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FIGURE 14. Male genitalia. a, f, l, r in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 14. Male genitalia. a, f, l, r. Endosoma (dorsal view); b, h, n. Endosoma (ventral view); g, m. Endosoma (right lateral view); c, i, o, s. Left paramere (right lateral view). d, j, p, t. Left paramere (dorsal view). e, k, q, u. Right paramere (left lateral view). a–e. Peltidocylapus rugosus; f–k. Peltidocylapus scutellaris; l–k. Peltidocylapus simplex; r–u. Peltidocylapus spinosus. dss = distal part of ductus seminis inside endosoma. Scale bars 0.2 mm.
FIGURE 17. Female genitalia. a, c, g, j in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 17. Female genitalia. a, c, g, j, Bursa copulatrix (dorsal view); b. Bursa copulatrix (ventral view); d, k. Bursa copulatrix (dorsal view, with ventral labiate plate and seminal depository dissected); e, i, m. Ventral labiate plate and seminal depository (ventral view, with remainder of bursa copulatrix dissected); f, h, l. Bursa copulatrix (ventral view, with ventral labiate plate and seminal depository dissected). a, b. Cylapus marginicollis; c–f. Cylapus ruficeps; g–i. Cylapus tenuicornis; j–m. Cylapus tucuruiensis. dlp = dorsal labiate plate; odl = lateral oviduct; sd = seminal depository; sg = spermathecal gland; sr = sclerotized ring; vlp = ventral labiate plate.
FIGURE 12. Male genitalia. a, d, g, j, p in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 12. Male genitalia. a, d, g, j, p. Endosoma (dorsal view); b, e, h, m, s. Left paramere (right lateral view). c, f, i, o, u. Right paramere (left lateral view); n, t. Left paramere (dorsal view). k, q. Transparent portion of distal sclerotized portion of ductus seminis inside endosoma; l, r. Endosoma (ventral view). a–c. Cylapinus minusculus; d–f. Cylapinus yasunagai; g–i. Cylapoides unicolor; j–o. Peltidocylapus calyciformis; p–u. Peltidocylapus caudatus. ap = apical process; bp = basal process; dss = distal part of ductus seminis inside endosoma; pb = paramere body; sl = sensory lobe. Scale bars 0.2 mm.
FIGURE 2 in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 2. Strict consensus tree obtained from two most parsimonious trees using implied weighting of characters (k=3). Numbers of nodes are in circles. Non–homoplastic changes in character states are represented with black circles, homoplastic changes with white circles. Symmetric resampling supports (SRS) are indicated below branches.
FIGURE 10. Scanning electron micrographs. a in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 10. Scanning electron micrographs. a. Pronotum (left lateral view); b–h. Thoracic pleura; i–m. Metatarsus. n, o. Pretarsal claw. a. Valdasus schoechnerri; b. Amapacylapus amapariensis; c, i. Cylapus tenuicornis; d. Peltidocylapus scutellaris; e, j. Valdasus henryi; f. Bothriomiris dissimulans; g. Cylapocoris sp.; h. Psallops sp.; k, o. Vannius sp.; l. Fulvius sp.; m. Cylapocoris sp.; n. Cylapinus minusculus.
FIGURE 5. Dorsal habitus photographs. a in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 5. Dorsal habitus photographs. a. Peltidocylapus nubilus (lectotype); b. Peltidocylapus pallidus (holotype); c. Peltidocylapus parallelus (holotype); d. Peltidocylapus picatus (holotype); e. Peltidocylapus politus (holotype).
FIGURE 6. Dorsal habitus photographs. a in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 6. Dorsal habitus photographs. a. Peltidocylapus rugosus (lectotype); b. Peltidocylapus scutellaris (♂, Costa Rica); c. Peltidocylapus simplex (holotype); d. Peltidocylapus spinosus (holotype).
FIGURE 1. Strict consensus tree obtained from 12 in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 1. Strict consensus tree obtained from 12 most parsimonious trees under equal weights. Bremer support values are indicated below branches.
FIGURE 4. Dorsal habitus photographs. a in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 4. Dorsal habitus photographs. a. Peltidocylapus calyciformis (paratype, ♂); b. Peltidocylapus caudatus (holotype); c. Peltidocylapus cerbereus (lectotype); d. Peltidocylapus ecuadorensis (holotype); e. Peltidocylapus festinabundus (♀, Peru).
FIGURE 9. Scanning electron micrographs. a–f in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 9. Scanning electron micrographs. a–f. Head and pronotum (left lateral view); g–i. Head (anterior view); j, k. Labium; l. Body (left lateral view). a. Valdasus flavinotum; b, h. Corcovadocola sp.; c, i. Vannius podager; d, k. Bothriomiris dissimulans; e. Fulvius pallens; f. Rhinomiris sp.; g. Valdasus schoechnerri; j. Cylapus tenuicornis Say; l. Cylapocoris sp..
FIGURE 8 in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 8. Head and pronotum, anterior (a–j, l, m) and lateral (k) views. a. Cylapinus yasunagai (paratype); b. Cylapoides unicolor (♀); c. Cylapus ruficeps Bergroth (♂); d. Cylapus tenuicornis (♂); e. Peltidocylapus calyciformis (paratype); f. Peltidocylapus caudatus (paratype); g. Peltidocylapus rugosus (holotype); h. Peltidocylapus simplex (paratype); i. Cylapomorpha sp. (♂); j, k. Vanniusoides clypeatus (paratype); l. Fulvius pallens (♂); m. Rhinocylapus vittatus (♀).
FIGURE. (A) Summary phylogeny showing relations between genera in tribe Phyllantheae from Bayesian and Maximum Likelihood analysis of five markers (ITS, PHYC, accD–psaI, trnS–trnG, matK), modified from Appendix 1. Classification is shown of genera (right column), subgenera (middle column) and sections (except for the genus Phyllanthus. Sections not included in phylogenetic analyses and those for the genus Flueggea were omitted. (B) summary phylogeny of the genus Phyllanthus as envisioned here with subgenera and sections of groups included in phylogenetic studies shown. in A revised phylogenetic classification of tribe Phyllantheae (Phyllanthaceae)
FIGURE. (A) Summary phylogeny showing relations between genera in tribe Phyllantheae from Bayesian and Maximum Likelihood analysis of five markers (ITS, PHYC, accD–psaI, trnS–trnG, matK), modified from Appendix 1. Classification is shown of genera (right column), subgenera (middle column) and sections (except for the genus Phyllanthus. Sections not included in phylogenetic analyses and those for the genus Flueggea were omitted. (B) summary phylogeny of the genus Phyllanthus as envisioned here with subgenera and sections of groups included in phylogenetic studies shown.
Machine learning-based pulse wave analysis for classification of circle of Willis topology: an in silico study with 30,618 virtual subjects (database: Missing ACoA)
<p>This repository contains the dataset for the Missing ACoA described in the article with the same name. MATLAB and Python codes for post-processing the dataset and the code for training and testing all machine learning models using the open-source library TensorFlow 2.12, the Keras application programming interface, and the Scikit-learn Python package can be found in here (<a href="https://zenodo.org/records/12519322" target="_blank" rel="noopener">https://zenodo.org/records/12519322</a>).</p>
Machine learning-based pulse wave analysis for classification of circle of Willis topology: an in silico study with 30,618 virtual subjects (database:Missing PCoA)
<p>This repository contains the dataset for the Missing PCoA described in the article with the same name. MATLAB and Python codes for post-processing the dataset and the code for training and testing all machine learning models using the open-source library TensorFlow 2.12, the Keras application programming interface, and the Scikit-learn Python package can be found in here (<a href="https://zenodo.org/records/12519322" target="_blank" rel="noopener">https://zenodo.org/records/12519322</a>).</p>
Machine learning-based pulse wave analysis for classification of circle of Willis topology: an in silico study with 30,618 virtual subjects (database: Missing PCoA and PCA P1)
<p>This repository contains the dataset for the Missing PCoA and PCA P1 described in the article with the same name. MATLAB and Python codes for post-processing the dataset and the code for training and testing all machine learning models using the open-source library TensorFlow 2.12, the Keras application programming interface, and the Scikit-learn Python package can be found in here (<a href="https://zenodo.org/records/12519322" target="_blank" rel="noopener">https://zenodo.org/records/12519322</a>).</p>
Machine learning-based pulse wave analysis for classification of circle of Willis topology: an in silico study with 30,618 virtual subjects (database: Missing ACA A1)
<p>This repository contains the dataset for the Missing ACA A1 described in the article with the same name. MATLAB and Python codes for post-processing the dataset and the code for training and testing all machine learning models using the open-source library TensorFlow 2.12, the Keras application programming interface, and the Scikit-learn Python package can be found in here (<a href="https://zenodo.org/records/12519322" target="_blank" rel="noopener">https://zenodo.org/records/12519322</a>).</p>
Machine learning-based pulse wave analysis for classification of circle of Willis topology: an in silico study with 30,618 virtual subjects (database: Missing PCoAs)
<p>This repository contains the dataset for the Missing PCoAs described in the article with the same name. MATLAB and Python codes for post-processing the dataset and the code for training and testing all machine learning models using the open-source library TensorFlow 2.12, the Keras application programming interface, and the Scikit-learn Python package can be found in here (<a href="https://zenodo.org/records/12519322" target="_blank" rel="noopener">https://zenodo.org/records/12519322</a>).</p>
Application of Sequential Analysis on Runtime Behavior for Ransomware Classification
<p>This is the data used to create the dataset for ransomware</p>
FIGURE 3. The 50 in Classification of the Relhania generic group (Asteraceae, Gnaphalieae) revisited using molecular phylogenetic analysis
FIGURE 3. The 50% majority-rule consensus trees of the MrBayes posterior sample from the molecular (left) and morphological (right) analyses. Numbers at nodes indicate clade support (parsimony bootstrap│ Bayesian posterior probability), with only bootstrap values ≥ 75 % and posterior probabilities ≥ 0.95 being shown. Black dots indicate species placed outside of the named, morphologically-coherent groups indicated by shaded boxes (see text). Patterned shading indicates morphological groupings that receive no support. Node labels are the same in the two trees, although where the species composition of each clade differs by one or more species, the prime symbol (′) is appended to the clade label.
FIGURE 4. The 50 in Classification of the Relhania generic group (Asteraceae, Gnaphalieae) revisited using molecular phylogenetic analysis
FIGURE 4. The 50% majority-rule consensus of the MrBayes posterior tree sample based on DNA sequence data combined with morphological characters. Numbers at nodes indicate parsimony bootstrap│ Bayesian posterior probabilities that are ≥ 75 % and ≥ 0.95, respectively. Shaded boxes indicate morphologically-coherent, well-supported clades mentioned in the text. Asterisks indicate species whose phylogenetic placement is unsupported.
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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.