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757 results for “twinning”
FIGURE 10 in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 10. Shell aperture details of the Hemicycla consobrina specimen in different views (A–D), showing the "small callosity" (yellow arrows) and the form "obtusément triangulaire" described by Mousson. A. Aperture accurately in plane view.
FIGURE 11. Genital system. A in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 11. Genital system. A. Hemicycla fulgida sp. nov., paratype from El Bailadero. B. Hemicycla invernicata from Montaña Cabeza de Toro. C. Hemicycla consobrina from Guamasa; ri, ring zone.
FIGURE 8. Shells from Tenerife. A in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 8. Shells from Tenerife. A. Hemicycla fulgida sp. nov., holotype. B. Hemicycla invernicata from Montaña Cabeza de Toro pine forest, near Las Lagunetas (La Esperanza forests). C. Hemicycla consobrina from Las Mercedes laurel forest.
FIGURE 7 in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 7. Scatter plots of some shell measurements of the species studied. 1, Hemicycla consobrina; 2, Hemicycla invernicata; 3, Hemicycla fulgida sp. nov.; 4, Hemicycla perraudierei; 5, Hemicycla laurijona sp. nov. BP, body whorl frontal perimeter; BS, body whorl frontal surface (plane view); D1, maximum shell diameter; D2, shell diameter perpendicular to D1; FP, shell frontal perimeter; FS, shell frontal surface (plane view); SH, shell height; SP, shell perimeter (dorsal plane view); SS, shell surface (dorsal plane view).
FIGURE 5. Shell body whorl details. A–C in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 5. Shell body whorl details. A–C. Hemicycla laurijona sp. nov., holotype. D–F. Hemicycla perraudierei. A, D, dorsal view. B, E, frontal view. C, F, ventral view. The sells are the same as in Fig. 4.
FIGURE 4. Shells. A in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 4. Shells. A. Hemicycla laurijona sp. nov., holotype. B. Hemicycla laurijona sp. nov., paratypes from Puntas Coloradas, La Gomera. C. Hemicycla perraudierei, from Las Casillas, El Hierro.
FIGURE 3. A in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 3. A. Hemicycla laurijona sp. nov., paratype from Puntas Coloradas, La Gomera. B. Hemicycla fulgida sp. nov., paratype from El Bailadero, Tenerife.
FIGURE 2. Shell drawings. A in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 2. Shell drawings. A. Hemicycla laurijona sp. nov. holotype. B. Hemicycla fulgida sp. nov., holotype showing the placement of the measurements obtained. BH, body whorl height (at columella level); BP, body whorl frontal perimeter; BS, body whorl frontal surface (plane view); D1, maximum shell diameter; D2, shell diameter perpendicular to D1; FP, shell frontal perimeter; FS, shell frontal surface (plane view); SH, shell height; SP, shell perimeter (dorsal plane view); SS, shell surface (dorsal plane view).
FIGURE 1 in Anatomy and function of the penial twin papillae system of the Helicinae (Gastropoda: Helicoidea: Helicidae) and description of two new, small Hemicycla species from the laurel forest of the Canary Islands
FIGURE 1. Geographical distribution of Hemicycla laurijona sp. nov. and Hemicycla fulgida sp. nov. The blue arrow indicates approximately the area of the Hemicycla invernicata type locality. Symbols represent 1 x 1 km UTM squares.
Twin Corpus (reading task)
<p><strong>This corpus contains voice recordings of 24 Spanish male speakers: 12 pairs of monozygotic (MZ) twins. </strong></p> <p>They belong to a larger corpus collected by Dr. Eugenia San Segundo Fernández for her Doctoral Dissertation (more info: https://eugeniasansegundo.github.io/).</p> <p>You will find two folders: </p> <p>1) <strong>Complete_Reading_Task </strong>contains the reading task of each speaker as it was originally recorded. You may therefore find ringtones at the beginning, introductory words by the speaker, interruptions or text repetitions. <br> - Each speaker reads two phonetically-balanced texts in Spanish.<br> - The participants were also instructed to read one of the texts while pinching his nose (voice disguise). They did this after having first read the two texts in an undisguised way.<br> - They were recorded in two different sessions (time lapse: 2-3 weeks) doing exactly the same reading task.</p> <p>2) <strong>Single_Text_Reading </strong>is an edited version (shortened) of the original recording: it only contains the reading of the first text in undisguised style. You will only find one recording session per speaker. </p> <p><br> <strong>***The corpus has been shared in Zenodo Repository using a Creative Commons Attribution-NonCommercial-NoDerivatives licence (CC BY-NC-ND).</strong></p>
Data of paper "Grid ,Hydrodynamic boundary and Uncertainty analysis of 2D-SWEs in the context of digital twins: Taking numerical simulation of river networksas an example"
<p>论文数据 “数字孪生背景下2D-SWEs的网格、水动力边界和不确定性分析:以河流网络数值模拟为例”</p>
Figure 9 in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 9. Mesotarsus, Cholevinae: Cholevini: Catopina and Cholevina, and Oritocatopini. A, B, Catops fuliginosus. C, D, Catopsimorphus (s.s.) orientalis. E, F, Afrocatops sp. A, C, E, ventro-lateral-internal view; B, D, F, ventro-lateral-external view. tI-tIV = first to fourth tarsomeres.
Figure 4 in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 4. Mesotarsus, Cholevinae: Ptomaphagini. A, B, Amplexella dimorpha. C, D, Ptomaphaminus chapmani. A, C, ventro-lateral-internal view. B, D, ventro-lateral-external view. tI-tV = first to fifth tarsomeres; bs = 'bachelor seta'; tw = 'twin spines'; arrow = pair of setae at the apical margin of mesotarsomere IV; stars = periapical spines of the apical crown of spines.
Figure 1 in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 1. Midleg, Cholevinae: Ptomaphagini - Adelopsis leo. A, dorsal/internal view. B, ventral/external view. C, a hypothetical cross-section of a tarsomere of the left leg, showing what we refer to as the dorsal ('df'), internal lateral ('ilf'), ventral ('vf') and external lateral ('elf') faces of the tarsomere, as well as the inner ('icv') and external ('ecv') 'corners' of the ventral face of the tarsomere. Fe = femur; Ta = tarsus; Ti = tibia.
Figure 3 in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 3. Meso- and metatarsus, Cholevinae: Ptomaphagini - Adelopsis leo. A, B, mesotarsus (part). C, D, metarsus (part). A, C, ventro-lateral-internal view. B, D, ventro-lateral-external view. tI-tV = first to fifth tarsomeres; bs = 'bachelor seta'; tw = 'twin spines'; circle = pointy apices of 'twin spines' facing opposite to each other; arrow = pair of setae at the apical margin of mesotarsomere IV; ellipse shows that the 'twin spines' are articulated to a single elevation on the integument.
Figure 11. Mesotarsus. A-F, Camiarinae. I-L, Leiodinae. A, B in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 11. Mesotarsus. A-F, Camiarinae. I-L, Leiodinae. A, B, Agyrtodini – Dictydiella turneri. C, D, Camiarini – Baeosilpha rufescens. E, F, Neopelatopini – Catopsolius laevicollis. G, H, Coloninae – Colon (Mesagyrtes) hirtale. I, J, Estadiini – Dietta sp. K, L, Pseudoliodini – Pseudcolenis grandis. A, C, E, G, I, K, ventro-lateral-internal view; B, D, F, H, J, L, ventro-lateralexternal view. tI-tIII = first to third tarsomeres.
Figure 10. Mesotarsus, Cholevinae. A-H, Leptodirini. A, B in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 10. Mesotarsus, Cholevinae. A-H, Leptodirini. A, B, Bathysciotina – Bathysciotes khevenhuelleri tergestinus. C, D, Leptodirina – Leptodirus hochenwarti. E, F, Platycholeina – Platycholeus opacellus. G, H, Pholeuina – Diaprysius serullazi. I, J, Sciaphyini – Sciaphyes sibiricus. A, C, E, G, I, ventro-lateral-internal view. B, D, F, H, J, ventro-lateral-external view. tI-tIII = first to third tarsomeres.
Figure 8 in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 8. Mesotarsus, Cholevinae: Anemadini. A, Nemadina – Nemadus colonoides, female. B, C, Paracatopina – Paracatops alacris. D, Anemadina – Anemadus italicus. A, C, ventro-lateral-external view. B, D, ventro-lateral-internal view. tI-tIV = first to fourth tarsomeres; bs = 'bachelor seta'.
Figure 6 in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 6. Mesotarsus, Cholevinae: Eucatopini. A, Eucatops sp. B, C, Eucatops (Napocatops) giganteus. A, B, ventro-lateralinternal view. C, ventro-lateral-external view. tI-tIV = first to fourth tarsomeres; tw = 'twin spines' (the one marked with? might represent a twin spine, although being a single spine – see text); stars = periapical spines of the apical crown of spines.
Figure 7 in The 'twins' and the 'bachelor', new potential synapomorphies inside the Cholevinae (Coleoptera: Leiodidae)
Figure 7. Mesotarsus, Cholevinae: Anemadini. A-C, Eunemadina. A, B, Dissochaetus vanini. C, Eunemadus chilensis. D, Nemadina – Nemadus colonoides, female. A, C, D, ventro-lateral-internal view. B, ventro-lateral-external view. tI-tV = first to fifth tarsomeres; tw = 'twin spines'.
ScienceDex guides
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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
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.