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Figure 3 in Strategies for size and growth in butterflies (Insecta: Lepidoptera): counterintuitive trends and unique solutions to achieving maturity
Figure 3. Relationship of larval development time (logLDT2) to pupal size (logPS) in British butterflies. Families: triangles Hesperiidae, large circles Papilionidae, small circles Pieridae, diamonds Lycaenidae, large squares non-satyrine Nymphalidae, small squares Satyrinae; open symbols/continuous regression line, overwintering as eggs, pupae or adults; closed symbols/broken regression line, overwintering as larvae. Species: Carterocephalus palaemon Cpal; Thymelicus sylvestris Tsyl; Thymelicus lineola Tlin; Thymelicus acteon Tact; Hesperia comma Hcom; Ochlodes sylvanus Osyl; Erynnis tages Etag; Pyrgus malvae Pmal; Papilio machaon britannicus Pmac; Leptidea sinapis Lsin; Gonepteryx rhamni Grha; Colias croceus Ccro; Pieris brassicae Pbra; Pieris rapae Prap; Pieris napi Pnap; Anthocharis cardamines Acar; Callophrys rubi Crub; Thecla betulae Tbet; Favonius quercus Fque; Satyrium w-album Swal; Satyrium pruni Spru; Lycaena phlaeas Lphl; Lycaena dispar Ldis; Cupido minimus Cmin; Plebejus argus Parg; Aricia agestis Aage; Aricia artaxerxes Aart; Polyommatus icarus Pica; Polyommatus coridon Pcor; Polyommatus bellargus Pbel; Celastrina argiolus Carg; Maculinea arion Mari; Hamearis lucina Hluc; Limenitis camilla Lcam; Apatura iris Airi; Aglais urticae Aurt; Inachis io Iio; Polygonia c-album Pcal; Nymphalis polychloros Npol; Vanessa atalanta Vata; Vanessa cardui Vcar; Boloria selene Bsel; Boloria euphrosyne Beup; Argynnis adippe Aadi; Argynnis aglaja Aagl; Argynnis paphia Apap; Euphydryas aurinia Eaur; Melitaea cinxia Mcin; Melitaea athalia Math; Pararge aegeria Paeg; Lasiommata megera Lmeg; Erebia epiphron Eepi; Erebia aethiops Eaet; Melanargia galathea Mgal; Hipparchia semele Hsem; Pyronia tithonus Ptit; Maniola jurtina Mjur; Aphantopus hyperantus Ahyp; Coenonympha pamphilus Cpam; Coenonympha tullia Ctul.
Figure 2 in Strategies for size and growth in butterflies (Insecta: Lepidoptera): counterintuitive trends and unique solutions to achieving maturity
Figure 2. Co-inertia plot for variables associated with larval development times, growth rates and mature size in British butterflies. Active variables, black symbols; supplementary variables, open symbols. Numbers following variable names indicate state of variable (see Table 1). Variances: axis 1 73.3%, axis 2 18.7%.
Figure 1 in Strategies for size and growth in butterflies (Insecta: Lepidoptera): counterintuitive trends and unique solutions to achieving maturity
Figure 1. The triangular relationship linking mature larval size, average growth rates and development time. Larvae have some capacity of varying each of the three variables independently, increasing the options for independent growth scenarios and reducing the impact of trade-offs (antagonistic selection). Key drivers are shown as bold arrows with lesser influences shown as other arrows (continuous lines and broken lines). A selection of abiotic and biotic inputs compete for changes (+, −) between the three variables in the triangular association, which may also be driven by basic developmental adaptations (voltinism or number of broods, larval moults, number of larval instars, and the presence/absence of larval diapauses or larval overwintering); the impact of these variables, especially on development time, is complicated by whether development to full size (pre-pupal stage) has been completed or not by diapause. See Table 1 for variable names.
Figure 4 in Strategies for size and growth in butterflies (Insecta: Lepidoptera): counterintuitive trends and unique solutions to achieving maturity
Figure 4. Comparison of size and development times in families of British butterflies. Continuous line (pupal length, logPS); dashed line, development time (logLDT2). Means and 95% confidence limits. Papilionidae (Papilio machaon) excluded.
Figure 2 in Butterflies (Lepidoptera: Papilionoidea) of Mount Kilimanjaro: introduction and family Papilionidae
Figure 2. Mount Kilimanjaro: contour map showing boundaries of the National Park and Forest Reserve, climbing routes, and villages. (H. Kijja, TAWIRI.)
Figure 1 in Butterflies (Lepidoptera: Papilionoidea) of Mount Kilimanjaro: introduction and family Papilionidae
Figure 1. Location of Mount Kilimanjaro and its geographical position in relation to Tanzania and the Eastern Arc Mountains (reproduced from Wasser and Lovett 1993: p. 4, fig. 1.1, with permission from Cambridge University Press).
Figures 236–251 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 236–251. Pupae of the Aporiina from the Old World, showing dorsal and lateral views. (236–247) Delias from Australia; (236–237) D. ennia; (238–239) D. harpalyce; (240–241) D. nigrina; (242–243) D. aganippe; (244–245) D. argenthona; (246–247) D. nysa; (248–249) Aporia crataegi from Europe; (250–251) Mylothris agathina from Africa.
Figures 182–198 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 182–198. Catasticta flisa immature stages on Phoradendron undulatum, Monteverde (1500 m), Puntarenas Province, Costa Rica. (182–184) Eggs, showing cohort (182), lateral view (183), and colour several days after deposition, dorsolateral view (184); (185–186) larval instar I, showing newly emerged (185), and dorsolateral view (186); (187) larval instar II, cohort feeding; (188) larval instar III, cohort; (189) larval instar IV; (190–193) larva instar V, showing dorsolateral view (190), dorsal view (191), anterolateral view of head capsule (192), and posterior view (193); (194) prepupa, dorsolateral view; (195–198) pupa, showing lateral view (195), dorsal view (196), anterolateral view of projection of head (197), and posterior view of last abdominal segments (198).
Figures 162–181 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 162–181. Catasticta hegemon immature stages on Antidaphne viscoidea, Monteverde (1400 m), Puntarenas Province, Costa Rica. (162–164) Eggs, showing cohort (162), dorsolateral view (163), and lateral view (164); (165–166) larval instar I, showing newly emerged (165), and cohort after feeding (166); (167–168) larval instar II, showing cohort (167), and dorsolateral view (168); (169) larval instar III, cohort moulting; (170–171) larval instar IV, showing cohort (170), and anterior view (171); (172–175) larva instar V, showing lateral view after moulting (172), dorsolateral view (173), anterolateral view of head capsule (174), and posterolateral view (175); (176–177) prepupa, showing lateral view (176), and dorsal view (177); (178– 181) pupa, showing lateral view (178), dorsal view (179), anterolateral view of projection of head (180), and posterior view of last abdominal segments (181).
Figures 81–91. Pereute charops and P in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 81–91. Pereute charops and P. cheops immature stages, Costa Rica. (81–88) P. charops, Río Macho near Orosi (1150 m) and Cachí (1300 m), Cartago Province: (81–84) larval instar V, showing procession of cohort on host tree (81), diurnal aggregation of cohort on host tree together with cohort of instar III (82), cohort on Phoradendron undulatum (83), and tachinid fly parasitoid Trichophora (84); (85) prepupae, lateral view; (86–88) pupae, showing cohort on trunk of host tree (86), lateral view (87), and dorsal view (88); (89–91) P. cheops, Copey (1850 m), San José Province: larval instar V, showing dorsolateral view (89), diurnal aggregation of cohort in leaf litter (90), and diurnal aggregation of cohort at base of host tree (91).
Figures 109–125 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 109–125. Catasticta cerberus immature stages on Dendrophthora costaricensis, Cerro de la Muerte (3100 m), San José Province, Costa Rica. (109–111) Eggs, showing cohort (109), dorsolateral view (110), and lateral view (111); (112–113) larval instar I, showing newly emerged (112), and cohort (113); (114) larval instar II, cohort; (115) larval instar III, cohort moulting; (116) larval instar IV; (117–120) larval instar V, showing lateral view (117), dorsal view (118), anterior view of head capsule (119), and posterior view (120); (121) prepupa, lateral view; (122–125) pupa, showing dorsal view (122), lateral view (123), anterolateral view of projection of head (124), and posterolateral view of last abdominal segments (125).
Figures 64–80 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 64–80. Pereute charops immature stages on Phoradendron undulatum, Río Macho near Orosi (1150 m), Cartago Province, Costa Rica. (64–67) Eggs, showing cohort (64), dorsolateral view (65), lateral view (66), and hatching (67); (68–69) larval instar I, showing newly emerged cohort (68), and lateral view (69); (70–72) larval instar II, showing cohort (70–71), and dorsolateral view (72); (73–74) larval instar III, showing cohort (73), and lateral view (74); (75–76) larval instar IV, showing cohort (75), and dorsal view (76); (77–80) larva instar V, showing lateral view (77), dorsal view (78), anterior view of head capsule (79), and posterior view (80).
Figures 218–235 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 218–235. Pupae of the Catasticta group, showing dorsal and lateral views. (218–219) Melete isandra; (220–221) Pereute charops; (222–223) P. cheops; (224–225) Leodonta tellane; (226–227) Catasticta cerberus; (228–229) C. teutila; (230–231) C. sisamnus; (232–233) C. flisa; (234–235) C. ctemene. Note: Cuticle of L. tellane is clothed with numerous setae, which are not shown.
Figures 4–13 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 4–13. Adults of the Catasticta group. (4) Melete lycimnia isandra freshly emerged female, Costa Rica; (5) M. leucanthe male puddling, Peru; (6) Pereute callinice male puddling, Peru; (7) P. callinira male puddling, Peru; (8) P. cheops female freshly emerged, Costa Rica; (9) P. charops mass emergence, Costa Rica; (10) Leodonta tellane chiriquensis freshly emerged, Costa Rica; (11) Catasticta sisamnus sisamnus female freshly emerged, Costa Rica; (12) Archonias brassolis approximata male perching, Costa Rica; (13) A. brassolis negrina male basking (note beak mark on both wings), Peru. Note: Figure 9 photo, W. Haber.
Figure 252 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figure 252. Phylogeny of the subtribe Aporiina (Pierinae: Pierini) showing systematic relationships at the generic group level (Braby et al. 2007) and its putative sister lineage the Pierina, and the evolution of larval food plants (Braby and Trueman 2006). Notes: Evolution of life history traits are indicated for three characters: E, egg deposition pattern (0, singly; 1, clusters); L, larval foraging behaviour (0, solitary; 1, gregarious); A, adult colouration (0, cryptic; 1, warning; see Table 2); synapomorphies are shown on tree with the following derived character states: a, warning adult colouration; b, cluster egg deposition pattern; c, gregarious larval foraging behaviour.
Figures 24–33 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 24–33. Habitats and larval food plants of the Catasticta group. (24–25) Pereute callinira habitat, San Ramón (1400 m), Chanchamayo district, Peru; (26) P. cheops breeding habitat, showing larval food plant Phoradendron tonduzii parasitizing host tree Croton, Copey (1850 m), San José Province, Costa Rica; (27) P. cheops larval silken trail on trunk of mistletoe host tree Croton, Copey (1850 m), Costa Rica; (28–29) P. charops breeding habitat, Orosi Valley (1100–1200 m), Cartago Province, Costa Rica; arrows show cohort of pupal exuviae on trunk of mistletoe host tree (28) and location of cohort of larvae on trunk of mistletoe host tree Psidium guajava (29); (30) Phoradendron undulatum, a larval food plant of P. charops, Orosi Valley (1100m), Costa Rica; (31) Phoradendron chrysocladon, a larval food plant of Leodonta tellane, Monteverde (1500 m), Puntarenas Province, Costa Rica; (32–33) Leodonta tellane breeding habitat, Monteverde (1500 m), Costa Rica; arrows show location of cohort of larvae on trunk of mistletoe host tree Psidium guajava (32) and location of cohort of pupae on leaves of Clusia stenophylla growing adjacent to mistletoe host tree Conostegia oerstediana (33).
Figures 14–23 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 14–23. Adults of the Catasticta group. (14) Catasticta reducta boliviana male puddling, Peru; (15) C. prioneris male puddling, dorsal view showing red patches at base of each hind wing being "displayed", Peru; (16) C. eurigania straminea male puddling, Peru; (17) C. hegemon hegemon male perching at encounter site, Costa Rica; (18) C. teutila flavomaculata male basking on rock between drinking bouts along creek edge, Costa Rica; (19) C. teutila flavomaculata female feeding from flowers of Ageratina ixiocladon, Costa Rica; (20) C. teutila flavomaculata male freshly emerged, Costa Rica; (21) C. theresa male puddling, Costa Rica; (22) C. cerberus male freshly emerged, Costa Rica; (23) puddling aggregation of Catasticta, Archonias and Pereute amongst other diurnal Lepidoptera, Peru.
Figures 92–108 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 92–108. Leodonta tellane immature stages on Phoradendron chrysocladon, Monteverde (1500 m), Puntarenas Province, Costa Rica. (92–94) Eggs, showing cohort (92), lateral view (93), and hatching (94); (95–96) larval instar I, showing cohort (95), and dorsolateral view (96); (97–98) larval instar II, showing cohort (97), and lateral view (98); (99) larval instar III, cohort; (100) larva instar IV, lateral view; (101–103) larval instar V, showing cohort (101), anterolateral view of head capsule (102), and posterior view (103); (104) prepupa, lateral view; (105– 108) pupa, showing lateral view (105), dorsal view (106), anterolateral view of projection of head (107), and posterior view of last abdominal segments (108).
Figures 199–217 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 199–217. Catasticta ctemene immature stages on Antidaphne viscoidea, Monteverde (1400 m), Puntarenas Province, Costa Rica. (199–200) Larval instar II, showing cohort moulting (199), and dorsolateral view (200); (201–203) larval instar III, showing cohort (201), dorsal view (202), and lateral view (203); (204–206) larval instar IV, showing cohort dorsal view (204), cohort lateral view (205), and anterior view showing head capsule (206); (207–210) larval instar V, showing lateral view (207), dorsal view of head capsule and prothorax (208), lateral view of head capsule and thoracic segments (209), and posterolateral view (210); (211–212) prepupa, showing posterior view (211), and dorsolateral view (212); (213–216) pupa, showing lateral view (213), dorsal view (214), anterolateral view of projection of head (215), and posterolateral view of last abdominal segments (216); (217) freshly emerged female.
Figures 145–161 in The immature stages, larval food plants and biology of Neotropical mistletoe butterflies (Lepidoptera: Pieridae). II. The Catasticta group (Pierini: Aporiina)
Figures 145–161. Catasticta sisamnus immature stages on Antidaphne viscoidea, Río Macho, Orosi Valley (1150 m), Cartago Province, Costa Rica. (145–147) Eggs, showing cohort (145), dorsolateral view (146) and lateral view (147); (148–149) larval instar I, showing newly emerged cohort (148), and cohort several days after feeding (149); (150–151) larval instar II, showing cohort (150), and dorsolateral view (151); (152) larval instar III, cohort moulting; (153–155) larval instar IV, showing dorsal view of head and thoracic segments (153), dorsal view of last abdominal segments (154), and anterior view of head capsule (155); (156) larva instar V and prepupae, dorsal view; (157) prepupa, lateral view; (158–161) pupa, showing lateral view (158), dorsal view (159), anterolateral view of projection of head (160), and posterior view of last abdominal segments (161).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.