpreserved aquarium specimen supposedly of Phenacorhamdia nigrolineata (approximately 60 mm SL) from Madre de Dios River basin, Peru, showing its color in life. Photographed by Steven Grant.
FIGURE 6 in Redescription and expansion of the geographic distribution of Phenacorhamdia nigrolineata (Siluriformes: Heptapteridae)
FIGURE 6 | Phenacorhamdia nigrolineata. A. MTD F 17472, paratype, 33.2 mm SL, Peru, Ucayali departament, Tierra Roja, Ucayali River basin (Photographed by Mario Richter). B. IAvH-P 10948, 45.0 mm SL, Colombia, Amazonas River basin, Leticia, PNN Amacayacu (Photographed by Juan Gabriel A. Garzón). C. MCP 53512, 40.0 mm SL, Brazil, Tapajós River basin, Itapacurazinho river. D. AUM 36000, 24.8 mm SL, Guyana, Rupununi River, tributary of the Branco River basin (Photographed by Jonathan Armbruster). Scale bars = 1 cm.
FIGURE 1 in Redescription and expansion of the geographic distribution of Phenacorhamdia nigrolineata (Siluriformes: Heptapteridae)
FIGURE 1 | Phenacorhamdia nigrolineata, MTD F 20728, holotype, 37.6 mm SL, Peru, Departamento de Ucayali, Tierra Roja, near Pucallpa: A. Dorsal, B. Left lateral, and C. Ventral views. Photographed by Mario Richter.
FIGURE 3 in Redescription and expansion of the geographic distribution of Phenacorhamdia nigrolineata (Siluriformes: Heptapteridae)
FIGURE 3 | Radiographic images of Phenacorhamdia nigrolineata, MTD F 17472, paratype, 33.2 mm SL: A. Left lateral and B. Ventral views. Photographed by Mario Richter.
FIGURE 5 in Redescription and expansion of the geographic distribution of Phenacorhamdia nigrolineata (Siluriformes: Heptapteridae)
FIGURE 5 | Lateral view of caudal vertebrae of Phenacorhamdia nigrolineata, MCP 53512, 40.0 mm SL: A. Hemal spines bifids between vertebrae 24 and 32 (arrows) associated with pterygiophores of the anal fin; B. Posterior vertebrae and caudal skeleton. Abbreviations: EPU, epural; HU1+HU2, ventral hypural plate formed by coossification of hypurals 1 and 2; HU3+HU4, dorsal hypural plate formed by co-ossification of hypurals 3 and 4; HU5, dorsal hypural plate 5; PH, parhypural; PU1+U1, complex centrum composed of preural centrum 1 and ural centrum 1; UR, uroneral. Scale bars = 1 mm.
FIGURE 2 in Redescription and expansion of the geographic distribution of Phenacorhamdia nigrolineata (Siluriformes: Heptapteridae)
FIGURE 2 | Radiographic images of Phenacorhamdia nigrolineata, MTD F 20728, holotype, 37.6 mm SL: A. Left lateral and B. Ventral views. Photographed by Mario Richter.
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