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Effets physiologiques des médicaments
Agents neuromédiateurs
Agents cholinergiques
Inhibiteurs de la libération d'acétylcholine
Inhibiteurs de la libération d'acétylcholine : Questions médicales fréquentes
Termes MeSH sélectionnés :
Diagnostic
5
Diagnostic
Acétylcholine
Neurologie
Tests électromyographiques
Acétylcholine
Analyse sanguine
Faiblesse musculaire
Fatigue
Acétylcholine
Antécédents médicaux
Acétylcholine
Évaluation clinique
Imagerie cérébrale
Pathologies neurologiques
Acétylcholine
Symptômes
5
Faiblesse musculaire
Fatigue
Coordination
Troubles de la mémoire
Concentration
Acétylcholine
Difficultés respiratoires
Acétylcholine
Système respiratoire
Âge
Symptômes
Acétylcholine
Nausées
Troubles gastro-intestinaux
Acétylcholine
Prévention
5
Prévention
Mode de vie sain
Acétylcholine
Alimentation équilibrée
Antioxydants
Acétylcholine
Exercice physique
Fonction musculaire
Acétylcholine
Stress
Symptômes
Acétylcholine
Contrôles réguliers
Surveillance
Acétylcholine
Traitements
5
Médicaments anticholinestérasiques
Thérapies physiques
Acétylcholine
Efficacité des traitements
Qualité de vie
Acétylcholine
Effets secondaires
Nausées
Acétylcholine
Rééducation physique
Renforcement musculaire
Acétylcholine
Traitements personnalisés
Acétylcholine
Médecine personnalisée
Complications
5
Complications
Troubles respiratoires
Crises musculaires
Hospitalisations
Surveillance
Acétylcholine
Risque de décès
Inhibition sévère
Acétylcholine
Complications réversibles
Traitement approprié
Acétylcholine
Gestion des complications
Approche multidisciplinaire
Acétylcholine
Facteurs de risque
5
Facteurs de risque
Maladies auto-immunes
Antécédents familiaux
Âge avancé
Facteurs de risque
Acétylcholine
Médicaments
Risque
Acétylcholine
Mode de vie sédentaire
Mauvaise alimentation
Acétylcholine
Infections virales
Risque
Acétylcholine
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"description": "Comment diagnostiquer une inhibition de l'acétylcholine ?\nQuels tests sont utilisés pour évaluer l'acétylcholine ?\nQuels symptômes indiquent une inhibition d'acétylcholine ?\nLes antécédents médicaux sont-ils importants ?\nPeut-on utiliser l'imagerie pour le diagnostic ?",
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"description": "Quels sont les symptômes courants d'une inhibition ?\nL'inhibition affecte-t-elle la cognition ?\nY a-t-il des symptômes respiratoires associés ?\nLes symptômes varient-ils selon l'âge ?\nPeut-on avoir des symptômes digestifs ?",
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"description": "Peut-on prévenir l'inhibition d'acétylcholine ?\nL'alimentation joue-t-elle un rôle ?\nL'exercice physique est-il bénéfique ?\nLe stress peut-il aggraver l'inhibition ?\nDes contrôles réguliers sont-ils nécessaires ?",
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"headline": "Traitements sur Inhibiteurs de la libération d'acétylcholine",
"description": "Quels traitements sont disponibles pour l'inhibition ?\nLes traitements sont-ils efficaces ?\nY a-t-il des effets secondaires aux traitements ?\nLa rééducation est-elle recommandée ?\nLes traitements sont-ils personnalisés ?",
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"@type": "Question",
"name": "Comment diagnostiquer une inhibition de l'acétylcholine ?",
"position": 1,
"acceptedAnswer": {
"@type": "Answer",
"text": "Le diagnostic repose sur des tests neurologiques et l'évaluation des symptômes cliniques."
}
},
{
"@type": "Question",
"name": "Quels tests sont utilisés pour évaluer l'acétylcholine ?",
"position": 2,
"acceptedAnswer": {
"@type": "Answer",
"text": "Des tests électromyographiques et des analyses sanguines peuvent être utilisés."
}
},
{
"@type": "Question",
"name": "Quels symptômes indiquent une inhibition d'acétylcholine ?",
"position": 3,
"acceptedAnswer": {
"@type": "Answer",
"text": "Des symptômes comme la faiblesse musculaire et la fatigue peuvent indiquer une inhibition."
}
},
{
"@type": "Question",
"name": "Les antécédents médicaux sont-ils importants ?",
"position": 4,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, les antécédents médicaux aident à identifier des causes potentielles d'inhibition."
}
},
{
"@type": "Question",
"name": "Peut-on utiliser l'imagerie pour le diagnostic ?",
"position": 5,
"acceptedAnswer": {
"@type": "Answer",
"text": "L'imagerie cérébrale peut aider à exclure d'autres pathologies neurologiques."
}
},
{
"@type": "Question",
"name": "Quels sont les symptômes courants d'une inhibition ?",
"position": 6,
"acceptedAnswer": {
"@type": "Answer",
"text": "Les symptômes incluent faiblesse musculaire, fatigue, et troubles de la coordination."
}
},
{
"@type": "Question",
"name": "L'inhibition affecte-t-elle la cognition ?",
"position": 7,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, elle peut entraîner des troubles de la mémoire et de la concentration."
}
},
{
"@type": "Question",
"name": "Y a-t-il des symptômes respiratoires associés ?",
"position": 8,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des difficultés respiratoires peuvent survenir en cas d'inhibition sévère."
}
},
{
"@type": "Question",
"name": "Les symptômes varient-ils selon l'âge ?",
"position": 9,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, les symptômes peuvent être plus prononcés chez les personnes âgées."
}
},
{
"@type": "Question",
"name": "Peut-on avoir des symptômes digestifs ?",
"position": 10,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des nausées et des troubles gastro-intestinaux peuvent se manifester."
}
},
{
"@type": "Question",
"name": "Peut-on prévenir l'inhibition d'acétylcholine ?",
"position": 11,
"acceptedAnswer": {
"@type": "Answer",
"text": "Certaines mesures préventives incluent un mode de vie sain et la gestion du stress."
}
},
{
"@type": "Question",
"name": "L'alimentation joue-t-elle un rôle ?",
"position": 12,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, une alimentation équilibrée riche en antioxydants peut soutenir la santé neuronale."
}
},
{
"@type": "Question",
"name": "L'exercice physique est-il bénéfique ?",
"position": 13,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, l'exercice régulier peut améliorer la fonction musculaire et nerveuse."
}
},
{
"@type": "Question",
"name": "Le stress peut-il aggraver l'inhibition ?",
"position": 14,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, le stress chronique peut exacerber les symptômes d'inhibition d'acétylcholine."
}
},
{
"@type": "Question",
"name": "Des contrôles réguliers sont-ils nécessaires ?",
"position": 15,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des contrôles réguliers permettent de surveiller l'évolution et d'ajuster les traitements."
}
},
{
"@type": "Question",
"name": "Quels traitements sont disponibles pour l'inhibition ?",
"position": 16,
"acceptedAnswer": {
"@type": "Answer",
"text": "Les traitements incluent des médicaments anticholinestérasiques et des thérapies physiques."
}
},
{
"@type": "Question",
"name": "Les traitements sont-ils efficaces ?",
"position": 17,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, ils peuvent améliorer les symptômes et la qualité de vie des patients."
}
},
{
"@type": "Question",
"name": "Y a-t-il des effets secondaires aux traitements ?",
"position": 18,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des effets secondaires comme des nausées et des crampes peuvent survenir."
}
},
{
"@type": "Question",
"name": "La rééducation est-elle recommandée ?",
"position": 19,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, la rééducation physique peut aider à renforcer les muscles et améliorer la fonction."
}
},
{
"@type": "Question",
"name": "Les traitements sont-ils personnalisés ?",
"position": 20,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, les traitements sont souvent adaptés en fonction des besoins individuels du patient."
}
},
{
"@type": "Question",
"name": "Quelles complications peuvent survenir ?",
"position": 21,
"acceptedAnswer": {
"@type": "Answer",
"text": "Des complications incluent des troubles respiratoires et des crises musculaires."
}
},
{
"@type": "Question",
"name": "L'inhibition peut-elle entraîner des hospitalisations ?",
"position": 22,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des cas graves peuvent nécessiter une hospitalisation pour surveillance."
}
},
{
"@type": "Question",
"name": "Y a-t-il un risque de décès ?",
"position": 23,
"acceptedAnswer": {
"@type": "Answer",
"text": "Dans des cas extrêmes, l'inhibition sévère peut entraîner des risques mortels."
}
},
{
"@type": "Question",
"name": "Les complications sont-elles réversibles ?",
"position": 24,
"acceptedAnswer": {
"@type": "Answer",
"text": "Certaines complications peuvent être réversibles avec un traitement approprié."
}
},
{
"@type": "Question",
"name": "Comment gérer les complications ?",
"position": 25,
"acceptedAnswer": {
"@type": "Answer",
"text": "La gestion des complications nécessite une approche multidisciplinaire et un suivi régulier."
}
},
{
"@type": "Question",
"name": "Quels sont les facteurs de risque d'inhibition ?",
"position": 26,
"acceptedAnswer": {
"@type": "Answer",
"text": "Les facteurs incluent des maladies auto-immunes, des infections et des antécédents familiaux."
}
},
{
"@type": "Question",
"name": "L'âge est-il un facteur de risque ?",
"position": 27,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, l'âge avancé est un facteur de risque pour les troubles de la libération d'acétylcholine."
}
},
{
"@type": "Question",
"name": "Les médicaments peuvent-ils influencer le risque ?",
"position": 28,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, certains médicaments peuvent augmenter le risque d'inhibition d'acétylcholine."
}
},
{
"@type": "Question",
"name": "Le mode de vie affecte-t-il le risque ?",
"position": 29,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, un mode de vie sédentaire et une mauvaise alimentation peuvent augmenter le risque."
}
},
{
"@type": "Question",
"name": "Les infections virales sont-elles un risque ?",
"position": 30,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, certaines infections virales peuvent déclencher des troubles de la libération d'acétylcholine."
}
}
]
}
]
}
Expert en Médecine, Optimisation des Parcours de Soins et Révision Médicale
Validation scientifique effectuée le 01/05/2025
Contenu vérifié selon les dernières recommandations médicales
3 publications dans cette catégorie
Affiliations :
Department of Pharmacology, School of Medicine, Kanazawa Medical University, Uchinada, Ishikawa, Japan.
Division of Genomic Science and Microbiology, School of Medicine, University of Fukui, Eiheiji, Fukui, Japan.
Kimura Hospital, Awara, Fukui, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
3 publications dans cette catégorie
Affiliations :
Department of Pharmacology, School of Medicine, Kanazawa Medical University, Uchinada, Ishikawa, Japan.
Division of Cellular Signal Transduction, Department of Biochemistry, Asahikawa Medical University, Asahikawa, Hokkaido, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
3 publications dans cette catégorie
Affiliations :
Division of Genomic Science and Microbiology, School of Medicine, University of Fukui, Eiheiji, Fukui, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
3 publications dans cette catégorie
Affiliations :
Department of Pharmacology, School of Medicine, Kanazawa Medical University, Uchinada, Ishikawa, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Division of Cellular Signal Transduction, Department of Biochemistry, Asahikawa Medical University, Asahikawa, Hokkaido, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Division of Cellular Signal Transduction, Department of Biochemistry, Asahikawa Medical University, Asahikawa, Hokkaido, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Pharmacology, School of Medicine, Kanazawa Medical University, Uchinada, Ishikawa, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Clinical Pharmacology, School of Medicine, Tokai University, Isehara 259-1193, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Tokyo Dental College, Misaki-cho, Chiyoda-ku, Tokyo 101-0061, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Molecular Neuroimmune Signaling, Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russia (D.S.L., E.V.K., I.A.I., N.S.E., N.D.T., E.N.S., E.Y.T., A.E.S., D.S.K., I.E.K., V.I.T.); Department of Neurobiology, Hellenic Pasteur Institute, Athens, Greece (M.Z., S.J.T.); Institute of Molecular Medicine, Sechenov First Moscow State Medical University, Moscow, Russia (I.E.K.); Institute of Chemistry and Molecular Engineering, Agricultural University of Georgia, Kakha Bendukidze University Campus, Tbilisi, Georgia (R.K., N.Z., I.I.); and PhysBio of MePhI, Moscow, Russia (V.I.T.) victortsetlin3f@gmail.com.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Cardiovascular Dynamics, National Cerebral and Cardiovascular Center, Osaka 564-8565, Japan. Electronic address: torukawa@ncvc.go.jp.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Cardiac Physiology, National Cerebral and Cardiovascular Center, Osaka 564-8565, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Cardiac Physiology, National Cerebral and Cardiovascular Center, Osaka 564-8565, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Cardiac Physiology, National Cerebral and Cardiovascular Center, Osaka 564-8565, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Cardiovascular Dynamics, National Cerebral and Cardiovascular Center, Osaka 564-8565, Japan.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Kazan Institute of Biochemistry and Biophysics FRC Kazan Scientific Center of RAS, PB 30, Kazan 420111, Russia. Electronic address: ellyab@mail.ru.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Physiology and Pharmacology, Wake Forest School of Medicine, Winston-Salem, North Carolina, USA.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
Department of Physiology and Pharmacology, Wake Forest School of Medicine, Winston-Salem, North Carolina, USA.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
a Department of Pharmacy , Peking University People's Hospital , Beijing 100730 , China.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
2 publications dans cette catégorie
Affiliations :
b Beijing Key Laboratory of Drug Clinical Risk and Personalized Medication Evaluation, Department of Clinical Pharmacology , Beijing Hospital , Bejing 100044 , China.
Publications dans "Inhibiteurs de la libération d'acétylcholine" :
Transcranial direct current stimulation (tDCS) is a promising tool to enhance therapeutic efforts, for instance, after a stroke. The achieved stimulation effects exhibit high inter-subject variability...
While brain anatomy in general and specifically atrophy as well as stroke lesions are deemed influential on the EF in simulation studies, the influence of the uncertainty in the change of the electric...
A group simulation study with 88 subjects assigned into four groups of increasing lesion load was conducted. Due to the lack of information about the electrical conductivity of WMLs, an uncertainty an...
The contribution of WMLs to the EF variance was on average only one tenth to one thousandth of the contribution of the other modeled tissues. While the contribution of the WMLs significantly increased...
Our results suggest that WMLs do not perturb the EF globally and can thus be omitted when modeling subjects with low to medium lesion load. However, for high lesion load subjects, the omission of WMLs...
Physical inactivity is associated with muscle atrophy and venous thromboembolism, which may be prevented by neuromuscular electrical stimulation (NMES). This study aimed to investigate the effect on d...
On eleven healthy participants (four females), calf-NMES via a TTE sock was applied with increasing intensity (mA) until ankle-plantar flexion at which point outcomes were compared when testing freque...
1 Hz yielded a median (inter-quartile range) NRS of 2.4 (1.0-3.4), significantly lower than both 3 Hz with NRS 2.8 (1.8-4.2), and 10 Hz with NRS 3.4 (1.4-5.4) (both p ≤ .014). Each increase in tested ...
LI-NMES applied via a TTE sock produces a relevant plantar flexion of the ankle with the best comfort and lowest energy consumption using 1 Hz and phase durations 150, 200 or 400 µs....
Although relatively costly and non-scalable, non-invasive neuromodulation interventions are treatment alternatives for neuropsychiatric disorders. The recent developments of highly-deployable transcra...
We convened 61 highly-productive specialists and contacted 8 tES companies to assess 71 issues related to tES digitalization readiness, and processes, barriers, advantages, and opportunities for imple...
The main strengths/opportunities of tES were: (i) non-pharmacological nature (92% of agreement), safety of these techniques (80%), affordability (88%), and potential scalability (78%). As for weakness...
Panelists recognized the potential of tES for scalability, generalizability, and leverage of digital trials processes; with no consensus about aspects regarding methodological biases....
We further propose and discuss a conceptual framework for exploiting shared aspects between mobile-Health tES technologies with digital trials methodology to drive future efforts for digitizing tES tr...
Intracranial electrodes are used clinically for diagnostic or therapeutic purposes, notably in drug-refractory epilepsy (DRE) among others. Visualization and quantification of the energy delivered thr...
To assess the efficacy of vaginal electrical stimulation (VS) versus transcutaneous tibial nerve electrical stimulation (TTNS) in women with overactive bladder syndrome (OAB)....
Sixty-nine patients were randomized to receive 12 sessions of VS versus TTNS, or no treatment (control group-CG), over 6 weeks. OAB impact according to international consultation on incontinence quest...
Both TTNS (mean difference = -4.2; 95% confidence interval [CI] = -6.5 to -1.9) and VS (-3.8; -6.0 to -1.6) were associated with significant reduction of ICIQ-OAB scores, as well as discomfort sensati...
Short-term interventions (6 weeks) of TTNS and VS were both effective in treating women with OAB. TTNS provided residual effects at one-month postintervention on ICIQ-OAB score....
Osteoporosis is mainly a geriatric disease with a high incidence, and the resulting spinal fractures and hip fractures cause great harm to patients. Anti-osteoporosis drugs are the main treatment for ...
Tooth loss during the lifetime of an individual is common. A strategy to treat partial or complete edentulous patients is the placement of dental implants. However, dental implants are subject to bact...
Visceral sensations are bodily symptoms which are component manifestations of emotions frequently reported during epileptic seizures. Nowadays, the underlying mechanism and location of brain areas inv...
We reviewed 12,088 bipolar stimulations performed in 203 patients during the presurgical evaluation of drug refractory epilepsy. Responses to stimulation were divided into viscero-sensitive, viscero-v...
In total, 543 stimulations evoked visceral and emotional sensations. Stimulations of operculo-insulolimbic structures (amygdala, anterior and posterior insula, anterior and mid-cingulate cortex, hippo...
Our data can help to guide SEEG explorations when visceral or emotional symptoms are part of the ictal semiology. They also bring some insights into the mechanisms of visceroception and the functional...
The application of biological methods in industrial saline wastewater treatment is limited, since the activities of microorganisms are strongly inhibited by the highly concentrated salts. Acclimatized...
Exercising intrinsic foot muscles (IFMs) can improve dynamic balance and foot posture. The exercises are not intuitive and electrotherapy (neuromuscular electrical stimulation [NMES]) has been suggest...
Randomized controlled trial....
Thirty-nine participants were randomized to control, TRAIN, or NMES. TRAIN and NMES performed IFM exercises daily for 4 weeks; NMES received electrotherapy during the first 2 weeks of training. The Y-...
A 4-week IFM training program demonstrated increases in Y-Balance (P = .01) for TRAIN and in arch height index (seated P = .03; standing P = .02) for NMES, relative to baseline. NMES demonstrated impr...
A 4-week IFM training program improved dynamic balance and foot posture. Adding NMES in early phases of training provided early improvement in dynamic balance and foot posture, but did not affect perc...