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FIGURES 13–20 in The Pselaphinae (Coleoptera: Staphylinidae) of New Caledonia and Loyalty Islands. II. Revision of the tribe Tyrini Reitter, 1882
FIGURES 13–20. Aedeagus of Tyrini, dorsal (13, 15, 17, 19) and lateral (14, 16, 18, 20) aspects. 13, 14—Anagonus fracticornis Fauvel; 15, 16—Caledonogonus loebli sp. nov.; 17, 18—C. pilosus sp. nov. (parameres missing); 19, 20—Paranagonus excavatus sp. nov. Scale bar 0.2 mm.
FIGURES 2–7 in The Pselaphinae (Coleoptera: Staphylinidae) of New Caledonia and Loyalty Islands. II. Revision of the tribe Tyrini Reitter, 1882
FIGURES 2–7. Habitus photos of Tyrini. 2—Anagonus fracticornis Fauvel; 3—A. breviscapus sp. nov.; 4—A. spinipalpis sp. nov.; 5—Caledonogonus loebli sp. nov.; 6—C. pilosus sp. nov.; 7—Paranagonus excavatus sp. nov.
From Satisfaction to Loyalty: User-perceived Security of Biometric-Based Authentication Methods
<p>While Indonesia has experienced an increase in e-payment systems, phishing attacks that result in the loss of PINs and other sensitive data remain a critical issue for users. Biometric authentication, which identifies individuals based on unique physical traits like fingerprints and facial recognition, is a promising alternative to mitigating these issues. This study explores the factors influencing user satisfaction and continuous use of biometric authentication mechanisms employed in e-payment applications, thereby filling a prominent void in user-centric studies related to this context. Using purposive sampling and structural equation modeling, data were collected from 285 respondents in Indonesia, consisting of biometric-authentication users aged 13 to over 54, between April and July 2024. Eight hypotheses were tested, examining privacy and security risks, system quality, trust, perceived usefulness, self-efficacy, satisfaction, and continuous use. The findings show that trust and perceived usefulness significantly impact satisfaction, which subsequently influences continuous usage. Additionally, system quality and self-efficacy are important factors shaping user perceptions and adoption behavior. The findings from this research provide key insights for e-payment developers, emphasizing the importance of designing systems with strong security, ease of use, and reliable performance to enhance satisfaction and trust. Biometric authentication has the potential to increase public confidence and adoption of biometric technologies, not only in e-payment systems but also in other areas such as e-health and e-commerce. This study lays the groundwork for future research on biometric technologies across broader locations and contexts.</p>
Distribution. New Guinea, Admiralty Is (Manus), Bismarck Archipelago (New Britain and New Ireland Is), Louisiade Archipelago (Trobriand, Woodlark, and Misima Is), Solomon Is (Choiseul, New Georgia, Mbanika, and San Cristobal), Vanuatu Is, and New Caledonia (including Loyalty Is). in Miniopteridae
Distribution. New Guinea, Admiralty Is (Manus), Bismarck Archipelago (New Britain and New Ireland Is), Louisiade Archipelago (Trobriand, Woodlark, and Misima Is), Solomon Is (Choiseul, New Georgia, Mbanika, and San Cristobal), Vanuatu Is, and New Caledonia (including Loyalty Is).
Distribution. New Caledonia (Grande Terre), with acoustic records across much of the island; also one from the nearby Loyalty Is (Lifou), but presence there needs confirmation. in Vespertilionidae
Distribution. New Caledonia (Grande Terre), with acoustic records across much of the island; also one from the nearby Loyalty Is (Lifou), but presence there needs confirmation.
On following pages: 3. Small Long-fingered Bat (Miniopterus pusillus); 4. Intermediate Long-fingered Bat (Miniopterus medius); 5. Ryukyu Long-fingered Bat (Miniopterus fuscus); 6. Eschscholtz's Long-fingered Bat (Miniopterus eschscholtzil); 7. Philippine Long-fingered Bat (Miniopterus paululus); 8. Great Long-fingered Bat (Miniopterus tristis); 9. Shortridge's Long-fingered Bat (Miniopterus shortridgel); 10. Javanese Long-fingered Bat (Miniopterus blepotis); 11. Little Long-fingered Bat (Miniopterus australis); 12. Small Melanesian Long-fingered Bat (Miniopterus macrocneme); 13. Loyalty Long-fingered Bat (Miniopterus robustior); 14. Australian Long-fingered Bat (Miniopterus orianae); 15. Pallid Long-fingered Bat (Miniopterus pallidus); 16. Schreibers's Long-fingered Bat (Miniopterus schreibersii); 17. Maghrebian Long-fingered Bat (Miniopterus maghrebensis). in Miniopteridae
On following pages: 3. Small Long-fingered Bat (Miniopterus pusillus); 4. Intermediate Long-fingered Bat (Miniopterus medius); 5. Ryukyu Long-fingered Bat (Miniopterus fuscus); 6. Eschscholtz's Long-fingered Bat (Miniopterus eschscholtzil); 7. Philippine Long-fingered Bat (Miniopterus paululus); 8. Great Long-fingered Bat (Miniopterus tristis); 9. Shortridge's Long-fingered Bat (Miniopterus shortridgel); 10. Javanese Long-fingered Bat (Miniopterus blepotis); 11. Little Long-fingered Bat (Miniopterus australis); 12. Small Melanesian Long-fingered Bat (Miniopterus macrocneme); 13. Loyalty Long-fingered Bat (Miniopterus robustior); 14. Australian Long-fingered Bat (Miniopterus orianae); 15. Pallid Long-fingered Bat (Miniopterus pallidus); 16. Schreibers's Long-fingered Bat (Miniopterus schreibersii); 17. Maghrebian Long-fingered Bat (Miniopterus maghrebensis).
Subspecies and Distribution. P.o.ornatusJ.E.Gray,1870—NewCaledo-nia(GrandeTerre,IledesPins). P. o. auratus K. Andersen, 1909 — Loyalty Is (Lifou I, Maré), New Caledonia. in Pteropodidae
Subspecies and Distribution. P.o.ornatusJ.E.Gray,1870—NewCaledo-nia(GrandeTerre,IledesPins). P. o. auratus K. Andersen, 1909 — Loyalty Is (Lifou I, Maré), New Caledonia.
Subspecies and Distribution. P.t.tonganusQuoy&Gaimard,1830—Fiji,WallisandFutunaIs,Samoa,AmericanSa-moa,Tonga,NiueI,andCookIs(MangaiaandRarotonga). P.t.basiliscusThomas,1915—KoilandKarkarIs,offNEcoastofNewGuinea. P. t. geddiei MacGillivray, 1860 -- Solomon Is (Malaita, Rennell, and Makira), Santa Cruz Is, Vanuatu, New Caledonia, and Loyalty Is. in Pteropodidae
Subspecies and Distribution. P.t.tonganusQuoy&Gaimard,1830—Fiji,WallisandFutunaIs,Samoa,AmericanSa-moa,Tonga,NiueI,andCookIs(MangaiaandRarotonga). P.t.basiliscusThomas,1915—KoilandKarkarIs,offNEcoastofNewGuinea. P. t. geddiei MacGillivray, 1860 -- Solomon Is (Malaita, Rennell, and Makira), Santa Cruz Is, Vanuatu, New Caledonia, and Loyalty Is.
Dataset The Importance of Interface Design and Security Awareness in Improving Service Quality and Its Impact on Digital Customer Loyalty of Smart Mobile Banking
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Exploring the Multidimensional Impact of Organizational Incentives on the Loyalty of Returned Overseas Faculty: An SEM and Random Forest Analysis
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FIGURE 20 in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 20. SEM images of Actinozonella texturata. A, dorsal aspect; B, ventral aspect; C, dorsal arm; D, ventral arm; E, dorsolateral arm; F, oral plate (half-jaw), abradial aspect; G, oral plate, adradial aspect; H, dental plate, external; I, dental plate, internal; J, proximal vertebra, proximal face; K, proximal vertebra, lateral aspect; L, proximal vertebra, distal face and dorsal; M, proximal lateral arm plate, external; N, proximal lateral arm plate, internal; O, spine articulations on lateral arm plate; P, ar m spine, showing articulation; Q, distal lateral arm plate external; R, distal, lateral arm plate internal; S, abradial genital plate; T, distal vertebra, dorsal; U, radial shield, internal. Oral plates and radial shield orientated with distal end left, dental plates with dorsal side up. Scale bars in millimetre.
FIGURE 15 in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 15. SEM images of Ophionereis degeneri, 4.5 mm disk diameter. A, dorsal aspect; B, dorsal interradius; C, dorsal arm; D, lateral arm; E, ventral aspect; F, ventral arm; G, dental plate, external; H, dental plate, internal; I, oral plate, abradial; J, oral plate, adradial; K, proximal lateral arm plate, external; L, proximal lateral arm plate, internal; M–O, proximal vertebra; M, distal face; N, proximal face; O, dorsal; P, radial shield, internal. Dental plates orientated with dorsal end up; oral plates with distal end to the left; radial shield with proximal end to the left. Scale bars in millimetre.
FIGURE 13 in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 13. SEM images of Amphiodia (Amphispina) loripes. A, habitus; B, dorsal aspect; C, radial shields with spiny processes; D, dorsal arm; E, ventral aspect; F, ventral arm; G, genital slits and ventral aspect of radial shield processes, H, arm spines. Scale bars in millimetre.
FIGURE 10. SEM images, A–I, Amphiophiura confecta. A in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 10. SEM images, A–I, Amphiophiura confecta. A, dorsal aspect; B, interadial disk dorsolateral aspect; C, dorsal arm; D, lateral arm; E, ventral aspect; F, oral details; G, ventral arm; H, arm spine articulation on lateral plate; I, dorsal arm spine. J– O, Amphiophiura distincta. J, dorsal aspect; K, dorsal arm, L, ventral aspect; M, oral details; N, ventral arm; O, arm lateral aspect. Scale bars in millimetre.
FIGURE 17 in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 17. SEM images of Ophiocomidae. A, B, Ophiocoma erinaceus, dental plate; A, external, B, internal. C, D, Ophiocoma schoenleinii, dental plate; C, external, D, internal. E–K, Ophiocomella sexradia, F–H, J, large arm; E, dorsal aspect; F, dorsal arm proximal; G, dorsal arm distal; H, lateral arm; I, ventral aspect; J, ventral arm; K, small, regenerating arm. L, M, Ophiocoma pusilla, L, dorsal aspect; M, ventral aspect. Dental plates orientated with dorsal end up. Scale bars in millimetre.
FIGURE 11. A–C, Amphiophiura insolita. A in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 11. A–C, Amphiophiura insolita. A, dorsal aspect; B, ventral aspect; C, proximal lateral arm. D, Ophiopallas paradoxa, arm spines. Scale bars in millimetre.
FIGURE 1 in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 1. Collecting stations at Lifou, New Caledonia (NE of Australia), during the expedition "Atelier Lifou 2000". Open circles indicate dredging, closed circles diving. For details see Table 1.
FIGURE 8. A, B in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 8. A, B, Ophiomoeris exuta sp. nov., holotype MNHN IE-2009-9207, prior to SEM preparation; A, dorsal aspect; B, oral frame and ventral arm. C–E, Ophiomoeris cf. obstricta; C, dorsal aspect; D, jaw details; E, dorsal arm. F, Ophiomitrella granulosa, spotted form, dorsal aspect. Scale bars 1 mm.
FIGURE 7 in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 7. SEM images of Ophiochondrus variospinus holotype, MNHN IE-2009-9206. A, dorsal aspect; B, dorsal arm, note the large spine on the first joint; C, articulation of large spine on first joint; D, articulation of other spines; E, oral frame; F, ventral interradius with bursal slits; G, ventral arm; H, disk granules. Scale bars in millimetre.
FIGURE 19. SEM images, A–J, Ophiozonella projecta. A in New records and new species of Ophiuroidea (Echinodermata) from Lifou, Loyalty Islands, New Caledonia
FIGURE 19. SEM images, A–J, Ophiozonella projecta. A, dorsal aspect; B, dorsal arm, note the triplet of plates at the arm base; C, ventral aspect; D, ventrolateral arm; E, arm spine, articulating end; F, spine articulation on lateral arm plate; G, proximal vertebra, proximal face; H, proximal vertebra, lateral aspect; I, proximal vertebra, distal face; J, proximal lateral arm plate, internal aspect. K–L, Ophiozonella longispina. K, spine articulations on lateral arm plate; L, arm spine, articulating end; M, distal vertebra, lateral aspect. Scale bars in millimetre.
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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.