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185 results for “Foot & ankle”

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zenodo36/100

The Effect of a New Generation of Ankle Foot Orthoses on Sloped Walking in Children with Hemiplegia Using the Gait Real Time Analysis Interactive Lab (GRAIL)

<div>The dataset includes the kinematics and kinetics of gait uphill (+10 deg), level ground (0 deg), and downhill (-5 deg) in children with unilateral cerebral palsy who underwent a single session of walking using immersive virtual reality (GRAIL system by Motek), while wearing traditional ankle-foot orthosis (oldAFOs) and a new generation AFO (newCAMOt1).</div> <div>In column A of the file, you will find the patient ID, the type of orthosis used, and the walking condition (e.g., P01_oldAFO_flat0001 indicates that patient 01 performed the walking trial on level ground with the traditional orthosis).</div> <div>In column B of the file, you will find the laterality (R = right, L = left), the name of the analyzed variable, and the stride number (e.g., L_Moment Ankle Flex_step1 means that we are considering the moment at the left ankle of the first left stride).</div> <div>From column C to column CY, you will find the values at the 101 temporal instants of the analyzed variable.</div>

opencc-by-4.0Mar 2024View details →
ClinicalTrials.gov36/100

Improving Mobility in Peripheral Artery Disease Using an Ankle Foot Orthosis

ClinicalTrials.gov study NCT02902211. IPD Sharing: YES. Countries: 1. Publications: 1.

controlledIPD-YESFeb 2026View details →
ClinicalTrials.gov36/100

Effects of Two Different Types of Ankle Foot Orthoses on Gait Outcomes in Patients With Subacute Stroke.

ClinicalTrials.gov study NCT02693834. IPD Sharing: NO. Countries: 1. Publications: 23.

closedIPD-NOFeb 2026View details →
ClinicalTrials.gov36/100

Ankle-foot Orthoses for Peripheral Artery Disease

ClinicalTrials.gov study NCT02280200. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.

restrictedIPD-UNDECIDEDFeb 2026View details →
ClinicalTrials.gov36/100

WalkAide Compared to Ankle-Foot Orthosis (AFO) in Stroke Patients

ClinicalTrials.gov study NCT01087957. IPD Sharing: Not stated. Countries: 1. Publications: 2.

restrictedIPD-UNDECIDEDFeb 2026View details →
ClinicalTrials.gov36/100

Efficacy of Tranexamic Acid in Foot and Ankle Surgeries

ClinicalTrials.gov study NCT03653429. IPD Sharing: NO. Countries: 1. Publications: 1.

closedIPD-NOFeb 2026View details →
ClinicalTrials.gov36/100

Dilute Betadine Soak and Scrub for Foot and Ankle Surgery

ClinicalTrials.gov study NCT03926208. IPD Sharing: NO. Countries: 1. Publications: 7.

closedIPD-NOFeb 2026View details →
ClinicalTrials.gov36/100

Clinical Study of the L300 Versus Ankle-foot Orthosis (AFO) on Post-Stroke Subjects With Foot Drop

ClinicalTrials.gov study NCT01138995. IPD Sharing: Not stated. Countries: 1. Publications: 3.

restrictedIPD-UNDECIDEDFeb 2026View details →
ClinicalTrials.gov36/100

A Clinical Study of Outcomes in Foot and Ankle Bone Grafting Using map3® Cellular Allogeneic Bone Graft

ClinicalTrials.gov study NCT02161016. IPD Sharing: Not stated. Countries: 1. Publications: 2.

restrictedIPD-UNDECIDEDFeb 2026View details →
ClinicalTrials.gov36/100

Saphenous Nerve Block for Foot and Ankle Surgery

ClinicalTrials.gov study NCT02382744. IPD Sharing: NO. Countries: 1. Publications: 10.

closedIPD-NOFeb 2026View details →
ClinicalTrials.gov36/100

Clinical Trial Comparing C-Brace to Knee Ankle Foot Orthosis (KAFO)/Stance Control Orthosis (SCO)

ClinicalTrials.gov study NCT03906656. IPD Sharing: NO. Countries: 4. Publications: 0.

closedIPD-NOFeb 2026View details →
ClinicalTrials.gov36/100

Spinal Versus General Anesthesia With Popliteal and Adductor Canal Blocks for Ambulatory Foot and Ankle Surgery.

ClinicalTrials.gov study NCT02996591. IPD Sharing: Not stated. Countries: 1. Publications: 1.

restrictedIPD-UNDECIDEDFeb 2026View details →
zenodo32/100

Dataset and analyses for: Active foot placement control ensures stable gait: Effect of constraints on foot placement and ankle moments

<p>For this dataset kinematics, ground reaction forces and electromyography data were collected during human treadmill walking. Participants walked on the treadmill at normal and slow walking speed, across different conditions. Apart from unconstrained steady-state walking, these conditions included imposed foot placement and ankle moment constraints. In our analysis we focused on the coupling between CoM kinematic state and foot placement, as well as correlations with muscle activity, reflecting active foot placement control.</p> <p>The results have been presented and discussed in the paper entitled:&nbsp;Active foot placement control ensures stable gait: Effect of constraints on foot placement and ankle moments.</p> <p>Guidelines on how to use this code can be found in the word file &quot;Documentation&quot;, which can be found in the zipped folder.</p>

opencc-by-4.0Nov 2020View details →
zenodo32/100

Dataset and analyses for : Can foot placement during gait be trained? Adaptations in stability control when ankle moments are constrained

<p>Here you&#39;ll find the dataset and analyses&nbsp;belonging&nbsp;to the publication &quot;Can foot placement during gait be trained? Adaptations in stability control when ankle moments are constrained&quot;.&nbsp;Participants walked on a treadmill with and without shoes constraining ankle moment control.&nbsp;We evaluated whether participants improved their degree of foot placement control, during and after walking with ankle moment constraints. Ground reaction forces and full body kinematics have been collected.</p> <p>For more detail on the folders&#39; contents please see&nbsp;&quot;Read me - Can foot placement during gait be trained.docx&quot;.</p>

opencc-by-4.0Feb 2022View details →
zenodo32/100

On following pages: 289. Sinaloan Deermouse (Peromyscus simulus); 290. Brush Deermouse (Peromyscus boylii); 291. Durango Deermouse (Peromyscus schmidlyi); 292. Nimble-footed Deermouse (Peromyscus levipes); 293. Carleton''s Deermouse (Peromyscus carletoni); 294. Kilpatrick's Deermouse (Peromyscus kilpatricki); 295. Orizaba Deermouse (Peromyscus beatae); 296. Gleaning Deermouse (Peromyscus spicilegus); 297. Coalcoman Deermouse (Peromyscus winkelmanni); 298. Oaxacan Deermouse (Peromyscus oaxacensis), 299. Transvolcanic Deermouse (Peromyscus hylocetes); 300. Aztec Deermouse (Peromyscus aztecus); 301. Northern White-ankled Deermouse (Peromyscus laceianus); 302. Southern White-ankled Deermouse (Peromyscus pectoralis); 303. Saxicoline Deermouse (Peromyscus gratus);, 304. El Carrizo Deermouse (Peromyscus ochraventer); 305. Chihuahuan Deermouse (Peromyscus polius); 306. Pinyon Deermouse (Peromyscus truei); 307 Texas Deermouse (Peromyscus attwateri); 308. Northern Rock Deermouse (Peromyscus nasutus); 309. Southern Rock Deermouse (Peromyscus difficilis); 310. Perote Deermouse (Peromyscus bullatus); 311. Thomas's Big-toothed Deermouse (Megadontomys thomas); 312. Oaxacan Big-toothed Deermouse (Megadontomys cryophilus); 313. Nelson's Big-toothed Deermouse (Megadontomys nelsoni); 314. Xico Deermouse (Habromys simulatus); 315. Delicate Deermouse (Habromys delicatulus); 316. Schmidly''s Deermouse (Habromys schmidlyi); 317. Ixtlan Deermouse (Habromys ixtlani); 318. Chinanteco Deermouse (Habromys chinanteco); 319. Zempoaltepec Deermouse (Habromys lepturus); 320. Crested-tailed Deermouse (Habromys lophurus). in Cricetidae

On following pages: 289. Sinaloan Deermouse (Peromyscus simulus); 290. Brush Deermouse (Peromyscus boylii); 291. Durango Deermouse (Peromyscus schmidlyi); 292. Nimble-footed Deermouse (Peromyscus levipes); 293. Carleton''s Deermouse (Peromyscus carletoni); 294. Kilpatrick's Deermouse (Peromyscus kilpatricki); 295. Orizaba Deermouse (Peromyscus beatae); 296. Gleaning Deermouse (Peromyscus spicilegus); 297. Coalcoman Deermouse (Peromyscus winkelmanni); 298. Oaxacan Deermouse (Peromyscus oaxacensis), 299. Transvolcanic Deermouse (Peromyscus hylocetes); 300. Aztec Deermouse (Peromyscus aztecus); 301. Northern White-ankled Deermouse (Peromyscus laceianus); 302. Southern White-ankled Deermouse (Peromyscus pectoralis); 303. Saxicoline Deermouse (Peromyscus gratus);, 304. El Carrizo Deermouse (Peromyscus ochraventer); 305. Chihuahuan Deermouse (Peromyscus polius); 306. Pinyon Deermouse (Peromyscus truei); 307 Texas Deermouse (Peromyscus attwateri); 308. Northern Rock Deermouse (Peromyscus nasutus); 309. Southern Rock Deermouse (Peromyscus difficilis); 310. Perote Deermouse (Peromyscus bullatus); 311. Thomas's Big-toothed Deermouse (Megadontomys thomas); 312. Oaxacan Big-toothed Deermouse (Megadontomys cryophilus); 313. Nelson's Big-toothed Deermouse (Megadontomys nelsoni); 314. Xico Deermouse (Habromys simulatus); 315. Delicate Deermouse (Habromys delicatulus); 316. Schmidly''s Deermouse (Habromys schmidlyi); 317. Ixtlan Deermouse (Habromys ixtlani); 318. Chinanteco Deermouse (Habromys chinanteco); 319. Zempoaltepec Deermouse (Habromys lepturus); 320. Crested-tailed Deermouse (Habromys lophurus).

opennotspecifiedNov 2017View details →
zenodo32/100

Data and analysis for: Differential effects of ankle constraints on foot placement control between normal and split belt treadmills

<p>Here we compared the effect of ankle moment constraints (LesSchuh; a shoe with a narrow ridge along the length of the shoe&#39;s sole), on a single and a split-belt treadmill. To this end we considered the foot placement model as proposed by Wang and Srinivasan (2014), and used the R^2 of this model as an outcome measure. In addition, step width, stride frequency and toe-out angles have been computed. The results have been written up in our publication in the journal of biomechanics.<br> <br> Wang, Y., &amp; Srinivasan, M. (2014). Stepping in the direction of the fall: the next foot placement can be predicted from current upper body state in steady-state walking.&nbsp;<em>Biology letters</em>,&nbsp;<em>10</em>(9), 20140405.</p>

opencc-by-4.0Oct 2022View details →
zenodo32/100

Dataset and analyses for: Mediolateral foot placement control can be trained: Older adults learn to walk more stable, when ankle moments are constrained

<p>Here you&#39;ll find the dataset and analyses&nbsp;belonging&nbsp;to the publication &quot;Mediolateral foot placement control can be trained: Older adults learn to walk more stable, when ankle moments are constrained&quot;. Older adults performed 8 sessions of treadmill walking, of which 6 sessions comprised of a training on a shoe constraining ankle moment control&nbsp;(LesSchuh).&nbsp;We evaluated whether participants improved their foot placement control&nbsp;and gait stability as a result of the training. Kinematic data of the feet and thorax were collected.</p> <p>For more detail on the folders&#39; contents please see&nbsp;&quot;Read me.docx&quot;.</p>

opencc-by-4.0Sep 2023View details →
ClinicalTrials.gov32/100

Strengthening Program for Foot-ankle Muscles in People With Knee Osteoarthritis

ClinicalTrials.gov study NCT04154059. IPD Sharing: YES. Countries: 1. Publications: 2.

controlledIPD-YESFeb 2026View details →
ClinicalTrials.gov32/100

Understanding the Effects of Quantitatively-Prescribing Passive-Dynamic Ankle-Foot Orthosis Bending Stiffness for Individuals Post-Stroke

ClinicalTrials.gov study NCT04619043. IPD Sharing: NO. Countries: 1. Publications: 8.

closedIPD-NOFeb 2026View details →
ClinicalTrials.gov32/100

A Pilot Study of the Effectiveness of Foot-Ankle and Walking Exercises in Patients With Diabetes Mellitus

ClinicalTrials.gov study NCT07270328. IPD Sharing: YES. Countries: 1. Publications: 90.

controlledIPD-YESFeb 2026View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record