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174 results for “247”
Supplementary material 1 from: Haubrock PJ, Cuthbert RN, Tricarico E, Diagne C, Courchamp F, Gozlan RE (2021) The recorded economic costs of alien invasive species in Italy. In: Zenni RD, McDermott S, García-Berthou E, Essl F (Eds) The economic costs of biological invasions around the world. NeoBiota 67: 247-266. https://doi.org/10.3897/neobiota.67.57747
Data used for the estimation of invasive species costs in Italy
Supplementary material 2 from: Haubrock PJ, Cuthbert RN, Tricarico E, Diagne C, Courchamp F, Gozlan RE (2021) The recorded economic costs of alien invasive species in Italy. In: Zenni RD, McDermott S, García-Berthou E, Essl F (Eds) The economic costs of biological invasions around the world. NeoBiota 67: 247-266. https://doi.org/10.3897/neobiota.67.57747
Description of the Impacted Sector categories
Supplementary material 3 from: Haubrock PJ, Cuthbert RN, Tricarico E, Diagne C, Courchamp F, Gozlan RE (2021) The recorded economic costs of alien invasive species in Italy. In: Zenni RD, McDermott S, García-Berthou E, Essl F (Eds) The economic costs of biological invasions around the world. NeoBiota 67: 247-266. https://doi.org/10.3897/neobiota.67.57747
Number of recorded studies over the cumulative estimates
FIGURE 2. Synbranchus marmoratus, ROM 88813, 247 in Annotated list and key to the stream fishes of Trinidad & Tobago
FIGURE 2. Synbranchus marmoratus, ROM 88813, 247 mm SL, Aripo River, Trinidad.
Figure 3 from: Vilisics F, Szekeres S, Hornung E (2012) Size dependent differences in litter consumption of isopods: preliminary results. ZooKeys 176: 247-259. https://doi.org/10.3897/zookeys.176.2470
Figure 3 - Effects of leaf litter positioning (abaxial up vs. abaxial down) on litter consumption of two isopod species. Note the different scaling of y axes. Legend: P. pruinosus: Porcellionides pruinosus; P. scaber: Porcellio scaber; Adaxial = adaxial side up; Abaxial = abaxial side up; Thick line = median; box = lower and upper quartiles; whisker = min. and max values.
Figure 2 from: Vilisics F, Szekeres S, Hornung E (2012) Size dependent differences in litter consumption of isopods: preliminary results. ZooKeys 176: 247-259. https://doi.org/10.3897/zookeys.176.2470
Figure 2 - Schematic figure of a microcosm showing dimensions of the transparent plastic container and the plaster layer underneath.
Figure 1 from: Vilisics F, Szekeres S, Hornung E (2012) Size dependent differences in litter consumption of isopods: preliminary results. ZooKeys 176: 247-259. https://doi.org/10.3897/zookeys.176.2470
Figure 1 - Patterns of litter degradation by Porcellio scaber size classes on poplar litter. A=small (0.2-0.5 mm in length), B=medium (0.7 – 10 mm), C=large (10 – 15 mm) isopods.
Figure 4 from: Vilisics F, Szekeres S, Hornung E (2012) Size dependent differences in litter consumption of isopods: preliminary results. ZooKeys 176: 247-259. https://doi.org/10.3897/zookeys.176.2470
Figure 4 - Freshly fallen poplar litter consumption of three size classes of Porcellio scaber and Porcellionides pruinosus. Legend: Thick line = median; box = lower and upper quartiles; whisker= min. and max values; open circles: outliers.
Figure 247 from: Houghton D (2012) Biological diversity of the Minnesota caddisflies (Insecta, Trichoptera). ZooKeys 189: 1-389. https://doi.org/10.3897/zookeys.189.2043
Figure 247 - Beothukus complicatus A total specimens collected and all known collecting localities (Figure 4) B monthly adult abundance (1980s to present) C habitat preference (1980s to present) (Table 1) D male genital capsule E phallus.
Figures 247-252 from: Burks R, Masner L, Johnson N, Austin A (2013) Systematics of the parasitic wasp genus Oxyscelio Kieffer (Hymenoptera, Platygastridae s.l.), part II: the Australian and southwest Pacific fauna. ZooKeys 331: 1-266. https://doi.org/10.3897/zookeys.331.5152
Figures 247-252 - Oxyscelio palati sp. n., paratype female (OSUC 359587) 247 Head and mesosoma, lateral view 248 Head and mesosoma, dorsal view 249 Head, anterior view. Paratype female (ANIC DB 32-020100) 250 Metasoma, dorsal view. Paratype male (OSUC 359596) 251 Antenna 252 Metasoma, dorsal view. Morphbank75
Figure 9 from: Uyeno D, Nagasawa K (2012) Four new species of splanchnotrophid copepods (Poecilostomatoida) parasitic on doridacean nudibranchs (Gastropoda, Opistobranchia) from Japan, with proposition of one new genus. ZooKeys 247: 1-29. https://doi.org/10.3897/zookeys.247.3698
Figure 9 - Splanchnotrophus imagawai sp. n., female, holotype NSMT–Cr 22249. A anterior portion of cephalosome B antennule, ventral C oral area D mandible, posterior E maxilla F leg 1 G leg 2 H leg 3. Scale bars = 100 μm in A; 50 μm in B, C; 10 μm in D, H; 20 μm in E, F, G.
Figure 8 from: Uyeno D, Nagasawa K (2012) Four new species of splanchnotrophid copepods (Poecilostomatoida) parasitic on doridacean nudibranchs (Gastropoda, Opistobranchia) from Japan, with proposition of one new genus. ZooKeys 247: 1-29. https://doi.org/10.3897/zookeys.247.3698
Figure 8 - Splanchnotrophus imagawai sp. n., female, holotype NSMT–Cr 22249. A habitus, dorsal B habitus, ventral, p1 = leg 1, p2 = leg 2 C posterior portion of body, ventral, p3 = leg 3 D fourth pedigerous somite and genito-abdomen, ventral E caudal ramus, ventral F egg sac. Scale bars = 1 mm in A; 500 μm in B, F; 200 μm in C; 100 μm in D; 20 μm in E.
Figure 1 from: Uyeno D, Nagasawa K (2012) Four new species of splanchnotrophid copepods (Poecilostomatoida) parasitic on doridacean nudibranchs (Gastropoda, Opistobranchia) from Japan, with proposition of one new genus. ZooKeys 247: 1-29. https://doi.org/10.3897/zookeys.247.3698
Figure 1 - Live coloration of the host nudibranchs and the splanchnotrophids. A Hypselodoris festiva infected by an ovigerous specimenof Certosomicola japonica sp. n. B an egg sac of Ceratosomicola japonica sp. n. and the gill circle of Hypselodoris festiva with the mantle malformed into an elongate tube C Thecacera pennigera infected by an ovigerous specimen of Splanchnotrophus helianthus sp. n. D Trapania pennigera with the mantle removed to show a female specimen of Splanchnotrophus helianthus on the visceral sac E Trapania miltabrancha infected by an ovigerous specimen of Splanchnotrophus imagawai sp. n (photo by K. Imagawa) F gill circle of Trapania miltabrancha with egg sacs of Splanchnotrophus imagawai sp. n. (photo by K. Imagawa) G Roboastra luteolineata infected by an ovigerous specimen of Majimun shirakawai gen. et sp. n. (photo by N. Shirakawa) H female Majimun shirakawai gen. et sp. n. with dwarf male attached to the posterior part of the body. Scale bars = 5 mm in A; 1 mm in B, D, H.
Figures 8-9 from: Roig-Junent S, Rouaux J (2012) A new species of Rhytidognathus (Carabidae, Migadopini) from Argentina. ZooKeys 247: 45-60. https://doi.org/10.3897/zookeys.247.3303
Figures 8-9 - Rhytidognathus platensis: 8 Lateral view of head showing the eyes (Scale = 1 mm) 9 Lateral view of meso-metathorax and abdomen (Scale = 5 mm).
Figures 2-7 from: Roig-Junent S, Rouaux J (2012) A new species of Rhytidognathus (Carabidae, Migadopini) from Argentina. ZooKeys 247: 45-60. https://doi.org/10.3897/zookeys.247.3303
Figures 2-7 - Rhytidognathus ovalis: 2 Head and pronotum, dorsal view (Scale = 1 mm) 3 Lateral view of prosternal apophysis (Scale = 1 mm) 4 Dorsal view of elytra 5 Head and pronotum, dorsal view (Scale = 1 mm) 6 Lateral view of prosternal apophysis (Scale = 1 mm) 7 Dorsal view of elytra.
Figure 1 from: Balke M, Skale A, Tänzler R, Hendrich L (2012) High mitochondrial DNA sequence divergence in New Guinea Carabdytes stream beetles and the taxonomist's dilemma when other evidence is kind of subtle… (and collecting localities are far far away). ZooKeys 247: 31-43. https://doi.org/10.3897/zookeys.247.3812
Figure 1 - Distribution of Carabdytes upin, blue dots = sequenced specimens, white dots = other records. Lowland gap indicated by bars in the Bird's neck. Below, detailed map of central Papua New Guinea with localities for sequenced specimens.
Figure 7 from: Uyeno D, Nagasawa K (2012) Four new species of splanchnotrophid copepods (Poecilostomatoida) parasitic on doridacean nudibranchs (Gastropoda, Opistobranchia) from Japan, with proposition of one new genus. ZooKeys 247: 1-29. https://doi.org/10.3897/zookeys.247.3698
Figure 7 - Splanchnotrophus helianthus sp. n., male, allotype NSMT–Cr 22245. A habitus, dorsal B habitus, ventral C habitus, lateral D free thoracic somites and abdomen, ventral E caudal ramus, ventral F oral area G leg 1 H leg 2. Scale bars = 100 μm in A, B, C; 50 μm in D; 20 μm in E.
Figure 5 from: Uyeno D, Nagasawa K (2012) Four new species of splanchnotrophid copepods (Poecilostomatoida) parasitic on doridacean nudibranchs (Gastropoda, Opistobranchia) from Japan, with proposition of one new genus. ZooKeys 247: 1-29. https://doi.org/10.3897/zookeys.247.3698
Figure 5 - Splanchnotrophus helianthus sp. n., female, holotype NSMT–Cr 22244. A habitus, dorsal A' enlarged view of egg sac B habitus, ventral, p1 = leg 1, p2 = leg 2 C posterior portion of body, ventral, p3 = leg 3 D fourth pedigerous somite and genito-abdomen, ventral E caudal ramus, dorsal F cephalosome, ventral. Scale bars = 1 mm in A; 100 μm in A'; 500 μm in B; 200 μm in C, F; 100 μm in D; 20 μm in E.
Figure 2 from: Uyeno D, Nagasawa K (2012) Four new species of splanchnotrophid copepods (Poecilostomatoida) parasitic on doridacean nudibranchs (Gastropoda, Opistobranchia) from Japan, with proposition of one new genus. ZooKeys 247: 1-29. https://doi.org/10.3897/zookeys.247.3698
Figure 2 - Ceratosomicola japonica sp. n., female, holotype NSMT–Cr 22240 (A–C), female, paratype NSMT–Cr 22243 (D–F). A habitus dorsal B habitus, ventral, p1 = leg 1, p2 = leg 2 C posterior portion of body, ventral D urosome, ventral E caudal ramus, ventral F egg sac. Scale bars = 1 mm in A, B; 300 μm in C; 100 μm in D; 10 μm in E; 500 μm in F.
Figure 12 from: Uyeno D, Nagasawa K (2012) Four new species of splanchnotrophid copepods (Poecilostomatoida) parasitic on doridacean nudibranchs (Gastropoda, Opistobranchia) from Japan, with proposition of one new genus. ZooKeys 247: 1-29. https://doi.org/10.3897/zookeys.247.3698
Figure 12 - Majimun shirakawai gen. et sp. n., male, allotype NSMT–Cr 22251. A habitus, dorsal B habitus, ventral, p1 = leg 1, p2 = leg 2 C habitus lateral D posterior portion of body, ventral, p3 = leg 3 E anchor-like spinule on posterior margin of fourth pedigerous somite F caudal ramus, ventral G antenna, anterior H mandible I leg 1 J leg 2 K leg 3. Scale bars = 200 μm in A, B, C; 100 μm in D; 20 μm in F, H, I, J, K; 10 μm in E; 50 μm in G.
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