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FIGURE 5. Ultimate tergites, dorsal A. Scolopendra longipes, Florida B. Scolopendra alternans, Haiti C in Resurrection of Scolopendra longipes Wood and Scolopendra cubensis Saussure from synonymy with Scolopendra alternans Leach (Chilopoda, Scolopendromorpha, Scolopendridae): an enigmatic species-group needing phylogeographic analysis, with an overview on the origin
FIGURE 5. Ultimate tergites, dorsal A. Scolopendra longipes, Florida B. Scolopendra alternans, Haiti C. Scolopendra alternans, Puerto Rico (Scale bars = 2 mm)
FIGURE 6. Ultimate pedal segment, ventral A. Scolopendra longipes, Florida B. Scolopendra longipes, Bimini C. Scolopendra alternans, Haiti D in Resurrection of Scolopendra longipes Wood and Scolopendra cubensis Saussure from synonymy with Scolopendra alternans Leach (Chilopoda, Scolopendromorpha, Scolopendridae): an enigmatic species-group needing phylogeographic analysis, with an overview on the origin
FIGURE 6. Ultimate pedal segment, ventral A. Scolopendra longipes, Florida B. Scolopendra longipes, Bimini C. Scolopendra alternans, Haiti D. Scolopendra alternans, Puerto Rico (Scale bars = 2 mm).
Dataset for Reliability assessment of steel truss railway bridges at ultimate limit state under combined loads
<p>Dataset for Reliability assessment of steel truss railway bridges at ultimate limit state under combined loads (under review at Reliability Engineering & System Safety) by Mohammad Shihabuddin Khan, Colin Caprani, Roman Lenner, and Miroslav Sýkora.</p>
Dataset for: Online Virtual Machine Provisioning under Uncertainty: A Robust Approach to Ultimate Resource Utilization
<div> <div>In cloud resource scheduling and management, efficiency and quality are two vital yet conflicting objectives. Cloud providers, such as Huawei, prioritize quality by avoiding hotspots and aim to optimize and increase the utilization efficiency of PM resources without compromising quality. The typical online VM scheduling problem in cloud practice can be stated as follows: given a fixed number of PMs and a queue of arriving VMs, the goal is to place as many VMs as possible onto the PMs while ensuring that no hotspots occur.</div> <br> <div>The trace consists of a total of 297 instances, where each instance is represented by a JSON file named in the format X-1.json, X-2.json, and X-3.json. Here, X represents the number of PMs capable of hosting the arriving VMs, ranging from 2 to 100. For example, 50-1.json indicates that there are 50 available PMs to host the arriving VMs. For each value of X, there are three replicas denoted by the suffixes 1, 2, and 3.</div> <br> <div>There are multiple flavors of PM available in our cloud service provider. Readers can refer to our online paper, which we will provide the link for below, to learn about the specific flavor we used for academic and testing purposes. However, they are also free to use other typical flavors as per their requirements.</div> <br> <div>Each JSON file contains information about the VMs waiting to be assigned to PMs, and the fields for these VMs are as follows (each line represents a VM):</div> <br> <div> <ul> <li><strong>Created_at_point</strong>: the timestamp when the VM arrives. The list is already sorted in ascending order based on the arrival times.</li> </ul> </div> <ul> <li><strong>memory</strong>: the memory capacity of the VM defined by its flavor, measured in gigabytes (GB).</li> <li><strong>duration_point</strong>: the timestamps indicating the duration of the VM's usage. Each timestamp represents a 5-minute interval in practice.</li> <li><strong>vm_util</strong>: the real utilized capacity of the VM at each timestamp, with a similar meaning as the Hotspot Resolution trace. The length of the list is equal to the value of "duration_point".</li> </ul> </div> <div> </div>
FIGURE 3 in A new species of Podosphaera sect. Sphaerotheca subsect. Sphaerotheca from India-first report of powdery mildew causing wilting and ultimately death of leaves of Filipendula vestita
FIGURE 3. Microphotographs of fruiting bodies of Podosphaera filipendulensis (AMH 9934, holotype) a. Initial stage of developing cleistothecium (homogenious cells). b. Mature cleistothecium. c. Pseudoparenchymatous nature of wall of cleistothecium. d–g. Ruptured cleistothecia each releasing an ascus. h, i. Appendages on the surface of cleistothecia. Scale bars: a = 25 μm, b = 40 μm, c = 20 μm, d = 50 μm, e = 40 μm, f, g = 30 μm, h, i = 20 μm.
FIGURE 4 in A new species of Podosphaera sect. Sphaerotheca subsect. Sphaerotheca from India-first report of powdery mildew causing wilting and ultimately death of leaves of Filipendula vestita
FIGURE 4. Microphotographs of asci of Podosphaera filipendulensis (AMH 9934, holotype) a, b. Fully mature ascus. c, d. Ruptured asci releasing ascospores (arrows for ruptured oculi). e. Ascospores. Scale bars: a = 25 μm, b = 30 μm, c, d = 25 μm, e = 15 μm.
FIGURE 2 in A new species of Podosphaera sect. Sphaerotheca subsect. Sphaerotheca from India-first report of powdery mildew causing wilting and ultimately death of leaves of Filipendula vestita
FIGURE 2. Photographs of fruiting body of Podosphaera filipendulensis on the surface of infected leaf (AMH 9934, holotype) a. Cleistothecia (arrows) in between leaf trichomes. b–f. Cleistothecia with appendages. Scale bars: b, c = 60 μm, d = 30 μm, e = 25 μm, f = 30 μm.
FIGURE 1 in A new species of Podosphaera sect. Sphaerotheca subsect. Sphaerotheca from India-first report of powdery mildew causing wilting and ultimately death of leaves of Filipendula vestita
FIGURE 1. Symptoms on Filipendula vestita a. Host plants in natural habitat. b. Wilting and drying symptom in upper younger leaves. c. Symptom on lower surface of leaf. d. Black cleistothecia on the lower surface of leaf. e. Symptom on upper surface of leaf. f. Heavily infected lower leaf surface. Scale bars: c, d = 5 mm, e = 10 mm, f = 5 mm.
Distribution. EC Madagascar, currently known only from the Bemosary Classified Forest (Fandriana), but limits of the distribution may ultimately prove to extend from the Mangoro River in the N to the Mananjary River in the S. in Indriidae
Distribution. EC Madagascar, currently known only from the Bemosary Classified Forest (Fandriana), but limits of the distribution may ultimately prove to extend from the Mangoro River in the N to the Mananjary River in the S.
On following pages: 308. Caspian White-toothed Shrew (Crocidura caspica); 309. Iranian White-toothed Shrew (Crocidura susiana); 310. Pale Gray White-toothed Shrew (Crocidura pergrisea); 311. Kashmir White-toothed Shrew (Crocidura pullata); 312. Cretan White-toothed Shrew (Crocidura zimmermanni); 313. Sicilian White-toothed Shrew (Crocidura sicula); 314. Canarian White-toothed Shrew (Crocidura canariensis); 315. West African Pygmy White-toothed Shrew (Crocidura obscurion); 316. Ivory Coast White-toothed Shrew (Crocidura eburnea); 317. Moonshine White-toothed Shrew (Crocidura luna); 318. Greenwood's White-toothed Shrew (Crocidura greenwoodae), 319. Somali Dwarf White-toothed Shrew (Crocidura nana): 320. Bekele's White-toothed Shrew (Crocidura afeworkbekele); 321. Yalden's White-toothed Shrew (Crocidura yaldeni); 322. Glass's White-toothed Shrew (Crocidura glassi); 323. Bale White-toothed Shrew (Crocidura bottegoides); 324. Bailey's White-toothed Shrew (Crocidura baileyi); 325. Macmillan's White-toothed Shrew (Crocidura macmillani); 326. Lucina's White-toothed Shrew (Crocidura lucina); 327 Thalia's White-toothed Shrew (Crocidura thalia): 328. Guramba White-toothed Shrew (Crocidura phaeura); 329. Harenna White-toothed Shrew (Crocidura harenna); 330. Bottego's White-toothed Shrew (Crocidura bottegi), 331. Smoky White-toothed Shrew (Crocidura fumosa); 332. Zaphiro's White-toothed Shrew (Crocidura zaphir); 333. Ugandan Lowland White-toothed Shrew (Crocidura selina); 334. MacArthur's White-toothed Shrew (Crocidura macarthur); 335. Nyiro White-toothed Shrew (Crocidura macowi); 336. Ultimate White-toothed Shrew (Crocidura ultima); 337. Rainey's White-toothed Shrew (Crocidura raineyi); 338. East African Highland White-toothed Shrew (Crocidura allex): 339. Xanthippe's White-toothed Shrew (Crocidura xantippe); 340. Elgon White-toothed Shrew (Crocidura elgonius); 341. Fischer's White-toothed Shrew (Crocidura fischeri); 342. Peters's White-toothed Shrew (Crocidura gracilipes); 343. Desperate White-toothed Shrew (Crocidura desperata); 344. Telford's White-toothed Shrew (Crocidura telford); 345. Kilimanjaro White-toothed Shrew (Crocidura monax). in Soricidae
On following pages: 308. Caspian White-toothed Shrew (Crocidura caspica); 309. Iranian White-toothed Shrew (Crocidura susiana); 310. Pale Gray White-toothed Shrew (Crocidura pergrisea); 311. Kashmir White-toothed Shrew (Crocidura pullata); 312. Cretan White-toothed Shrew (Crocidura zimmermanni); 313. Sicilian White-toothed Shrew (Crocidura sicula); 314. Canarian White-toothed Shrew (Crocidura canariensis); 315. West African Pygmy White-toothed Shrew (Crocidura obscurion); 316. Ivory Coast White-toothed Shrew (Crocidura eburnea); 317. Moonshine White-toothed Shrew (Crocidura luna); 318. Greenwood's White-toothed Shrew (Crocidura greenwoodae), 319. Somali Dwarf White-toothed Shrew (Crocidura nana): 320. Bekele's White-toothed Shrew (Crocidura afeworkbekele); 321. Yalden's White-toothed Shrew (Crocidura yaldeni); 322. Glass's White-toothed Shrew (Crocidura glassi); 323. Bale White-toothed Shrew (Crocidura bottegoides); 324. Bailey's White-toothed Shrew (Crocidura baileyi); 325. Macmillan's White-toothed Shrew (Crocidura macmillani); 326. Lucina's White-toothed Shrew (Crocidura lucina); 327 Thalia's White-toothed Shrew (Crocidura thalia): 328. Guramba White-toothed Shrew (Crocidura phaeura); 329. Harenna White-toothed Shrew (Crocidura harenna); 330. Bottego's White-toothed Shrew (Crocidura bottegi), 331. Smoky White-toothed Shrew (Crocidura fumosa); 332. Zaphiro's White-toothed Shrew (Crocidura zaphir); 333. Ugandan Lowland White-toothed Shrew (Crocidura selina); 334. MacArthur's White-toothed Shrew (Crocidura macarthur); 335. Nyiro White-toothed Shrew (Crocidura macowi); 336. Ultimate White-toothed Shrew (Crocidura ultima); 337. Rainey's White-toothed Shrew (Crocidura raineyi); 338. East African Highland White-toothed Shrew (Crocidura allex): 339. Xanthippe's White-toothed Shrew (Crocidura xantippe); 340. Elgon White-toothed Shrew (Crocidura elgonius); 341. Fischer's White-toothed Shrew (Crocidura fischeri); 342. Peters's White-toothed Shrew (Crocidura gracilipes); 343. Desperate White-toothed Shrew (Crocidura desperata); 344. Telford's White-toothed Shrew (Crocidura telford); 345. Kilimanjaro White-toothed Shrew (Crocidura monax).
Discover the Ultimate Pizza Experience at The Spot: Where Tradition Meets Innovation
<p>If you’re craving the perfect slice of pizza, then The Spot is the place to go. We pride ourselves on being the leading spot for pizza enthusiasts seeking quality and flavor in a friendly atmosphere. According to us here at The Spot, pizza is not just food but an experience shared, bringing joy into people's lives with every moment of it. Our commitment is to serve nothing but the best, from hand-tossed dough to prized selections of toppings. From the classic taste of a Margherita to meat marvels for those in search of bold flavors, The Spot has something for everyone. Savor the taste of a lifetime with every visit, order online on<a href="https://thepizzeriaspot.com"> thepizzeriaspot.com</a>, and let us take you on a pizza experience that you would never want to forget.</p> <h3>Our Story: Passion for Pizza</h3> <p>At The Spot, our story began with one simple idea: creating a pizzeria to merge the time-honored traditions of pizza-making with innovative, mouthwatering recipes. Growing up in families where food was always the heart and soul of everything, our founders, [Names or Founders], used to idealize the food business from childhood. Their love for pizza urged them to open The Spot—a place where quality ingredients, real recipes, and love for great food come together. We have taken our years of experience in the culinary world and used them to perfect our pizza-making process. Since day one, we sought to be more than just a pizzeria. Not only would we serve up amazing pizza, but also become a place for friends and families to gather in a warm, inviting atmosphere. Every pizza that leaves the oven tells a story of passion, tradition, and relentless pursuit of perfection. Today, The Spot stands as a beloved haven for pizza lovers, known for its dedication to flavor, freshness, deft craftsmanship, and that dream of perfection.</p> <h3>What Makes Us Different</h3> <p>So, what makes The Spot different from any other pizza shop? It's our commitment to quality. Every pizza served at The Spot starts off with our handmade dough, prepared fresh in-house every day. We’re proud to use the freshest ingredients: hand-picked tomatoes, cheese from an elite dairy, and fresh, locally obtained toppings. But what really sets us apart is the traditional brick oven, giving our pizzas that crispy crust with a smoky, rich flavor. Each pizza is cooked to perfection, ensuring that every single bite is as satisfying as the last. Whether you're in the mood for a classic pizza or something a bit more adventurous, we have you covered. It’s not all about pizza; our various unique sides are the perfect complement, from garlic knots to our famous calzones, all treated with the same love and care as our pizzas.</p> <h3>The Menu: A World of Flavor</h3> <p>At The Spot, we pride ourselves on offering a diverse menu to fit every taste. From our signature pizzas to our unique appetizers, there’s something for everyone to enjoy. Our Margherita Pizza is a fan favorite: simple yet packed with flavor, thanks to our fresh in-house tomato sauce, fresh mozzarella, and fragrant basil. Those who prefer it hearty will love our Meat Lovers Pizza, loaded with pepperoni, sausage, ham, and bacon for a truly indulgent experience. Feeling creative? Select your favorite premium cheeses, vegetables, and meats to craft your pizza your way. From gluten-free crusts to vegan cheese lovers, The Spot has it all. But that’s not all—our menu also includes calzones, pasta, fresh salads, and even desserts to satisfy your sweet tooth. Be sure to check out our weekly specials for exciting new creations and limited-time offerings!</p> <h3>Experience The Spot</h3> <p>When you step into The Spot, you’re not just walking into another pizzeria—you’re entering a space designed for comfort and enjoyment. Our restaurant is cozy and family-friendly, with both indoor and outdoor seating options. Whether grabbing a slice on your lunch break or gathering for dinner with friends, we want you to feel right at home. If you're in a rush, we’ve got you covered with takeout and delivery options. Just visit<a href="https://thepizzeriaspot.com"> thepizzeriaspot.com</a> to place your order.</p> <h3>Customer Reviews and Community Engagement</h3> <p>We are proud to be part of the local community, and our customers mean the world to us. Here’s what some of our loyal patrons have to say:</p> <ul> <li> <p>“The Spot has the best pizza in town! The crust is always perfect, and the toppings are so fresh. My family and I love coming here!” – Sarah M.</p> </li> <li> <p>“Love that they have gluten-free and vegan options. It’s hard to find a place that can accommodate everyone in my family, but The Spot does it perfectly.” – Jason L.</p> </li> </ul> <p>At The Spot, we believe in giving back too. That’s why we partner with local organizations, participate in charity events, and support community causes. When you dine with us, you’re not just enjoying great food—you’re supporting a business that cares.</p> <h3>Join Us Today</h3> <p>Ready to find your new go-to spot for pizza? Whether you crave a classic slice, a fully loaded pie, or something all your own, The Spot has it all. Join us for dine-in, takeout, or delivery today and see for yourself why we’ve become a local favorite. Order online at<a href="https://thepizzeriaspot.com"> thepizzeriaspot.com</a> to view our menu and place an order. We look forward to serving you soon at The Spot, where great pizza meets great people!</p> <p> </p>
Data from: Adoption of alternative migratory tactics: a view from the ultimate mechanism and threshold trait changes in a salmonid fish
Partial migration, in which a portion of the population migrates while the rest of the population remains as residents, is a common form of migration. Alternative migratory tactics (AMTs) of partial migration are often determined by polygenic threshold traits. However, the ultimate mechanisms that drive inter-population variations in threshold traits are not well understood. We present a simple schematic model to explain how the threshold trait changes with fitness consequences under opposing natural and artificial selection forces. We conducted a field test to evaluate the effects of migration difficulty (as a natural selective force) and selective captive breeding (as an artificial selective force) on threshold traits of a partially migratory fish. Male masu salmon (<i>Oncorhynchus masou</i>) in the Shari River system have AMTs divided into three population categories of hatchery, wild/above the waterfall, and wild/below the waterfall (control). The wild/above the waterfall salmon live in a high-migration-cost situation, and the threshold trait changed in a direction that promoted residency. In hatchery salmon, which are produced by migrant-selective captive breeding, the threshold trait changed in a direction that promoted migration. In contrast, Dolly Varden charr (<i>Salvelinus malma</i>) displayed only resident tactics, and the threshold trait did not differ between the populations above and below the waterfall, indicating that environment did not explain the variation in the threshold trait. Our results support the model and suggest that opposing natural and artificial selection forces drive variations in the threshold traits and migratory patterns in the studied species. Our conceptual framework for the ultimate mechanism may help to better understand adoption of AMTs and production of diverse intraspecific traits in migratory animals.
ChatGPT as the Ultimate Programming Assistant: How Far Is It?
<pre>1. code_generation_dataset: LeetCode benchmark and responses produced by ChatGPT, Codex, CodeGen. 2. data: the responses of repair and explanation produced by ChatGPT and Codex. 3. data_des: the responses of repair and explanation produced by ChatGPT_D and Codex_D.</pre>
Improving Assessment (and Ultimately Outcomes) of Permanent Prostate Implant Therapy
ClinicalTrials.gov study NCT00127816. IPD Sharing: Not stated. Countries: 1. Publications: 2.
A Randomized Trial of Udenafil Therapy in Patients With Mild Pulmonary Hypertension [ULTIMATE-Mild PHT]
ClinicalTrials.gov study NCT01696240. IPD Sharing: Not stated. Countries: 1. Publications: 8.
MicroRNA-1 (miRNA-1) and MicroRNA-133a (miRNA-133a) Levels After Acute Exercise in Ultimate Frisbee Athletes
ClinicalTrials.gov study NCT06083610. IPD Sharing: UNDECIDED. Countries: 1. Publications: 3.
Intravascular Ultrasound Guided Drug Eluting Stents Implantation in "All-comers" Coronary Lesions (ULTIMATE Trial)
ClinicalTrials.gov study NCT02215915. IPD Sharing: NO. Countries: 1. Publications: 4.
1-month vs 12-month DAPT for ACS Patients Who Underwent PCI Stratified by IVUS: IVUS-ACS and ULTIMATE-DAPT Trials
ClinicalTrials.gov study NCT03971500. IPD Sharing: NO. Countries: 1. Publications: 5.
Effect of ProTaper Ultimate System on Post-endodontic Pain
ClinicalTrials.gov study NCT05747183. IPD Sharing: Not stated. Countries: 1. Publications: 1.
A Randomized Trial of Udenafil Therapy in Patients With Heart Failure With Preserved Ejection Fraction [ULTIMATE-HFpEF]
ClinicalTrials.gov study NCT01599117. IPD Sharing: Not stated. Countries: 1. Publications: 7.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.