Le diagnostic repose sur l'examen clinique et l'historique médical, parfois complété par des tests d'imagerie.
DystonieDiagnostic médical
#2
Quels tests sont utilisés pour la dystonie ?
Des IRM cérébrales et des électromyogrammes peuvent être réalisés pour évaluer la fonction musculaire.
Imagerie par résonance magnétiqueÉlectromyographie
#3
La dystonie est-elle héréditaire ?
Certaines formes de dystonie peuvent être héréditaires, nécessitant une évaluation génétique.
DystonieGénétique
#4
Quels spécialistes consultent pour la dystonie ?
Les neurologues sont les principaux spécialistes impliqués dans le diagnostic de la dystonie.
NeurologieDystonie
#5
Y a-t-il des critères spécifiques pour le diagnostic ?
Oui, des critères cliniques spécifiques, comme le type de mouvements involontaires, sont utilisés.
DystonieCritères diagnostiques
Symptômes
5
#1
Quels sont les symptômes courants de la dystonie ?
Les symptômes incluent des contractions musculaires, des mouvements anormaux et des postures tordues.
DystonieSymptômes
#2
La dystonie affecte-t-elle la parole ?
Oui, la dystonie peut affecter la parole, entraînant des difficultés d'élocution.
DystonieTroubles de la parole
#3
Les symptômes de la dystonie sont-ils constants ?
Non, les symptômes peuvent varier en intensité et peuvent être exacerbés par le stress.
DystonieVariabilité des symptômes
#4
La dystonie peut-elle causer de la douleur ?
Oui, les contractions musculaires peuvent entraîner des douleurs et de l'inconfort.
DystonieDouleur musculaire
#5
Y a-t-il des types spécifiques de dystonie ?
Oui, il existe plusieurs types, comme la dystonie focale et la dystonie généralisée.
Dystonie focaleDystonie généralisée
Prévention
5
#1
Peut-on prévenir la dystonie ?
Il n'existe pas de méthode de prévention garantie, mais un mode de vie sain peut aider.
PréventionDystonie
#2
Le stress influence-t-il la dystonie ?
Oui, le stress peut aggraver les symptômes de la dystonie, donc la gestion du stress est importante.
StressDystonie
#3
Les exercices physiques aident-ils à prévenir la dystonie ?
Des exercices réguliers peuvent améliorer la condition physique et potentiellement réduire les symptômes.
Exercice physiqueDystonie
#4
Y a-t-il des facteurs environnementaux à éviter ?
Éviter les toxines environnementales et les traumatismes peut réduire le risque de dystonie.
Facteurs environnementauxDystonie
#5
L'éducation sur la dystonie est-elle utile ?
Oui, une meilleure compréhension de la maladie peut aider les patients à gérer leurs symptômes.
Éducation des patientsDystonie
Traitements
5
#1
Quels traitements sont disponibles pour la dystonie ?
Les traitements incluent des médicaments, des thérapies physiques et parfois la chirurgie.
Traitement de la dystonieMédicaments
#2
Les médicaments sont-ils efficaces pour la dystonie ?
Oui, des médicaments comme les anticholinergiques peuvent réduire les symptômes chez certains patients.
AnticholinergiquesDystonie
#3
La toxine botulique est-elle utilisée pour la dystonie ?
Oui, les injections de toxine botulique peuvent aider à réduire les spasmes musculaires.
Toxine botuliqueDystonie
#4
La thérapie physique aide-t-elle la dystonie ?
Oui, la thérapie physique peut améliorer la mobilité et réduire la douleur associée.
Thérapie physiqueDystonie
#5
Quand la chirurgie est-elle envisagée pour la dystonie ?
La chirurgie est envisagée lorsque les traitements médicamenteux échouent à soulager les symptômes.
ChirurgieDystonie
Complications
5
#1
Quelles complications peuvent survenir avec la dystonie ?
Les complications incluent des douleurs chroniques, des troubles de la posture et des difficultés fonctionnelles.
ComplicationsDystonie
#2
La dystonie peut-elle affecter la qualité de vie ?
Oui, la dystonie peut significativement affecter la qualité de vie en limitant les activités quotidiennes.
Qualité de vieDystonie
#3
Y a-t-il des risques psychologiques associés à la dystonie ?
Oui, les patients peuvent éprouver de l'anxiété et de la dépression en raison de leur condition.
AnxiétéDystonie
#4
La dystonie peut-elle entraîner des blessures ?
Oui, les mouvements involontaires peuvent causer des chutes et des blessures accidentelles.
BlessuresDystonie
#5
Les complications sont-elles réversibles ?
Certaines complications peuvent être gérées ou améliorées avec un traitement approprié.
Gestion des complicationsDystonie
Facteurs de risque
5
#1
Quels sont les facteurs de risque de la dystonie ?
Les facteurs incluent des antécédents familiaux, des traumatismes crâniens et certaines maladies neurologiques.
Facteurs de risqueDystonie
#2
L'âge influence-t-il le risque de dystonie ?
Oui, la dystonie peut survenir à tout âge, mais certains types apparaissent plus souvent chez les jeunes adultes.
ÂgeDystonie
#3
Les femmes sont-elles plus à risque de dystonie ?
Certaines études suggèrent que les femmes peuvent être plus susceptibles de développer certains types de dystonie.
GenreDystonie
#4
Les maladies neurologiques augmentent-elles le risque ?
Oui, des conditions comme la maladie de Parkinson peuvent augmenter le risque de dystonie.
Maladie de ParkinsonDystonie
#5
Les médicaments peuvent-ils être un facteur de risque ?
Oui, certains médicaments, comme les antipsychotiques, peuvent induire des symptômes de dystonie.
MédicamentsDystonie
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},
{
"@type": "Question",
"name": "Y a-t-il des facteurs environnementaux à éviter ?",
"position": 14,
"acceptedAnswer": {
"@type": "Answer",
"text": "Éviter les toxines environnementales et les traumatismes peut réduire le risque de dystonie."
}
},
{
"@type": "Question",
"name": "L'éducation sur la dystonie est-elle utile ?",
"position": 15,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, une meilleure compréhension de la maladie peut aider les patients à gérer leurs symptômes."
}
},
{
"@type": "Question",
"name": "Quels traitements sont disponibles pour la dystonie ?",
"position": 16,
"acceptedAnswer": {
"@type": "Answer",
"text": "Les traitements incluent des médicaments, des thérapies physiques et parfois la chirurgie."
}
},
{
"@type": "Question",
"name": "Les médicaments sont-ils efficaces pour la dystonie ?",
"position": 17,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des médicaments comme les anticholinergiques peuvent réduire les symptômes chez certains patients."
}
},
{
"@type": "Question",
"name": "La toxine botulique est-elle utilisée pour la dystonie ?",
"position": 18,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, les injections de toxine botulique peuvent aider à réduire les spasmes musculaires."
}
},
{
"@type": "Question",
"name": "La thérapie physique aide-t-elle la dystonie ?",
"position": 19,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, la thérapie physique peut améliorer la mobilité et réduire la douleur associée."
}
},
{
"@type": "Question",
"name": "Quand la chirurgie est-elle envisagée pour la dystonie ?",
"position": 20,
"acceptedAnswer": {
"@type": "Answer",
"text": "La chirurgie est envisagée lorsque les traitements médicamenteux échouent à soulager les symptômes."
}
},
{
"@type": "Question",
"name": "Quelles complications peuvent survenir avec la dystonie ?",
"position": 21,
"acceptedAnswer": {
"@type": "Answer",
"text": "Les complications incluent des douleurs chroniques, des troubles de la posture et des difficultés fonctionnelles."
}
},
{
"@type": "Question",
"name": "La dystonie peut-elle affecter la qualité de vie ?",
"position": 22,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, la dystonie peut significativement affecter la qualité de vie en limitant les activités quotidiennes."
}
},
{
"@type": "Question",
"name": "Y a-t-il des risques psychologiques associés à la dystonie ?",
"position": 23,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, les patients peuvent éprouver de l'anxiété et de la dépression en raison de leur condition."
}
},
{
"@type": "Question",
"name": "La dystonie peut-elle entraîner des blessures ?",
"position": 24,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, les mouvements involontaires peuvent causer des chutes et des blessures accidentelles."
}
},
{
"@type": "Question",
"name": "Les complications sont-elles réversibles ?",
"position": 25,
"acceptedAnswer": {
"@type": "Answer",
"text": "Certaines complications peuvent être gérées ou améliorées avec un traitement approprié."
}
},
{
"@type": "Question",
"name": "Quels sont les facteurs de risque de la dystonie ?",
"position": 26,
"acceptedAnswer": {
"@type": "Answer",
"text": "Les facteurs incluent des antécédents familiaux, des traumatismes crâniens et certaines maladies neurologiques."
}
},
{
"@type": "Question",
"name": "L'âge influence-t-il le risque de dystonie ?",
"position": 27,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, la dystonie peut survenir à tout âge, mais certains types apparaissent plus souvent chez les jeunes adultes."
}
},
{
"@type": "Question",
"name": "Les femmes sont-elles plus à risque de dystonie ?",
"position": 28,
"acceptedAnswer": {
"@type": "Answer",
"text": "Certaines études suggèrent que les femmes peuvent être plus susceptibles de développer certains types de dystonie."
}
},
{
"@type": "Question",
"name": "Les maladies neurologiques augmentent-elles le risque ?",
"position": 29,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des conditions comme la maladie de Parkinson peuvent augmenter le risque de dystonie."
}
},
{
"@type": "Question",
"name": "Les médicaments peuvent-ils être un facteur de risque ?",
"position": 30,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, certains médicaments, comme les antipsychotiques, peuvent induire des symptômes de dystonie."
}
}
]
}
]
}
From the Departments of Biomedical Engineering (A.G.S., S.B.B.) and Neurology (A.G.S.), Case Western University School of Medicine; Neurological Institute (A.G.S.), University Hospitals Cleveland; Neurology Service (A.G.S.), Louis Stokes Cleveland VA Medical Center, OH; Department of Neurology (L.S., G.K.-B., A.F., S. Factor, H.A.J.), Human Genetics (H.A.J.), and Pediatrics (H.A.J.), Emory University School of Medicine, Atlanta, GA; Institute of Neurogenetics (C.K., J.J., S.L., N.B., A.M., T.B.), University of Lübeck, Germany; Department of Neurology (M.V., E.R., C.B.), Pitié-Salpêtrière Hospital, Paris, France; Department of Neurology (J.J.), Baylor College of Medicine, Houston, TX; Neurology and Neurosurgery (J.J.-S.), Icahn School of Medicine at Mount Sinai, New York, NY; Department of Neurology (N.P.), Henry Ford Health System, West Bloomfield, MI; Department of Psychiatry and Neurology (L.M.), Baylor College of Medicine, Houston, TX; Department of Neurological Sciences (C.C.), Rush University Medical Center, Chicago, IL; Department of Neurology (R.L.B.), University of Rochester, NY; Department of Neurology (B.D.B.), University of Colorado School of Medicine, Aurora; Department of Neurology (I.M., A.W.S.), Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville; Department of Neurology (S.G.R.), University of Maryland School of Medicine, Baltimore; University of Tennessee Health Science Center (M.S.L.), Memphis; Department of Neurosciences (A.B.), Mental Health and Sensory Organs, Suicide Prevention Center, Sant'Andrea Hospital, Sapienza University of Rome; IRCCS Neuromed (G.F.), Pozzilli, Italy; The University of Alabama at Birmingham (N.S.); Methodist Neurological Institute (W.O.), Houston, TX; Department of Neurology (S.P.R.), University of New Mexico Health Sciences Center, Albuquerque; Department of Neurology (R.S.-P.), Mount Sinai Beth Israel, New York, NY; Lou Ruvo Center for Brain Health (Z.M.), Cleveland Clinic, Las Vegas, NV; Booth Gardner Parkinson's Care Center (P.A.), Kirkland, WA; Mayo Clinic (C.A.), Scottsdale, AZ; Andre Barbeau Movement Disorders Unit (S.C.), Montreal University Hospital Center (CHUM); Movement Disorder Clinic (S.H.F.), Toronto Western Hospital, Division of Neurology University of Toronto, Canada; UC Davis School of Medicine (A.B.), Sacramento; The Parkinson's and Movement Disorder Institute (D.T.), Orange Coast Memorial Medical Center, Fountain Valley, CA; Department of Medicine (O.S.), Medical Genetics, and Pediatrics, University of Alberta, Canada; Department of Neurology (S. Frank), Beth Israel Deaconess Medical Center, Boston, MA; and Neurology, Radiology, Neuroscience, Physical Therapy and Occupational Therapy (J.P.), Washington University School of Medicine, St Louis, MO.
Institute of Neurogenomics, Helmholtz Zentrum München, Munich, Germany; Technical University of Munich, School of Medicine, Institute of Human Genetics, Munich, Germany. Electronic address: michael.zech@mri.tum.de.
From the Departments of Biomedical Engineering (A.G.S., S.B.B.) and Neurology (A.G.S.), Case Western University School of Medicine; Neurological Institute (A.G.S.), University Hospitals Cleveland; Neurology Service (A.G.S.), Louis Stokes Cleveland VA Medical Center, OH; Department of Neurology (L.S., G.K.-B., A.F., S. Factor, H.A.J.), Human Genetics (H.A.J.), and Pediatrics (H.A.J.), Emory University School of Medicine, Atlanta, GA; Institute of Neurogenetics (C.K., J.J., S.L., N.B., A.M., T.B.), University of Lübeck, Germany; Department of Neurology (M.V., E.R., C.B.), Pitié-Salpêtrière Hospital, Paris, France; Department of Neurology (J.J.), Baylor College of Medicine, Houston, TX; Neurology and Neurosurgery (J.J.-S.), Icahn School of Medicine at Mount Sinai, New York, NY; Department of Neurology (N.P.), Henry Ford Health System, West Bloomfield, MI; Department of Psychiatry and Neurology (L.M.), Baylor College of Medicine, Houston, TX; Department of Neurological Sciences (C.C.), Rush University Medical Center, Chicago, IL; Department of Neurology (R.L.B.), University of Rochester, NY; Department of Neurology (B.D.B.), University of Colorado School of Medicine, Aurora; Department of Neurology (I.M., A.W.S.), Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville; Department of Neurology (S.G.R.), University of Maryland School of Medicine, Baltimore; University of Tennessee Health Science Center (M.S.L.), Memphis; Department of Neurosciences (A.B.), Mental Health and Sensory Organs, Suicide Prevention Center, Sant'Andrea Hospital, Sapienza University of Rome; IRCCS Neuromed (G.F.), Pozzilli, Italy; The University of Alabama at Birmingham (N.S.); Methodist Neurological Institute (W.O.), Houston, TX; Department of Neurology (S.P.R.), University of New Mexico Health Sciences Center, Albuquerque; Department of Neurology (R.S.-P.), Mount Sinai Beth Israel, New York, NY; Lou Ruvo Center for Brain Health (Z.M.), Cleveland Clinic, Las Vegas, NV; Booth Gardner Parkinson's Care Center (P.A.), Kirkland, WA; Mayo Clinic (C.A.), Scottsdale, AZ; Andre Barbeau Movement Disorders Unit (S.C.), Montreal University Hospital Center (CHUM); Movement Disorder Clinic (S.H.F.), Toronto Western Hospital, Division of Neurology University of Toronto, Canada; UC Davis School of Medicine (A.B.), Sacramento; The Parkinson's and Movement Disorder Institute (D.T.), Orange Coast Memorial Medical Center, Fountain Valley, CA; Department of Medicine (O.S.), Medical Genetics, and Pediatrics, University of Alberta, Canada; Department of Neurology (S. Frank), Beth Israel Deaconess Medical Center, Boston, MA; and Neurology, Radiology, Neuroscience, Physical Therapy and Occupational Therapy (J.P.), Washington University School of Medicine, St Louis, MO.
From the Departments of Biomedical Engineering (A.G.S., S.B.B.) and Neurology (A.G.S.), Case Western University School of Medicine; Neurological Institute (A.G.S.), University Hospitals Cleveland; Neurology Service (A.G.S.), Louis Stokes Cleveland VA Medical Center, OH; Department of Neurology (L.S., G.K.-B., A.F., S. Factor, H.A.J.), Human Genetics (H.A.J.), and Pediatrics (H.A.J.), Emory University School of Medicine, Atlanta, GA; Institute of Neurogenetics (C.K., J.J., S.L., N.B., A.M., T.B.), University of Lübeck, Germany; Department of Neurology (M.V., E.R., C.B.), Pitié-Salpêtrière Hospital, Paris, France; Department of Neurology (J.J.), Baylor College of Medicine, Houston, TX; Neurology and Neurosurgery (J.J.-S.), Icahn School of Medicine at Mount Sinai, New York, NY; Department of Neurology (N.P.), Henry Ford Health System, West Bloomfield, MI; Department of Psychiatry and Neurology (L.M.), Baylor College of Medicine, Houston, TX; Department of Neurological Sciences (C.C.), Rush University Medical Center, Chicago, IL; Department of Neurology (R.L.B.), University of Rochester, NY; Department of Neurology (B.D.B.), University of Colorado School of Medicine, Aurora; Department of Neurology (I.M., A.W.S.), Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville; Department of Neurology (S.G.R.), University of Maryland School of Medicine, Baltimore; University of Tennessee Health Science Center (M.S.L.), Memphis; Department of Neurosciences (A.B.), Mental Health and Sensory Organs, Suicide Prevention Center, Sant'Andrea Hospital, Sapienza University of Rome; IRCCS Neuromed (G.F.), Pozzilli, Italy; The University of Alabama at Birmingham (N.S.); Methodist Neurological Institute (W.O.), Houston, TX; Department of Neurology (S.P.R.), University of New Mexico Health Sciences Center, Albuquerque; Department of Neurology (R.S.-P.), Mount Sinai Beth Israel, New York, NY; Lou Ruvo Center for Brain Health (Z.M.), Cleveland Clinic, Las Vegas, NV; Booth Gardner Parkinson's Care Center (P.A.), Kirkland, WA; Mayo Clinic (C.A.), Scottsdale, AZ; Andre Barbeau Movement Disorders Unit (S.C.), Montreal University Hospital Center (CHUM); Movement Disorder Clinic (S.H.F.), Toronto Western Hospital, Division of Neurology University of Toronto, Canada; UC Davis School of Medicine (A.B.), Sacramento; The Parkinson's and Movement Disorder Institute (D.T.), Orange Coast Memorial Medical Center, Fountain Valley, CA; Department of Medicine (O.S.), Medical Genetics, and Pediatrics, University of Alberta, Canada; Department of Neurology (S. Frank), Beth Israel Deaconess Medical Center, Boston, MA; and Neurology, Radiology, Neuroscience, Physical Therapy and Occupational Therapy (J.P.), Washington University School of Medicine, St Louis, MO.
From the Departments of Biomedical Engineering (A.G.S., S.B.B.) and Neurology (A.G.S.), Case Western University School of Medicine; Neurological Institute (A.G.S.), University Hospitals Cleveland; Neurology Service (A.G.S.), Louis Stokes Cleveland VA Medical Center, OH; Department of Neurology (L.S., G.K.-B., A.F., S. Factor, H.A.J.), Human Genetics (H.A.J.), and Pediatrics (H.A.J.), Emory University School of Medicine, Atlanta, GA; Institute of Neurogenetics (C.K., J.J., S.L., N.B., A.M., T.B.), University of Lübeck, Germany; Department of Neurology (M.V., E.R., C.B.), Pitié-Salpêtrière Hospital, Paris, France; Department of Neurology (J.J.), Baylor College of Medicine, Houston, TX; Neurology and Neurosurgery (J.J.-S.), Icahn School of Medicine at Mount Sinai, New York, NY; Department of Neurology (N.P.), Henry Ford Health System, West Bloomfield, MI; Department of Psychiatry and Neurology (L.M.), Baylor College of Medicine, Houston, TX; Department of Neurological Sciences (C.C.), Rush University Medical Center, Chicago, IL; Department of Neurology (R.L.B.), University of Rochester, NY; Department of Neurology (B.D.B.), University of Colorado School of Medicine, Aurora; Department of Neurology (I.M., A.W.S.), Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville; Department of Neurology (S.G.R.), University of Maryland School of Medicine, Baltimore; University of Tennessee Health Science Center (M.S.L.), Memphis; Department of Neurosciences (A.B.), Mental Health and Sensory Organs, Suicide Prevention Center, Sant'Andrea Hospital, Sapienza University of Rome; IRCCS Neuromed (G.F.), Pozzilli, Italy; The University of Alabama at Birmingham (N.S.); Methodist Neurological Institute (W.O.), Houston, TX; Department of Neurology (S.P.R.), University of New Mexico Health Sciences Center, Albuquerque; Department of Neurology (R.S.-P.), Mount Sinai Beth Israel, New York, NY; Lou Ruvo Center for Brain Health (Z.M.), Cleveland Clinic, Las Vegas, NV; Booth Gardner Parkinson's Care Center (P.A.), Kirkland, WA; Mayo Clinic (C.A.), Scottsdale, AZ; Andre Barbeau Movement Disorders Unit (S.C.), Montreal University Hospital Center (CHUM); Movement Disorder Clinic (S.H.F.), Toronto Western Hospital, Division of Neurology University of Toronto, Canada; UC Davis School of Medicine (A.B.), Sacramento; The Parkinson's and Movement Disorder Institute (D.T.), Orange Coast Memorial Medical Center, Fountain Valley, CA; Department of Medicine (O.S.), Medical Genetics, and Pediatrics, University of Alberta, Canada; Department of Neurology (S. Frank), Beth Israel Deaconess Medical Center, Boston, MA; and Neurology, Radiology, Neuroscience, Physical Therapy and Occupational Therapy (J.P.), Washington University School of Medicine, St Louis, MO.
From the Departments of Biomedical Engineering (A.G.S., S.B.B.) and Neurology (A.G.S.), Case Western University School of Medicine; Neurological Institute (A.G.S.), University Hospitals Cleveland; Neurology Service (A.G.S.), Louis Stokes Cleveland VA Medical Center, OH; Department of Neurology (L.S., G.K.-B., A.F., S. Factor, H.A.J.), Human Genetics (H.A.J.), and Pediatrics (H.A.J.), Emory University School of Medicine, Atlanta, GA; Institute of Neurogenetics (C.K., J.J., S.L., N.B., A.M., T.B.), University of Lübeck, Germany; Department of Neurology (M.V., E.R., C.B.), Pitié-Salpêtrière Hospital, Paris, France; Department of Neurology (J.J.), Baylor College of Medicine, Houston, TX; Neurology and Neurosurgery (J.J.-S.), Icahn School of Medicine at Mount Sinai, New York, NY; Department of Neurology (N.P.), Henry Ford Health System, West Bloomfield, MI; Department of Psychiatry and Neurology (L.M.), Baylor College of Medicine, Houston, TX; Department of Neurological Sciences (C.C.), Rush University Medical Center, Chicago, IL; Department of Neurology (R.L.B.), University of Rochester, NY; Department of Neurology (B.D.B.), University of Colorado School of Medicine, Aurora; Department of Neurology (I.M., A.W.S.), Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville; Department of Neurology (S.G.R.), University of Maryland School of Medicine, Baltimore; University of Tennessee Health Science Center (M.S.L.), Memphis; Department of Neurosciences (A.B.), Mental Health and Sensory Organs, Suicide Prevention Center, Sant'Andrea Hospital, Sapienza University of Rome; IRCCS Neuromed (G.F.), Pozzilli, Italy; The University of Alabama at Birmingham (N.S.); Methodist Neurological Institute (W.O.), Houston, TX; Department of Neurology (S.P.R.), University of New Mexico Health Sciences Center, Albuquerque; Department of Neurology (R.S.-P.), Mount Sinai Beth Israel, New York, NY; Lou Ruvo Center for Brain Health (Z.M.), Cleveland Clinic, Las Vegas, NV; Booth Gardner Parkinson's Care Center (P.A.), Kirkland, WA; Mayo Clinic (C.A.), Scottsdale, AZ; Andre Barbeau Movement Disorders Unit (S.C.), Montreal University Hospital Center (CHUM); Movement Disorder Clinic (S.H.F.), Toronto Western Hospital, Division of Neurology University of Toronto, Canada; UC Davis School of Medicine (A.B.), Sacramento; The Parkinson's and Movement Disorder Institute (D.T.), Orange Coast Memorial Medical Center, Fountain Valley, CA; Department of Medicine (O.S.), Medical Genetics, and Pediatrics, University of Alberta, Canada; Department of Neurology (S. Frank), Beth Israel Deaconess Medical Center, Boston, MA; and Neurology, Radiology, Neuroscience, Physical Therapy and Occupational Therapy (J.P.), Washington University School of Medicine, St Louis, MO.
From the Departments of Biomedical Engineering (A.G.S., S.B.B.) and Neurology (A.G.S.), Case Western University School of Medicine; Neurological Institute (A.G.S.), University Hospitals Cleveland; Neurology Service (A.G.S.), Louis Stokes Cleveland VA Medical Center, OH; Department of Neurology (L.S., G.K.-B., A.F., S. Factor, H.A.J.), Human Genetics (H.A.J.), and Pediatrics (H.A.J.), Emory University School of Medicine, Atlanta, GA; Institute of Neurogenetics (C.K., J.J., S.L., N.B., A.M., T.B.), University of Lübeck, Germany; Department of Neurology (M.V., E.R., C.B.), Pitié-Salpêtrière Hospital, Paris, France; Department of Neurology (J.J.), Baylor College of Medicine, Houston, TX; Neurology and Neurosurgery (J.J.-S.), Icahn School of Medicine at Mount Sinai, New York, NY; Department of Neurology (N.P.), Henry Ford Health System, West Bloomfield, MI; Department of Psychiatry and Neurology (L.M.), Baylor College of Medicine, Houston, TX; Department of Neurological Sciences (C.C.), Rush University Medical Center, Chicago, IL; Department of Neurology (R.L.B.), University of Rochester, NY; Department of Neurology (B.D.B.), University of Colorado School of Medicine, Aurora; Department of Neurology (I.M., A.W.S.), Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville; Department of Neurology (S.G.R.), University of Maryland School of Medicine, Baltimore; University of Tennessee Health Science Center (M.S.L.), Memphis; Department of Neurosciences (A.B.), Mental Health and Sensory Organs, Suicide Prevention Center, Sant'Andrea Hospital, Sapienza University of Rome; IRCCS Neuromed (G.F.), Pozzilli, Italy; The University of Alabama at Birmingham (N.S.); Methodist Neurological Institute (W.O.), Houston, TX; Department of Neurology (S.P.R.), University of New Mexico Health Sciences Center, Albuquerque; Department of Neurology (R.S.-P.), Mount Sinai Beth Israel, New York, NY; Lou Ruvo Center for Brain Health (Z.M.), Cleveland Clinic, Las Vegas, NV; Booth Gardner Parkinson's Care Center (P.A.), Kirkland, WA; Mayo Clinic (C.A.), Scottsdale, AZ; Andre Barbeau Movement Disorders Unit (S.C.), Montreal University Hospital Center (CHUM); Movement Disorder Clinic (S.H.F.), Toronto Western Hospital, Division of Neurology University of Toronto, Canada; UC Davis School of Medicine (A.B.), Sacramento; The Parkinson's and Movement Disorder Institute (D.T.), Orange Coast Memorial Medical Center, Fountain Valley, CA; Department of Medicine (O.S.), Medical Genetics, and Pediatrics, University of Alberta, Canada; Department of Neurology (S. Frank), Beth Israel Deaconess Medical Center, Boston, MA; and Neurology, Radiology, Neuroscience, Physical Therapy and Occupational Therapy (J.P.), Washington University School of Medicine, St Louis, MO.
From the Departments of Biomedical Engineering (A.G.S., S.B.B.) and Neurology (A.G.S.), Case Western University School of Medicine; Neurological Institute (A.G.S.), University Hospitals Cleveland; Neurology Service (A.G.S.), Louis Stokes Cleveland VA Medical Center, OH; Department of Neurology (L.S., G.K.-B., A.F., S. Factor, H.A.J.), Human Genetics (H.A.J.), and Pediatrics (H.A.J.), Emory University School of Medicine, Atlanta, GA; Institute of Neurogenetics (C.K., J.J., S.L., N.B., A.M., T.B.), University of Lübeck, Germany; Department of Neurology (M.V., E.R., C.B.), Pitié-Salpêtrière Hospital, Paris, France; Department of Neurology (J.J.), Baylor College of Medicine, Houston, TX; Neurology and Neurosurgery (J.J.-S.), Icahn School of Medicine at Mount Sinai, New York, NY; Department of Neurology (N.P.), Henry Ford Health System, West Bloomfield, MI; Department of Psychiatry and Neurology (L.M.), Baylor College of Medicine, Houston, TX; Department of Neurological Sciences (C.C.), Rush University Medical Center, Chicago, IL; Department of Neurology (R.L.B.), University of Rochester, NY; Department of Neurology (B.D.B.), University of Colorado School of Medicine, Aurora; Department of Neurology (I.M., A.W.S.), Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville; Department of Neurology (S.G.R.), University of Maryland School of Medicine, Baltimore; University of Tennessee Health Science Center (M.S.L.), Memphis; Department of Neurosciences (A.B.), Mental Health and Sensory Organs, Suicide Prevention Center, Sant'Andrea Hospital, Sapienza University of Rome; IRCCS Neuromed (G.F.), Pozzilli, Italy; The University of Alabama at Birmingham (N.S.); Methodist Neurological Institute (W.O.), Houston, TX; Department of Neurology (S.P.R.), University of New Mexico Health Sciences Center, Albuquerque; Department of Neurology (R.S.-P.), Mount Sinai Beth Israel, New York, NY; Lou Ruvo Center for Brain Health (Z.M.), Cleveland Clinic, Las Vegas, NV; Booth Gardner Parkinson's Care Center (P.A.), Kirkland, WA; Mayo Clinic (C.A.), Scottsdale, AZ; Andre Barbeau Movement Disorders Unit (S.C.), Montreal University Hospital Center (CHUM); Movement Disorder Clinic (S.H.F.), Toronto Western Hospital, Division of Neurology University of Toronto, Canada; UC Davis School of Medicine (A.B.), Sacramento; The Parkinson's and Movement Disorder Institute (D.T.), Orange Coast Memorial Medical Center, Fountain Valley, CA; Department of Medicine (O.S.), Medical Genetics, and Pediatrics, University of Alberta, Canada; Department of Neurology (S. Frank), Beth Israel Deaconess Medical Center, Boston, MA; and Neurology, Radiology, Neuroscience, Physical Therapy and Occupational Therapy (J.P.), Washington University School of Medicine, St Louis, MO.
From the Departments of Biomedical Engineering (A.G.S., S.B.B.) and Neurology (A.G.S.), Case Western University School of Medicine; Neurological Institute (A.G.S.), University Hospitals Cleveland; Neurology Service (A.G.S.), Louis Stokes Cleveland VA Medical Center, OH; Department of Neurology (L.S., G.K.-B., A.F., S. Factor, H.A.J.), Human Genetics (H.A.J.), and Pediatrics (H.A.J.), Emory University School of Medicine, Atlanta, GA; Institute of Neurogenetics (C.K., J.J., S.L., N.B., A.M., T.B.), University of Lübeck, Germany; Department of Neurology (M.V., E.R., C.B.), Pitié-Salpêtrière Hospital, Paris, France; Department of Neurology (J.J.), Baylor College of Medicine, Houston, TX; Neurology and Neurosurgery (J.J.-S.), Icahn School of Medicine at Mount Sinai, New York, NY; Department of Neurology (N.P.), Henry Ford Health System, West Bloomfield, MI; Department of Psychiatry and Neurology (L.M.), Baylor College of Medicine, Houston, TX; Department of Neurological Sciences (C.C.), Rush University Medical Center, Chicago, IL; Department of Neurology (R.L.B.), University of Rochester, NY; Department of Neurology (B.D.B.), University of Colorado School of Medicine, Aurora; Department of Neurology (I.M., A.W.S.), Norman Fixel Institute for Neurological Diseases, University of Florida, Gainesville; Department of Neurology (S.G.R.), University of Maryland School of Medicine, Baltimore; University of Tennessee Health Science Center (M.S.L.), Memphis; Department of Neurosciences (A.B.), Mental Health and Sensory Organs, Suicide Prevention Center, Sant'Andrea Hospital, Sapienza University of Rome; IRCCS Neuromed (G.F.), Pozzilli, Italy; The University of Alabama at Birmingham (N.S.); Methodist Neurological Institute (W.O.), Houston, TX; Department of Neurology (S.P.R.), University of New Mexico Health Sciences Center, Albuquerque; Department of Neurology (R.S.-P.), Mount Sinai Beth Israel, New York, NY; Lou Ruvo Center for Brain Health (Z.M.), Cleveland Clinic, Las Vegas, NV; Booth Gardner Parkinson's Care Center (P.A.), Kirkland, WA; Mayo Clinic (C.A.), Scottsdale, AZ; Andre Barbeau Movement Disorders Unit (S.C.), Montreal University Hospital Center (CHUM); Movement Disorder Clinic (S.H.F.), Toronto Western Hospital, Division of Neurology University of Toronto, Canada; UC Davis School of Medicine (A.B.), Sacramento; The Parkinson's and Movement Disorder Institute (D.T.), Orange Coast Memorial Medical Center, Fountain Valley, CA; Department of Medicine (O.S.), Medical Genetics, and Pediatrics, University of Alberta, Canada; Department of Neurology (S. Frank), Beth Israel Deaconess Medical Center, Boston, MA; and Neurology, Radiology, Neuroscience, Physical Therapy and Occupational Therapy (J.P.), Washington University School of Medicine, St Louis, MO.
Cognitive effort is thought to be familiar in everyday life, ubiquitous across multiple variations of task and circumstance, and integral to cost/benefit computations that are themselves central to th...
Seizures are common in dementia and associated with accelerated cognitive decline. However, the impact of active vs remote seizures on cognition remains understudied. This study aimed to investigate t...
This longitudinal, multicenter cohort is based on National Alzheimer's Coordinating Center data of participants recruited from 39 Alzheimer's Disease Centers in the United States from September 2005 t...
Of the 13,726 participants with normal cognition at enrollment (9,002 [66%] female; median age 71 years), 118 had active seizures and 226 had remote seizures. Of the 11,372 participants with MCI at en...
In this study, active seizures but not remote seizures were associated with earlier cognitive decline in both cognitively normal adults and those with MCI, independent of other dementia risk factors. ...
Genome-wide association studies have discovered common genetic variants associated with cognitive performance. Polygenic scores that summarize these discoveries explain up to 10% of the variance in co...
Considering the importance of cognitive and motor functions of the elderly people, the present study was conducted to evaluate the effectiveness of a cognitive exergame, called Neurolight compared to ...
A total of 36 individuals in the age range of 60 to 69 years were studied in the form of three groups: The control group continued their daily activities, while the Neurolight group underwent a cognit...
The results showed that cognitive-motor exercises using Neurolight, for 24 sessions, were able to significantly improve working memory, inhibitory control, and balance in individuals in this age group...
This finding supports the other studies suggesting combined cognitive and physical exercises for better effect. Based on its findings, the use of this exercise system can be suggested to coaches and t...
When making decisions, humans aim to maximize rewards while minimizing costs. The exertion of mental or physical effort has been proposed to be one those costs, translating into avoidance of behaviors...
The evaluation of cognitive functions interactions has become increasingly implemented in the cognition exploration. In the present study, we propose to examine the organization of the cognitive netwo...
In this editorial, the editors briefly introduce the aims of the Special Issue. If the goal of the scientific field of Cognitive Psychology is to improve our understanding of human cognition, then res...
The present article provides a unified systematic account of the role of cognitive control, motivation and dopamine pathways in relation to the development of fatigue. Since cognitive fatigue is consi...
Debate continues regarding the use of self- versus informant-report to diagnose mild cognitive impairment (MCI) with studies reporting patients both overestimating and underestimating their abilities ...
Three hundred six participants with MCI, and their informants, reported on cognitive decline; the participants also completed a comprehensive assessment of objective cognitive and functional performan...
Informant- but not self-reported cognitive decline significantly correlated with objective cognitive performance. There were 68 underestimators, 94 congruent estimators, and 144 overestimators. Undere...
We showed a poor concordance among self-report of cognitive decline and both informant-report of cognitive decline and cognitive performance in patients with MCI. Our findings highlight clinical and r...