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Figure 1. A. Habitat where observations were carried out. B. Pupal clutches. C & D in A note on the defence by Eurema blanda Boisduval (Lepidoptera: Pieridae) pupae in response to oviposition behaviour of the chalcid wasp Brachymeria sp. (Hymenoptera: Chalcididae)
Figure 1. A. Habitat where observations were carried out. B. Pupal clutches. C & D. Left and right ways movement of pupa in response to Brachymeria sp. E. Female Brachymeria sp. F. Newly emerged Eurema blanda from collected pupae.
Figuras 7-8 in Observaciones biológicas de larvas y pupas de Rekoa marius (Lucas) (Lepidoptera: Lycaenidae) en Panamá
Figuras 7-8. Tenuipetiolus sp. (Hymenoptera: Eurytomidae). 7. Habitus de la hembra. 8. Habitus de la hembra y el macho.
Figura 11 in Observaciones biológicas de larvas y pupas de Rekoa marius (Lucas) (Lepidoptera: Lycaenidae) en Panamá
Figura 11. Número de visitas de C. lindigi a las larvas de Rekoa marius de 8:00-10:00 am (valor P= 0,0764).
Figuras 1-6. Rekoa marius Lucas. 1 in Observaciones biológicas de larvas y pupas de Rekoa marius (Lucas) (Lepidoptera: Lycaenidae) en Panamá
Figuras 1-6. Rekoa marius Lucas. 1. Larva del tercer estadio de sobre la inflorecencia de A. wilkesiana. 2. Larva del tercer estadio de sobre la inflorecencia de A. wilkesiana, recibiendo atención por la hormiga C. lindigi. 3. Pupa en las primeras horas del cambio de estadÍo, sobre la base de la hoja de A. wilkesiana. 4. Pupa sobre la base de la hoja y cerca de la inflorescencia de A. wilkesiana, trasladadas a la jaula de malla. 5. Pupa parasitada antes de que salgan los parasitoides. 6. Orificio en la pupa después que han
Figs 2 - 4 in Description of the pupa of Mycetochara axillaris (Paykull 1799) (Coleoptera, Tenebrionidae)
Figs 2 - 4. Mycetochara axillaris (Payk.), pupa, habitus. 2 – ventral aspect, 3 - dorsal aspect, 4 – lateral aspect.
Figs 2-7 in Morphology of the mature larva and pupa of Rhinusa bipustulata (Rossi, 1792) (Coleoptera: Curculionidae) with some remarks on its biology
Figs 2-7. Rhinusa bipustulata (Rossi), mature larva: 2 - habitus, 3 - lateral view of thoracic segments, 4 – lateral view of second abdominal segment, 5 – lateral view of abdominal segments VIII-X (prns – pronotal setae, dpls – dorsopleural s., vpls – ventropleural s., prs – prodorsal s., pds – postdorsal s., dls – dorsolateral s., as – alar s., ss – spiracular s., lsts – laterosternal s., msts – mesosternal s., sts – sternal s., ps – pleural s., ds – dorsal s.), 6 – spiracle of thorax, 7 – spiracle of second abdominal segment
Figures 31–35. Culicoides peregrinus Kieffer, male pupa. 31 in Description of immature stages of Culicoides peregrinus (Diptera: Ceratopogonidae), a potent vector of bluetongue virus
Figures 31–35. Culicoides peregrinus Kieffer, male pupa. 31: Respiratory organ, 32: antennal sheath with pale spot and prothoracic extension, 33: close view of dorsal apotome, 34: palpus-clypeal/labral sensilla and ocular area, 35: segment 9. Abbreviations same as before. Scale bar 50 µm.
Figure 6 Hybosa acutangula Boheman, 1855 in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 6 Hybosa acutangula Boheman, 1855. Genitalia: a, female, tignum, dorsal view; b, female, spermatheca, lateral view; c, male, aedeagus, ventral view; d, male, aedeagus, lateral view; e, male, aedeagus, dorsal view. DCT, ductus; MDL, medianl lobe; TGM, tegmen; VSC, vasculum. Scale bar = 500Μm.
Figure 2 Hybosa acutangula Boheman, 1855 in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 2 Hybosa acutangula Boheman, 1855. Fifth instar larvae:a, dorsal view;b, ventral view.AFK,anal fork; ASP,abdominal spiracles; ATB, anal tube; SCL, scolus; TSP,thoracic spiracle. Scale bar = 1 mm.
Figure 7 a in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 7 a. Husk of a parasitized pupae of Hybosa acutangula Boheman, 1855, opening made by emergence of adult wasp highlighted; Chalcididae which emerged from H. acutangula pupae, b. Brachymeria sp.; c. Conura sp.
Figure 4 Hybosa acutangula Boheman, 1855 in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 4 Hybosa acutangula Boheman, 1855. Fifth instar larvae, mouthparts: a, left mandible, ventral view; b, right mandible, ventral view; c, labium, ventral view. LBM, labium; LBP, labial palpus; LGL, ligula; MAL, mala; MDT, mandibular teeth; MXP, maxillary palpus; PPG, palpiger. PRM, prementum; PSM, postmentum. Scale bar = 1 mm.
Figure 3 Hybosa acutangula Boheman, 1855 in Description of larva, pupa, and genitalia of Hybosa acutangula Spaeth, 1913 (Coleoptera: Chrysomelidae: Cassidinae) from the Brazilian Cerrado
Figure 3 Hybosa acutangula Boheman, 1855. Fifth instar larvae, frontal view of the head. ANT, antenna; ECS, epicranial suture; LBR, labrum; STM, stemma. Scale bar = 1 mm.
Figure 3 in The life history of Euborellia annulipes (Lucas) (Dermaptera: Anisolabididae) fed on larvae and pupae of Plutella xylostella (L.) Lepidoptera: Plutellidae
Figure 3. Weight (mean ± SE) of the nymphs in (a) first, (b) second, (c) third, (d) fourth, and (e) fifth instars and of (f) adults of Euborellia annulipes fed on an artificial diet, fourth instar larvae, and pupae of Plutella xylostella with different ages (days of development). Different letters on bars indicate significant differences among treatments in each treatment (as analyzed by the Student-Newman-Keuls test, p <0.05); ns = no significant differences among treatments.
Figure 2 in The life history of Euborellia annulipes (Lucas) (Dermaptera: Anisolabididae) fed on larvae and pupae of Plutella xylostella (L.) Lepidoptera: Plutellidae
Figure 2. Survival of Euborellia annulipes adult females fed on an artificial diet, fourth instar larvae, and pupae of Plutella xylostella at different ages (days of development). Different letters indicate significant differences among treatments according to the log-rank test (p <0.05).
Figure 1 in The life history of Euborellia annulipes (Lucas) (Dermaptera: Anisolabididae) fed on larvae and pupae of Plutella xylostella (L.) Lepidoptera: Plutellidae
Figure 1. Developmental time (mean ± SE) of the nymph stages of Euborellia annulipes fed on an artificial diet, fourth instar larvae, and pupae with different ages (days of development) of Plutella xylostella. Means followed by the same letter in the bars are not significantly different among treatments by the Student-Newmann-Keuls test (p <0.05).
Figs 18–20 in Redescription of larva, pupa and adult of Anopheles (Anopheles) annulipalpis (Diptera: Culicidae) and the removal of the specie of the Cycloleppteron Series
Figs 18–20, Anopheles (Anopheles) annulipalpis Lynch Arribálzaga, 1878, pupa: 18, CT (cephalothorax); 19, MT (metathorax) and abdominal segments I-VIII (left side dorsal, right side ventral); 20, pupa trumpet; Pa. (paddle). Scales in mm except, when indicated.
Figs 10–17 in Redescription of larva, pupa and adult of Anopheles (Anopheles) annulipalpis (Diptera: Culicidae) and the removal of the specie of the Cycloleppteron Series
Figs 10–17, Anopheles (Anopheles) annulipalpis LYnch ArribÁlzaga, 1878, larva: 10, pro- (P), meso- (M) and metathorax (T), and abdominal segments I-VI (left side dorsal, right side ventral); 11, head, left dorsal side, right ventral side; 12, abdominal segments VII–X lateral view; 13, pecten plate; 14, dorsomentum; 15, detail of antenna; 16, seta 3-C alternative; 17, seta 1-III. Scales in mm.
Figs 1–9 in Redescription of larva, pupa and adult of Anopheles (Anopheles) annulipalpis (Diptera: Culicidae) and the removal of the specie of the Cycloleppteron Series
Figs 1–9, Anopheles (Anopheles) annulipalpis LYnch ArribÁlzaga, 1878. 1, Female genitalia; 2–9, male genitalia: 2, dorsal lobe of Claspette, 3; setae of dorsal lobe of Claspette; 4, aedeagus; 5, lateral view of aedeagus; 6, gonocoxite and gonostylus dorsal aspect (prerotation sense); 7, ventral lobe of Claspette; 8, detail of ventral lobe of Claspette; 9, IX-Tergum. Scales in mm, except when indicated.
Рис. 21–32. Lixus pulverulentus, кукоΛка, внешний виΔ и хетотаксия. 21 – виΔ снизу; 22 – виΔ сверху; 23 – виΔ сбоку; 24 – хетотаксия гоΛовы; 25 – хетотаксия переΔнеспинки; 26 – хетотаксия среΔнеспинки; 27 – хетотаксия заΔнеспинки; 28 – хетотаксия брюшного сегмента I; 29 – хетотаксия брюшного сегмента II; 30 – хетотаксия брюшного сегмента VII; 31 – хетотаксия брюшного сегмента VIII; 32 –хетотаксия брюшного сегмента IX. Figs 21–32. Lixus pulverulentus, pupa, habitus and chaetotaxy. 21 – ventral view; 22 – dorsal view; 23 – lateral view; 24 – chaetotaxy of head; 25 – chaetotaxy of pronotum; 26 – chaetotaxy of mesonotum; 27 – chaetotaxy of metanotum; 28 – chaetotaxy of abdominal segment I; 29 – chaetotaxy of abdominal segment II; 30 – chaetotaxy of abdominal segment VII; 31 – chaetotaxy of abdominal segment VIII; 32 – chaetotaxy of abdominal segment IX. ps – pseudocerci, Th n –thoracic segments, Ab n –abdominal segments; setae: as – apical, d – dorsal, ds – discal, fs – femoral, ls – lateral, os – orbital, pas – postatennal, pls – posterolateral, rs – rostral, sos – super-orbital, sls – superlateral, v – ventral, vs – vertical. in Description of the preimaginal stages and biology of the weevil Lixus (Dilixellus) pulverulentus (Scopoli, 1763) (Coleoptera: Curculionidae: Lixini)
Рис. 21–32. Lixus pulverulentus, кукоΛка, внешний виΔ и хетотаксия. 21 – виΔ снизу; 22 – виΔ сверху; 23 – виΔ сбоку; 24 – хетотаксия гоΛовы; 25 – хетотаксия переΔнеспинки; 26 – хетотаксия среΔнеспинки; 27 – хетотаксия заΔнеспинки; 28 – хетотаксия брюшного сегмента I; 29 – хетотаксия брюшного сегмента II; 30 – хетотаксия брюшного сегмента VII; 31 – хетотаксия брюшного сегмента VIII; 32 –хетотаксия брюшного сегмента IX. Figs 21–32. Lixus pulverulentus, pupa, habitus and chaetotaxy. 21 – ventral view; 22 – dorsal view; 23 – lateral view; 24 – chaetotaxy of head; 25 – chaetotaxy of pronotum; 26 – chaetotaxy of mesonotum; 27 – chaetotaxy of metanotum; 28 – chaetotaxy of abdominal segment I; 29 – chaetotaxy of abdominal segment II; 30 – chaetotaxy of abdominal segment VII; 31 – chaetotaxy of abdominal segment VIII; 32 – chaetotaxy of abdominal segment IX. ps – pseudocerci, Th n –thoracic segments, Ab n –abdominal segments; setae: as – apical, d – dorsal, ds – discal, fs – femoral, ls – lateral, os – orbital, pas – postatennal, pls – posterolateral, rs – rostral, sos – super-orbital, sls – superlateral, v – ventral, vs – vertical.
Рис. 1–6. Lixus pulverulentus. 1 – биотоп, ассоциация Cirsium acanthoides; 2 – Λичинка внутри стебΛя кормового растения; 3 – моΛоÃой жук внутри стебΛя кормового растения; 4 – гоΛова Λичинки; 5 – внешний виà Λичинки; 6 – внешний виà кукоΛки. Figs 1–6. Lixus pulverulentus. 1 – biotope, Cirsium acantoides association; 2 – larva within the stalk of the host plant; 3 – young beetle inside the stalk of the host plant; 4 – head of the larva; 5 – habitus of the larva; 6 – habitus of the pupa. in Description of the preimaginal stages and biology of the weevil Lixus (Dilixellus) pulverulentus (Scopoli, 1763) (Coleoptera: Curculionidae: Lixini)
Рис. 1–6. Lixus pulverulentus. 1 – биотоп, ассоциация Cirsium acanthoides; 2 – Λичинка внутри стебΛя кормового растения; 3 – моΛоÃой жук внутри стебΛя кормового растения; 4 – гоΛова Λичинки; 5 – внешний виà Λичинки; 6 – внешний виà кукоΛки. Figs 1–6. Lixus pulverulentus. 1 – biotope, Cirsium acantoides association; 2 – larva within the stalk of the host plant; 3 – young beetle inside the stalk of the host plant; 4 – head of the larva; 5 – habitus of the larva; 6 – habitus of the pupa.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.