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44 results for “Woodlouse”
Figure 3 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 3 Morphological terminology of Rhinophoridae, head. A Standard measurements in dorsal view B head structures in frontal view C head structures in lateral view D standard measurements in lateral view. Drawings by Giulia Bellanti.
Figure 2 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 2 Morphological terminology of Rhinophoridae, head, thorax and abdomen. A Chaetotaxy of head, thorax and abdomen in dorsal view B, C arrangement of setae of postpronotum: B three setae arranged in shallow triangle C three setae standing in a nearly right-angled triangle D thorax, sclerites and chaetotaxy, in lateral view E wing veins and cells. Drawings by Giulia Bellanti.
Figure 17 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 17 Neotarsina caraibica gen. et sp. nov. (Trinidad and Tobago). A Male habitus in lateral view B female habitus in lateral view C male abdomen in dorsal view D female abdomen in dorsal view E female fore tibia and tarsus F, G male head in lateral view (F) and frontal view (G) H, I female head in lateral view (H) and frontal view (I) view J male wing in dorsal view K–M mpandrial complex in posterior (K) and lateral (L) view M hypandrial complex in lateral view [A, C, F–G, J holotype; B, D–E, H–I, K–M paratypes].
Figure 18 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 18 Kinabalumyia gen. nov. A–C, F–IKinabalumyia pinax sp. nov. (Malaysia, Sabah) D–EKinabalumyia sp. ♀ (Philippines) AK. pinax sp. nov., habitus in lateral view BK. pinax sp. nov., abdomen in dorsal view CK. pinax sp. nov., head in lateral view DKinabalumyia sp. ♀, head in frontal view, ♀ EKinabalumyia sp. ♀, head in lateral view FK. pinax sp. nov., wing G–IK. pinax sp. nov.: epandrial complex in posterior (G) and lateral (H) view I hypandrial complex in lateral view [A–C holotype; F–I paratypes].
Figure 10 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 10 Rhinophoridae, wing. AOplisa aterrima ♂ (Italy) BOplisa tergestina ♂ (Italy) CPaykullia partenopea ♂ (Italy) DRhinodonia antiqua ♂ (New Caledonia) [holotype] ERhinomorinia sarcophagina ♂ (Italy) FRhinophora lepida ♂ (Italy) GStevenia etrusca ♀ (Italy) [paratype] HTricogena rubricosa ♀ (Morocco) ITromodesia angustifrons ♀ (Israel) [paratype] JTrypetidomima lutea ♂ (Brazil) KVentrops milichioides ♂ (Tanzania) LVentrops stuckenbergi ♂ (Namibia) [holotype] MRhinopeza gracilis ♂ (Papua New Guinea) [holotype] NPolleniidae, wing: Morinia carinata ♂ (South Africa).
Figure 15 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 15 Marshallicona quitu gen. et sp. nov. (Ecuador) ♂. A Habitus in lateral view B abdomen in dorsal view C head in lateral view D head in frontal view E wing in dorsal view F, G epandrial complex in posterior view (F) and lateral view (G) H hypandrial complex in lateral view [A–D holotype, E–H paratype].
Figure 14 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 14 Maurhinophora indoceanica gen. et sp. nov. ♀ (Mauritius) [holotype] A habitus in lateral view B abdomen in dorsal view C wing in dorsal view D head in lateral view.
Figure 1 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 1 Rhinophoridae photographed in nature. ABezzimyia sp. (Ecuador) BBixinia winkleri (Australia) CMarshallicona quitu (Ecuador) DPaykullia maculata (Finland) EStevenia sp. (Italy) FTricogena rubricosa (Finland) GPhyto sp. (Italy). Photographs by Steve Marshall (A, C), P.C. (B, E, G), Håkon Haraldseide (D, F).
Figure 16 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 16 Neotarsina andina gen. et sp. nov. (Peru). A Female habitus in lateral view B male abdomen in dorsal view C female abdomen in dorsal view D, E male head in lateral view (D) and frontal view (E) F, G female head in lateral view (F) and frontal view (G) H female fore tibia and tarsus I male wing in dorsal view J–L epandrial complex in posterior view (J) and lateral view (K) L hypandrial complex in lateral view [B, D–E, I–L holotype; A, C, F, G paratype].
Figure 13 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 13 SEM images of diagnostic characters. A, BPolleniidaeAMorinia carinata ♂ (South Africa) [paratype], detail of head in anterodorsal view BMorinia carinata ♂ (South Africa) [paratype], thorax in dorsolateral view [colour coding as E–G] C–NRhinophoridaeCPhyto adolescens ♂ (Italy), detail of head in anterodorsal view DMelanophora chia ♂ (Italy), detail of anterior part of head in lateral view E–G thorax in dorsolateral view [B, E–G colour coding: red = first postsutural supra-alar seta; yellow = second postsutural supra-alar seta; blue = third postsutural supra-alar seta; green = posterior notopleural seta] EParazamimus congolensis ♀ (Burundi) FQueximyia flavipes ♂ (South Africa) GRhinomorinia sarcophagina ♂ (Italy) H–J metathoracic spiracle [colour coding: green = anterior lappet; red = posterior lappet] HBaniassa fascipennis ♀ (Israel) IRhinomorinia sp. ♀ (South Africa) JMelanophora basilewskyi ♀ (Kenya) K–NAxinia spp. (Australia), female oviscapt K, LAxinia zentae in lateral view (K) and posterior view (L) M, NAxinia sp. in lateral view (M) and posterior view (N).
Figure 11 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 11 Rhinophoridae, abdomen. AMelanophora basilewskyi ♂ (Kenya) BOplisa tergestina ♂ (Italy) CParazamimus congolensis ♂ (Burundi) DRhinomorinia sarcophagina ♂ (Italy) ETromodesia angustifrons ♀ (Israel) [paratype] FVentrops stuckenbergi ♂ (Namibia) [holotype] GQueximyia flavipes ♂ (South Africa). A–F dorsal view G lateral view.
Figure 12 from: Cerretti P, Badano D, Gisondi S, Lo Giudice G, Pape T (2020) The world woodlouse flies (Diptera, Rhinophoridae). ZooKeys 903: 1-130. https://doi.org/10.3897/zookeys.903.37775
Figure 12 Melanomyoides capensis (South Africa). A Habitus in lateral view B abdomen in dorsal view C head in lateral view D, E epandrial complex in posterior view (D) and lateral view (E) F, GPhyto adolescens (Italy), hypandrial complex in posterior view (F) and lateral view (G).
Figure 3 from: Tuf I, Drahokoupilová T (2012) The effect of external marking on the behaviour of the common pill woodlouse Armadillidium vulgare. ZooKeys 176: 145-154. https://doi.org/10.3897/zookeys.176.2375
Figure 3 - Influence of marking on frequency of resting (a), (b), (c), on feeding (d), (e), (f), on exploring (g), (h), (i), and on hiding (j), (k), (l) of Armadillidium vulgare in 3rd, 6th and 9th day analyzed by GAMs (confidence intervals dotted). Legend: CON – control, MAR – marker-marked, POL – polish-marked.
Figure 2 from: Tuf I, Drahokoupilová T (2012) The effect of external marking on the behaviour of the common pill woodlouse Armadillidium vulgare. ZooKeys 176: 145-154. https://doi.org/10.3897/zookeys.176.2375
Figure 2 - Daily patterns of behavioural categories as modelled by fitting GAM to illustrate a high degree of non-linearity in the response (logits). Compound graph from curves expressing frequency of exploring, feeding, resting and hiding of Armadillidium vulgare in a mean day
Figure 1 from: Tuf I, Drahokoupilová T (2012) The effect of external marking on the behaviour of the common pill woodlouse Armadillidium vulgare. ZooKeys 176: 145-154. https://doi.org/10.3897/zookeys.176.2375
Figure 1 - Time-distribution of active behavioural categories (feeding and/or exploring) of Armadillidium vulgare from all groups in observational days. Legend: CON – control, MAR – marker-marked, POL – polish-marked, grey triangles mark night-time activity, black line running from the centre of the diagram to the outer edge marks mean time of activity and the arcs extending to either side represent the 95% confidence limits.
Supplementary material 1 from: Wood CT, Nihei SS, Araujo PB (2018) Woodlice and their parasitoid flies: revision of Isopoda (Crustacea, Oniscidea) – Rhinophoridae (Insecta, Diptera) interaction and first record of a parasitized Neotropical woodlouse species. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 401-414. https://doi.org/10.3897/zookeys.801.26052
Compilation of Isopoda-Rhinophoridae records (Dataset) :
Supplementary material 2 from: Wood CT, Nihei SS, Araujo PB (2018) Woodlice and their parasitoid flies: revision of Isopoda (Crustacea, Oniscidea) – Rhinophoridae (Insecta, Diptera) interaction and first record of a parasitized Neotropical woodlouse species. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 401-414. https://doi.org/10.3897/zookeys.801.26052
Rhinophoridae larva from a Neotropical woodlouse species :
Figure 5 from: Wood CT, Nihei SS, Araujo PB (2018) Woodlice and their parasitoid flies: revision of Isopoda (Crustacea, Oniscidea) – Rhinophoridae (Insecta, Diptera) interaction and first record of a parasitized Neotropical woodlouse species. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 401-414. https://doi.org/10.3897/zookeys.801.26052
Figure 5 Rhinophoridae larva obtained from the Neotropical isopod Balloniscusglaber. Morphotype 2, 3rd instar A dorsal view B detail from anterior part showing the cephaloskeleton and anterior spiracles C detail of the posterior spiracle.
Figure 4 from: Wood CT, Nihei SS, Araujo PB (2018) Woodlice and their parasitoid flies: revision of Isopoda (Crustacea, Oniscidea) – Rhinophoridae (Insecta, Diptera) interaction and first record of a parasitized Neotropical woodlouse species. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 401-414. https://doi.org/10.3897/zookeys.801.26052
Figure 4 Rhinophoridae larva obtained from the Neotropical isopod Balloniscusglaber. Morphotype 1, 3rd instar A detail view of the cephaloskeleton on dorsal view B detail view of the anterior spiracle C alive larva with transparent integument D fixed larva, dorsal view.
Figure 3 from: Wood CT, Nihei SS, Araujo PB (2018) Woodlice and their parasitoid flies: revision of Isopoda (Crustacea, Oniscidea) – Rhinophoridae (Insecta, Diptera) interaction and first record of a parasitized Neotropical woodlouse species. In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 401-414. https://doi.org/10.3897/zookeys.801.26052
Figure 3 Balloniscusglaber infected with 3rd instar Rhinophoridae larva A alive B.glaber clinging to the substrate B secretion discharged from uropod glands C–D dorsal (C) and ventral (D) views of Balloniscusglaber with a third instar Rhinophoridae larva inside E–F partially dissected Balloniscusglaber infected with Rhinophoridae larva showing the empty gut on dorsal view (E) and the calcium plates on ventral view (F).
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