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Figures 75- 76 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 75- 76 - Neobonzia key illustrations 75a Sensilla at and pt clavate, short, length less than the width of the proterosomal shield 75b Sensilla at and pt clavate, long, length greater than the width of the proterosomal shield 75c Sensilla at and pt normal, not clavate 76a Coxae I–II nearly touching medially 76b Coxae I–II widely separated medially.
Figure 2 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figure 2 - Setal types. Relative sizes will vary within a given setal type 2a Attenuate solenidion (asl) 2b Blunt rod-like solenidion (bsl) 2c Elongate, tri-pronged famulus (fam), as seen in Dactyloscirus 2d Famulus (fam), as seen in the majority of cunaxids 2e Duplex setae - microseta (mst) and attenuate solenidion 2f Spine-like seta (spls) 2g Simple tactile seta (sts) 2h Trichobothrium (T).
Figure 1 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figure 1 - Examples of cunaxids in ethanol illustrating how they would appear while sorting. 1a Armascirus 1b Cunaxa 1c Pulaeus 1d Parabonzia 1e Coleoscirus 1f Neobonzia.
Figures 61-62 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 61-62 - Dactyloscirus key illustrations. 61a–h Pedipalp genu and tibiotarsus with adjoining apophysis present 61i Close up of bifid claw 62a–d Pedipalp genu and tibiotarsus with adjoining apophysis absent 62e Close up of trifid claw.
Figures 70-74 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 70-74 - Coleoscirus key illustrations. 70 Dorsal idiosomal shield with horizontal reticulations present 71 Gnathosoma with extensive reticulations present 72a Sternal plate rounded posteriomedially, indentation absent 72b Sternal plate rounded posteriomedially, indentation present 72c Sternal plate truncated posteriomedially 73a Dorsal idiosomal shield even sclerotized, light reticulation present 73b Dorsal idiosomal shield unevenly sclerotized, light reticulation absent 74a Integumental dots on legs forming rows 74b Integumental dots on legs random.
Figures 90- 91 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 90- 91 - Scutascirus key illustrations. 90a (after Corpuz-Raros and Garcia 1996). Pedipalp with tubercle not branched 90b (after Den Heyer 1980b). Pedipalp tibiotarsus with bifurcate tubercle positioned halfway along the length of the segment 90c (after Den Heyer 1980b). Pedipalp tibiotarsus with bifurcate tubercle positioned on distal third of segment 90d (after Lin et al. 2001). Pedipalp tibiotarsus with trifurcate tubercle 90a (after Den Heyer 1980b). Four pairs of dorsolateral hysterosomal plates present 91b (after Corpuz-Raros and Garcia 1996). Five pairs of dorsolateral hysterosomal plates present.
Figures 9-11 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 9-11 - Bonzia key illustrations. 9a Setose tibial trichobothrium 9b Smooth tibial trichobothrium 10a Spiculate dorsal setae 10b Smooth dorsal setae 11a Close up of a spiculate seta 11b Close up of a smooth seta.
Figures 35-39 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 35-39 - Pulaeus illustrations. 35 Genital setae in a row 36–39 Pulaeus key illustrations 36, 37 Venter, setae removed for clairity 36a Coxae I–II not coalesced medially, median platelet present 36b Coxae I–II not coalesced medially, median platelet absent 37a Coxae I–II coalesced medially, median platelet present 37b Coxae I–II coalesced medially, median platelet absent 38a Dorsal shield with punctures 38b Dorsal shield with broken striae 39a–c Pedipalp tibiotarsus 39a Tibiotarsus with elongate apophysis 39b Tibiotarsus with flat apophysis 39c Tibiotarsus with flange-like apophysis.
Figures 56-60 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 56-60 - Cunaxa key illustrations. 56a, b Integumental striations 57a Chelicera with longitudinal striations present 57a Chelicera with longitudinal striations absent 58a–f Examples of variation in the hysterosomal median plate 59a Pedipalp telofemoral apophysis uncinated 59b Pedipalp telofemoral apophysis truncated 59c Pedipalp telofemoral apophysis short and cone-like 59d Pedipalp telofemoral apophysis short and finger-like 59e Pedipalp telofemoral femoral apophysis long 60a Pedipalp tibiotarsus with small teeth present 60b Pedipalp tibiotarsus with small teeth absent.
Figures 3-6 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 3-6 - a. dorsal. b. ventral. 3 3-segmented pedipalp (Cunaxoidinae) 4 4-segmented pedipalp (Scirulinae) 5 5-segmented pedipalp that does not extend beyond the subcapitulum by more than the distal half of the genua (Bonziinae, Coleoscirinae, and Orangescirulinae) 6 5-segmented pedipalp that reaches beyond the subcapitulum by at least the distal half of the genua (Cunaxinae).
Figures 66-69 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 66-69 - Cunaxoidinae key illustrations. 66a–d Idiosoma, dorsal. Position of setae will vary between species. 67a–d Idiosoma, ventral 66a, 67a Generalized Scutascirus. Presence, position, and extent of lateral plates will vary between species 66b, 67b Generalized Coleoscirus 66c, 67c Generalized Pseudobonzia 66d, 67d Generalized Neobonzia 68a Scutascirus pedipalp tibiotarsus, arrow indicates bifurcate tubercle 68b Coleoscirus pedipalp tibiotarsus, arrow indicates plan tubercle 69a Neoscirula pedipalps with short, cone-like tibiotarsus 69b Pseudobonzia and Neobonzia pedipalps with elongate, s-shaped tibiotarsus.
Figures 88- 89 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 88- 89 - Pseudobonzia key illustrations 88a Pedipalp basifemur and telofemur with spine-like setae on both segments 88b Pedipalp basifemur and telofemur with simple setae on both segments 88c Pedipalp with simple seta on basifemur, spine-like seta on telofemur 89a Proterosomal plate convex posteriomedially 89b Proterosomal plate not convex posteriomedially.
Figures 49-53 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 49-53 - Armascirus key illustrations. 49–51 Dorsal idiosoma 49a–e Hysterosomal shield complemented with setae 50a–d Hysterosomal shield small, not complemented with setae 51a–c Hysterosomal shield absent 52a, b Pedipalp tibiotarsal claw 52a Single claw 52b Bifid claw 53a Hysterosomal plate concave on lateral edges 53b Hysterosomal plate not concave on lateral edges.
Figures 46-48 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 46-48 - Cunaxinae key illustrations. 46 Pedipalps, dorsal 46a Rubroscirus 46b Riscus 46c Allocunaxa 46d Cunaxatricha 46e Cunaxa 46f Armascirus 46g Dactyloscirus. 47a, b. Distal end of tarsus 47a Armascirini, showing large tarsal lobes 47b Cunaxini, showing small to medium tarsal lobes 48a–c Idiosoma, dorsal. Setae and cupules have been removed for clairity. Shape of proterosomal plate and presence or absence, shape, and extent of hysterosomal plate(s) will differ between species 48a Plates smooth 48b Plates with dot-like pattern 48c Plates with reticulated pattern.
Figures 40-44 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figures 40-44 - Scutopalus key illustrations. 40a Coxae I–II faintly divided 40b Coxae I–II totally divided 41 Coxae I–II fused medially 42 Dorsal shield with thick, rod-like setae present 43 Dorsal shield smooth or punctate 44a Dorsal shield rugose 44b Dorsal shield reticulate 44c Dorsal shield sparsely granulate 45a Setae mps, c1, c2, d1, e1, f1 clavate 45b Setae mps, c1, c2, d1, e1, f1 setiform 46 Setae lps, mps, c1, c2, d1, e1, f1 set on tubercles.
Figure 8 from: Skvarla M, Fisher J, Dowling A (2014) A review of Cunaxidae (Acariformes, Trombidiformes): Histories and diagnoses of subfamilies and genera, keys to world species, and some new locality records. ZooKeys 418: 1-103. https://doi.org/10.3897/zookeys.418.7629
Figure 8 - Bonziinae key illustrations. 8a Telofemoral branched seta present in Bonziinae 8b Bonzia 8c Parabonzia.
Figures 53-60 from: Wells A, Johanson KA (2015) Review of New Caledonian species of Oxyethira Eaton, with description of 17 new species, and new records for Hydroptila Dalman and Hellyethira Neboiss (Trichoptera, Hydroptilidae). ZooKeys 530: 37-90. https://doi.org/10.3897/zookeys.530.6047
Figures 53-60 - Oxyethira species male genitalia. 53, 54 Oxyethira enigmatica sp. n., ventral and lateral views 55–57 Oxyethira melasma Kelley, ventral and lateral views, and phallic apparatus, drawn from holotype 58–60 Oxyethira nehoue sp. n., ventral view, phallic apparatus and lateral view. Abbreviations: gon = gonopod; sp = subgenital process; st lb = setose lobe of subgenital process; VIII, IX = abdominal segments VIII and IX.
Figures 44-52 from: Wells A, Johanson KA (2015) Review of New Caledonian species of Oxyethira Eaton, with description of 17 new species, and new records for Hydroptila Dalman and Hellyethira Neboiss (Trichoptera, Hydroptilidae). ZooKeys 530: 37-90. https://doi.org/10.3897/zookeys.530.6047
Figures 44-52 - Oxyethira species male genitalia. 44–46 Oxyethira rougensis sp. n., ventral and lateral views and phallic apparatus 47–49 Oxyethira mouirange sp. n., ventral view, phallic apparatus and lateral view 50–52 Oxyethira ouenghica sp. n., phallic apparatus, ventral and lateral views. Abbreviations: gon = gonopod; sp = subgenital process; st lb = setose lobe of subgenital process; VIII, IX = abdominal segments VIII and IX.
Figures 13-22 from: Wells A, Johanson KA (2015) Review of New Caledonian species of Oxyethira Eaton, with description of 17 new species, and new records for Hydroptila Dalman and Hellyethira Neboiss (Trichoptera, Hydroptilidae). ZooKeys 530: 37-90. https://doi.org/10.3897/zookeys.530.6047
Figures 13-22 - Oxyethira species male genitalia. 13–15 Oxyethira incurvata sp. n., ventral view, phallic apparatus and lateral view. 16–18 Oxyethira caledoniensis Kelley: 16 ventral view of holotype specimen drawn from holotype 17, 18 ventral and later al views of variant form 19–22 Oxyethira arok Oláh & Johanson: 19 ventral view drawn from paratype specimen 20–22 ventral and lateral views and phallic apparatus of variant form. Abbreviations: gon = gonopod; r sp = rod of subgenital process; st lb = setose lobe of subgenital process; VIII, IX = abdominal segments VIII and IX.
Figures 110-113 from: Wells A, Johanson KA (2015) Review of New Caledonian species of Oxyethira Eaton, with description of 17 new species, and new records for Hydroptila Dalman and Hellyethira Neboiss (Trichoptera, Hydroptilidae). ZooKeys 530: 37-90. https://doi.org/10.3897/zookeys.530.6047
Figures 110-113 - Maps of New Caledonia, with collecting sites plotted for Hydroptilidae species. 110 Oxyethira incana 111 Oxyethira macropennis sp. n. 112 Hydroptila losida sp. n. 113 Hellyethira malleoforma.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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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.