Syndrome des mouvements périodiques nocturnes des membres : Questions médicales fréquentes
Nom anglais: Nocturnal Myoclonus Syndrome
Descriptor UI:D020189
Tree Number:C10.886.659.618
Termes MeSH sélectionnés :
Infant Behavior
Questions fréquentes et termes MeSH associés
Diagnostic
5
#1
Comment diagnostique-t-on ce syndrome ?
Le diagnostic repose sur l'observation des mouvements nocturnes et des études du sommeil.
Syndrome des mouvements périodiquesPolysomnographie
#2
Quels tests sont utilisés pour le diagnostic ?
La polysomnographie est le test principal pour évaluer les mouvements et les cycles de sommeil.
PolysomnographieTroubles du sommeil
#3
Quels critères sont utilisés pour le diagnostic ?
Les critères incluent la fréquence des mouvements et leur impact sur la qualité du sommeil.
Syndrome des mouvements périodiquesQualité du sommeil
#4
Le syndrome est-il confondu avec d'autres troubles ?
Oui, il peut être confondu avec le syndrome des jambes sans repos ou d'autres troubles du sommeil.
Syndrome des jambes sans reposTroubles du sommeil
#5
Les antécédents médicaux influencent-ils le diagnostic ?
Oui, des antécédents de troubles du sommeil ou neurologiques peuvent influencer le diagnostic.
Antécédents médicauxTroubles neurologiques
Symptômes
5
#1
Quels sont les symptômes principaux ?
Les symptômes incluent des mouvements involontaires des membres et des réveils fréquents.
Mouvements involontairesRéveils nocturnes
#2
Les mouvements se produisent-ils à des moments précis ?
Oui, ils se produisent généralement pendant les phases de sommeil léger.
Phases de sommeilSommeil léger
#3
Y a-t-il des douleurs associées aux mouvements ?
Les mouvements peuvent causer des douleurs ou de l'inconfort, perturbant le sommeil.
DouleurPerturbation du sommeil
#4
Les symptômes varient-ils d'une personne à l'autre ?
Oui, l'intensité et la fréquence des mouvements peuvent varier considérablement.
Variabilité des symptômesTroubles du sommeil
#5
Les symptômes affectent-ils la qualité de vie ?
Oui, ils peuvent entraîner une fatigue diurne et affecter la qualité de vie globale.
Fatigue diurneQualité de vie
Prévention
5
#1
Peut-on prévenir ce syndrome ?
Il n'existe pas de méthode de prévention garantie, mais une bonne hygiène du sommeil peut aider.
PréventionHygiène du sommeil
#2
Le stress influence-t-il le syndrome ?
Oui, le stress peut aggraver les symptômes, donc la gestion du stress est conseillée.
StressGestion du stress
#3
L'alimentation joue-t-elle un rôle ?
Une alimentation équilibrée peut contribuer à un meilleur sommeil et réduire les symptômes.
Alimentation équilibréeSommeil
#4
L'exercice physique aide-t-il ?
Oui, l'exercice régulier peut améliorer la qualité du sommeil et réduire les mouvements nocturnes.
Exercice physiqueQualité du sommeil
#5
Les habitudes de sommeil influencent-elles le syndrome ?
Oui, des habitudes de sommeil régulières peuvent aider à réduire l'incidence des mouvements.
Habitudes de sommeilMouvements nocturnes
Traitements
5
#1
Quels traitements sont disponibles ?
Les traitements incluent des médicaments comme les benzodiazépines et des thérapies comportementales.
BenzodiazépinesThérapies comportementales
#2
Les changements de mode de vie aident-ils ?
Oui, des changements comme une meilleure hygiène du sommeil peuvent réduire les symptômes.
Hygiène du sommeilChangements de mode de vie
#3
Les médicaments sont-ils toujours nécessaires ?
Pas toujours, certains patients peuvent gérer les symptômes avec des approches non médicamenteuses.
Approches non médicamenteusesGestion des symptômes
#4
Y a-t-il des effets secondaires aux traitements ?
Oui, certains médicaments peuvent provoquer des effets secondaires comme la somnolence.
Effets secondairesSomnolence
#5
Les traitements sont-ils efficaces à long terme ?
L'efficacité peut varier, et un suivi régulier est souvent nécessaire pour ajuster le traitement.
Suivi médicalEfficacité des traitements
Complications
5
#1
Quelles complications peuvent survenir ?
Les complications incluent la fatigue chronique et des troubles de l'humeur comme l'anxiété.
Fatigue chroniqueTroubles de l'humeur
#2
Le syndrome peut-il affecter la santé mentale ?
Oui, les troubles du sommeil peuvent contribuer à des problèmes de santé mentale.
Santé mentaleTroubles du sommeil
#3
Y a-t-il un risque accru d'autres maladies ?
Oui, les troubles du sommeil peuvent augmenter le risque de maladies cardiovasculaires.
Maladies cardiovasculairesTroubles du sommeil
#4
Les complications sont-elles réversibles ?
Certaines complications peuvent être réversibles avec un traitement approprié et des changements de mode de vie.
RéversibilitéTraitement
#5
Comment les complications sont-elles gérées ?
La gestion des complications implique souvent une approche multidisciplinaire incluant médecins et psychologues.
Gestion des complicationsApproche multidisciplinaire
Facteurs de risque
5
#1
Quels sont les facteurs de risque connus ?
Les facteurs incluent l'âge avancé, des troubles neurologiques et des antécédents familiaux.
Âge avancéAntécédents familiaux
#2
Le sexe influence-t-il le risque ?
Oui, les hommes sont souvent plus touchés que les femmes par ce syndrome.
SexePrévalence
#3
Les troubles du sommeil augmentent-ils le risque ?
Oui, des troubles comme l'apnée du sommeil peuvent augmenter le risque de ce syndrome.
Apnée du sommeilTroubles du sommeil
#4
Les médicaments peuvent-ils être un facteur de risque ?
Oui, certains médicaments, comme les antidépresseurs, peuvent exacerber les symptômes.
AntidépresseursFacteurs de risque
#5
Le mode de vie influence-t-il le risque ?
Oui, un mode de vie sédentaire et une mauvaise hygiène du sommeil peuvent augmenter le risque.
Mode de vie sédentaireHygiène du sommeil
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"position": 22,
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"position": 24,
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"@type": "Answer",
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},
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"name": "Quels sont les facteurs de risque connus ?",
"position": 26,
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"text": "Les facteurs incluent l'âge avancé, des troubles neurologiques et des antécédents familiaux."
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},
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{
"@type": "Question",
"name": "Le mode de vie influence-t-il le risque ?",
"position": 30,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, un mode de vie sédentaire et une mauvaise hygiène du sommeil peuvent augmenter le risque."
}
}
]
}
]
}
From the Children's Neurosciences (T.R., M.L.), Evelina London Children's Hospital at Guy's and St Thomas' NHS Foundation Trust, King's Health Partners Academic Health Science Centre; Department Women and Children's Health (T.R., M.L.), School of Life Course Sciences (SoLCS), King's College London, UK; Division of Neurology (E.A.Y.), Department of Pediatrics, Neurosciences and Mental Health (RI), The Hospital for Sick Children; Faculty of Medicine (E.A.Y.), The University of Toronto, Ontario, Canada; Department of Pediatrics (Y.K.) and Department of Neurology (Y.K.), Memorial Sloan Kettering Cancer Center, New York, NY; Department of Pediatrics (Y.K.), Weill Medical College of Cornell University, New York; Children and Young People's Unit (Paola Angelini), The Royal Marsden, Downs Road, Sutton, Surrey; UCL Great Ormond Street Institute of Child Health (C.H.), Department of Neurology, Great Ormond Street Hospital for Children, London; Oxford Autoimmune Neurology Group (S.R.I.), Nuffield Department of Clinical Neurosciences, University of Oxford; Department of Neurology (S.R.I.), Oxford University Hospitals NHS Foundation Trust, UK; SiRIC RTOP (G.S.), Translational Research Department, PSL Research University, Institut Curie Research Center; INSERM U830 (G.S.), PSL Research University, Institut Curie Research Center; SIREDO Center: Care (G.S.), Innovation and Research for Children, Adolescents and Young Adults with Cancer, Institut Curie, Paris, France; Department of Child and Adolescent Psychiatry (P.S.), King's College London; Centre for Interventional Paediatric Psychopharmacology and Rare Diseases (CIPPRD) Research Team (P.S.), South London and Maudsley NHS Foundation Trust, London, UK; Baylor College of Medicine (T.L.), Texas Children's Hospital, Houston; Kids Neuroscience Centre (R.C.D.), The Children's Hospital at Westmead, Westmead, NSW, Australia; TY Nelson Department of Neurology and Neurosurgery (R.C.D.), The Children's Hospital at Westmead; The Children's Hospital at Westmead Clinical School (R.C.D.), Faculty of Medicine, University of Sydney, NSW, Australia; Pediatric Neurology Department (K.D.), Assistance Publique-Hôpitaux de Paris, Hôpitaux Universitaires Paris Saclay, Bicêtre Hospital; National Referral Center for Rare Inflammatory and Auto-Immune Brain and Spinal Diseases (K.D.); Inserm UMR 1184 (K.D.), Immunology of Viral Infections and Autoimmune Diseases, CEA, IDMIT, Le Kremlin Bicêtre, France; Department of Pediatric Hematology and Oncology (B.H.), University Children's Hospital, Koln; Division of Child Neurology (A.K.), University Children's Hospital Bern Inselspital, University of Bern; Department of Pediatric Neurology (A.K.), University Children's Hospital Basel, Switzerland; Department of Pediatrics (Pedro de Alarcon), University of Illinois College of Medicine at Peoria, Peoria IL; Department of Neurology (M.P.G.), Boston Children's Hospital, Harvard Medical School, MA; Division of Neurology (W.G.M.), Department of Pediatrics, Children's Hospital Los Angeles; and Department of Neurology (W.G.M.), Keck School of Medicine at the University of Southern California, Los Angeles.
Publications dans "Syndrome des mouvements périodiques nocturnes des membres" :
From the Children's Neurosciences (T.R., M.L.), Evelina London Children's Hospital at Guy's and St Thomas' NHS Foundation Trust, King's Health Partners Academic Health Science Centre; Department Women and Children's Health (T.R., M.L.), School of Life Course Sciences (SoLCS), King's College London, UK; Division of Neurology (E.A.Y.), Department of Pediatrics, Neurosciences and Mental Health (RI), The Hospital for Sick Children; Faculty of Medicine (E.A.Y.), The University of Toronto, Ontario, Canada; Department of Pediatrics (Y.K.) and Department of Neurology (Y.K.), Memorial Sloan Kettering Cancer Center, New York, NY; Department of Pediatrics (Y.K.), Weill Medical College of Cornell University, New York; Children and Young People's Unit (Paola Angelini), The Royal Marsden, Downs Road, Sutton, Surrey; UCL Great Ormond Street Institute of Child Health (C.H.), Department of Neurology, Great Ormond Street Hospital for Children, London; Oxford Autoimmune Neurology Group (S.R.I.), Nuffield Department of Clinical Neurosciences, University of Oxford; Department of Neurology (S.R.I.), Oxford University Hospitals NHS Foundation Trust, UK; SiRIC RTOP (G.S.), Translational Research Department, PSL Research University, Institut Curie Research Center; INSERM U830 (G.S.), PSL Research University, Institut Curie Research Center; SIREDO Center: Care (G.S.), Innovation and Research for Children, Adolescents and Young Adults with Cancer, Institut Curie, Paris, France; Department of Child and Adolescent Psychiatry (P.S.), King's College London; Centre for Interventional Paediatric Psychopharmacology and Rare Diseases (CIPPRD) Research Team (P.S.), South London and Maudsley NHS Foundation Trust, London, UK; Baylor College of Medicine (T.L.), Texas Children's Hospital, Houston; Kids Neuroscience Centre (R.C.D.), The Children's Hospital at Westmead, Westmead, NSW, Australia; TY Nelson Department of Neurology and Neurosurgery (R.C.D.), The Children's Hospital at Westmead; The Children's Hospital at Westmead Clinical School (R.C.D.), Faculty of Medicine, University of Sydney, NSW, Australia; Pediatric Neurology Department (K.D.), Assistance Publique-Hôpitaux de Paris, Hôpitaux Universitaires Paris Saclay, Bicêtre Hospital; National Referral Center for Rare Inflammatory and Auto-Immune Brain and Spinal Diseases (K.D.); Inserm UMR 1184 (K.D.), Immunology of Viral Infections and Autoimmune Diseases, CEA, IDMIT, Le Kremlin Bicêtre, France; Department of Pediatric Hematology and Oncology (B.H.), University Children's Hospital, Koln; Division of Child Neurology (A.K.), University Children's Hospital Bern Inselspital, University of Bern; Department of Pediatric Neurology (A.K.), University Children's Hospital Basel, Switzerland; Department of Pediatrics (Pedro de Alarcon), University of Illinois College of Medicine at Peoria, Peoria IL; Department of Neurology (M.P.G.), Boston Children's Hospital, Harvard Medical School, MA; Division of Neurology (W.G.M.), Department of Pediatrics, Children's Hospital Los Angeles; and Department of Neurology (W.G.M.), Keck School of Medicine at the University of Southern California, Los Angeles.
Publications dans "Syndrome des mouvements périodiques nocturnes des membres" :
From the Children's Neurosciences (T.R., M.L.), Evelina London Children's Hospital at Guy's and St Thomas' NHS Foundation Trust, King's Health Partners Academic Health Science Centre; Department Women and Children's Health (T.R., M.L.), School of Life Course Sciences (SoLCS), King's College London, UK; Division of Neurology (E.A.Y.), Department of Pediatrics, Neurosciences and Mental Health (RI), The Hospital for Sick Children; Faculty of Medicine (E.A.Y.), The University of Toronto, Ontario, Canada; Department of Pediatrics (Y.K.) and Department of Neurology (Y.K.), Memorial Sloan Kettering Cancer Center, New York, NY; Department of Pediatrics (Y.K.), Weill Medical College of Cornell University, New York; Children and Young People's Unit (Paola Angelini), The Royal Marsden, Downs Road, Sutton, Surrey; UCL Great Ormond Street Institute of Child Health (C.H.), Department of Neurology, Great Ormond Street Hospital for Children, London; Oxford Autoimmune Neurology Group (S.R.I.), Nuffield Department of Clinical Neurosciences, University of Oxford; Department of Neurology (S.R.I.), Oxford University Hospitals NHS Foundation Trust, UK; SiRIC RTOP (G.S.), Translational Research Department, PSL Research University, Institut Curie Research Center; INSERM U830 (G.S.), PSL Research University, Institut Curie Research Center; SIREDO Center: Care (G.S.), Innovation and Research for Children, Adolescents and Young Adults with Cancer, Institut Curie, Paris, France; Department of Child and Adolescent Psychiatry (P.S.), King's College London; Centre for Interventional Paediatric Psychopharmacology and Rare Diseases (CIPPRD) Research Team (P.S.), South London and Maudsley NHS Foundation Trust, London, UK; Baylor College of Medicine (T.L.), Texas Children's Hospital, Houston; Kids Neuroscience Centre (R.C.D.), The Children's Hospital at Westmead, Westmead, NSW, Australia; TY Nelson Department of Neurology and Neurosurgery (R.C.D.), The Children's Hospital at Westmead; The Children's Hospital at Westmead Clinical School (R.C.D.), Faculty of Medicine, University of Sydney, NSW, Australia; Pediatric Neurology Department (K.D.), Assistance Publique-Hôpitaux de Paris, Hôpitaux Universitaires Paris Saclay, Bicêtre Hospital; National Referral Center for Rare Inflammatory and Auto-Immune Brain and Spinal Diseases (K.D.); Inserm UMR 1184 (K.D.), Immunology of Viral Infections and Autoimmune Diseases, CEA, IDMIT, Le Kremlin Bicêtre, France; Department of Pediatric Hematology and Oncology (B.H.), University Children's Hospital, Koln; Division of Child Neurology (A.K.), University Children's Hospital Bern Inselspital, University of Bern; Department of Pediatric Neurology (A.K.), University Children's Hospital Basel, Switzerland; Department of Pediatrics (Pedro de Alarcon), University of Illinois College of Medicine at Peoria, Peoria IL; Department of Neurology (M.P.G.), Boston Children's Hospital, Harvard Medical School, MA; Division of Neurology (W.G.M.), Department of Pediatrics, Children's Hospital Los Angeles; and Department of Neurology (W.G.M.), Keck School of Medicine at the University of Southern California, Los Angeles.
Publications dans "Syndrome des mouvements périodiques nocturnes des membres" :
From the Department of Neurology (J.D.S.), Massachusetts General Hospital, Boston; Department of Neurology (J.D.S., J.M.K., M.P.G.), Boston Children's Hospital, MA; Harvard Medical School (J.D.S., K.D.M.), Boston, MA; Division of Neurology (J.D.S.), Department of Pediatrics, Children's Hospital of Los Angeles, CA; Department of Neurology (J.D.S.), Keck School of Medicine at the University of Southern California, Los Angeles; Department of Pediatrics (R.C., T.C.C.), University of Utah School of Medicine, Salt Lake City; Department of Neurology and Neurotherapeutics (B.M.G.), The University of Texas Southwestern Medical Center at Dallas, TX; UCSF Weill Institute for Neurosciences (E.W.), Department of Neurology, University of California San Francisco, CA; Computational Health Informatics Program (S.W.K., K.D.M.), Boston Children's Hospital, MA; and Department of Pediatrics (S.W.K., K.D.M.), Boston Children's Hospital, MA. jdsantoro@chla.usc.edu.
Publications dans "Syndrome des mouvements périodiques nocturnes des membres" :
Infant-directed singing is a culturally universal musical phenomenon known to promote the bonding of infants and caregivers. Entrainment is a widely observed physical phenomenon by which diverse physi...
Linking prenatal drug exposures to both infant behavior and adult cognitive outcomes may improve early interventions....
To assess whether neonatal physical, neurobehavioral, and infant cognitive measures mediate the association between prenatal cocaine exposure (PCE) and adult perceptual reasoning IQ....
This study used data from a longitudinal, prospective birth cohort study with follow-up from 1994 to 2018 until offspring were 21 years post partum. A total of 384 (196 PCE and 188 not exposed to coca...
Prenatal exposures to cocaine, alcohol, marijuana, and tobacco assessed through urine and meconium analyses and maternal self-report....
Head circumference, neurobehavioral assessment, Bayley Scales of Infant Development, Fagan Test of Infant Intelligence score, Wechsler Perceptual Reasoning IQ, Home Observation for Measurement of the ...
Among the 384 mothers in the study, the mean (SD) age at delivery was 27.7 (5.3) years (range, 18-41 years), 375 of 383 received public assistance (97.9%) and 336 were unmarried (87.5%). Birth head ci...
In this cohort study, a negative association of PCE with adult perceptual reasoning IQ was mediated by early physical and behavioral differences, after controlling for other drug and environmental fac...
It remains unclear whether infants born preterm are more likely to develop an insecure attachment with their mothers. In this study, instead of using gestational age criteria, we observe attachment in...
Late preterm and early term infants are at increased risk of poor growth, behavioral problems, and developmental delays. This study aimed to investigate the impact of maternal and infant characteristi...
Data from 52 Chinese mothers and their late preterm/early term infants participating in the Breastfeed a Better Youngster study were used. Maternal and infant characteristics were collected using ques...
Exclusive breastfeeding was associated with greater sleep duration (P = 0.02) and shorter crying duration (P = 0.01). Mothers with a vocational education reported greater distress duration (P = 0.006)...
Exclusive breastfeeding might promote more favorable infant behaviors in late preterm/early term infants, while the development of infant distress behaviors was associated with some maternal character...
How mothers respond to infants' distress has implications for infants' development of self-regulation and social competence. In a sample of 35 mothers and their 4- to 8-month-old infants, we induced i...
Dance is a universal human behavior and a crucial component of human musicality. When and how does the motivation and tendency to move to music develop? How does this behavior change as a process of m...
Researchers routinely infer learning and other unobservable psychological functions based on observable behavior. But what behavioral changes constitute evidence of learning? The standard approach is ...
Environmental morality is the foundation of a sustainable future, yet its ontogenetic origin remains unknown. In the present study, we asked whether 7-month-olds have a sense of 'environmental moralit...
Maternal stress has negative consequences on infant behavioral development, and COVID-19 presented uniquely stressful situations to mothers of infants born during the pandemic. We hypothesized that mo...
As part 6 sites of a longitudinal study, mothers of infants born during the pandemic completed the Perceived Stress Scale, the Brief Infant Sleep Questionnaire, and an Infant Crying survey at 6 (n = 4...
Maternal perceived stress, which remained consistent at 6 and 12 months of infant age, was significantly positively correlated with time taken to settle infants. Although maternal perceived stress was...
Mothers who reported higher levels of perceived stress during the pandemic reported higher levels of regulatory problems, specifically at 6 months. Examining how varying levels of maternal stress and ...
Women giving birth during the COVID-19 pandemic who reported higher levels of stress on the Perceived Stress Scale also reported higher levels of infant fussiness and crying at 6 months old, and more ...
Research suggests that women's autonomic nervous system responses to infant cries capture processes that affect their parenting behaviors. The aim of this study was to build on prior work by testing w...