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389 results for “Lifetime”
Figure 2 from: Cassis G (2018) Henryhalticus philippinensis gen. et sp. n., a minute halticine from the Philippines (Insecta, Heteroptera, Miridae, Orthotylinae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 187-195. https://doi.org/10.3897/zookeys.796.21240
Figure 2 Scanning electron micrographs of key characters of Henryhalticusphilippinensis gen. et sp. n. A Dorsal view of body B Ventral view of body C Pronotum and scutellum D Lateroventral view of head and thorax E Pterothoracic pleura, incl. external efferent system of metathoracic glands F Metafemur and metatibia G Pretarsus, dorsal view H Genital opening of pygophore. Abbreviations: A = aedeagus; cu = cuneus; EA = evaporative area; HF = hind femur; L = labium; LP = left paramere; ms = mesoscutum; MTS = metathoracic spiracle; PA = parempodia; PE = peritreme; p = pronotum; RP = right paramere; s = scutellum.
Figures 2-7 from: Polhemus DA (2018) A new species and new records of Engytatus from the Hawaiian Islands (Heteroptera, Miridae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 97-106. https://doi.org/10.3897/zookeys.796.21054
Figures 2-7 Engytatushenryi sp. n., male genitalic structures. Specimen from Kaluaa Gulch, Waianae Mountains, Oahu. 2 Male terminal abdomen, right lateral view 3 Terminal processes on right side of male pygophore, right lateral view 4 Male right paramere, right lateral (outer) view 5 Male terminal abdomen, left lateral view 6 Male left paramere, right lateral (inner) view 7 Terminal process on left side of male pygophore, left lateral view.
Figure 8 from: Polhemus DA (2018) A new species and new records of Engytatus from the Hawaiian Islands (Heteroptera, Miridae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 97-106. https://doi.org/10.3897/zookeys.796.21054
Figure 8 Abutilonsandwicense, host plant for Engytatushenryi sp. n.; photograph taken at type-locality in middle Kaluaa Gulch, Waianae Mountains, Oahu.
Figure 1 from: Polhemus DA (2018) A new species and new records of Engytatus from the Hawaiian Islands (Heteroptera, Miridae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 97-106. https://doi.org/10.3897/zookeys.796.21054
Figure 1 Engytatushenryi sp. n., male, dorsal habitus photograph. Specimen from Kaluaa Gulch, Waianae Mountains, Oahu.
Figure 4 from: Ferreira PSF, Lopes JLB, Souza F, Ferreira LSF (2018) Atahualpacoris henryi, a new species of plant bug from Colombia (Heteroptera, Miridae, Mirini). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 175-185. https://doi.org/10.3897/zookeys.796.20801
Figure 4 Atahualpacorishenryi sp. n. male, holotype A endosoma a longer spicule with many flat spines b shorter sickle-shaped spicule c third spicule larger at base d membranous lobes with tiny teeth B left paramere C right paramere.
Figure 1 from: Henry TA, Townsend AH, Henderson K (2018) Thomas J Henry, as viewed by his son, daughter, and wife. In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 25-28. https://doi.org/10.3897/zookeys.796.21056
Figure 1 "Here you are the real hero. You are brave enough to hold a real chicken for Debbie to see." (Aunt Phyllis Henry, 1951).
Figures 12-18 from: Nakatani Y, Yasunaga T (2018) Two new deraeocorine plant bug species from Japan (Heteroptera, Miridae, Deraeocorinae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 163-174. https://doi.org/10.3897/zookeys.796.21243
Figures 12-18 Magnified images of Stethoconus species. 12–14 Heads and antennae 15–16 scutellum, lateral aspects 17–18 pleura 12, 15, 17S.japonicus13–14, 16, 18S.takaii.
Figures 1-10 from: Chérot F (2018) Miscellanea Miridologica V. Taxonomy and chorology of new or little known taxa of Continental New Guinea and neighboring islands (Insecta, Heteroptera, Miridae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 83-95. https://doi.org/10.3897/zookeys.796.20736
Figures 1-10 Gressitocorishenryi sp. n. female holotype. 1 Habitus in dorsal view 2 Head in dorsal view 3 Head in lateral view 4 Pronotal callosities 5 Pronotal disk in dorsal view 6 Scutellum in dorsal view 7 Endocorium and apex of clavi in dorsal view 8 Membrane and cunei in dorsal view 9 Left antenna: first antennal segment and base of the second 10 Evaporative area. Scale bar = 0.1 mm (except in Figs 1, 2 and 8, scale = 1.0 mm).
Figures 35-38 from: Wolski A, Gorczyca J, Yasunaga T, Jindra Z, Herczek A (2018) Taxonomic review of the bifenestratus species group of the genus Fulvius Stål with descriptions of two new species (Hemiptera, Heteroptera, Miridae, Cylapinae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 107-129. https://doi.org/10.3897/zookeys.796.21293
Figures 35-38 Scanning electron micrographs of Fulviustumidipennis. 35 Head (left lateral view) 36 Subdivision of labial segment II 37 Pronotum 38 Texture and vestiture of pronotum.
Figure 4 from: Schwartz MD (2018) Ilnacora henryi, a new species of plant bug from Mexico (Heteroptera, Miridae, Orthotylinae, Orthotylini). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 241-252. https://doi.org/10.3897/zookeys.796.21285
Figure 4 Ilnacorahenryi, scanning electron micrographs. A simple setae on edge of cuneus, lateral view B mesothoracic spiracle and metathoracic scent-efferent system, lateral view C pretarsus, frontal view D male genitalia, caudal view. Abbreviations: tp, tergal process; lp, left paramere; mspr, mesepimeron; mtpn, metepisternum; pe, parempodium; pul, pulvillus; rp, right paramere (ap – anterior process, fp – fan-shaped spine, pp – posterior process); ph, phallotheca; vm, ventral margin of pygophore.
Figure 8 from: Herczek A, Gorczyca J, Taszakowski A (2018) Sulawesimetopus henryi, a new genus and species of Isometopinae (Hemiptera, Heteroptera, Miridae) from Sulawesi. In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 147-161. https://doi.org/10.3897/zookeys.796.21273
Figure 8 Astroscopometopusgryllocephalus, male, ostiolar peritreme (A images taken by T. Yasunaga, courtesy of CSR Division, Hitachi Hig Male) BS.henryi, male, ostiolar peritreme.
Figures 19-24 from: Nakatani Y, Yasunaga T (2018) Two new deraeocorine plant bug species from Japan (Heteroptera, Miridae, Deraeocorinae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 163-174. https://doi.org/10.3897/zookeys.796.21243
Figures 19-24 Scanning electron micrographs of Fingulus species. 19–22F.henrytomi23–24F.takahashii19, 24 head and pronotum 20, 23 hemelytra 21 membrane 22 tarsal claw.
Figures 1-9 from: Wolski A, Gorczyca J, Yasunaga T, Jindra Z, Herczek A (2018) Taxonomic review of the bifenestratus species group of the genus Fulvius Stål with descriptions of two new species (Hemiptera, Heteroptera, Miridae, Cylapinae). In: Wheeler Jr AG (Ed.) A Festschrift Recognizing Thomas J. Henry for a Lifetime of Contributions to Heteropteran Systematics. ZooKeys 796: 107-129. https://doi.org/10.3897/zookeys.796.21293
Figures 1-9 Dorsal habitus photographs of bifenestratus group of species of the genus Fulvius: 1F.bifenestratus (♂) 2F.bimaculatus (♀) 3F.constanti (paratype) 4, 5F.flavicornis (4 ♂ 5 holotype); 6F.henryi (paratype, ♀) 7F.subnitens (♂) 8F.thailandicus (holotype) 9F.tumidipennis (paratype, ♂).
Data repository for the article: Fluorescence lifetime imaging unravels the pathway of glioma cell death upon hypericin-induced photodynamic therapy.
Open the record for dataset details and reuse information.
Data from: MHC diversity, malaria and lifetime reproductive success in collared flycatchers
Major Histocompatibility Complex (MHC) genes encode proteins involved in the recognition of parasite-derived antigens. Their extreme polymorphism is presumed to be driven by coevolution with parasites. Host-parasite coevolution was also hypothesised to optimize within-individual MHC diversity at the intermediate level. Here, we use unique data on lifetime reproductive success (LRS) of female collared flycatchers to test whether LRS is associated with within-individual MHC class II diversity. We also examined the association between MHC and infection with avian malaria. Using 454 sequencing, we found that individual flycatchers carry between 3 and 23 functional MHC class II B alleles. Predictions of the optimality hypothesis were not confirmed by our data as the prevalence of blood parasites decreased with functional MHC diversity. Furthermore, we did not find evidence for an association between MHC diversity and LRS.
Data from: Digit ratio predicts the number of lifetime recruits in female collared flycatchers
The early environment in which an organism grows can have long-lasting impact on both its phenotype and fitness. However, assessing this environment comprehensively is a formidable task. The relative length of the second to the fourth digit (2D:4D) is a broadly studied skeletal trait that is fixed for life during ontogeny. 2D:4D has been shown to indicate various early effects including the perinatal steroid milieu in both humans and non-human animals. However, the fitness relevance of the early effects indicated by 2D:4D remains unknown. Here, we investigated hindlimb 2D:4D and measures of lifetime performance in wild collared flycatcher (Ficedula albicollis) females. We found that females with higher 2D:4D had a greater number of recruiting offspring to the breeding population. This was the case despite the fact that such females did not lay more eggs or breed more times during their reproductive life. Our results support that 2D:4D, known to be a retrospective marker of perinatal development, positively associates with female quality in the collared flycatcher.
Data for "More intensive use and lifetime extension can enable net-zero emissions in China's cement cycle"
<p>Part of the data used and results in the paper "<em><strong>More intensive use and lifetime extension can enable net-zero emissions in China's cement cycle</strong></em>" published on the journal <em>Resources, Conservation, and Recycling</em>. </p>
Extra-pair paternity increases male lifetime fitness
<p>Data associated with the submitted manuscript - Extra-pair paternity increases male lifetime fitness</p>
Effects of OAGB and DJB-SG on 10-year and Lifetime Risks of MACE
ClinicalTrials.gov study NCT06254339. IPD Sharing: NO. Countries: 0. Publications: 3.
Melatonin Intervention For Neurocognitive Deficits in the St. Jude Lifetime Cohort
ClinicalTrials.gov study NCT01700959. IPD Sharing: Not stated. Countries: 1. Publications: 0.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.