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FIGURES 4 10 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 4 10. Mandibles of workers and pseudoworkers. 4. Kalotermitidae: Eucryptotermes breviceps; 5. Rhinotermitidae: Heterotermes tenuis; 6. Termitidae: Apicotermitinae: Anoplotermes banksi; 7. Termitidae: Nasutitermitinae: Nasutitermes aquilinus; 8. Termitidae: Nasutitermitinae: Cyranotermes timuassu; 9. Termitidae: Termitinae: Neocapritermes villosus; 10. Termitidae: Termitinae: Spinitermes longiceps.
FIGURES 82 90 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 82 90. Termitidae: Nasutitermitinae, soldiers. 82 83. Noirotitermes noiroti; 84 85. Armitermes holmgreni; 86. Rhynchotermes nasutissimus, forecoxa; 87 88. idem, head; 89 90. Macuxitermes triceratops, major soldier. (scale bars = 0.5 mm)
FIGURES 149 157 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 149 157. Termitidae: Termitinae, soldiers. 149 150. Amitermes amifer; 151 152. Onkotermes brevicorniger; 153 154. Cylindrotermes parvignathus; 155 156. Microcerotermes strunckii; 157. Gnathamitermes tubiformans. (scale bars = 0.5 mm)
FIGURES 1 3 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 1 3. External morphology of soldiers (hairs omitted). 1. Soldier of Syntermes wheeleri in dorsal view; 2. idem, head in ventral view; 3. soldier of Nasutitermes in lateral view.
FIGURES 58 71 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 58 71. Termitidae: Nasutitermitinae, soldiers. 58 59. Syntermes nanus; 60 61. Syntermes aculeosus; 62 63. Paracornitermes orthocephalus; 64. Cornitermes cumulans, foretibia; 65. Procornitermes araujoi, foretibia; 66 67. Labiotermes brevilabius. 68 69. Cornitermes cumulans; 70 71. Procornitermes araujoi. (scale bars = 0.5 mm)
FIGURES 41 49. Rhinotermitidae, soldiers. 41 42 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 41 49. Rhinotermitidae, soldiers. 41 42. Coptotermes testaceus; 43 44. Heterotermes tenuis; 45. Glossotermes oculatus; 46 47. Prorhinotermes simplex; 48 49. Reticulitermes flavipes. (scale bars = 0.5 mm)
FIGURES 113 124 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 113 124. Termitidae: Nasutitermitinae, soldiers. 113 114. Angularitermes clypeatus; 115 116. Coendutermes tucum; 117 118. Tenuirostritermes sp.; 119 120. Caetetermes taquarussu; 121 122. Obtusitermes sp., major soldier; 123 124. idem, minor soldier. (scale bars = 0.5 mm)
FIGURES 178 185 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 178 185. Termitidae: Termitinae, soldiers. 178 179. Hoplotermes sp.; 180 181. Genuotermes spinifer; 182 183. Orthognathotermes humilis; 184 185. Dentispicotermes globicephalus. (scale bars = 0.5 mm)
FIGURES 137 148 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 137 148. Termitidae: Nasutitermitinae, soldiers. 137 138. Convexitermes convexifrons; 139 140. Agnathotermes crassinasus; 141 142. Coatitermes clevelandi; 143 144. Araujotermes parvellus; 145 146. Antillitermes subtilis; 147 148. Subulitermes baileyi. (scale bars = 0.5 mm)
FIGURES 168 177 in An illustrated key to Neotropical termite genera (Insecta: Isoptera) based primarily on soldiers
FIGURES 168 177. Termitidae: Termitinae, soldiers. 168 169. Termes medioculatus; 170 171. Cavitermes tuberosus; 172 173. Crepititermes verruculosus; 174 175. Inquilinitermes inquilinus. 176 177. Spinitermes longiceps. (scale bars = 0.5 mm)
Illustrative dataset for the article: Vieira, R., McDonald, S., Araujo-Soares, V., Sniehotta, F., Henderson, R. (2017) "Dynamic modelling of n-of-1 data: Powerful and flexible data analytics applied to individualised studies"
<p>This dataset is supplementary material of the manuscript "Dynamic modelling of n-of-1 data: Powerful and flexible data analytics applied to individualised studies. McDonald et al. (2016) presents a series of novel n-of-1 studies that intended to explore the relationship between physical activity change during the retirement transition. The file contains the data of one participant. The column names correspond to the following variables:</p> <p>time: duration of follow-up (minutes);<br> minute: time of day (hours and minutes);<br> day_num: day since beginning of follow-up (the first two days were considered as adaptation phase and therefore removed); <br> PAscore: accelerometer raw score; <br> startBout: 1 (a bout of PA was initiated in this minute) or 0 (a bout of PA wasn't <br> initiated in this minute); <br> nPAbouts_day: number of PA bouts per day; <br> nPAbouts_day.l1: number of PA bouts in previous day (lag 1); <br> nPAbouts_day.l2: number of PA bouts two day before (lag 2); <br> nBoutsLast2hours: number of PA bouts in previous 2 hours; <br> retirement: 0 (before retirement) or 1 (after retirement)<br> weekday: 0 (workday) or 1 (weekend)<br> sleepLength: number of hours of sleep last night<br> sleepLength.l1: number of hours of sleep the night before<br> sleepLength.l2: number of hours of sleep two nights before<br> pers: personalised measure of partner's influence (scale 0-1)<br> periodDay: morning, evening or afternoon</p> <p>McDonald, S., Vieira, R., O'Brien, N., White, M., & Sniehotta, F. F. (2016). Does physical activity and sedentary behavior change during the retirement transition? Findings from a series of novel n-of-1 natural experiments. <em>International Journal of Behavioral Medicine, 23</em>, S261-S261.</p> <p> </p>
Dataset for illustrative examples using the Lagrangian Atmospheric moisTure and heaT trackINg (LATTIN) tool
<p>This dataset provides the FLEXPART outputs for the illustrative examples of LATTIN usage. See the LATTIN GitHub repository (https://github.com/apalarcon/LATTIN) for details.</p><p>It was generated using FLEXPART model v9 fed by ERA-Interim reanalysis at the Environmental Physics Laboratory (EPhysLab) at the University of Vigo. See the list of publications of the EPhysLab research group for details on these simulations (https://ephyslab.uvigo.es/moisturetransport/index.php/Publications). </p>
Fig. 10 in Overview of the ant genus Vollenhovia (Hymenoptera, Formicidae) in India and Sri Lanka, with an illustrated key and the description of a new species
Fig. 10. Vollenhovia taylori Rilta, Dhadwal & Bharti, 2023, holotype worker from India (PUAC T728, photographer: Himender Bharti). A. Head, full face view. B. Habitus, lateral view. C. Habitus, dorsal view. D. Type locality.
Fig. 9 in Overview of the ant genus Vollenhovia (Hymenoptera, Formicidae) in India and Sri Lanka, with an illustrated key and the description of a new species
Fig. 9.Vollenhovia pfeifferi Bharti, Dhadwal & Rilta, 2023, worker from India (PUAC0018, photographer: Shahid Ali Akbar). A. Head, full face view. B. Habitus, lateral view. C. Habitus, dorsal view. D. Periyar Tiger Reserve, Kerala, collection site.
Fig. 7.Vollenhovia oblonga laevithoraxEmery, 1889 in Overview of the ant genus Vollenhovia (Hymenoptera, Formicidae) in India and Sri Lanka, with an illustrated key and the description of a new species
Fig. 7.Vollenhovia oblonga laevithoraxEmery, 1889. Syntype worker from Myanmar (CASENT0904539, photographer: Zach Lieberman). A. Head, full face view. B. Habitus, lateral view. C. Habitus, dorsal view. D. Forest trail on Andaman Islands, collection site.
Fig. 2. Vollenhovia escherichi Forel, 1911 in Overview of the ant genus Vollenhovia (Hymenoptera, Formicidae) in India and Sri Lanka, with an illustrated key and the description of a new species
Fig. 2. Vollenhovia escherichi Forel, 1911, syntype worker from Sri Lanka (CASENT0908656, photographer: Will Ericson). A. Head, full face view. B. Habitus, lateral view. C. Habitus, dorsal view. D. Typical forest habitat of Peradeniya, Sri Lanka.
Fig. 5 in Overview of the ant genus Vollenhovia (Hymenoptera, Formicidae) in India and Sri Lanka, with an illustrated key and the description of a new species
Fig. 5. Vollenhovia keralensis Kripakaran & Sadasivan, 2022, worker from India (PUAC0026, photographer: Shahid Ali Akbar). A. Head, full face view. B. Habitus, lateral view. C. Habitus, dorsal view. D. Type locality.
Fig. 3 in Overview of the ant genus Vollenhovia (Hymenoptera, Formicidae) in India and Sri Lanka, with an illustrated key and the description of a new species
Fig. 3. Vollenhovia gastropunctata Bharti & Kumar, 2013, holotype worker from India (PUAC0045, photographer: Rakesh Kumar). A. Head, full face view. B. Habitus, lateral view. C. Habitus, dorsal view. D. Type locality of the species.
Fig. 14 in Overview of the ant genus Vollenhovia (Hymenoptera, Formicidae) in India and Sri Lanka, with an illustrated key and the description of a new species
Fig. 14. Characters used in the identification key. A. Mesosoma dorsum with a smooth and shiny central area (holotype worker of V. terayamai). B. Mesosoma dorsum dorsally entirely sculptured (holotype worker of V. taylori). C, E. Head with broad median smooth band with postpetiole narrower and dorsally smooth (holotype worker of V. terayamai). D, F. Head entirely sculptured with wider postpetiole, dorsally sculptured (holotype worker of V. yasmeenae sp. nov.). G–H. Mandible with 7 teeth, mesopleuron transversely striate (holotype worker of V. mawrapensis). I–J. Mandible with 6 teeth, mesopleuron coarsely punctuate (holotype worker of V. taylori).
Fig. 4 in Overview of the ant genus Vollenhovia (Hymenoptera, Formicidae) in India and Sri Lanka, with an illustrated key and the description of a new species
Fig. 4. Vollenhovia karimalaensis Dhadwal, Rilta & Bharti, 2023, holotype worker from India (PUAC T701, photographer: Himender Bharti). A. Head, full face view. B. Habitus, lateral view. C. Habitus, dorsal view. D. Type locality.
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.