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229 results for “Lamb”

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zenodo40/100

Figs 58–63 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 58–63. Amygdalops curtisi sp. n., male paratype (Thailand). 58 = transandrium, caudal view, 59 = external genitalia, caudal view, 60 = same, lateral view, 61 = hypandrium and associated structures, lateral view, 62 = gonostylus, laterocaudal view (widest extension), 63 = aedeagal complex, lateral

opencc-by-4.0Nov 2008View details →
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Figs 86–91 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 86–91. Amygdalops pappi sp. n., male holotype (Thailand). 86 = external genitalia, caudal view, 87 = same, lateral view, 88 = hypandrium and associated structures, lateral view, 89 = gonostylus, ventrocaudal view (widest extension), 90 = transandrium, caudal view, 91 = aedeagal complex, lat-

opencc-by-4.0Nov 2008View details →
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Figs 78–85 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 78–85. Amygdalops curtistylus sp. n., female paratype (Thailand). 78 = spermatheca, 79 = postabdomen, dorsal view, 80 = postabdomen, ventral view, 81 = S8 and internal sclerites, ventral view, 82 = same, lateral view (micropubescence omitted), 83 = spermatheca, 84 = accessory gland, 85 =

opencc-by-4.0Nov 2008View details →
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Figs 72–77 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 72–77. Amygdalops curtistylus sp. n., male holotype (Thailand). 72 = external genitalia, caudal view, 73 = same, lateral view, 74 = hypandrium and associated structures (damaged), lateral view, 75 = transandrium (damaged), caudal view, 76 = aedeagal complex, lateral view, 77 = gonostylus, sub-

opencc-by-4.0Nov 2008View details →
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Figs 149–154 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 149–154. Amygdalops stenopteryx sp. n., male paratype (Thailand). 149 = transandrium, caudal view, 150 = external genitalia, caudal view, 151 = same, lateral view, 152 = hypandrium and associated structures, lateral view, 153 = gonostylus, ventrolaterocaudal view (widest extension), 154 = ae-

opencc-by-4.0Nov 2008View details →
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Figs 2–4 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 2–4. Amygdalops lineola DE MEIJERE, male. 2 = external genitalia, caudal view, 3 = postabdomen with genitalia erected, lateral view, 4 = gonostylus, sublateral view (widest extension). Fig. 3 based on holotype, others on males from Thailand. Scales: Fig. 4 = 0.05 mm, others = 0.1 mm.

opencc-by-4.0Nov 2008View details →
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Figs 14–19 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 14–19. Amygdalops silaceus sp. n., male paratype (Rota I.). 14 = external genitalia, caudal view, 15 = same, lateral view, 16 = hypandrium and associated structures, lateral view, 17 = transandrium, caudal view, 18 = gonostylus, laterocaudal view (widest extension), 19 = aedeagal complex, lateral

opencc-by-4.0Nov 2008View details →
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Figs 32–37 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 32–37. Amygdalops bisinus sp. n., female paratype (Flores). 32 = ventral receptacle, lateral view, 33 = postabdomen, dorsal view, 34 = same, ventral view, 35 = internal sclerites, ventral view, 36 = same plus S8 (micropubescence omitted), lateral view, 37 = spermathecae. Scales: Figs 33–34 =

opencc-by-4.0Nov 2008View details →
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Figs 8–13 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 8–13. Amygdalops lineola DE MEIJERE, female (Thailand). 8 = spermathecae, 9 = postabdomen, dorsal view, 10 = same, ventral view, 11 = S8 and internal sclerites, ventral view, 12 = ventral receptacle, ventral view, 13 = apex of abdomen with internal sclerites, lateral view. Scales: Figs 9–10 = 0.1

opencc-by-4.0Nov 2008View details →
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Figs 26–31 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 26–31. Amygdalops bisinus sp. n., male holotype (Thailand). 26 = external genitalia, caudal view, 27 = same, lateral view, 28 = gonostylus, lateroventral view (widest extension), 29 = hypandrium and associated structures, lateral view, 30 = transandrium, caudal view, 31 = aedeagal com-

opencc-by-4.0Nov 2008View details →
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Figs 104–109 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 104–109. Amygdalops nigrinotum SUEYOSHI & ROHÁČEK, male (Seychelles), paratype female (Hawaii). 104 = hypandrium and associated structures, lateral view, 105 = female postabdomen, dorsal view, 106 = same, ventral view, 107 = spermathecae, 108 = ventral receptacle, ventral view, 109 = spines in vaginal part of female genital chamber. Scales: Figs 104–106 = 0.1 mm, others = 0.05 mm. All according to ROHÁČEK (2004)

opencc-by-4.0Nov 2008View details →
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Figs 110–116 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions

Figs 110–116. Amygdalops sp. n. (b) near nigrinotum, female (Palau I.). 110 = postabdomen, dorsal view, 111–112 = spermathecae, 113 = postabdomen (S7 damaged), ventral view, 114 = S8 and internal sclerites, lateral view, 115 = ventral receptacle, lateral view, 116 = S8 and internal sclerites, ven-

opencc-by-4.0Nov 2008View details →
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Figs 1–5. Anatrichus pygmaeus LAMB, puparium. 1 in Grassflies Of The Tribe Elachipterini (Diptera: Chloropidae) From Vietnam And Thailand, With Description Of A New Species

Figs 1–5. Anatrichus pygmaeus LAMB, puparium. 1 = habitus, ventral view, 2 = anterior end of puparium, ventral view, 3 = posterior part of puparium, ventral view, 4 = anterior stigma, 5 = cephalo-

opencc-by-4.0Aug 2010View details →
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PLATE XIV Ornithomius altus, Lambe. Fig. l. Posterior dorsal vertebra, viewed from the left, natural size. Page 50 Fig. 2. Caudal vertebral., superior view, natural size. Page 52. Fig. The same, inferior view. Fig. 4. The same, left lateral view. Fig. The saule, posterior view. Fig. G. Distal end of iuetzttarszil III. of left pes, viewed from the front; natural size. Page 50. Fig. 7. The same, posterior view. Fig. ö. Terminal phalanx of pes, side view, natural size. Page 50. Fig. Ü. The same, posterior view. Fig. lo. 'Terminal phalanx of manus, side view; natural size. Page Õf. Fig. ll. The same, posterior view. Fig. 12. - Interior tooth, provisionally associated with O. altus, side view, natural size. Page 53. Fig. 13. Posterior view of the saure, showing the minute deııticulııtioııs on one of the two posterior gariugu, neural spine s, pim-zygapopliysis É, postzygapophysis, n, neural arch, J, diapophysis, _/, facet for chevron hone L', neural canal, c, posterior articular' face of ccntruin. in New genera and species from the Belly River Series (mid-Cretaceous)

PLATE XIV Ornithomius altus, Lambe. Fig. l. Posterior dorsal vertebra, viewed from the left, natural size. Page 50 Fig. 2. Caudal vertebral., superior view, natural size. Page 52. Fig. The same, inferior view. Fig. 4. The same, left lateral view. Fig. The saule, posterior view. Fig. G. Distal end of iuetzttarszil III. of left pes, viewed from the front; natural size. Page 50. Fig. 7. The same, posterior view. Fig. ö. Terminal phalanx of pes, side view, natural size. Page 50. Fig. Ü. The same, posterior view. Fig. lo. 'Terminal phalanx of manus, side view; natural size. Page Õf. Fig. ll. The same, posterior view. Fig. 12. - Interior tooth, provisionally associated with O. altus, side view, natural size. Page 53. Fig. 13. Posterior view of the saure, showing the minute deııticulııtioııs on one of the two posterior gariugu, neural spine s, pim-zygapopliysis É, postzygapophysis, n, neural arch, J, diapophysis, _/, facet for chevron hone L', neural canal, c, posterior articular' face of ccntruin.

opencc-by-4.0Dec 1902View details →
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FIG. 14. Boreodon matutinus Lambe. A. AMNH 77385 in The vertebrate Fauna of the Judith River formation, Montana

FIG. 14. Boreodon matutinus Lambe. A. AMNH 77385, occlusal view of right Ml, x 5. B. AMNH 77383, occlusal view of left upper molar, x 5. C. AMNH 77386, occlusal view of right DP3, x 5. D. AMNH 77394, labial view of mandible with M3 and alveoli for M4. E. Occlusal view. F. Lingual view. All x 21. G. AMNH 77387, occlusal view ofright P2. H. Lingual view. Both x 5. I. AMNH 77388, lingual view ofright P3, x 5.J. AMNH 77393, occlusal view of right lower molar. K. Lingual view. Both x 5. Alphadon cf. A. rhaister Clemens. L. AMNH 77371, occlusal view of left lower molar (probably M4). M. Lingual view. N. Posterior view. All x 10. 0. AMNH 77372, labial view of left upper molar (probably Ml). P. Occlusal view. Both x 10.

opencc-by-4.0Dec 1972View details →
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Figs. 1–2 in Is Drosophila nasuta Lamb (Diptera, Drosophilidae) currently reaching the status of a cosmopolitan species?

Figs. 1–2. External male morphology of Drosophila nasuta (isofemale line M59F1), Cidade Universitária "Armando de Salles Oliveira", São Paulo, state of São Paulo, Brazil. 1. Head, anterodorsal view, showing the conspicuous iridescent white silvery frons. 2. Imago left lateral view, showing the large brownish stripe on half dorsal area of pleura. Scale bars: 1 = 0.2 mm, 2 = 1 mm.

opencc-by-4.0Oct 2015View details →
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Figs. 5–10 in Is Drosophila nasuta Lamb (Diptera, Drosophilidae) currently reaching the status of a cosmopolitan species?

Figs. 5–10. Wild-caught male of Drosophila nasuta (specimen M60C1), Cidade Universitária "Armando de Salles Oliveira", São Paulo, state of São Paulo, Brazil. 5–7. External male terminalia: tergite 8+epandrium, cerci, surstyli, and decasternum. 5. Left lateral view. 6. Oblique posterior view. 7. Posterior view. 8–10. Internal male terminalia: aedeagus, aedeagal apodeme, ventral rod, paraphyses, hypandrium + gonopods. 8. Left lateral view. 9. Oblique posterior view. 10. Posterior view. Scale bar 0.1 mm.

opencc-by-4.0Oct 2015View details →
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Figs. 3–4 in Is Drosophila nasuta Lamb (Diptera, Drosophilidae) currently reaching the status of a cosmopolitan species?

Figs. 3–4. Wild-caught male of Drosophila nasuta (specimen M60C1), Cidade Universitária "Armando de Salles Oliveira", São Paulo, state of São Paulo, Brazil. 3. Left foreleg, anterior view. 4. Left wing, dorsal view. Scale bar = 0.5 mm.

opencc-by-4.0Oct 2015View details →
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PoLambRimetry dataset: Multispectral Mueller matrices of lamb brain

<h3>Using this dataset</h3> <p>This dataset is available for re-distribution and re-use (see license) under the following citation:</p> <p>Mieites Alonso, V., Anichini, G., Qi, J., O'Neill, K., Conde, O. M., &amp; Elson, D. (2024). <strong>PoLambRimetry dataset: Multispectral Mueller matrices of lamb brain [Data set]</strong>. Zenodo.&nbsp;<a href="https://doi.org/10.5281/zenodo.11127947" target="_blank" rel="noopener">https://doi.org/10.5281/zenodo.11127947</a></p> <h3>Dataset description</h3> <p>This dataset contains Multispectral Mueller matrices of lamb brain. A total of six fresh brain specimens were imaged, mainly in lateral and medial views, but also in sections. The wavelengths used are 450, 500, 550, 590, 650, and 680 nm. The dataset was generated using Python and contains a total of twenty matrices, following this folder structure:</p> <ul> <li>Specimen (1 to 6) <ul> <li>View: right or left hemispheres; cerebellum hemispheres; medial or lateral view; sections; frontal basal ganglia (bg) sections; pineal region; brain stem sections. <ul> <li>Data in hdf5 (data.h5) format filled with Python objects <ul> <li><em>M</em>: Mueller matrix. Dimensions: (6, 4, 4, 604, 642) corresponding to (wavelength, matrix row, matrix column, pixels row, pixels column). Python's numpy.array followed filled with numpy.float64.</li> <li><em>ref_img</em>: Reference grayscale image (at 450 nm). Dimensions: (604, 642) corresponding to (pixels row, pixels column). Python's numpy.array followed filled with numpy.float64.</li> <li><em>roi</em>: Region of interest. Its values are 1 inside the sample and 0 in the background. Dimensions: (604, 642) corresponding to (pixels row, pixels column). Python's numpy.array followed filled with numpy.int32.</li> <li><em>labels</em>: Labelled areas. There are 14 different white matter and gray matter structures. Dimensions: (604, 642) corresponding to (pixels row, pixels column).</li> <li><em>wvls</em>: Wavelengths in descending order. Dimensions: (6) corresponding to (wavelengths).</li> </ul> </li> <li>Figure representing the data inside data.h5 (data.png).</li> </ul> </li> </ul> </li> <li>labels.csv: CSV file containing the legend for the labels. WM and GM stand for white matter and gray matter, respectivelly.</li> </ul> <p>This dataset was used in a manuscript currently under peer review (May 2024). Upon publication, the embargo will be removed and we will update the information to provide a more detailed presentation of the dataset.&nbsp;</p>

opencc-by-4.0May 2024View details →
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Data from Lamb et al.: "Hanging out at the club: breeding status and territoriality affect individual space use, multi-species overlap, and pathogen transmission risk at a seabird colony"

<p>This dataset consists of two files:</p> <p><strong>ams_sku_all provides</strong> GPS locations from tracked skuas.</p> <p><strong>Skua_GPS_Metadata</strong> provides information on tracked skuas. The file consists of two workseets, the data table (&quot;skua_gps_metadata&quot;, and a key providing descriptions of the column names and values (&quot;Key&quot;)</p>

opencc-by-4.0Nov 2022View details →

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