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202 results for “rigidity”
Tracheal Intubation With the Rigid Tube for Laryngoscopy- a New Method
ClinicalTrials.gov study NCT03341507. IPD Sharing: Not stated. Countries: 1. Publications: 2.
Dorsal Penile Nerve Block for Rigid Cystoscopy in Men
ClinicalTrials.gov study NCT02502487. IPD Sharing: NO. Countries: 1. Publications: 10.
An Evaluation of Rigid Sternal Fixation in Supporting Bone Healing and Improving Postoperative Recovery
ClinicalTrials.gov study NCT01783483. IPD Sharing: UNDECIDED. Countries: 1. Publications: 15.
Sponge-like rigid structures in frictional granular packings
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Data from: Modulation of yaw stability with an unstable rigid body and a stabilising caudal fin in the yellow boxfish (Ostracion cubicus)
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Optimizing properties on the critical rigidity manifold of underconstrained central-force networks
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Data for: Rigidity sensing of inclusions directs differentiated cell elongation and force generation across phenotypes
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Ecological rigidity and the hardness of selection in the wild
Hutchinson's ecological theater and evolutionary play is a classical view of evolutionary ecology—ecology provides a template in which evolution occurs. An opposing view is that ecological and evolutionary changes are like two actors on a stage, intertwined by density- and frequency-dependence. These opposing views correspond to hard and soft selection respectively. While often presented as diametrically opposed, both types of selection can occur simultaneously, yet we largely lack knowledge of the relative importance of hard versus soft selection in the wild. I use a dataset of 3000 individual gall makers from 15 wild local populations over 5 years to investigate the hardness of selection. I show that enemy attack consistently favors some gall sizes over others (hard selection) but that these biases can be fine-tuned by density- and frequency-dependence (soft selection). As a result, selection is hard and soft in roughly equal measures, but the importance of each type varies as species interactions shift. I conclude that eco-evolutionary dynamics should occur when a mix of hard and soft selection acts on a population. This work contributes to the rapprochement of disparate views of evolutionary ecology—ecology is neither a rigid theater nor a flexible actor, but instead embodies components of both.
Development of a Pneumatically Actuated Quadruped Robot Using Soft-Rigid Hybrid Variable-Stiffness Rotary Joints
<p>This is a supplementary video for the paper "Development of a Pneumatically Actuated Quadruped Robot Using Soft-Rigid Hybrid Variable-Stiffness Rotary Joints" submitted to Robotics.</p>
FIGURE 6 in Assessment of SCoT and ISSR molecular markers in genetic diversity of rigid ryegrass (Lolium rigidum Gaud.) in Iran
FIGURE 6. STRUCTURE analysis of L. rigidum populations (A: the relationship between k and Delta k; the grouping based on k=18 (top) and k=17 (below) (The population code is according to Table 1).
FIGURE 3 in Assessment of SCoT and ISSR molecular markers in genetic diversity of rigid ryegrass (Lolium rigidum Gaud.) in Iran
FIGURE 3. TCS Network of L. rigidum studied populations based on ISSR data (The population code is according to Table 1) (Numbers of branches reveal number of different loci among studied populations).
FIGURE 5 in Assessment of SCoT and ISSR molecular markers in genetic diversity of rigid ryegrass (Lolium rigidum Gaud.) in Iran
FIGURE 5. NeighborNet diagram of L. rigidum studied populations based on SCoT data (The population code is according to Table 1).
FIGURE 2 in Assessment of SCoT and ISSR molecular markers in genetic diversity of rigid ryegrass (Lolium rigidum Gaud.) in Iran
FIGURE 2. UPGMA dendrogram of L. rigidum specimens showing genetic differences of the studied populations based on ISSR data (The population code is according to Table 1).
FIGURE 4 in Assessment of SCoT and ISSR molecular markers in genetic diversity of rigid ryegrass (Lolium rigidum Gaud.) in Iran
FIGURE 4. STRUCTURE analysis of L. rigidum populations (A: the relationship between k and Delta k; the grouping based on k=18 (top) and k=3 (below) (The population code is according to Table 1).
Data set from "Impact of the Free-Pelvis innovation in very rigid braces for adolescents with idiopathic scoliosis: short-term results of a matched case-control study"
<p>Dataset from a still non-published study titled "Impact of the Free-Pelvis innovation in very rigid braces for adolescents with idiopathic scoliosis: short-term results of a matched case-control study"</p>
Rigidity of 4-regular Ramanujan graphs
<p>This data set collects all 4-regular Ramanujan graphs with at most 16 vertices grouped by their rigidity properties:</p> <ul> <li>Rigid</li> <li>Non-rigid</li> <li>Globally rigid</li> <li>Rigid but not globally rigid</li> </ul> <p>All files are in Graph6 data format. If a file for a given order does not exist, there are no graphs with that order and the respective property.</p>
On following pages: 14. White-spined Spiny-rat (Trinomys albispinus); 15. Elias's Spiny-rat (Trinomys elias); 16. Rigid-spined Atlantic Spiny-rat (Trinomys paratus); 17. Yonenaga's Spiny-rat (Trinomys yonenagae), 18. Elegant-spined Atlantic Spiny-rat (Trinomys setosus); 19. Moojen's Spiny-rat (Trinomys moojeni); 20. Pau Brasil Spiny-rat (Trinomys mirapitanga); 21. Rio de Janeiro Spiny-rat (Trinomys dimidiatus); 22. Sao Paulo Spiny-rat (Trinomys iheringi); 23. Gracile Atlantic Spiny-rat (Trinomys gratiosus); 24. Sao Lourencgo Punare (Thrichomys laurentius); 25. Jacobina Punare (Thrichomys inermis); 26. Lagoa Santa Punare (Thrichomys apereoides); 27. Pantanal Punare (Thrichomys pachyurus); 28. Foster's Punare (Thrichomys fosteri); 29. Painted Tree-rat (Callistomys pictus); 30. Coypu (Myocastor coypus);, 31. Armored Rat (Hoplomys gymnurus). in Echimyidae
On following pages: 14. White-spined Spiny-rat (Trinomys albispinus); 15. Elias's Spiny-rat (Trinomys elias); 16. Rigid-spined Atlantic Spiny-rat (Trinomys paratus); 17. Yonenaga's Spiny-rat (Trinomys yonenagae), 18. Elegant-spined Atlantic Spiny-rat (Trinomys setosus); 19. Moojen's Spiny-rat (Trinomys moojeni); 20. Pau Brasil Spiny-rat (Trinomys mirapitanga); 21. Rio de Janeiro Spiny-rat (Trinomys dimidiatus); 22. Sao Paulo Spiny-rat (Trinomys iheringi); 23. Gracile Atlantic Spiny-rat (Trinomys gratiosus); 24. Sao Lourencgo Punare (Thrichomys laurentius); 25. Jacobina Punare (Thrichomys inermis); 26. Lagoa Santa Punare (Thrichomys apereoides); 27. Pantanal Punare (Thrichomys pachyurus); 28. Foster's Punare (Thrichomys fosteri); 29. Painted Tree-rat (Callistomys pictus); 30. Coypu (Myocastor coypus);, 31. Armored Rat (Hoplomys gymnurus).
Discrete-continuum numerical simulations of saltation over a rigid, bumpy bed
<p><span><span><span>The data provided here were obtained from discrete-continuum numerical simulations of saltation over a rigid, bumpy bed. The details of the simulation</span></span><span><span>s</span></span><span><span> are reported in the article entitled “</span></span><span><span><strong>Collisionless kinetic theory for saltation over a rigid, bumpy bed” </strong></span></span><span><span>by D. Berzi, A. Valance and J.T. Jenkins published in 2024 in the Journal of Fluid Mechanics.</span></span></span></p>
Cut-off rigidities for 2000-2025
<h1>Cut-off rigidities for 2000-2025</h1> <p>The <em>Open-source geomagneToSphere prOpagation tool</em> <a href="https://github.com/NLarsen15/OTSO" target="_blank" rel="noopener">OTSO</a> has been used to calculate cut-off rigidities for the epochs 2000, 2005, ..., 2025 for the entire Earth in 1° x 1° resolution. The parameters for the computation (<code>Tools/planet_params.py</code>) have not been changed from the default values, except for the date of the computation (January 1st, 00:00:00 for the years 2000, 2005, ..., 2025).<br> <br>The output is stored in the folder `Planet/<YEAR>` for each year. Each folder contains the parameters of the computation in `OTSO_PLANET_RUN_INFO.txt` and the results in `Planet.csv`. The CSV files contain for each latitude and longitude the upper (Ru), effective (Rc), and the lower cutoff rigidity (Rl).</p> <p>The results can be read and plotted with the example script <code><a href="https://github.com/NLarsen15/OTSO/blob/main/OTSO/Plotting%20Tools/PlanetPlot.py" target="_blank" rel="noopener">PlanetPlot.py</a></code> as provided by OTSO.</p>
Optimization of the Dosage of Chopped Basalt Fibers in Asphalt Pavement Surface Course Materials for Semi-rigid Base with Functional Requirements
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