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13,397 results for “sp. nov.”
FIGURE 9 in Perlodinella mazehaoi sp. nov., a new species of Perlodidae (Plecoptera) from Inner Mongolia of China
FIGURE 9. Perlodinella mazehaoi sp. nov., female paratype, A. abdominal sterna, ventral view; B. terminalia, ventral view; small posterior lobes of subgenital plate indicated with black arrowheads; C. egg, lateral view.
FIGURE 5 in Perlodinella mazehaoi sp. nov., a new species of Perlodidae (Plecoptera) from Inner Mongolia of China
FIGURE 5. Perlodinella mazehaoi sp. nov., terminalia of male holotype before NaOH treatment, A. dorsal view; B. lateral view; C. ventral view; the anterior unpigmented area of sternum 8 indicated by white arrowhead.
FIGURE 2 in Perlodinella mazehaoi sp. nov., a new species of Perlodidae (Plecoptera) from Inner Mongolia of China
FIGURE 2. Perlodinella mazehaoi sp. nov. A. habitus of brachypterous male holotype, dorsal view; B. habitus of macropterous male paratype, dorsal view; C. habitus of female paratype, dorsal view.
FIGURE 3 in Perlodinella mazehaoi sp. nov., a new species of Perlodidae (Plecoptera) from Inner Mongolia of China
FIGURE 3. Perlodinella mazehaoi sp. nov. A. head and pronotum of male holotype, dorsal view; B. head and thorax of male holotype, ventral view; C. head and pronotum of female paratype, dorsal view.
FIGURE 9 in A review of Peruvian diving beetles of the genus Hydaticus Leach, 1817, with description of Hydaticus (Prodaticus) panguana sp. nov. and notes on other Neotropical species (Coleoptera: Dytiscidae)
FIGURE 9. Habitats of H. panguana sp. nov. and H. lateralis (A), and H. subfasciatus and H. lateralis (B) in Panguana, Huànuco, Peru. Shallow and temporary forest pool with rotten leaves and wooden debris (A), and Aguajal forest pond (B).
FIGURES 4–7 in A review of Peruvian diving beetles of the genus Hydaticus Leach, 1817, with description of Hydaticus (Prodaticus) panguana sp. nov. and notes on other Neotropical species (Coleoptera: Dytiscidae)
FIGURES 4–7. Median lobe of aedeagus in dorsal (A) and lateral view (B): H. panguana sp. nov. (4), H. lateralis (5), H. subfasciatus (6), and H. xanthomelas (7). Scale bar = 1 mm.
X-ray microtomography volume rendering of the antennae of Baltelater bipectinatus gen. et sp. nov., holotype, 6685 (MAIG).
<p>X-ray microtomography volume rendering of the antennae of <em>Baltelater bipectinatus </em>gen. et sp. nov. from Eocene Baltic amber, holotype, 6685 (MAIG).</p>
X-ray microtomography volume rendering of the habitus of Baltelater bipectinatus gen. et sp. nov., holotype, 6685 (MAIG).
<p>X-ray microtomography volume rendering of the habitus of <em>Baltelater bipectinatus </em>gen. et sp. nov. from Eocene Baltic amber, holotype, 6685 (MAIG).</p>
X-ray microtomography volume rendering of the aedeagus of Baltelater bipectinatus gen. et sp. nov., holotype, 6685 (MAIG).
<p>X-ray microtomography volume rendering of the aedeagus of <em>Baltelater bipectinatus </em>gen. et sp. nov. from Eocene Baltic amber, holotype, 6685 (MAIG).</p>
Detailed description of the new genus and speceis, Cretophengodes azari Li, Kundrata, Tihelka and Cai sp. nov.
<p><span>Bioluminescent beetles of the superfamily Elateroidea (fireflies, fire beetles, glow-worms) are the most speciose group of terrestrial light-producing animals. The evolution of bioluminescence in elateroids is associated with unusual morphological modifications, such as soft-bodiedness and neoteny, but the fragmentary nature of the fossil record discloses little about the origin of these adaptations. We report the discovery of a new bioluminescent elateroid beetle family from the mid-Cretaceous of northern Myanmar (<i>ca</i>. 99 Ma), Cretophengodidae fam. nov. <i>Cretophengodes azari</i> gen. et sp. nov. belongs to the bioluminescent lampyroid clade, and represents a transitional fossil linking the soft-bodied Phengodidae + Rhagophthalmidae clade and hard-bodied elateroids. The fossil male possesses a light organ on the abdomen which presumably served a defensive function, documenting a Cretaceous radiation of bioluminescent beetles coinciding with the diversification of major insectivore groups such as frogs and stem-group birds. The discovery adds a key branch to the elateroid tree of life and sheds light on the timing of the evolution of soft-bodiedness and historical biogeography of elateroid beetles.</span></p>
................................................................................................................................................. Fig. 3. SDSPAGE analysis of total bacterial protein extracts of the four roe deer isolates as well as other Bartonella species. Extracts of total bacterial protein were separated by SDSPAGE and stained with Coomassie brilliant blue. Lanes: M, molecular mass markers; 1, R1T; 2, R3; 3, R4; 4, R6; 5, Bartonella henselae; 6, Bartonella quintana; 7, Bartonella bacilliformis; 8, Bartonella elizabethae; 9, Bartonella clarridgeiae; 10, Bartonella alsatica; 11, Bartonella tribocorum; 12, Bartonella grahamii. in Bartonella schoenbuchii sp. nov., isolated from the blood of wild roe deer.
................................................................................................................................................. Fig. 3. SDSPAGE analysis of total bacterial protein extracts of the four roe deer isolates as well as other Bartonella species. Extracts of total bacterial protein were separated by SDSPAGE and stained with Coomassie brilliant blue. Lanes: M, molecular mass markers; 1, R1T; 2, R3; 3, R4; 4, R6; 5, Bartonella henselae; 6, Bartonella quintana; 7, Bartonella bacilliformis; 8, Bartonella elizabethae; 9, Bartonella clarridgeiae; 10, Bartonella alsatica; 11, Bartonella tribocorum; 12, Bartonella grahamii.
................................................................................................................................................. Fig. 5. Phylogenetic tree based on 16S rRNA sequences (a) and gltA sequences (b) showing the position of strains R1T, R3, R4 and R6 in relation to the known Bartonella spp. The tree was rooted by using Brucella abortus (a) and Sinorhizobium meliloti (b) as the outgroup. in Bartonella schoenbuchii sp. nov., isolated from the blood of wild roe deer.
................................................................................................................................................. Fig. 5. Phylogenetic tree based on 16S rRNA sequences (a) and gltA sequences (b) showing the position of strains R1T, R3, R4 and R6 in relation to the known Bartonella spp. The tree was rooted by using Brucella abortus (a) and Sinorhizobium meliloti (b) as the outgroup.
FIGURES 85–88 in New or rare Madagascar tiger beetles-18. Pogonostoma (Pogonostoma) ondravybirali sp. nov., elaborated redescriptions of P. (P.) atrorotundatum, P. (P.) densisculptum and P. (Microstenocera) fabiocassolai (Coleoptera: Cicindelidae)
FIGURES 85–88. Pogonostoma (Microstenocera) fabiocassolai Moravec. 85–87—habitus: 85—♁, 5.45 mm, Sandranantitra, HT (FCCR); 86—♁, 5.6 mm, Andasibe-Perinet (CJVB); 87—♀, ibid. (CJVB); 88—male aedeagus, ibid. (CJVB). Bars = 1 mm.
FIGURES 89–103 in New or rare Madagascar tiger beetles-18. Pogonostoma (Pogonostoma) ondravybirali sp. nov., elaborated redescriptions of P. (P.) atrorotundatum, P. (P.) densisculptum and P. (Microstenocera) fabiocassolai (Coleoptera: Cicindelidae)
FIGURES 89–103. Pogonostoma (M.) fabiocassolai Moravec. 89–90—elytral apices: 89—♁, Andasibe-Perinet (CJVB); 90—♀, ibid.; 91–92—elytron: 91—♁, ibid.; 92—♀, ibid.; 93—head, ♀, ibid. 94–95—mandibles: 94—♀, ibid.; 95—♁, ibid.; 96–99—pronotum: 96—♁, Sandranantitra, HT (FCCR); 97–98—♁, Andasibe-Perinet (CJVB); 99—♀, ibid.; 100–103—la- brum: 100–102—♁, ibid.; 103——♀, ibid. Bars = 1 mm.
FIGURES 104–107 in New or rare Madagascar tiger beetles-18. Pogonostoma (Pogonostoma) ondravybirali sp. nov., elaborated redescriptions of P. (P.) atrorotundatum, P. (P.) densisculptum and P. (Microstenocera) fabiocassolai (Coleoptera: Cicindelidae)
FIGURES 104–107. Maps of distribution. 104—Pogonostoma (Pogonostoma) ondravybirali sp. nov.; 105—Pogonostoma (P.) atrorotundatum W. Horn; 106—Pogonostoma (P.) densisculptum Moravec; 107—Pogonostoma (Microstenocera) fabiocassolai Moravec.
FIGURES 73–79 in New or rare Madagascar tiger beetles-18. Pogonostoma (Pogonostoma) ondravybirali sp. nov., elaborated redescriptions of P. (P.) atrorotundatum, P. (P.) densisculptum and P. (Microstenocera) fabiocassolai (Coleoptera: Cicindelidae)
FIGURES 73–79. Pogonostoma (P.) densisculptum Moravec. 73–74—elytral apices: 73—♁, Ambohitantely (CCJM); 74—♀, 10.7 mm, Manankazo, HT (temporarily in CCJM); 75–76—elytron: 75—♁, Ambohitantely (CCJM); 76—♀, HT; 77—ae- deagus, ibid.; 78—the same aedeagus without parameres; 79—ditto, ventral view. Bars = 1 mm.
FIGURES 50–54 in New or rare Madagascar tiger beetles-18. Pogonostoma (Pogonostoma) ondravybirali sp. nov., elaborated redescriptions of P. (P.) atrorotundatum, P. (P.) densisculptum and P. (Microstenocera) fabiocassolai (Coleoptera: Cicindelidae)
FIGURES 50–54. Pogonostoma (P.) atrorotundatum W. Horn, pronotum. 50—♁, "C. W. Madagascar", LT (SDEI); 51—♁, ibid., PLT (SDEI); 52—♁, Antsalova (CCJM ex APCA); 53—♁, Bongolava, HT of syn. P. (P.) rufidens Rivalier (MNHN); 54—♀, Antsalova (CCJM). Bars = 1 mm.
FIGURES 21–29 in New or rare Madagascar tiger beetles-18. Pogonostoma (Pogonostoma) ondravybirali sp. nov., elaborated redescriptions of P. (P.) atrorotundatum, P. (P.) densisculptum and P. (Microstenocera) fabiocassolai (Coleoptera: Cicindelidae)
FIGURES 21–29. Pogonostoma (P.) ondravybirali sp. nov. (from type locality), male aedeagus or its apex. 21—HT (SDEI); 22—ditto, ventral view; 23—PT (CJVB); 24—ditto, dorsal view; 25—ditto, ventral view; 26—PT (CCJM); 27—ditto, ventral view; 28—PT (CJVB); 29—ditto, ventral view. Bar = 1 mm.
FIGURES 17–20 in New or rare Madagascar tiger beetles-18. Pogonostoma (Pogonostoma) ondravybirali sp. nov., elaborated redescriptions of P. (P.) atrorotundatum, P. (P.) densisculptum and P. (Microstenocera) fabiocassolai (Coleoptera: Cicindelidae)
FIGURES 17–20. Pogonostoma (P.) ondravybirali sp. nov. (from type locality), pronotum. 17—♁, HT (SDEI); 18—♀, AT (CJVB); 19—♁, PT (CJVB) 20—ditto, lateral view. Bars = 1 mm.
FIGURE 2 in Frenopyxis stierlitzi gen. nov., sp. nov.-new testate amoeba (Amoebozoa Arcellinida) from the urban parks with notes on the systematics of the family Centropyxidae Jung, 1942
FIGURE 2. Scanning electron microscopic image of Frenopyxis stierlitzi: a–d—ventral views, e—dorsal view. Scale bars: a–e—10 µm, f—5 µm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.