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88 results for “Cardiocondyla”
FIGURE 5 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 5. NC-Ward clustering of 88 samples of the remaining species of the Cardiocondyla mauritanica species complex after exclusion of C. mauritanica. The upper of the two main branches belongs to C. itsukii sp. nov., the lower one to the other two species of the complex. The left column of bars indicates the two main branches of mtDNA haplotyping, the median column the final clustering hypothesis for K=2 (C. itsukii sp. nov. vs. not C. itsukii sp. nov.) determined by a controlling linear discriminant function (LDA), and the right column of bars the classification by non-hierarchical NC-K-Means clustering. The classification errors in in NC-Ward and NC-K-Means are 3.4% and 1.1% respectively. The agreement of mtDNA and all three NUMOBAT analyses is 100% on the K=2 level.
FIGURE 4 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 4. NC-Ward clustering of 149 samples of the Cardiocondyla mauritanica species complex. The upper of the two main branches belongs to C. mauritanica Forel, the lower one to the remaining three species of the complex. The left column of bars indicates the final clustering hypothesis for K=2 (C. mauritanica vs. not C. mauritanica) determined by a controlling linear discriminant function (LDA), the right column of bars the classification by non-hierarchical NC-K-Means clustering. The classification errors in in NC-Ward and NC-K-Means are 0.7% and 0% respectively.
FIGURE 6 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 6. NC-Ward clustering of 45 samples of the two remaining species of the Cardiocondyla mauritanica species complex after exclusion of other species in the previous steps. The upper of the two main branches belongs to C. kagutsuchi Terayama, the lower one to C. strigifrons Viehmeyer. The left column of bars indicates the two sub-clusters of mtDNA haplotyping (cluster C red, cluster AB black), the median column the final clustering hypothesis for K=2 (C. kagutsuchi vs. C. strigifrons) determined by a controlling linear discriminant function (LDA), and the right column of bars the classification by non-hierarchical NC-K-Means clustering. The agreement between all three NUMOBAT methods is 100% whereas mtDNA haplotyping deviates from this classification in 12% of the samples.
Data for manuscript:"Chronic exposure to sublethal levels of pesticides has significant effects on fitness and morphology in the ant, Cardiocondyla obscurior"
<p>All data used in analysis for manuscript "<strong>Chronic exposure to sublethal levels of pesticides has significant effects on fitness and morphology in the ant, <em>Cardiocondyla obscurior"</em></strong></p> <p> </p> <p> </p>
FIGURE 144 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURE 144. Separation of individual workers of Cardiocondyla gibbosa (black rhombs) and C. koshewnikovi (white squares), C. rolandi n. sp. (white triangles) and C. stambuloffii (white circles) by a principal component analysis considering the morphometric characters CS, CL/CW, SL/CS, PoOc/CS, EYE/CS, dFOV, SP/CS, PeW/CS, PpW/CS, PeH/CS, PpH/CS, sqPDG, PLG/CS and MGr/CS.
FIGURES 101–104 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 101–104. Cardiocondyla tibetana, paratype; Fig. 101: head in dorsal view; Fig. 102: lateral view (flipped horizontally); Fig. 103: dorsal view; Fig. 104: head surface between inner eye margin and paramedian vertex (flipped horizontally). China: Tarim: Ceele Station, 1966.08.26
FIGURE 143 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURE 143. Separation of nest samples of Cardiocondyla stambuloffii (green bars), C. rolandi n. sp. (red bars) and C. koshewnikovi (black bars) by NC-Ward, NC-part.hclust, NC-part.kmeans, NC-NMDS.kmeans clustering and a principal component analysis considering 13 NUMOBAT characters. The mean classification error of the five exploratory data analyses relative to the controlling linear discriminant analysis is 0%. The white bar indicates an outlier in NC-part.hclust.
FIGURE 137 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURE 137. Separation of nest samples of Cardiocondyla bulgarica (black bars) from a combined cluster of C. sahlbergi and C. persiana (red bars) by NC-Ward, NC-part.hclust, NC-part.kmeans, NC-NMDS.kmeans clustering and a principal component analysis. The white bar indicates an outlier in NC-part.hclust. The mean classification error of the four exploratory data analyses relative to the controlling linear discriminant analysis is 0.45%. All 17 available NUMOBAT characters were processed without character selection.
FIGURES 86–89 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 86–89. Cardiocondyla stambuloffii; Fig.86: head in dorsal view; Fig. 87: lateral view (flipped horizontally); Fig. 88: dorsal view; Fig. 89: head surface between inner eye margin and paramedian vertex. Georgia: river Podshori, 2010.08.27
FIGURES 82–85. Cardiocondyla verdensis n in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 82–85. Cardiocondyla verdensis n. sp., holotype; Fig. 82: head in dorsal view; Fig. 83: lateral view; Fig. 84: dorsal view; Fig. 85: head surface between inner eye margin and paramedian vertex. Cape Verde: Sao Nicolao, 2003.07.21
FIGURE 133 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURE 133. Separation of nest samples of Cardiocondyla elegans (grey bars) and C. dalmatica (black bars) by NC-Ward, NC-part.hclust, NC-part.kmeans and NC-NMDS.kmeans clustering. White bars indicate outliers in NC-part.hclust. The mean classification error of the four exploratory data analyses relative to the controlling linear discriminant analysis is 1.2%. Fourteen phenotypic characters were considered. The bimodality within both species' clusters represents an intraspecific dimorphism (Seifert 2016).
FIGURES 114–117 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 114–117. Cardiocondyla fajumensis; Fig. 114: head in dorsal view; Fig. 115: lateral view; Fig. 116: dorsal view; Fig. 117: head surface between inner eye margin and paramedian vertex. Egypt: Hurghada, 2008.04.16
FIGURES 98–100 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 98–100. Cardiocondyla gibbosa, lectotype; Fig. 98 head in dorsal view; Fig. 99: lateral view; Fig. 100: dorsal view. Kazakhstan: Suzak, 1923.07.03
FIGURES 70–73 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 70–73. Cardiocondyla kushanica, paratype; Fig. 70: head in dorsal view; Fig. 71: lateral view (flipped horizontally); Fig. 72: dorsal view; Fig. 73: head surface between inner eye margin and paramedian vertex. Afghanistan: Darountah, 1958.01.21
FIGURES 62–65 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 62–65. Cardiocondyla opistopsis, holotype; Fig. 62: head in dorsal view; Fig. 63: lateral view (flipped horizontally); Fig. 64: dorsal view; Fig. 65: head surface between inner eye margin and paramedian vertex. Kuweit: Burgan, 1988
FIGURES 58–61 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 58–61. Cardiocondyla semirubra, paratype; Fig. 58: head in dorsal view; Fig. 59: lateral view; Fig. 60: dorsal view; Fig. 61: head surface between inner eye margin and paramedian vertex. Turkey: Sanliurfa-20 km S, 1993.06.12
FIGURES 42–45 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 42–45. Cardiocondyla bulgarica; Fig. 42: head in dorsal view; Fig. 43: lateral view; Fig. 44: dorsal view; Fig. 45: head surface between inner eye margin and paramedian vertex. Bulgaria: Burgas-7 km S, 2003.09.30
FIGURES 118–121 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 118–121. Cardiocondyla unicalis, holotype; Fig. 118: head in dorsal view; Fig. 119: lateral view; Fig. 120: dorsal view; Fig. 121: head surface between inner eye margin and paramedian vertex. Iran: Ma'amulam, 1973.08.06
FIGURES 50–53 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 50–53. Cardiocondyla persiana, paratype; Fig. 50: head in dorsal view; Fig. 51: lateral view; Fig. 52: dorsal view; Fig. 53: head surface between inner eye margin and paramedian vertex. Iran: Shiraz-7 km NE, 1997.09.18
FIGURES 38–41 in A revision of the Palaearctic species of the ant genus Cardiocondyla Emery 1869 (Hymenoptera: Formicidae)
FIGURES 38–41. Cardiocondyla israelica; Fig. 38: head in dorsal view; Fig. 39: lateral view (flipped horizontally); Fig. 40: dorsal view; Fig. 41: head surface between inner eye margin and paramedian vertex. Egypt: Ebn Salam Mansora, 2002.11.07
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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
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