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68 results for “Golf”
Figure 6 in Depth distribution of plant-parasitic nematodes on bentgrass golf greens in Missouri and Indiana
Figure 6: PCR results using Meloidogyne-specific and M. naasi and M. marylandi-specific primers. DL: DNA Ladder; 1: Meloidogyne spp. (DNA ID:9); 2: M. naasi (DNA ID:9); 3: Meloidogyne spp. (DNA ID:4); 4: M. marylandi (DNA ID:4); and 5: Meloidogyne spp.(DNA ID:4).
Figure 3 in Depth distribution of plant-parasitic nematodes on bentgrass golf greens in Missouri and Indiana
Figure 3: PCR results using Hoplolaimus-specific and H. stephanus, H. columbus and H. galeatus-specific primers. DL: DNA Ladder; 1: Hoplolaimus spp. (DNA ID:10); 2: H. stephanus (DNA ID:10); 3: H. columbus (DNA ID:10); 4 H. galeatus (DNA ID:10); 5: Hoplolaimus spp. (DNA ID:3); 6: H. stephanus (DNA ID:3); 7: H. columbus (DNA ID:3); 8 H. galeatus (DNA ID:3); 9: Hoplolaimus spp. (DNA ID:4); 10: H. stephanus (DNA ID:4); 11: H. columbus (DNA ID:4); and 12 H. galeatus (DNA ID:4).
Figure 2 in Depth distribution of plant-parasitic nematodes on bentgrass golf greens in Missouri and Indiana
Figure 2: Phylogeny of the rDNA ITS region of Hoplolaimus spp. isolated from golf putting greens. Phylogenetic trees were constructed with the neighbor-joining algorithm using the Kimura two-parameter model with Litylenchus spp. (LC383724) as the outgroup. Bootstrap values are based on 1000 resamplings of the data set. DNAID codes correlate to Table 2.
Figure 1 in Depth distribution of plant-parasitic nematodes on bentgrass golf greens in Missouri and Indiana
Figure 1: Distribution of plant-parasitic nematode species sampled from creeping bentgrass putting greens in Missouri and eastern Kansas in 2021 and Indiana in 2022 in two independent pie charts. Samples were collected during the months of April, June, August and October of 2021 and 2022, respectively. "n" indicates total PPNs represented within each chart.
Figure 4 in Depth distribution of plant-parasitic nematodes on bentgrass golf greens in Missouri and Indiana
Figure 4: Scanning-electron micrographs of a lance nematode specimen collected form Site 5. A) four lip annules; B) the presence of an epiptygma; C) 25 longitudinal striae on the basal lip annule; and D) four lateral incisures.
Figure 5 in Depth distribution of plant-parasitic nematodes on bentgrass golf greens in Missouri and Indiana
Figure 5: Phylogeny of molecularly characterized Meloidogyne spp. isolated from golf coursed based on D2/D3 28S genes. phylogenetic trees were constructed with the neighborjoining algorithm using the Kimura two-parameter model with Litylenchus spp. (LC383724) as the outgroup. Bootstrap values are based on 1000 resamplings of the data set and displayed near branch nodes. DNAID codes correlate to Table 2.
Dataset: Sacks Parente Golf, Inc. (SPGC) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Figure 1. - Zone d in Composition et variations nycthémérales des peuplements ichtyologiques des petits fonds mixtes du golfe d'Annaba, Algérie
Figure 1. - Zone d'étude et localisation des sites des pêches expérimentales (*). [Study area and location of sites for experimental fisheries].
Figure 3.- Projection des deux matrices d in Composition et variations nycthémérales des peuplements ichtyologiques des petits fonds mixtes du golfe d'Annaba, Algérie
Figure 3.- Projection des deux matrices d'abondance composées des mois (en lignes) et des espèces (en colonnes). Les espèces occasionnelles n'ont pas été considérées dans les calculs. A.b: Atherina boyeri, A.p: Atherina punctata, B.b: Boops boops, C.L: Chelon labrosus, D.a: Diplodus annularis, D.v: Diplodus vulgaris, D.s.s: Diplodus sargus sargus, L.a: Liza aurata, L.r: Liza ramada, L.s: Liza saliens, L.m: Lithognathus mormyrus, M.b: Mullus barbatus barbatus, M.s: Mullus surmuletus, O.m: Oblada melanura, P.m: Pomatoschistus marmoratus, S.s: Sarpa salpa, S.p: Scorpaena porcus, S.o: Symphodus ocellatus, S.t: Symphodus tinca, S.t.r: Syngnathus typhle, T.o: Trachinotus ovatus, T.d: Trachirus draco. [Projection of the two abundance matrices composed of the months (in lines) and species (in columns)].
Figure 4 in Composition et variations nycthémérales des peuplements ichtyologiques des petits fonds mixtes du golfe d'Annaba, Algérie
Figure 4. - Dendrogramme basé sur la composition et l'abondance spécifiques nycthémérales durant les quatre saisons (P: printemps, E: été, A: automne, H: hiver). [Dendrogram based on the specific composition and abundance during the day and night of four seasons (P: spring, E: summer, A: autumn, H: winter).]
Figure 8 in Reproduction et maturation des gonades de Sardina pilchardus dans le golfe d'Annaba (Nord-Est algérien)
Figure 8. - Représentation histologique des cinq stades de maturité cellulaire des ovaires de Sardina pilchardus. A: Stade I, Immature; B, C: Stade II, Pré-ponte; D: Stade III, Ponte; E: Stade IV, Post-ponte; F: Stade V, Repos sexuel (voir Tab. II). Coloration à l'hémalunéosine. Ov I: ovocyte primaire de phase I; Ov II: ovocyte primaire de phase II; Ov III: ovocyte primaire de phase III; Ov IV: ovocyte primaire de phase IV; Ov V: ovocyte primaire de phase V; N: noyau; il: inclusions lipidique; AT: ovocyte atrétique; Lo: lumière ovarienne; Fol: follicules vides (lacunes poste-ovulatoires). [Histological representation of the five stages of cell maturity of ovaries in S. pilchardus. A: Stage I, Immature; B, C: Stage II, Pre-spawning; D: Stage III, Spawning; E: Stage IV, Post-laying; F: Stage V, Sexual rest (see Tab. II). Staining with haematoxylin-eosin. Ov I: primary oocyte phase I; Ov II: primary oocyte phase II; Ov III: primary oocyte phase III; Ov IV: primary oocyte phase IV; Ov V: primary oocyte phase V; N: nucleus; il: lipid inclusions; AT: atretic oocyte; Lo: ovarian light; Fol: empty follicles (gaps post-ovulatory).
Figure 7 in Reproduction et maturation des gonades de Sardina pilchardus dans le golfe d'Annaba (Nord-Est algérien)
Figure 7. - Relations entre la fécondité absolue et la longueur totale (A), poids des gonades (B), le poids total (C), et poids somatique (D) chez Sardina pilchardus. [Relationships between batch fecundity and total length (A), ovary free weight (B), total weight (C) and somatic weight (D).]
Figure 4 in Reproduction et maturation des gonades de Sardina pilchardus dans le golfe d'Annaba (Nord-Est algérien)
Figure 4. - Variation mensuelle de l'adiposité chez les femelles (A) et chez les mâles (B) de Sardina pilchardus. Les lettres A, B, C, et D indiquent la différence significative entre les moyennes mensuelles et les groupes de moyennes identiques. Moyennes ± écartstypes de la moyenne. [Monthly change of adiposity in females (A) and in males (B). Different letters indicate significant differences between the monthly means and the groups of identical means. Means ± SEM.]
Figure 5 in Reproduction et maturation des gonades de Sardina pilchardus dans le golfe d'Annaba (Nord-Est algérien)
Figure 5. - Variation mensuelle du coefficient de condition K chez les femelles (A) et chez les mâles (B) de Sardina pilchardus. Les lettres A, B, C, D, et E indiquent la différence significative entre les moyennes mensuelles et les groupes de moyennes identiques. Moyennes ± écarts-types de la moyenne. [Monthly change of condition factor K in females (A) and in males (B). Different letters indicate significant differences between the monthly mean and the mean of identical groups. Means ± SEM.]
Figure 6 in Reproduction et maturation des gonades de Sardina pilchardus dans le golfe d'Annaba (Nord-Est algérien)
Figure 6. - Taille de première maturité sexuelle (L50) des Sardina pilchardus chez les femelles (A) et chez les mâles (B). [The size at first maturity (L50) in females (A) and in males (B).]
Figure 2 in Reproduction et maturation des gonades de Sardina pilchardus dans le golfe d'Annaba (Nord-Est algérien)
Figure 2. - Variation mensuelle du RGS chez les femelles (A) et chez les mâles (B) de Sardina pilchardus. Les lettres A, B, C et D indiquent la différence significative entre les moyennes mensuelles et les groupes de moyennes identiques. Moyennes ± écarts-types de la moyenne. [Monthly change of GSI in females (A) and in males (B). Different letters indicate significant differences between the monthly means and the groups of identical means. Means ± SEM.]
Figure 1 in Reproduction et maturation des gonades de Sardina pilchardus dans le golfe d'Annaba (Nord-Est algérien)
Figure 1. - Répartition des sexes de Sardina pilchardus en fonction de la taille. [Sex repartition of S. pilchardus, depending on the size.]
Figure 4 in La contamination métallique du rouget de vase (Mullus barbatus) et de la sardinelle (Sardinella aurita) du golfe de Tunis
Figure 4. - Teneurs en Hg dans les organes du rouget de vase et de la sardinelle en fonction des saisons (n = 30). Barres verticales: écart type. [Levels of Hg in the organs of Red Mullet and Sardinella (n = 30). Vertical bars: standard deviation.]
Figure 1 in La contamination métallique du rouget de vase (Mullus barbatus) et de la sardinelle (Sardinella aurita) du golfe de Tunis
Figure 1. - Carte du golfe de Tunis et zone d'échantillonnage. [Map of Tunis Gulf and sampling stations.]
Figure 3 in La contamination métallique du rouget de vase (Mullus barbatus) et de la sardinelle (Sardinella aurita) du golfe de Tunis
Figure 3. - Teneurs en Pb dans les organes du rouget de vase et de la sardinelle en fonction des saisons (n = 30). Barres verticales: écart type. [Levels of Pb in the organs of Red Mullet and Sardinella (n = 30). Vertical bars: standard deviation.]
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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.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.