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55 results for “ABBA”
Netanyahu's and Abbas' speeches at the UNGA 2010-19, coded using a populism framework
<p>Databaset with speeches of Benjamin Netanyahu and Mahmoud Abbas before the United Nations General Assembly (UNGA) (2010-2019) coded using MAXQDA following populism multidimensional comparative framework by Olivas Osuna (2021).</p> <p>In this database syntactic units —sentences—are individually coded whenever they match the criteria corresponding to any of populism/anti-populism, re-bordering/de-bordering, religion and securitisation codes defined previously. See Olivas Osuna and Rama (2021) and Olivas Osuna (2022) for reference to the methodology and previous empirical applications.</p>
Figure 9. Derogenes varicus sensu lato. A in Untangling the Derogenes varicus species complex in Scandinavian waters and the Arctic: description of Derogenes abba n. sp. (Trematoda, Derogenidae) from Hippoglossoides platessoides and new host records for D. varicus (Müller, 1784) sensu stricto
Figure 9. Derogenes varicus sensu lato. A, whole body ex Argentina sphyraena (SMNH-114558). B, terminal genitalia ex A. sphyraena (SMNH-114558). C, whole body ex Brosme brosme (SMNH-114560). D, terminal genitalia ex B. brosme (SMNH-114560). E, whole body ex Platichthys flesus (SMNH-208360). F, terminal genitalia ex P. flesus (SMNH-208360). G, whole body ex Molva molva (SMNH-114559). H, terminal genitalia ex M. molva (SMNH-114559).
Figure 5 in Untangling the Derogenes varicus species complex in Scandinavian waters and the Arctic: description of Derogenes abba n. sp. (Trematoda, Derogenidae) from Hippoglossoides platessoides and new host records for D. varicus (Müller, 1784) sensu stricto
Figure 5. Progonus muelleri (Levinsen, 1881) ex Myoxocephalus scorpius (NHMD-114950) and comparison between the terminal genitalia in Progonus and in Derogenes. A, P. muelleri ex M. scorpius (NHMD-114950), whole body. B, P. muelleri ex M. scorpius, terminal genitalia, horizontal section (SMNH-114586). C, Derogenes varicus sensu stricto ex Limanda limanda, terminal genitalia, horizontal section (SMNH114557).
Figure 8 in Untangling the Derogenes varicus species complex in Scandinavian waters and the Arctic: description of Derogenes abba n. sp. (Trematoda, Derogenidae) from Hippoglossoides platessoides and new host records for D. varicus (Müller, 1784) sensu stricto
Figure 8. Tree inferred using the maximum likelihood method based on the cox1 sequences; only bootstrap values higher than 70 are indicated.
Figure 1. Derogenes abba n in Untangling the Derogenes varicus species complex in Scandinavian waters and the Arctic: description of Derogenes abba n. sp. (Trematoda, Derogenidae) from Hippoglossoides platessoides and new host records for D. varicus (Müller, 1784) sensu stricto
Figure 1. Derogenes abba n. sp. ex Hippoglossoides platessoides. A, whole body (Type-9562). B, terminal genitalia (Type-9562). C, hologenophore, forebody (Type-9563).
Figure 10 in Untangling the Derogenes varicus species complex in Scandinavian waters and the Arctic: description of Derogenes abba n. sp. (Trematoda, Derogenidae) from Hippoglossoides platessoides and new host records for D. varicus (Müller, 1784) sensu stricto
Figure 10. Derogenes varicus sensu lato ex Hippoglossus hippoglossus (SMNH-104577). A, whole body. B, terminal genitalia.
Figure 6 in Untangling the Derogenes varicus species complex in Scandinavian waters and the Arctic: description of Derogenes abba n. sp. (Trematoda, Derogenidae) from Hippoglossoides platessoides and new host records for D. varicus (Müller, 1784) sensu stricto
Figure 6. Tree inferred using the maximum likelihood method based on the 28S rDNA sequence data; only bootstrap values higher than 70 are indicated. The newly generated sequences of Derogenes varicus sensu stricto from Sweden, Northeast Atlantic are indicated by*. Other D. varicus sensu stricto are those of Krupenko et al. [30] from the Barents Sea and White Sea; and those of Bouguerche et al. [3] from Northeast Atlantic, off Sweden and Norway and from Svalbard, Norway, Arctic Ocean.
Figure 7 in Untangling the Derogenes varicus species complex in Scandinavian waters and the Arctic: description of Derogenes abba n. sp. (Trematoda, Derogenidae) from Hippoglossoides platessoides and new host records for D. varicus (Müller, 1784) sensu stricto
Figure 7. Tree inferred using the maximum likelihood method based on the ITS2 sequence data; only bootstrap values higher than 70 are indicated.
2. Haoua Abba Maloum, déplacée de la crise Boko Horam (récit d'un fragment de vie)
<p>Déplacée et fille de déplacés de Amchidé (Cameroun), Haoua Abba Maloum est une jeune femme au foyer et mère de 02 enfants. Résidente au quartier Lougguéo dans la ville de Maroua, elle est de l’ethnie Kanuri.</p> <p>***</p> <p>Ce travail a été supervisé par SAÏBOU ISSA, Coordonnateur du Centre d'Études et de Recherche en Paix, Sécurité et Intégration.</p> <p>***</p> <p>La crise Boko Haram, débutée en 2009, a provoqué le déplacement des populations des zones frontalières vers la capitale de la région de l’Extrême-Nord. Le champ des <em>crisis studies</em> a quelque peu négligé les problématiques linguistiques au détriment des dynamiques et phénomènes sociopolitiques des migrations internes et transfrontalières. Douze ans après le déclenchement de ce conflit, la petite enquête de terrain, financée par le Centre d’Études et de Recherche en Paix, Sécurité et Intégration (CERPSI), revient vers les déplacés et les réfugiés dans l’optique de recueillir des données qualitatives sur les stéréotypes, la stigmatisation et l’adaptation des victimes de la guerre. Il a principalement été question de capter, dans les récits de vie, les mécanismes conflictuels qui provoquent les stigmatisations ethnolinguistiques des déplacés désormais installés dans la ville de Maroua. Le jeu de données qui est présenté ici est ouvert à la communauté scientifique, aux différents acteurs sociaux et aux organisations qui opèrent sur les questions de crise en général et au Sahel en particulier. Il est composé de dix entretiens dans lesquels les victimes racontent leur trajectoire, leurs traumatismes et leur résilience. </p>
Figure 3 in Untangling the Derogenes varicus species complex in Scandinavian waters and the Arctic: description of Derogenes abba n. sp. (Trematoda, Derogenidae) from Hippoglossoides platessoides and new host records for D. varicus (Müller, 1784) sensu stricto
Figure 3. "Derogenes limula" ex Parablennius tentacularis. Unpublished line drawing by A. Looss.
Data from: Expression, subcellular localization, and mechanistic analysis of intellectual disability syndrome protein ABBA
Open the record for dataset details and reuse information.
Subspecies and Distribution. L.v.victoriaeThomas,1893—Tanzania. L.v.angolensisThomas,1904—Angola. L.v.senegalensisRochebrune,1883—Senegal,TheGambia. L. v. whyte: Thomas, 1894 — Malawi. The African Savanna Hare is present from the Atlantic coast of NW Africa (Western Sahara S to Guinea), E across the Sahel to Sudan and the extreme W Ethiopia, S through E Africa (E DR Congo, Uganda, W Kenya, Rwanda, Burundi, and Tanzania) to most of Angola, Zambia, Malawi, NE Namibia, Botswana, Zimbabwe, Mozambique, E South Africa, Swaziland, and Lesotho; a small isolated population exists near Beni Abbas in the Sahara Desert in W Algeria. in Leporidae
Subspecies and Distribution. L.v.victoriaeThomas,1893—Tanzania. L.v.angolensisThomas,1904—Angola. L.v.senegalensisRochebrune,1883—Senegal,TheGambia. L. v. whyte: Thomas, 1894 — Malawi. The African Savanna Hare is present from the Atlantic coast of NW Africa (Western Sahara S to Guinea), E across the Sahel to Sudan and the extreme W Ethiopia, S through E Africa (E DR Congo, Uganda, W Kenya, Rwanda, Burundi, and Tanzania) to most of Angola, Zambia, Malawi, NE Namibia, Botswana, Zimbabwe, Mozambique, E South Africa, Swaziland, and Lesotho; a small isolated population exists near Beni Abbas in the Sahara Desert in W Algeria.
Data from: Evaluating the use of ABBA-BABA statistics to locate introgressed loci
Several methods have been proposed to test for introgression across genomes. One method tests for a genome-wide excess of shared derived alleles between taxa using Patterson's D statistic, but does not establish which loci show such an excess or whether the excess is due to introgression or ancestral population structure. Several recent studies have extended the use of D by applying the statistic to small genomic regions, rather than genome-wide. Here, we use simulations and whole genome data from Heliconius butterflies to investigate the behavior of D in small genomic regions. We find that D is unreliable in this situation as it gives inflated values when effective population size is low, causing D outliers to cluster in genomic regions of reduced diversity. As an alternative, we propose a related statistic f̂d, a modified version of a statistic originally developed to estimate the genome-wide fraction of admixture. f̂d is not subject to the same biases as D, and is better at identifying introgressed loci. Finally, we show that both D and f̂d outliers tend to cluster in regions of low absolute divergence (dXY), which can confound a recently proposed test for differentiating introgression from shared ancestral variation at individual loci.
Figure 6 from: Abdullah RK, Issa RA, Abu-Samak M, Mohammad BA, Abbas MA, Awwad SH (2024) Nephroprotective effects of Equisetum ramosissimum L. extract in streptozotocin-induced diabetic rats. Pharmacia 71: 1-11. https://doi.org/10.3897/pharmacia.71.e113659
Figure 6 Kidney sections (A) control. B, C. STZ-treated diabetic-rat showing atrophy of glomerular tuft (white arrow in B arrow), increase in the Bowman's space area and degeneration of renal tubules (Black arrow in C) associated with severe hemorrhage and congestion of renal blood vessels; D. Extract-treated rats. Renal tubules (Black arrow), Bowman's capsule (white arrow); E, F. Metformin-treated rats. H & E stain.
Figure 5 from: Abdullah RK, Issa RA, Abu-Samak M, Mohammad BA, Abbas MA, Awwad SH (2024) Nephroprotective effects of Equisetum ramosissimum L. extract in streptozotocin-induced diabetic rats. Pharmacia 71: 1-11. https://doi.org/10.3897/pharmacia.71.e113659
Figure 5 Liver tissue sections of (A) control; B. STZ-treated diabetic-rat; C. Extract-treated rats; D. Metformin-treated rats. White arrows: Central vein. Black arrows: Sinosoids. H& E stain.
Figure 3 from: Abdullah RK, Issa RA, Abu-Samak M, Mohammad BA, Abbas MA, Awwad SH (2024) Nephroprotective effects of Equisetum ramosissimum L. extract in streptozotocin-induced diabetic rats. Pharmacia 71: 1-11. https://doi.org/10.3897/pharmacia.71.e113659
Figure 3 Final Mean values of Urea serum levels at the end of the study. Abbreviations: C = non-diabetic control group, SDM = STZ-induced diabetic rats, SDMET = STZ-induced diabetic rat + metformin (50 mg/kg/day), Q2 = Low dose extract (200 mg/kg/day), SDMQ2 = STZ-induced diabetic rats + Low dose extract (200 mg/kg/day), Q3 =: High dose extract (300 mg/kg/day), SDMQ3 = STZ-induced diabetic rats + High dose extract (300 mg/kg/day). NOTE: Results are represented as Mean±SD (n=6 for each group). * p < 0.05, ** p < 0.01, and *** p < 0.001 when compared with the SDM; • p < 0.05, •• p < 0.01, and •••p < 0.001 when compared with the SDMT (Dunnett's Multiple Comparisons Test).
Figure 4 from: Abdullah RK, Issa RA, Abu-Samak M, Mohammad BA, Abbas MA, Awwad SH (2024) Nephroprotective effects of Equisetum ramosissimum L. extract in streptozotocin-induced diabetic rats. Pharmacia 71: 1-11. https://doi.org/10.3897/pharmacia.71.e113659
Figure 4 Final Mean values of Urea serum levels at the end of the study. Abbreviations: C = non-diabetic control group, SDM = STZ induced diabetic rats, SDMET = STZ-induced diabetic rat + metformin (50 mg/kg/day), Q2 = Low dose extract (200 mg/kg/day), SDMQ2 = STZ-induced diabetic rats + Low dose extract (200 mg/kg/day), Q3 =: High dose extract (300 mg/kg/day), SDMQ3 = STZ-induced diabetic rats+ High dose extract (300 mg/kg/day). NOTE: Results are represented as Mean±SD (n=6 for each group). * p < 0.05, ** p < 0.01, and *** p < 0.001 when compared with the SDM; • p < 0.05, •• p < 0.01, and •••p < 0.001 when compared with the SDMT (Dunnett's Multiple Comparisons Test).
Figure 5 from: Alqaisi KM, Abbas MA, Alshawawreh R (2024) Chrysin's dose-dependent effects on steroidogenesis in female BALB/c mice: In vivo study of adrenal, ovarian, and uterine hormone regulation. Pharmacia 71: 1-9. https://doi.org/10.3897/pharmacia.71.e114547
Figure 5 Histological analysis of the adrenal gland. A. Adrenal gland of control group; B. Adrenal gland of 100 mg chrysin-treated group.
Figure 2 from: Alqaisi KM, Abbas MA, Alshawawreh R (2024) Chrysin's dose-dependent effects on steroidogenesis in female BALB/c mice: In vivo study of adrenal, ovarian, and uterine hormone regulation. Pharmacia 71: 1-9. https://doi.org/10.3897/pharmacia.71.e114547
Figure 2 The expression of target genes in the ovary of female mice is expressed as A. Delta cycle threshold (ΔCt) and B. Relative fold gene expression. β-actin was used as a housekeeping gene for calculating ΔCt and relative fold gene expression. * P ≤ 0.05. 3β-HSD, 3β-Hydroxysteroid dehydrogenase/Δ5-4 isomerase.
Figure 1 from: Alqaisi KM, Abbas MA, Alshawawreh R (2024) Chrysin's dose-dependent effects on steroidogenesis in female BALB/c mice: In vivo study of adrenal, ovarian, and uterine hormone regulation. Pharmacia 71: 1-9. https://doi.org/10.3897/pharmacia.71.e114547
Figure 1 The expression of target genes in the adrenal gland of female mice is expressed as A. Delta cycle threshold (ΔCt) and B. Relative fold gene expression. β-actin was used as a housekeeping gene for calculating ΔCt and relative fold gene expression. * P ≤ 0.05, ** P ≤ 0.01. CYP17A1, cytochrome P450 family 17 subfamily A member 1; P450scc, cholesterol side-chain cleavage enzyme; 3β-HSD, 3β-Hydroxysteroid dehydrogenase/Δ5-4 isomerase.
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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.
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