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97 results for “Porta”
Panoramic cityscape. South, Passeig de les Moreres, the cathedral, the city gate (Porta del Sol).
<u>File Name</u>: PM_072986_E_Solsona <br><u>Sublocation</u>: Passeig de les Moreres <br><u>Location</u>: Solsona <br><u>Province</u>: Catalunya, Lleida <br><u>Country</u>: Spain <br><u>Header</u>: None <br><u>Description</u>: Panoramic cityscape. South, Passeig de les Moreres, the cathedral, the city gate (Porta del Sol). <br><u>Author</u>: Photo: Paul M.R. Maeyaert <br><u>Author Mail</u>: PMRMaeyaert@gmail.com <br><u>Copyright</u>: © Paul M.R. Maeyaert; pmrmaeyaert@gmail.com <br><u>Keywords</u>: Cultural heritage|Monuments; Cultural heritage|Thematic; Cultural heritage|Thematic|Cityscape/landscape/panoramic; Cultural heritage|Thematic|Historic site; Europe|Spain; Europe|Spain|Catalunya; Europe|Spain|Catalunya|Lleida; Europe|Spain|Catalunya|Lleida|Solsona; My photography; My photography|Architecture; My photography|Architecture|Cityscape/urbanism; Cultural heritage <br><u>Date of Generation</u>: 2012-06-12T09:14:54.073
Fig. 2 in Striatoandricus sanchezi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 2. Holotype of Somniosus (Rhinoscymnus) cheni sp. nov. (EBFSFSX001), pregnant female, 1340 mm total length. Photo by C. Y. Lin.
Fig. 2. A in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 2. A timeline for the first appearance of several groups of fossil diplostracans (circles), as well as for fossil lagerstätten that contain exceptionally preserved fossil clam shrimp (stars).
Fig. 7 in Striatoandricus sanchezi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 7. Embryos of holotype, Somniosus (Rhinoscymnus) cheni sp. nov., individuals of the first column from the left are males, the others are females.
Fig. 3 in Striatoandricus sanchezi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 3. Closeup of head portion of Somniosus (Rhinoscymnus) cheni sp. nov. from the holotype. A, dorsal view. B, ventral view. C, lateral view of right side (reversed laterally). Not to scale.
Fig. 1. A in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 1. A phylogeny of extant Diplostraca, with several scenarios for growth line (incomplete molting) evolution mapped onto it. A and D represent the scenario of a gain (A) and subsequent loss (D) of incomplete molting. B and C represent the scenario of two independent gains of incomplete molting.
Fig. 4 in Striatoandricus sanchezi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 4. Closeup of fins of Somniosus (Rhinoscymnus) cheni sp. nov., from the holotype. A, right pectoral fin, dorsal view. B, right pelvic fin, dorsal view. C, first dorsal fin, left side, lateral view. D, second dorsal fin, left side, lateral view. E, caudal fin, left side, lateral view. Not to scales, anterior to left.
Fig. 6. A in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 6. A time-calibrated phylogeny with polytomies largely resolved by stratigraphic occurrence and branch lengths approximate to generic range. X axis = millions of years.
Fig. 4. A in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 4. A sample of the fossil taxa studied, their diagnosed sexual systems and overlaid mean-shapes of the detected morphotypes (M1 = Morphotype 1; M2 = Morphotype 2).
Fig. 3. A in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 3. A, Cluster analysis of Palaeolimnadia sp. based on informative eigenshapes (ES1 & 2); no discernible major groupings and multiple long branches of similar length interfere with deducing sexual system based on a clear morphotype ratio. B, Cluster analysis of Lioestheria malacaraensis based on informative eigenshapes (ES1 & 2) exhibiting a clear basal dichotomy with branch lengths much larger than any subsequent groupings.
Fig. 2 in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 2. Cluster analyses of a monomorphic (hermaphrodites only) sample of Eulimnadia texana (A) and a dimorphic (males + hermaphrodites) sample (B) based on scores of individuals along the first four eigenshape axes. Note the differing distances along the Y-axes in the two graphs.
Fig. 1. The limnadiid spinicaudatan Calalimnadia mahei. b in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 1. The limnadiid spinicaudatan Calalimnadia mahei. b: Brood chamber with eggs, h: Head, p: Phyllopodous thoracic limbs, t: Telson.
Fig. 5 in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 5. Distribution of predicted sexual systems in fossil taxa analyzed in this study. NA = taxa in which sexual system prediction was impossible (see MATERIALS AND METHODS).
Fig. 7 in Striatoandricus cuixarti Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022, n. sp.
Fig. 7. Two possible scenarios of the evolutionary dynamics of hermaphroditic lability in Spinicaudata at the family level. Red branches: lineages with some degree of hermaphroditism present in some taxa. Black branches: lineages devoid of hermaphroditic 'females' in all taxa. Blue boxes: sperm production in females occurring. White boxes: Sperm production lost in hermaphrodites recreating females. † = Extinct group.
Fig. 1 in Stiatoandricus georgei Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022
Fig. 1. Map showing the different sites visited by authors of the scientific works cited here that were focused on the cladocera community of Côte d'Ivoire. 1- Shallow reservoirs of the northern of Côte d'Ivoire. 2 - Ebrié Lagoon. 3 - Pisciculture pond at Daloa. 4 - Hana River in Taï Park. 5 - Grand-Lahou Lagoon. 6 - Fresco Lagoon. 7 - Lobo River (Sassandra Basin). 8 - Davo River (Sassandra Basin). 9 - Buyo Lake (Sassandra Basin). 10 - Sassandra River Main Reach. 11 - Kossou Lake. 12 - Tendo-Ehy-Aby lagoonal system. 13 - Bagoe River. 14 - Ayame Lake I. 15 - Agnebi River. 16 - Bia River. 17 - Gagnoa (low ground). 18 - Comoé River in the Comoé National Park. 19 - Fae Lake.
Fig. 2 in Fig. 3. 50 in Fig. 8 in Stiatoandricus nievesaldreyi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022
Fig. 2. Survival rate from hatching to the juvenile stage (A), number of days required to moult into the juvenile stage (larval duration) (B), and carapace length of juveniles (C) in the larvae of two atyid shrimp species, Paratya compressa and P. improvisa. Larvae were reared on five different diet combinations of phytoplankton (Tetraselmis sp.) and zooplankton rotifers: preserved Tetraselmis (PT), cultured Tetraselmis (CT), rotifers (R), preserved Tetraselmis with rotifers (PTR), and cultured Tetraselmis with rotifers (CTR). Larval rearing was terminated when all surviving larvae had moulted into the juvenile stage. Bars and vertical lines in panels (B) and (C) indicate mean and standard deviation values, respectively. Numbers of individuals are shown above the bars for each species brood in panel (B). Differences in larval duration and carapace length between feeding conditions in each species (P <0.05) are indicated by different lowercase letters in the tables following the feeding conditions in panels (B) and (C), respectively.
Fig. 1 in Stiatoandricus nievesaldreyi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022
Fig. 1. (A) Maps showing the five collecting locations (Batasan Island, Inanoran Island, Tagbilaran City, Handayan Island and Guindacpan Island) around Bohol Island, the Philippines and positions of the Bohol, the Philippines and the Palau Islands. Black dots: collecting locations. (B) DAPC plot of six populations of mandarinfish. (C) SRUCTURE assignment plot of six locations of the mandarinfish. G: Guindacpan; H: Handayan; I: Inanoran; B: Batasan; T: Tagbilaran; P: Palau.
Fig. 1 in Fig. 3. 50 in Fig. 8 in Stiatoandricus nievesaldreyi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022
Fig. 1. Changes in the survival rate (circle symbols) and cumulative moulting rate (triangle symbols) into the juvenile stage in relation to days after hatching of the larvae hatched from two different brooding females in two atyid shrimp species, Paratya compressa (A, B) and P. improvisa (C, D). Larvae were reared on five different diet combinations of phytoplankton (Tetraselmis sp.) and zooplankton rotifers: preserved Tetraselmis (PT), cultured Tetraselmis (CT), rotifers (R), preserved Tetraselmis with rotifers (PTR), and cultured Tetraselmis with rotifers (CTR). Larval rearing was terminated when all surviving larvae had moulted into the juvenile stage.
Fig. 4 in Fig. 8 in Stiatoandricus nievesaldreyi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022
Fig. 4. Relationship between pairwise clade distance and transformed range symmetry. The Spearman's rank correlation (rs = 0.505) is significant (p = 0.008).
Fig. 1 in Fig. 8 in Stiatoandricus nievesaldreyi Cuesta-Porta & Melika & Nicholls & Stone & Pujade-Villar 2022
Fig. 1. Bayesian inference phylogeny based on 16S, 12S, 28S and 50 morphological characters. Nodes with filled circles indicate sister group taxon relationships composed of basal broad and narrow range sister taxa. Posterior probabilities: *p = 0.90–0.94; **p = 0.95–0.99; ***p = 1.0.
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