Titre : Basketball

Basketball : Questions médicales fréquentes

Termes MeSH sélectionnés :

Visual Acuity

Questions fréquentes et termes MeSH associés

Diagnostic 2

#1

Comment diagnostiquer une blessure au genou au basketball ?

Un examen physique et des imageries comme l'IRM peuvent aider à diagnostiquer les blessures.
Blessures du genou Imagerie par résonance magnétique
#2

Quels tests pour évaluer une entorse de la cheville ?

Des tests de mobilité et des radiographies peuvent être utilisés pour évaluer une entorse.
Entorse de la cheville Radiographie

Symptômes 2

#1

Quels sont les symptômes d'une commotion cérébrale ?

Les symptômes incluent des maux de tête, des vertiges, et des troubles de la concentration.
Commotion cérébrale Symptômes neurologiques
#2

Comment reconnaître une déchirure musculaire ?

Une douleur aiguë, un gonflement et une incapacité à bouger le muscle sont des signes clés.
Déchirure musculaire Douleur

Prévention 2

#1

Comment prévenir les blessures au basketball ?

Un bon échauffement, des étirements et des techniques de jeu appropriées aident à prévenir les blessures.
Prévention des blessures Échauffement
#2

Quel équipement pour réduire les risques de blessures ?

Des chaussures adaptées, des protège-tibias et des genouillères peuvent réduire les risques.
Équipement de protection Chaussures de sport

Traitements 2

#1

Quel traitement pour une entorse de la cheville ?

Le traitement inclut le repos, la glace, la compression et l'élévation (méthode RICE).
Entorse de la cheville Traitement conservateur
#2

Comment traiter une tendinite au basketball ?

Le repos, la physiothérapie et des anti-inflammatoires sont souvent recommandés.
Tendinite Physiothérapie

Complications 2

#1

Quelles complications peuvent survenir après une blessure au genou ?

Des complications comme l'arthrose ou des instabilités peuvent survenir après une blessure.
Arthrose Instabilité du genou
#2

Quels sont les risques d'une commotion cérébrale répétée ?

Des commotions répétées peuvent entraîner des troubles cognitifs et des problèmes de santé à long terme.
Commotion cérébrale Troubles cognitifs

Facteurs de risque 2

#1

Quels sont les facteurs de risque de blessures au basketball ?

L'âge, le niveau de compétence, et le manque d'échauffement sont des facteurs de risque importants.
Facteurs de risque Blessures sportives
#2

Comment le terrain influence-t-il les blessures ?

Un terrain inégal ou glissant augmente le risque de chutes et de blessures au basketball.
Conditions de jeu Sécurité sportive
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Dr Olivier Menir

Contenu validé par Dr Olivier Menir

Expert en Médecine, Optimisation des Parcours de Soins et Révision Médicale


Validation scientifique effectuée le 16/05/2025

Contenu vérifié selon les dernières recommandations médicales

Auteurs principaux

Aaron T Scanlan

6 publications dans cette catégorie

Affiliations :
  • Human Exercise and Training Laboratory, Central Queensland University, Rockhampton, Australia.

Julio Calleja-González

6 publications dans cette catégorie

Affiliations :
  • Faculty of Education and Sport, University of the Basque Country / UPV-EHU, Leioa, Spain.

Sergio J Ibáñez

5 publications dans cette catégorie

Affiliations :
  • Group for Optimisation of Training and Sport Performance (GOERD), Faculty of Sport Science, University of Extremadura, Badajoz, Spain.
  • Faculty of Sports Sciences, University of Extremadura, Badajoz, Spain.

Iris Güldenpenning

3 publications dans cette catégorie

Affiliations :
  • Department of Sport & Health, Paderborn University, Warburger Str. 100, 33098 Paderborn, Germany. Electronic address: iris.gueldenpenning@uni-paderborn.de.

Matthias Weigelt

3 publications dans cette catégorie

Affiliations :
  • Department of Sport & Health, Paderborn University, Warburger Str. 100, 33098 Paderborn, Germany.

Bruno Figueira

3 publications dans cette catégorie

Affiliations :
  • Educational Research Institute, Education Academy, Vytautas Magnus University, Kaunas, Lithuania.
  • Research Center in Sports Sciences, Health Sciences and Human Development, CIDESD, CreativeLab Research Community, University of Trás-os-Montes e Alto Douro, Portugal.

Javier García-Rubio

3 publications dans cette catégorie

Affiliations :
  • Group for Optimisation of Training and Sport Performance (GOERD), Faculty of Sport Science, University of Extremadura, Badajoz, Spain.
  • Faculty of Sports Sciences, University of Extremadura, Badajoz, Spain.
Publications dans "Basketball" :

Daniele Conte

3 publications dans cette catégorie

Affiliations :
  • Institute of Sport Science and Innovations, Lithuanian Sports University, Kaunas, Lithuania.

Wilfried Kunde

2 publications dans cette catégorie

Affiliations :
  • Department of Psychology, Würzburg University, Röntgenring 11, 97070 Würzburg, Germany.

Tania Spiteri

2 publications dans cette catégorie

Affiliations :
  • School of Health Science, University of Notre Dame, Fremantle, Australia.

Vincent J Dalbo

2 publications dans cette catégorie

Affiliations :
  • Human Exercise and Training Laboratory, Central Queensland University, Rockhampton, Australia.

Rūtenis Paulauskas

2 publications dans cette catégorie

Affiliations :
  • Educational Research Institute, Education Academy, Vytautas Magnus University, Kaunas, Lithuania.

Sammy Othman

2 publications dans cette catégorie

Affiliations :
  • Drexel University College of Medicine, Philadelphia, Pennsylvania.
Publications dans "Basketball" :

Marco Pernigoni

2 publications dans cette catégorie

Affiliations :
  • Department of Coaching Science, Lithuanian Sports University, Kaunas, Lithuania.
Publications dans "Basketball" :

Davide Ferioli

2 publications dans cette catégorie

Affiliations :
  • UCAM Research Center for High Performance Sport, Catholic University of Murcia, Murcia, Spain.
Publications dans "Basketball" :

Johannes Meyer

2 publications dans cette catégorie

Affiliations :
  • Institute of Exercise Training and Sport Informatics, German Sport University Cologne, Germany. Electronic address: j.meyer@dshs-koeln.de.
Publications dans "Basketball" :

Frowin Fasold

2 publications dans cette catégorie

Affiliations :
  • Institute of Exercise Training and Sport Informatics, German Sport University Cologne, Germany.
Publications dans "Basketball" :

Karsten Schul

2 publications dans cette catégorie

Affiliations :
  • Institute of Exercise Training and Sport Informatics, German Sport University Cologne, Germany.
Publications dans "Basketball" :

Timo Schön

2 publications dans cette catégorie

Affiliations :
  • Institute of Exercise Training and Sport Informatics, German Sport University Cologne, Germany.
Publications dans "Basketball" :

Stefanie Klatt

2 publications dans cette catégorie

Affiliations :
  • Institute of Exercise Training and Sport Informatics, German Sport University Cologne, Germany; Sport and Exercise Science and Sports Medicine Research and Enterprise Group, Welkin Laboratories, University of Brighton, United Kingdom.
Publications dans "Basketball" :

Sources (10000 au total)

Early postoperative visual acuity changes after trabeculectomy and factors affecting visual acuity.

To investigate the early visual acuity (VA) changes that occur after trabeculectomy and their reversal with recovery.... Two hundred ninety-two eyes of 292 patients after initial trabeculectomy as a standalone procedure fulfilling the following conditions were included: 1) patients with a postoperative follow-up of at l... The mean IOPs (mmHg) after trabeculectomy were significantly lower than preoperatively during the entire period (P < 0.0001). The mean corrected VA for all patients was 0.06 ± 0.17, 0.24 ± 0.38, 0.19 ... The frequency of serious vision loss was 4.45% for two or more levels of vision loss, and early postoperative VA changes after trabeculectomy may not be reversed even 3 months later. VA loss is influe...

Dichoptic and Monocular Visual Acuity in Amblyopia.

Standard-of-care assessment for children with amblyopia includes measuring amblyopic eye best-corrected visual acuity (AE BCVA) with the fellow eye occluded. By definition, this abolishes the interocu... Cross-sectional study.... Dichoptic and monocular AE BCVA of children aged 6-12 years (42 with amblyopia, 24 with recovered normal AE BCVA, 30 control) were measured. Stereoacuity, suppression, eye-hand coordination, and readi... Overall, 81% of amblyopic children had worse dichoptic than monocular AE BCVA (mean difference=0.15±0.11 logMAR; P < .0001), and 71% of children with recovered normal AE BCVA had worse dichoptic than ... Dichoptic AE BCVA deficits were worse than monocular AE BCVA deficits and were associated with reduced stereoacuity and suppression, consistent with the hypothesis that binocular dysfunction plays a r...

Comparison of Snellen Visual Acuity Measurements in Retinal Clinical Practice to Electronic ETDRS Protocol Visual Acuity Assessment.

Evaluate the differences between clinical visual acuity (VA) as recorded in medical records and electronic Early Treatment Diabetic Retinopathy Study (eETDRS) protocol VA measurements and factors affe... Retrospective chart review.... Study and fellow eyes of participants enrolled in DRCR Retina Network Protocols AC and AE (diabetic macular edema), and W (nonproliferative diabetic retinopathy) with clinical VA recorded within 3 mon... Differences and their association with patient and ocular factors were evaluated using linear mixed models with random effects for correlations within sites and participants.... Difference between VA letter scores measured by eETDRS during a study visit versus measured by Snellen during a regular clinical visit (Snellen fraction converted to eETDRS).... Data from 1016 eyes (511 participants) across 74 sites were analyzed. The mean VA measurements were 68.6 letters (Snellen equivalent 20/50) at the clinical visit and 76.3 letters (Snellen equivalent 2... On average, clinical Snellen VA is 1 to 2 lines worse than eETDRS protocol refraction and VA testing, which may partly explain why clinical practice does not always replicate clinical trial results. E... Proprietary or commercial disclosure may be found after the references....

The effect of central and peripheral luminance on visual acuity.

Lighting conditions significantly influence visual acuity (VA), visual function, and quality of life. Previous research highlighted a correlation between luminance and VA but left a gap in understandi... This study aimed to investigate the influence of both central and surrounding luminance on VA through distance VA measurements.... A dual-component lighting system was utilized, comprising a self-illuminated ETDRS chart and a skyLED system for consistent surrounding illumination. Two experimental setups were conducted: the first ... Sixty-six participants with refractive errors between 0.0 D and -2.75 D were tested under various lighting conditions. Both uncorrected refractive error (URE) and corrected refractive error (CRE) eyes... Paired t-tests were used to evaluate the statistical significance of differences in VA scores.... Experiment 1 demonstrated a significant increase in VA scores, with mean improvements of -0.120 LogMAR for URE eyes and -0.073 LogMAR for CRE eyes as chart luminance increased from 26 cd/m² to 153 cd/... This study emphasizes the significant impact of both central and peripheral luminance on VA. The introduction of the skyLED lighting system underlines the importance of optimal lighting for visual per...