Titre : Traumatismes des tissus mous

Traumatismes des tissus mous : Questions médicales fréquentes

Questions fréquentes et termes MeSH associés

Diagnostic 5

#1

Comment diagnostiquer une entorse ?

Un examen physique et des imageries comme l'IRM peuvent confirmer une entorse.
Entorse Imagerie par résonance magnétique
#2

Quels tests pour une déchirure musculaire ?

L'évaluation clinique et l'échographie sont couramment utilisés pour diagnostiquer.
Déchirure musculaire Échographie
#3

Quels signes indiquent une contusion ?

Une contusion se manifeste par une douleur, un gonflement et une décoloration de la peau.
Contusion Douleur
#4

Quand faire une radiographie ?

Une radiographie est nécessaire si une fracture osseuse est suspectée avec un traumatisme.
Radiographie Fracture
#5

Comment évaluer une plaie ouverte ?

L'évaluation inclut l'examen de la profondeur, de la taille et de la contamination de la plaie.
Plaie ouverte Évaluation clinique

Symptômes 5

#1

Quels sont les symptômes d'une entorse ?

Douleur, gonflement, ecchymoses et difficulté à bouger l'articulation touchée.
Entorse Gonflement
#2

Comment reconnaître une déchirure musculaire ?

Symptômes incluent douleur aiguë, faiblesse musculaire et parfois un gonflement.
Déchirure musculaire Douleur aiguë
#3

Quels signes d'une contusion grave ?

Douleur intense, gonflement important et changement de couleur de la peau.
Contusion Gonflement
#4

Quels symptômes d'une plaie infectée ?

Rougeur, chaleur, pus et douleur croissante autour de la plaie.
Infection Plaie
#5

Quels symptômes d'une tendinite ?

Douleur localisée, raideur et gonflement autour du tendon affecté.
Tendinite Douleur

Prévention 5

#1

Comment prévenir les entorses ?

Renforcer les muscles, s'échauffer avant l'exercice et porter des chaussures appropriées.
Prévention des blessures Échauffement
#2

Quelles mesures pour éviter les déchirures musculaires ?

S'échauffer correctement, éviter les mouvements brusques et renforcer les muscles.
Prévention des blessures Renforcement musculaire
#3

Comment éviter les contusions ?

Porter des protections lors d'activités sportives et éviter les surfaces dangereuses.
Prévention des blessures Protection
#4

Quelles précautions pour les plaies ?

Utiliser des équipements de protection et éviter les situations à risque.
Prévention des blessures Équipements de protection
#5

Comment prévenir les tendinites ?

Éviter les surcharges, s'étirer régulièrement et renforcer les muscles concernés.
Prévention des blessures Étirement

Traitements 5

#1

Quel traitement pour une entorse ?

Repos, glace, compression et élévation (méthode RICE) sont recommandés.
Entorse Traitement conservateur
#2

Comment traiter une déchirure musculaire ?

Repos, glace, anti-inflammatoires et réhabilitation progressive sont conseillés.
Déchirure musculaire Réhabilitation
#3

Quel soin pour une contusion ?

Application de glace et repos, avec des analgésiques si nécessaire.
Contusion Analgésiques
#4

Comment soigner une plaie ouverte ?

Nettoyage, désinfection et parfois points de suture selon la gravité.
Plaie ouverte Désinfection
#5

Quel traitement pour une tendinite ?

Repos, glace, anti-inflammatoires et physiothérapie sont souvent efficaces.
Tendinite Physiothérapie

Complications 5

#1

Quelles complications d'une entorse ?

Instabilité articulaire, douleur chronique et risque de nouvelles entorses.
Entorse Complications
#2

Quels risques d'une déchirure musculaire ?

Récidive de la déchirure et développement de douleurs chroniques.
Déchirure musculaire Douleurs chroniques
#3

Quelles complications d'une contusion ?

Formation d'hématomes, douleur persistante et parfois infection.
Contusion Hématome
#4

Quels dangers d'une plaie non soignée ?

Infection, cicatrisation anormale et risque de complications systémiques.
Plaie Infection
#5

Quelles complications d'une tendinite ?

Douleur chronique, limitation de mouvement et risque de rupture du tendon.
Tendinite Rupture du tendon

Facteurs de risque 5

#1

Quels facteurs de risque pour les entorses ?

Activités sportives, manque de condition physique et surfaces inappropriées.
Entorse Facteurs de risque
#2

Quelles conditions augmentent les déchirures musculaires ?

Âge avancé, manque d'échauffement et déséquilibres musculaires.
Déchirure musculaire Âge avancé
#3

Quels facteurs favorisent les contusions ?

Sports de contact, chutes fréquentes et environnement dangereux.
Contusion Sports de contact
#4

Quels risques liés aux plaies ?

Conditions d'hygiène insuffisantes et exposition à des objets tranchants.
Plaie Hygiène
#5

Quels facteurs de risque pour les tendinites ?

Activités répétitives, surutilisation et déséquilibres musculaires.
Tendinite Surutilisation
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tendon affecté." } }, { "@type": "Question", "name": "Comment prévenir les entorses ?", "position": 11, "acceptedAnswer": { "@type": "Answer", "text": "Renforcer les muscles, s'échauffer avant l'exercice et porter des chaussures appropriées." } }, { "@type": "Question", "name": "Quelles mesures pour éviter les déchirures musculaires ?", "position": 12, "acceptedAnswer": { "@type": "Answer", "text": "S'échauffer correctement, éviter les mouvements brusques et renforcer les muscles." } }, { "@type": "Question", "name": "Comment éviter les contusions ?", "position": 13, "acceptedAnswer": { "@type": "Answer", "text": "Porter des protections lors d'activités sportives et éviter les surfaces dangereuses." } }, { "@type": "Question", "name": "Quelles précautions pour les plaies ?", "position": 14, "acceptedAnswer": { "@type": "Answer", "text": "Utiliser des équipements de protection et éviter les situations à risque." } }, { "@type": "Question", "name": "Comment prévenir les tendinites ?", 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"Infection, cicatrisation anormale et risque de complications systémiques." } }, { "@type": "Question", "name": "Quelles complications d'une tendinite ?", "position": 25, "acceptedAnswer": { "@type": "Answer", "text": "Douleur chronique, limitation de mouvement et risque de rupture du tendon." } }, { "@type": "Question", "name": "Quels facteurs de risque pour les entorses ?", "position": 26, "acceptedAnswer": { "@type": "Answer", "text": "Activités sportives, manque de condition physique et surfaces inappropriées." } }, { "@type": "Question", "name": "Quelles conditions augmentent les déchirures musculaires ?", "position": 27, "acceptedAnswer": { "@type": "Answer", "text": "Âge avancé, manque d'échauffement et déséquilibres musculaires." } }, { "@type": "Question", "name": "Quels facteurs favorisent les contusions ?", "position": 28, "acceptedAnswer": { "@type": "Answer", "text": "Sports de contact, chutes fréquentes et environnement dangereux." } }, { "@type": "Question", "name": "Quels risques liés aux plaies ?", "position": 29, "acceptedAnswer": { "@type": "Answer", "text": "Conditions d'hygiène insuffisantes et exposition à des objets tranchants." } }, { "@type": "Question", "name": "Quels facteurs de risque pour les tendinites ?", "position": 30, "acceptedAnswer": { "@type": "Answer", "text": "Activités répétitives, surutilisation et déséquilibres musculaires." } } ] } ] }
Dr Olivier Menir

Contenu validé par Dr Olivier Menir

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


Validation scientifique effectuée le 20/01/2025

Contenu vérifié selon les dernières recommandations médicales

Auteurs principaux

None None

2 publications dans cette catégorie

Publications dans "Traumatismes des tissus mous" :

Nicola Maffulli

2 publications dans cette catégorie

Affiliations :
  • Department of Orthopaedics, Surgery and Dentistry, University of Salerno, Via S. Allende, 84081 Baronissi, Italy.
  • Centre for Sports and Exercise Medicine, Barts and the London School of Medicine and Dentistry, Mile End Hospital, Queen Mary University of London, 275 Bancroft Road, London E1 4DG, UK.
  • School of Pharmacy and Bioengineering, Keele University Faculty of Medicine, Thornburrow Drive, Stoke on Trent ST5 5BG, UK.
Publications dans "Traumatismes des tissus mous" :

Oneida A Arosarena

1 publication dans cette catégorie

Affiliations :
  • Department of Otolaryngology, Head and Neck Surgery, Lewis Katz School of Medicine at Temple University, Philadelphia, Pennsylvania.
  • Office of Health Equity, Diversity and Inclusion, Lewis Katz School of Medicine at Temple University, Philadelphia, Pennsylvania.
Publications dans "Traumatismes des tissus mous" :

Issam N Eid

1 publication dans cette catégorie

Affiliations :
  • Department of Otolaryngology, Head and Neck Surgery, Lewis Katz School of Medicine at Temple University, Philadelphia, Pennsylvania.
Publications dans "Traumatismes des tissus mous" :

Earl Clarkson

1 publication dans cette catégorie

Affiliations :
  • NYC Health + Hospitals/Woodhull, 760 Broadway, Brooklyn, NY 11206, USA.
Publications dans "Traumatismes des tissus mous" :

Monica Hanna

1 publication dans cette catégorie

Affiliations :
  • Oral and Maxillofacial Surgery, NYC Health + Hospitals/Woodhull, 760 Broadway, Brooklyn, NY 11206, USA. Electronic address: Mhanna0113@gmail.com.
Publications dans "Traumatismes des tissus mous" :

Guillermo Puig

1 publication dans cette catégorie

Affiliations :
  • Oral and Maxillofacial Surgery, NYC Health + Hospitals/Woodhull, 760 Broadway, Brooklyn, NY 11206, USA. Electronic address: guillermo_puig@outlook.com.
Publications dans "Traumatismes des tissus mous" :

S Bolton

1 publication dans cette catégorie

Affiliations :
  • Barnet Hospital, Royal Free Hospitals NHS Foundation Trust, UK. Electronic address: sarah.bolton@doctors.org.uk.
Publications dans "Traumatismes des tissus mous" :

M E A Bailey

1 publication dans cette catégorie

Affiliations :
  • Hampshire Hospitals Foundation Trust, UK.
Publications dans "Traumatismes des tissus mous" :

R Wei

1 publication dans cette catégorie

Affiliations :
  • Mater Hospital, North Sydney, Australia.
Publications dans "Traumatismes des tissus mous" :

J S McConnell

1 publication dans cette catégorie

Affiliations :
  • Barnet Hospital, Royal Free Hospitals NHS Foundation Trust, UK.
Publications dans "Traumatismes des tissus mous" :

Sam Schild

1 publication dans cette catégorie

Affiliations :
  • Department of Otolaryngology, SUNY Downstate Health Sciences University, Brooklyn, New York.
  • Department of Otolaryngology, Kings County Hospital Center, Brooklyn, New York.
Publications dans "Traumatismes des tissus mous" :

Tatiana Reis Puntarelli

1 publication dans cette catégorie

Affiliations :
  • Department of Anesthesiology, SUNY Downstate Health Sciences University, Brooklyn, New York.
Publications dans "Traumatismes des tissus mous" :

Margarita delaPena

1 publication dans cette catégorie

Affiliations :
  • Department of Anesthesiology, SUNY Downstate Health Sciences University, Brooklyn, New York.
Publications dans "Traumatismes des tissus mous" :

Adam Johnson

1 publication dans cette catégorie

Affiliations :
  • Department of Otolaryngology, University of Arkansas Medical School, Arkansas Children's Hospital, Little Rock, Arkansas.
Publications dans "Traumatismes des tissus mous" :

Sydney C Butts

1 publication dans cette catégorie

Affiliations :
  • Department of Otolaryngology, SUNY Downstate Health Sciences University, Brooklyn, New York.
  • Department of Otolaryngology, Kings County Hospital Center, Brooklyn, New York.
  • Division of Facial Plastic and Reconstructive Surgery; Department of Otolaryngology, SUNY Downstate Health Sciences University, Brooklyn, New York.
Publications dans "Traumatismes des tissus mous" :

Andréa B Lese

1 publication dans cette catégorie

Affiliations :
  • West Virginia University Department of Orthopaedics and Rehabilitation, 1 Medical Center Dr, Morgantown, WV 26506.
Publications dans "Traumatismes des tissus mous" :

Carol A Waggy

1 publication dans cette catégorie

Affiliations :
  • West Virginia University Department of Human Performance, 1 Medical Center Dr, Morgantown, WV 26506.
Publications dans "Traumatismes des tissus mous" :

Kyle E Hammond

1 publication dans cette catégorie

Affiliations :
  • Emory University Sports Medicine Center, 1968 Hawks Lane, Atlanta, GA 30329, USA. Electronic address: kehammond6@gmail.com.
Publications dans "Traumatismes des tissus mous" :

Lee Kneer

1 publication dans cette catégorie

Affiliations :
  • Emory University Sports Medicine Center, 1968 Hawks Lane, Atlanta, GA 30329, USA. Electronic address: https://twitter.com/kneermd.
Publications dans "Traumatismes des tissus mous" :

Sources (10000 au total)

[Acute care of soft tissue injuries in the head and neck region].

Soft tissue injuries are a common consequence of head and neck trauma. With injuries being highly individual and varying depending on the underlying trauma, it is difficult to establish standardized g... A retrospective evaluation was carried out using all trauma-relevant ICD-10 codes for trauma to the head (S00.- to S09.-) and neck (S10.- to S19.-) among patients who were treated at the authors' clin... A total of 8375 patients with head and neck trauma were treated during the observation period, i.e., an average of 836 patients per year. Within this collective, 2981 trauma cases involving soft tissu... The case numbers of soft tissue injuries generally show an inverse correlation to the required underlying trauma: diagnoses of the categories S00 and S01 occur very often; injuries which only occur af...

Epidemiological Investigation of Facial Soft Tissue Injury in Chinese Preschool Children.

The aim of this study was to analyze the epidemiological characteristics of pediatric facial soft tissue injuries of Chinese preschool-aged children in Hangzhou Plastic Surgery Hospital.... Medical records of preschool-aged children's facial injuries, 6 years and younger, from January 2017 to December 2019 were collected. Sex; age; time of injury; length of stay; causes of injury; locati... There were 10,862 cases (male, 6780 cases; female, 4082 cases) in the group. The ratio of male to female was 1.66:1. Mean age was 3.4 (±1.6) years; the youngest was 1 month old. The time of injury occ... Preschool-aged children's facial injuries have predictable patterns of occurrence, and targeted preventive measures can reduce the incidence rates. After facial injury, children should present for tim...

Soft Tissue Reconstruction for Upper Extremity Necrotizing Soft Tissue Infections.

One of the main aspects of management for necrotizing soft tissue infection (NSTI) is surgical excision and debridement, which can result in large soft tissue defects. This study examined the reconstr... A retrospective chart review was performed on patients from a single institution who were diagnosed with an upper extremity NSTI between 2014 and 2019. Patient characteristics, infectious etiology, su... There were 99 patients included in the study. The median size of the wound from the initial surgical debridement was 100 cm 2 (interquartile range, 300 cm 2 ). The mean number of debridements was 3.4.... Overall, patients with upper extremity NSTIs survive and undergo successful reconstruction of their wounds. Few patients required additional procedures for reconstructive failure or sequela of their w...

Degree of Soft Tissue Injury is a Major Determinant of Successful Arterial Repair in the Extremity: A New Classification of Extremity Arterial Injury?

This study aimed to investigate outcomes after extremity arterial injury repair and examined the association between outcomes and the degree of soft tissue injury and vascular repair methods.... A retrospective study was conducted on 106 patients (108 cases) who underwent emergent microsurgical repair of extremity arterial injury due to trauma and non-perfusion of the affected extremity. The ... In Group A (n = 61), microvascular suture and vessel graft achieved 95.1% and 85.0% successful limb reperfusion, respectively. In Group B (n = 31), vessel reconstruction with flap coverage achieved 10... The extent of associated soft tissue injury was associated with different vascular repair methods and outcomes. We propose a new system for classifying these injuries according to the degree of associ...

Application of Low-Dose CT and MRI in the Evaluation of Soft Tissue Injury in Tibial Plateau Fractures.

To explore the application value of low-dose CT and MRI in the evaluation of soft tissue injury in tibial plateau fractures.... This study included 89 patients with high suspicion of TPF and KI admitted to our hospital from July 2015 to May 2021. After arthroscopy, 81 patients were diagnosed with FTP combined with KI. The Scha... With the results of pathological examination and arthroscopic surgery as the gold standard, the results of MRI and pathological examination and arthroscopic examination were in good agreement (Kappa =... Both CT and MRI have certain diagnostic value for occult tibial plateau fractures, among which CT examination is more advantageous for trabecular bone fractures, MRI examination is more advantageous f...

The bone trauma and soft-tissue injury classification system in total hip arthroplasty (BOSTI Hip).

The primary objective of this study was to develop a validated classification system for assessing iatrogenic bone trauma and soft-tissue injury during total hip arthroplasty (THA). The secondary obje... This study included 30 CO THAs versus 30 RO THAs performed by a single surgeon. Intraoperative photographs of the osseous acetabulum and periacetabular soft-tissues were obtained prior to implantation... The BOne trauma and Soft-Tissue Injury classification system in total Hip arthroplasty (BOSTI Hip) grades osseous acetabular trauma and periarticular muscle damage during THA. The classification syste... The proposed BOSTI Hip classification provides a reproducible grading system for stratifying iatrogenic bone trauma and soft-tissue injury during THA. RO THA was associated with improved BOSTI Hip sco...

A Prospective Analysis of Patient Characteristics Affecting the Outcome of Dorsal Splinting for Soft Tissue Mallet Injuries.

Much has been written about the diagnosis and treatment of soft tissue mallet injuries. However, there has been little regarding the characteristics of this injury affecting patients' prognosis. The p... Patients diagnosed with soft tissue mallet injuries were enrolled prospectively in a protocol of dorsal splinting for 6 to 12 weeks, followed by weaning over 2 weeks and then evaluated at 6, 9, and... Thirty-seven patients (38 digits) completed the study. Treatment success was defined as a final extensor lag of <15° and failure as a final extensor lag of... This study shows strong association between the success of splint treatment, younger patient age, and compliance with the treatment protocol. Despite this finding, most patients did not report any fun...

Soft Tissue Injury in Cervical Spine Is a Risk Factor for Intersegmental Instability: A Finite Element Analysis.

Soft tissue cervical spine injury (CSI) has the possibility of causing cervical segmental instability, which can lead to spinal cord injury. There is a lack of certainty in assessing whether soft tiss... A 3-dimensional finite element model of the ligamentous cervical spine (C2-C7) was created from medical images. Three soft tissue injury models were simulated at C4-C5: 1) posterior ligament complex (... For the IDI and API models, the range of motion increased at the injury level in extension (by 101%) and left/right axial rotations (>30%) compared with the intact model. The IDI and API models showed... In CSI, all soft tissues have a key role in stabilizing cervical spine, but ID is the most important component of all....