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1,281 results for “Chilopoda”
Figs 28-31 in The scolopendromorph centipedes (Chilopoda, Scolopendromorpha) of Tunisia: taxonomy, distribution and habitats
Figs 28-31. Cryptops punicus: 28 – tergite 1; 29 – coxosternum; 30 – labral tooth; 31 – tibia and tarsus of ultimate leg. Arrows on figures 26 and 28 indicate the tergal sutures.
Figs 26-27 in The scolopendromorph centipedes (Chilopoda, Scolopendromorpha) of Tunisia: taxonomy, distribution and habitats
Figs 26-27. Cryptops trisulcatus: 26 – posterior part of head plate and tergite 1; 27 – coxosternum.
Figs 14-17 in The scolopendromorph centipedes (Chilopoda, Scolopendromorpha) of Tunisia: taxonomy, distribution and habitats
Figs 14-17. Cormocephalus gervaisianus: 14 – head plate; 15 – forcipular coxosternum and forcipules; 16 – terminal tergite and prefemur of ultimate leg, dorsal view; 17 – prefemur of ultimate leg, ventral view.
Figs 1-7 in The scolopendromorph centipedes (Chilopoda, Scolopendromorpha) of Tunisia: taxonomy, distribution and habitats
Figs 1-7. Scolopendra canidens: 1 – head plate; 2 – forcipular coxosternum and forcipules; 3 – leg 1; 4 – spiracle; 5 – coxopleural process, lateral view; 6-7 – prefemur of ultimate leg, dorsal and ventral views, respectively.
Fig. 7 in An unusually elongate endogeic centipede from Sardinia (Chilopoda: Geophilidae)
Fig. 7. Variation in the elongation of legs and the number of legs in a sample of species of Geophilidae, including Endogeophilus ichnusae gen. et sp. nov. The length/width ratio of a leg tarsus was measured at about 20% of the longitudinal series of legs. Full names of species in 'Material and methods'.
Fig. 2 in An unusually elongate endogeic centipede from Sardinia (Chilopoda: Geophilidae)
Fig. 2. Endogeophilus ichnusae gen. et sp. nov., holotype, ♀, forcipular segment, left half. A. Dorsal view. B. Ventral view. Scale bar = 100 µm.
Fig. 1 in An unusually elongate endogeic centipede from Sardinia (Chilopoda: Geophilidae)
Fig. 1. Endogeophilus ichnusae gen. et sp. nov. A–F. Holotype, ♀. A. Anterior part of the body, dorsal view, setae omitted. B. Head, without antennae, and forcipular segment, dorsal view. C. Leg-bearing segment 21, dorsal view. D. Leg-bearing segment 21, ventral view. E. Head, without antennae, ventral view. F. Ultimate leg-bearing segment and postpedal segments, ventral view, setae omitted. G. Paratype B, ³, ultimate leg-bearing segment and postpedal segments, ventral view, setae omitted. Line drawings based on photos taken at the microscope. Scale bars = 200 µm.
Fig. 6 in An unusually elongate endogeic centipede from Sardinia (Chilopoda: Geophilidae)
Fig. 6. Variation in the elongation of a single leg-bearing segment in a sample of species of Geophilidae, including Endogeophilus ichnusae gen. et sp. nov. The length/width ratio was measured on a metasternite at about 20% of the longitudinal series of leg-bearing segments, and the area of the metasternite (length × width, both in µm, log-transformed) has been taken as a proxy for body size. Full names of species in 'Material and methods'.
Fig. 8 in An unusually elongate endogeic centipede from Sardinia (Chilopoda: Geophilidae)
Fig. 8. Variation in the length of setae in a sample of species of Geophilidae, including Endogeophilus ichnusae gen. et sp. nov. The longest seta on the cephalic plate was measured, and the maximum width of the cephalic plate has been taken as a proxy for body size. Full names of species in 'Material and methods'.
Novel Foraging Behaviors of Scolopendra dehaani (Chilopoda: Scolopendridae) in Nakhon Ratchasima, Thailand
<p>Data from three observations of <em>Scolopendra dehaani</em> predation on vertebrate prey, and two supplemental observations further highlighting diurnal foraging and use of trees. Observation data from Nakhon Ratchasima province, Thailand. Included: photographic evidence of predation observations, diurnal foraging, and arboreality with a .csv file with corresponding event data.</p> <p> </p> <p>Data_S.dehaani_observations.csv file column headings:</p> <p>folderID: The Zenodo folder ID containing the photographic or video evidence of events.</p> <p>obvdate: Date of observation (mm/dd/yyyy)</p> <p>obvtime: Time of observation (24hr; ICT)</p> <p>Easting_utm: UTM easting (Datum WGS84)</p> <p>Northing_utm: UTM northing (Datum WGS84)</p> <p>ups_zone: UTM Zone (47N or 48N)</p> <p>gps_accuracy: Accuracy of GPS location (m)</p> <p>notes: Comments and details on events/observations</p>
FIGURES 26 33. Anopsobius wrighti n in A new species of the Gondwanan centipede Anopsobius (Chilopoda: Lithobiomorpha) from New South Wales, Australia
FIGURES 26 33. Anopsobius wrighti n. sp. 26 31, AM KS 57959, male, all 10 µm except 31, 5 µm. 26, gnathal edge of mandible; 27, 28, ventral part of mandibular gnathal edge; 29, dorsal mandibular teeth and furry pad; 30, 31, pretarsus of leg 13, posterior view and detail showing pore on main claw. 32, 33, AM KS 84039, female, gonopods and detail of spurs and claw, scales 50 µm, 10 µm.
FIGURES 34 37. Lamyctes hellyeri n in A new blind Lamyctes (Chilopoda: Lithobiomorpha) from Tasmania with an analysis of molecular sequence data for the Lamyctes Henicops Group
FIGURES 34 37. Lamyctes hellyeri n. sp. QVMAG 23: 23048, female, pretarsus of leg 14, scales 10 m. 34 36, anterior, posterior, and ventral views; 37, detail of lateral pore and ornament on scutes of main claw.
FIGURES 11 17. Lamyctes hellyeri n in A new blind Lamyctes (Chilopoda: Lithobiomorpha) from Tasmania with an analysis of molecular sequence data for the Lamyctes Henicops Group
FIGURES 11 17. Lamyctes hellyeri n. sp. 11, 14 17, QVMAG 23: 23046, female. 11, anterior part of head shield and basal part of antennae, scale 100 m; 14, sensilla on dorsal side of antenna, scale 10 m; 15 16, antennal articles, dorsal side, scales 50 m; 17, cephalic pleurite with Tömösváry organ, scale 50 m. 12 13, QVMAG 23: 23047, female. 12, ventral view of clypeus and labrum, scale 100 m; 13, labral midpiece and inner parts of sidepieces, scale 30 m.
FIGURES 1 4 in A new blind Lamyctes (Chilopoda: Lithobiomorpha) from Tasmania with an analysis of molecular sequence data for the Lamyctes Henicops Group
FIGURES 1 4. Lamyctes coeculus (Brölemann). 1, 3, AM KS 57961, female, Mellong Range, NSW, Australia. 2, 4, MCZ DNA 100472, female, Cerro San Javier, Tucumán, Argentina. 1 2, ventral view of head, scales 100 m; 3 4, dental margin of maxillipede coxosternite, scales 50 m.
FIGURES 18 25. Lamyctes hellyeri n in A new blind Lamyctes (Chilopoda: Lithobiomorpha) from Tasmania with an analysis of molecular sequence data for the Lamyctes Henicops Group
FIGURES 18 25. Lamyctes hellyeri n. sp. QVMAG 23: 23046, female. 18, ventral view of maxillipede, scale 100 m; 19 20, dental margin of maxillipede coxosternite, scales 50 m, 10 m; 21, tarsus and claw of second maxilla, scale 50 m; 22, distal part of tarsus and claw of second maxilla, scale 10 m; 23, coxal projections and telopods of first maxillae, scale 50 m; 24, first maxillae, scale 100 m; 25, plumose setae on inner margins of telopods of first maxillae, scale 10 m.
FIGURES 16 – 23 in A new species of Paralamyctes (Chilopoda: Lithobiomorpha) from New Zealand
FIGURES 16 – 23. Paralamyctes (Paralamyctes) rahuensis n. sp. 16 – 19, CMNZ 2004.19. 2, female. 16, 17, ventral and dorsal views of maxillipedes, scales 200 m; 18, maxillipede telopodites, scale 100 m; 19, dental margin of maxillipede coxosternum, scale 100 m. 20 – 22, CMNZ 2004.19. 6, female, leg 14. 20, dorsal view of pretarsus, scale 30 m; 21, 22, dorsal and anterior views of anterior accessory claw, scales 10 m. 23, CMNZ 2004.19. 3, female, basal article of gonopod, scale 50 m.
FIGURE 24 – 31 in Remylamyctes (Chilopoda: Lithobiomorpha), a henicopid centipede from Madagascar and Réunion
FIGURE 24 – 31. Lamyctes coeculus (Brölemann, 1889). Females, syntypes of Remylamyctes straminea (Attems, 1951), NMW 3919. 24 – 26, rue Monthyon, St. Denis, Réunion, scales 20 µm. 24, antennal articles 22 and 23, dorsal side; 25, antennal article 23; 26, antennal articles 20 – 22, dorsal side. 27, 28, Tananarive, Madagascar. 27, antennal articles 2 – 8, dorsal side, scale 20 µm; 28, thinwalled basiconic sensillum at distal end of antennal article 19, scale 2 µm. 29 – 31, Tananarive, Madagascar, scales 50 µm. 29, cephalic pleurite with Tömösváry organ; 30, first maxillae; 31, gonopods.
FIGURE 16 – 23 in Remylamyctes (Chilopoda: Lithobiomorpha), a henicopid centipede from Madagascar and Réunion
FIGURE 16 – 23. Lamyctes coeculus (Brölemann, 1889). Females, syntypes of Remylamyctes straminea (Attems, 1951), NMW 3919. Scales 10 µm except 23, 50 µm. 16 – 22, rue Monthyon, St. Denis, Réunion. 16, gnathal edge of mandible; 17, mandibular aciculae; 18, fringe of branching bristles and accessory denticles on mandibular teeth; 19, dorsal tooth on mandible and furry pad; 20, tarsi of second maxillae; 21, tarsus and claw of second maxilla; 22, claw of second maxilla; 23, Tananarive, Madagascar, distal part of tibia of leg 6, showing spinose projection.
Figure 6. from Detecting taxonomic signal in an under-utilised character system: geometric morphometrics of the forcipular coxae of Scutigeromorpha (Chilopoda) - ZooKeys 156: 49-66 (20 December 2011) https://doi.org/10.3897/zookeys.156.1997
Figure 6. - Strobe models of five positions along the canonical variates indicated in Fig. 5. CV-1, CV-2, and CV-3 axes account for 79.5% of the observed between-species shape variation. Landmarks and semi-landmarks are superimposed in the figure to the right of each sequence to express the magnitudes and directions (arrows) of shape trends. In all models, the mesial margin of the coxa is depicted to the left, the lateral margin to the right.
Supplementary material 1: Appendix from Detecting taxonomic signal in an under-utilised character system: geometric morphometrics of the forcipular coxae of Scutigeromorpha (Chilopoda) - ZooKeys 156: 49-66 (20 December 2011) https://doi.org/10.3897/zookeys.156.1997
Voucher data for specimens use din morphometric analyses and supplementary figures of Canonical Variates scatterplots
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