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628 results for “clarification”
FIG. 3 in The Amidella clade in Europe (Basidiomycota: Amanitaceae): clarification of the contentious Amanita valens (E.-J.Gilbert) Bertault and the importance of taxon-specific PCR primers for identification
FIG. 3. — Photographs of Amanita pseudovalens var. tartessiana var. nov. specimens from Odemira. Some images taken in the field are matched with corresponding ones taken in the laboratory: A, grouped basidiomes (Ode12) and their appearance upon arrival at the laboratory; B, outcropping away from the vegetation, showing the coarse soil texture in this case (Ode02); inset shows squamulose inner cuticle remains; C, another specimen with cuticle squamules (Ode11); D, specimen with cracked cuticle (Ode05); E, example with stipe squamules (Ode06); F, side view of an emerging basidiome (Ode03) and the same specimen showing the darkened squamules on the stipe; G, view of the hymenophore and the appendiculate pileus margin (Ode02, specimen different from B); H, details of an immature basidiome (Ode06, specimen different from E) showing the annulus and insertion of the lamellae (left), and longitudinal section (right).
FIG. 5 in The Amidella clade in Europe (Basidiomycota: Amanitaceae): clarification of the contentious Amanita valens (E.-J.Gilbert) Bertault and the importance of taxon-specific PCR primers for identification
FIG. 5. — Ground view of the Luzianes locations, showing the Cistus ladanifer L. dominance: A, Luzianes A; B, Luzianes B. Both photos were taken in spring 2015 by Ana C. Silva.
FIG. 4 in The Amidella clade in Europe (Basidiomycota: Amanitaceae): clarification of the contentious Amanita valens (E.-J.Gilbert) Bertault and the importance of taxon-specific PCR primers for identification
FIG. 4. — Plotting of the measurements summarised in Table 5 (dots), comparing with the limits of the sporographs, based on the descriptions in Neville & Poumarat (2004) for Amanita curtipes f. pseudovalens Neville & Poumarat (continuous line) and A. ponderosa f. ponderosa Malençon & R.Heim (dashed line).
Fig. 1 in Clarifications and new data on the distribution of Cacyreus marshalli Butler, 1898 in Bulgaria (Insecta, Lepidoptera, Lycaenidae)
Fig. 1. Known localities of Cacyreus marshalli Butler, 1898 from Bulgaria. 1: Melnik (2013), 2: Levunovo (2014), 3: Novo Hodzhovo (2014), 4: Trigrad (2014), 5: Vinarovo (2017). Map: Google Earth.
Fig. 2 in Clarifications and new data on the distribution of Cacyreus marshalli Butler, 1898 in Bulgaria (Insecta, Lepidoptera, Lycaenidae)
Fig. 2. Right: Adult Cacyreus marshalli Butler, 1898 from NW Bulgaria: Vinarovo, 28.12.2017; left and center: Pupal exuvia of Cacyreus marshalli Butler, 1898 on a Pelargonium leaf, same locality. Photos: Tsvetomir Tsvetanov.
A literature-based business process meta-model: construction and ontological clarifications
<h1><strong>A literature-based business process meta-model: construction and ontological clarifications</strong></h1> <div> <div> <div> <h3>Greta Adamo, Chiara Di Francescomarino, Chiara Ghidini</h3> </div> </div> </div> <p>This folder contains all the relevant additional documents that have been produced and analysed for this work, e.g. sources, evaluation criteria, and tables, and that have not been included in the paper for a reason of space.</p> <p> </p>
Figure 2 in CLARIFICATION OF THE STATUS OF CHIRONOMUS JAVANUS KIEFFER, 1924 AND C. VITELLINUS FREEMAN, 1961 Abstract
Figure 2. TIX of Chironomus javanus showing the long setae.
Figure 4. Arm G in CLARIFICATION OF THE STATUS OF CHIRONOMUS JAVANUS KIEFFER, 1924 AND C. VITELLINUS FREEMAN, 1961 Abstract
Figure 4. Arm G of Chironomus vitellinus: N- nucleolus; BR – Balbiani ring.
Figures 78-79 in A review and clarification of the alticine genera Hemiphrynus Horn 1889 and Phrynocepha Baly 1861 (Coleoptera: Chrysomelidae: Galerucinae: Alticini)
Figures 78-79. Distribution of Phrynocepha in Mexico.
Figure 55 in A review and clarification of the alticine genera Hemiphrynus Horn 1889 and Phrynocepha Baly 1861 (Coleoptera: Chrysomelidae: Galerucinae: Alticini)
Figure 55. Protibia of Phrynocepha laevicollis.
Clarification of Abatacept Effects in SLE With Integrated Biologic and Clinical Approaches
ClinicalTrials.gov study NCT02270957. IPD Sharing: YES. Countries: 1. Publications: 2.
FIGURES 38–50. 38–40 in Clarification of the status of the types of Australian Melolonthini (Coleoptera Scarabaeidae: Melolonthinae) described before 1950
FIGURES 38–50. 38–40, Lectotype male of Lepidiota platyura Lea, 1924 (junior synonym of Lepidiota podicalis Moser, 1913). 38, dorsal; 39, lateral; 40, labels. 41–43, Lectotype male of Lepidiota rufa Blackburn, 1888. 41, dorsal; 42, lateral; 43, labels. 44–47, Holotype male of Lepidiota rugosipennis Lea, 1924 (junior synonym of Lepidiota squamulata Waterhouse, 1875. 44, dorsal; 45, lateral; 46, aedeagus; 47, labels. 48–50, Holotype male of Pararhopaea gigas Lea, 1916 (now Megarhopaea gigas). 48, dorsal; 49, lateral; 50, labels. Photographs courtesy of the South Australian Museum Board.
FIGURES 29–37. 29–30. Lepidiota minuta Moser, 1913 in Clarification of the status of the types of Australian Melolonthini (Coleoptera Scarabaeidae: Melolonthinae) described before 1950
FIGURES 29–37. 29–30. Lepidiota minuta Moser, 1913, labels on types. 29, lectotype male; 30, paralectotype female. 31, Lepidiota oblonga Brenske, 1900, labels on lectotype; 32, Lepidiota podicalis Moser, 1913, labels on lectotype. 33, Lepidiota sororia Moser, 1913, labels on lectotype; 34, Lepidiota parva Moser, 1913 (junior synonym of Lepidiota rothei Blackburn, 1888), labels on lectotype. 35–36. Lepidiota rugicollis Moser, 1913 (junior synonym of Lepidiota rubrior Blackburn, 1890), labels on specimens. 35, lectotype male; 36, non-type specimen in ZMB. 37. Holophylla furfuracea Burmeister, 1855 (now Pseudholophylla furfuracea), label on lectotype. Figs. 29–36 courtesy of Museum für Naturkunde. Fig. 37 courtesy of Karla Schneider.
FIGURES 63–74. 63–65 in Clarification of the status of the types of Australian Melolonthini (Coleoptera Scarabaeidae: Melolonthinae) described before 1950
FIGURES 63–74. 63–65, Holotype male of Rhopaea decipiens Lea, 1919. 63, dorsal; 64, lateral; 65, labels. 66–68, Lectotype male of Rhopaea magnicornis Blackburn, 1888. 66, dorsal; 67, lateral; 68, labels. 69–71, Holotype male of Rhopaea nigricollis Lea, 1919. 69, dorsal; 70, lateral; 71, labels. 72–74, Lectotype male of Zietzia geologa Blackburn, 1894. 72, dorsal; 73, lateral; 74, labels. Photographs courtesy of the South Australian Museum Board.
FIGURES 8–16 in Clarification of the status of the types of Australian Melolonthini (Coleoptera Scarabaeidae: Melolonthinae) described before 1950
FIGURES 8–16. Labels on types. 8. Lepidioderma lansbergei Brenske, 1895 (junior synonym of Dermolepida albohirtum (Waterhouse, 1875)). 9. Lepidioderma waterhousei Brenske, 1895 (junior synonym of Dermolepida albohirtum (Waterhouse, 1875)). 10–11. Lepidioderma lixi Nonfried, 1894 (now Dermolepida lixi). 10, lectotype; 11, paralectotype. 12–13. Lepidioderma glaber Brenske, 1895 (junior synonym of Dermolepida lixi). 12, lectotype; 13, paralectotype. 14–15. Lepidiota clypealis Moser, 1913. 14, lectotype male; 15, paralectotype female. 16. Purported holotype of Lepidiota consobrina Girault, 1918. Figs. 8–15 courtesy of Museum für Naturkunde.
FIGURES 17–28. 17–19 in Clarification of the status of the types of Australian Melolonthini (Coleoptera Scarabaeidae: Melolonthinae) described before 1950
FIGURES 17–28. 17–19, Lectotype male of Lepidiota degener Blackburn, 1888. 17, dorsal; 18, lateral; 19, labels. 20–22, Lectotype female of Lepidiota delicatula Blackburn, 1888. 20, dorsal; 21, lateral; 22, labels. 23–25, Holotype female of Lepidiota flavipennis Lea, 1926. 23, dorsal; 24, lateral; 25, labels. 26–28, Holotype female of Lepidiota lepidosterna Lea, 1926. 26, dorsal; 27, lateral; 28, labels. Photographs courtesy of the South Australian Museum Board.
FIGURES 51–62. 51–53 in Clarification of the status of the types of Australian Melolonthini (Coleoptera Scarabaeidae: Melolonthinae) described before 1950
FIGURES 51–62. 51–53, Lectotype male of Microrhopaea flavipennis Lea, 1920. 51, dorsal; 52, lateral; 53, labels. 54–56, Lectotype male of Rhopaea callabonnensis Blackburn, 1894 (now Pararhopaea callabonnensis). 54, dorsal; 55, lateral; 56, labels. 57–59, Holotype male of Pararhopaea rhipidocera Lea, 1916. 57, dorsal; 58, lateral; 59, labels. 60–62, Holotype male of Paralepidiota cavifrons Lea, 1919 (now Pseudholophylla cavifrons). 60, dorsal; 61, lateral; 62, labels. Photographs courtesy of the South Australian Museum Board.
FIGURES 1–7. 1–3 in Clarification of the status of the types of Australian Melolonthini (Coleoptera Scarabaeidae: Melolonthinae) described before 1950
FIGURES 1–7. 1–3, Lectotype male of Rhopaea planiceps Blackburn, 1911 (now Antitrogus planiceps). 1, dorsal; 2, lateral; 3, labels. 4–7, Holotype male of Rhopaea polita Lea, 1920 (now Antitrogus politus). 4, dorsal; 5, lateral; 6, labels; 7, mesotarsi. Photographs courtesy of the South Australian Museum Board.
FIGURE 1 in Diagnostic clarification, new morphological data and phylogenetic placement of Amphisbaena arenaria Vanzolini, 1991 (Amphisbaenia, Amphisbaenidae)
FIGURE 1. Phylogenetic relationships within Amphisbaena, showing the placement of A. arenaria (red branch); scale bar represents estimated substitutions per site. Insert map depicts the known records (green dots) and type locality (red dot) of A. arenaria; yellow line represents the borders of Raso da Catarina Ecological Station. Photo by J. Rodrigues.
FIGURES 30–34 in New taxa and some clarification of the tribe Steirodontini (Orthoptera: Tettigoniidae; Phaneropterinae): Tenth contribution to the suprageneric organization of Neotropical phaneropterines
FIGURES 30–34. Steirodon (Posidippus) rarospinulosum (Brunner von Wattenwyl, 1891). Male. 30. Habitus lateral. 31. Tegmen. 32–34. Terminalia in lateral, dorsal and ventral view respectively.
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