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79 results for “dipping”
Fig. 5 Paired RDFs. a DIP-V-17109 in Ornamental feathers in Cretaceous Burmese amber: resolving the enigma of rachis-dominated feather structure
Fig. 5 Paired RDFs. a DIP-V-17109 overview; b barbs of DIP-V-17109 with clumped barbules and blunt barb apices; c DIP-V-15153 overview, with feather apices deflected dorsally (to left) by resin flows, but rachis unaffected; d RSKM_P3306.58 overview, horizontal arrowheads mark rachis lateral margins, vertical arrowheads mark rachidial ridges, arrow denotes area for detailed images in e and f; e detail of barb bases and lateral attachment to the rachis in RSKM_P3306.58; f detail of barbules in RSKM_P3306.58, arrow highlights hooklets on distal barbules. Scale bars = 5 mm in (a); 0.2 mm in (b); 2 mm in (c and d); 0.5 mm in (e and f)
Fig. 3 RDFs with interlocking barbs. a DIP-V-16111 in Ornamental feathers in Cretaceous Burmese amber: resolving the enigma of rachis-dominated feather structure
Fig. 3 RDFs with interlocking barbs. a DIP-V-16111 overview with asymmetrical vanes (arrowheads at base of each vane); b DIP-V-16111 barb structure; c DIP-V-16111 barbules with hooklets (inset and arrowheads); d DIP-SY-06231 overview with plumulaceous feathers trapped on drying line (arrowheads), and more detailed view of barb and barbule structure (inset). Scale bars = 2 mm in (a); 0.5 mm in (b); 0.1 mm in (c); 5 mm in (d); 0.2 mm in (d) inset
Geometrical Relations between Slab Dip and the Location of Volcanic Arcs and Back-arc Spreading Centers
<p>The dataset includes the measurements of individual subduction zones defined in the convergence-parallel, trench-perpendicular, and spreading-parallel direction. </p> <p> </p> <p>Table S3. Location of each trench, arc, and back-arc defined in a direction parallel to the convergence, and the corresponding distance from the trench to the arc (D_TA), subarc slab depth (H), and from the trench to the back-arc spreading center (D_TB). The slab dip is measured at 50km (Dip50), 100km (Dip100), and 200km (Dip200) and averaged from 0 to 50 km (Dip050), 0 to 100km (Dip0100), 0 to 200km (Dip0200), and 50 to 200km (Dip50200). </p> <p>Table S4. Location of each trench, arc, and back-arc defined in a direction perpendicular to the trench, and the corresponding distance from the trench to the arc (D_TA), subarc slab depth (H), and from the trench to the back-arc spreading center (D_TB). The slab dip is measured at 50km (Dip50), 100km (Dip100), and 200km (Dip200) and averaged from 0 to 50 km (Dip050), 0 to 100km (Dip0100), 0 to 200km (Dip0200), and 50 to 200km (Dip50200). </p> <p>Table S5. Location of each trench, arc, and back-arc defined in a direction parallel to the spreading direction, and the corresponding distance from the trench to the arc (D_TA), subarc slab depth (H), and from the trench to the back-arc spreading center (D_TB). The slab dip is measured at 50km (Dip50), 100km (Dip100), and 200km (Dip200) and averaged from 0 to 50 km (Dip050), 0 to 100km (Dip0100), 0 to 200km (Dip0200), and 50 to 200km (Dip50200). </p> <p> </p>
Triple-dip La Niña contributes to Pakistan flooding and southern China drought in summer 2022
<p><span>In the summer of 2022, a long-lasting La Niña entered its third year. In Asia, southern China was in the grip of a historic drought while heavy rainfall ravaged Pakistan. Using a climate model forced by observed sea surface temperatures (SST) over the equatorial Pacific, we show that the back-to-back La Niña events from 2020 to 2022 are a key contributor to the global SST pattern in 2022 including the negative phase of Pacific decadal oscillation and exceptionally strong negative Indian Ocean dipole. The model reproduces the observed precipitation pattern over South and East Asia, including enhanced rainfall over Pakistan–northwest India and reduced rainfall over southern China. Additional model simulations indicate that the negative Indian Ocean dipole combined with La Niña can decrease southern China rainfall by causing anomalous subsidence and anticyclonic flows. </span><span>These results highlight the dominant role of long-lasting La Niña in modulating rainfall over heavily populated monsoon Asia.</span></p>
Complex Exercise Intervention to Normalize Blood Pressure and Nocturnal Dipping in Patients With Hypertension
ClinicalTrials.gov study NCT03923907. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
Effects of Interdental Brush Dipped in 0.2% Hyaluronic Acid Gel on Periodontitis
ClinicalTrials.gov study NCT06309797. IPD Sharing: NO. Countries: 1. Publications: 1.
Association of Dipping Pattern or Early Morning Surge of BP With Asymptomatic Episodes of Paroxysmal Atrial Fibrillation in Subjects With Hypertension (DIMOSPAF)
ClinicalTrials.gov study NCT02563379. IPD Sharing: Not stated. Countries: 1. Publications: 20.
A Randomized Controlled Trial of Diabetes Screening Immediately Postpartum (DIP) and Follow Up PP CARE
ClinicalTrials.gov study NCT05909046. IPD Sharing: NO. Countries: 1. Publications: 0.
Data from: Shelf life and quality of tomato (Lycopersicon esculentum Mill.) fruits as affected by neem leaf extract dipping and beeswax coating
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Triple-dip La Niña contributes to Pakistan flooding and southern China drought in summer 2022
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Eastward dipping style of the underthrusting Indian lithosphere beneath the Tethyan Himalaya illuminated by P and S receiver functions
<p>This dataset presented here is used in the manuscript entitled "Eastward dipping style of the underthrusting Indian lithosphere beneath the Tethyan Himalaya illuminated by P and S receiver functions".</p>
Geometric model for toppling-prone deformation of layered reverse-dip slope
This paper concentrates on analyzing toppling response of layered reverse-dip slope under the action of geometric feature factors of slope angle, strata thickness and strata dip, so as to establish toppling-prone geometric model for toppling deformation. To achieve this, a total of 144 kinds of combination schemes performed by numerical simulation are carried out on three secondary factors of slope angle and strata dip and thickness. The toppling response of reverse dip slope under the effect of geometric feature factors is obtained using numerical simulation software UDEC. Then a model for toppling prediction is designed by utilizing support vector machine, and followed by a geometric model for possible toppling of reverse-dip slope. The research shows that the geometric model is a quarter of a spheroid with a slope angle of 80°, a strata dip of 80°, and a strata thickness of 0.19 m as the center. The length of the long equatorial radius of the spheroid is 31° (strata dip axial), that of the short equatorial radius is 21° (slope angle axial), and the polar radius is 0.075 m (strata thickness axial), and the ratio of long equatorial radius, short equatorial radius and polar radius is 2.48:1.68:1.00.
Seawater body dipping behaviour of the Mauritian flying fox
<p>The Mauritian flying fox (<i>Pteropus niger</i>) is the last surviving fruit bat species on Mauritius and is currently Endangered. The species faces threats as only 4.4% of habitats with high native content remains, however highly fragmented and invaded by alien species. Furthermore, stochastic events such as cyclones negatively impact food resources availability and likely encourage flying foxes to explore alternative ways to complement their diet in situation of food shortages. We organized various trips after extensive stochastic events to observe flying foxes attempting to dip their lower body part in the sea. Around 15 seawater body dipping instances were observed. Each time, the flying fox would clumsily dip itself into the water and lick their wet fur immediately after. This shows the species' behavioral versatility and plausibly their resilience ability and local adaptation to particular opportunities within their environment. These observations potentially unravel an alternative way for flying foxes to complement minerals intake. The situation might also emphasize the decline in the species native foraging habitats quality and consequently prompts long-term conservation measures. Restoration of native forests from invasive alien species could maximize diverse native fruits availability all year round, thus limiting chances of food shortages for flying foxes.</p>
Circadian Mechanisms Underlying Non-Dipping Blood Pressure in Blacks
ClinicalTrials.gov study NCT03934255. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
Sleep and Circadian Mechanisms of Non-dipping Blood Pressure
ClinicalTrials.gov study NCT03558893. IPD Sharing: NO. Countries: 1. Publications: 0.
Nocturnal Blood Pressure Dipping and Ventricular Repolarization in Hypertension
ClinicalTrials.gov study NCT07200856. IPD Sharing: Not stated. Countries: 0. Publications: 3.
Seawater body dipping behaviour of the Mauritian flying fox
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Geometric model for toppling-prone deformation of layered reverse-dip slope
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Data from: Enhanced cycle stability of a NiCo2S4 nanostructured electrode for supercapacitors fabricated by the alternate-dip-coating method
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Comparable levels of innate immune responses between low DIPs and high DIPs LAIV inoculations in the mouse upper respiratory tract revealed by scRNA-seq
GEO Series GSE277095. Mus musculus. 3 samples. Type: Expression profiling by high throughput sequencing.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.