Titre : Flavonols

Flavonols : Questions médicales fréquentes

Termes MeSH sélectionnés :

Electroencephalography

Questions fréquentes et termes MeSH associés

Diagnostic 2

#1

Comment détecte-t-on les flavonols dans les aliments ?

Les flavonols peuvent être détectés par chromatographie et spectrométrie de masse.
Flavonols Chromatographie Spectrométrie de masse
#2

Quels tests mesurent les niveaux de flavonols dans le sang ?

Des tests sanguins spécifiques peuvent quantifier les flavonols et leurs métabolites.
Flavonols Analyse sanguine Métabolites

Symptômes 2

#1

Les flavonols provoquent-ils des symptômes ?

En général, les flavonols ne provoquent pas de symptômes, mais des allergies peuvent survenir.
Flavonols Allergies alimentaires Réactions indésirables
#2

Quels effets des flavonols sur la santé ?

Les flavonols peuvent réduire l'inflammation et améliorer la santé cardiovasculaire.
Flavonols Santé cardiovasculaire Inflammation

Prévention 2

#1

Comment les flavonols aident-ils à prévenir les maladies ?

Ils agissent comme antioxydants, réduisant le stress oxydatif et le risque de maladies.
Flavonols Antioxydants Prévention des maladies
#2

Quels aliments sont riches en flavonols ?

Les oignons, le thé, les baies et le chocolat noir sont de bonnes sources de flavonols.
Flavonols Alimentation Sources alimentaires

Traitements 2

#1

Les flavonols sont-ils utilisés en médecine ?

Oui, les flavonols sont étudiés pour leurs effets bénéfiques sur diverses maladies.
Flavonols Médecine préventive Maladies chroniques
#2

Comment les flavonols aident-ils dans le traitement du cancer ?

Ils peuvent inhiber la croissance tumorale et améliorer l'efficacité des traitements.
Flavonols Cancer Thérapies anticancéreuses

Complications 2

#1

Y a-t-il des complications liées aux flavonols ?

Des interactions médicamenteuses peuvent survenir, mais elles sont rares.
Flavonols Interactions médicamenteuses Complications
#2

Les flavonols peuvent-ils causer des effets secondaires ?

En général, ils sont sûrs, mais des doses élevées peuvent entraîner des troubles digestifs.
Flavonols Effets secondaires Troubles digestifs

Facteurs de risque 2

#1

Qui devrait éviter les flavonols ?

Les personnes allergiques aux flavonoïdes devraient limiter leur consommation de flavonols.
Flavonols Allergies alimentaires Flavonoïdes
#2

Les flavonols sont-ils sûrs pour les femmes enceintes ?

En général, les flavonols sont considérés comme sûrs, mais une consultation médicale est conseillée.
Flavonols Grossesse Sécurité alimentaire
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Dr Olivier Menir

Contenu validé par Dr Olivier Menir

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


Validation scientifique effectuée le 12/02/2025

Contenu vérifié selon les dernières recommandations médicales

Auteurs principaux

Changjie Xu

3 publications dans cette catégorie

Affiliations :
  • Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Zhejiang University, Hangzhou 310058, China.
  • Department of Vascular Surgery, The Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou 310009, China.
Publications dans "Flavonols" :

Kunsong Chen

3 publications dans cette catégorie

Affiliations :
  • Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Zhejiang University, Hangzhou 310058, China.
  • Department of Vascular Surgery, The Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou 310009, China.
Publications dans "Flavonols" :

Xian Li

3 publications dans cette catégorie

Affiliations :
  • Zhejiang Provincial Key Laboratory of Horticultural Plant Integrative Biology, Zhejiang University, Hangzhou 310058, China.
  • Department of Vascular Surgery, The Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou 310009, China.
Publications dans "Flavonols" :

Wei Xue

3 publications dans cette catégorie

Affiliations :
  • State Key Laboratory of Green Pesticide, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Center for R&D of Fine Chemicals, Guizhou University, Guiyang, 550025, China. wxue@gzu.edu.cn.

Nguyen Xuan Nhiem

2 publications dans cette catégorie

Affiliations :
  • Institute of Marine Biochemistry, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
Publications dans "Flavonols" :

Phan Van Kiem

2 publications dans cette catégorie

Affiliations :
  • Institute of Marine Biochemistry, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
Publications dans "Flavonols" :

So Young Lee

2 publications dans cette catégorie

Affiliations :
  • Department of Biomedical and Pharmaceutical Sciences, Graduate School, Kyung Hee University, Seoul 02447, Republic of Korea.
Publications dans "Flavonols" :

Yea Jung Choi

2 publications dans cette catégorie

Affiliations :
  • College of Korean Medicine, Gachon University, Seongnam 13120, Republic of Korea.
Publications dans "Flavonols" :

So-Ri Son

2 publications dans cette catégorie

Affiliations :
  • Department of Biomedical and Pharmaceutical Sciences, Graduate School, Kyung Hee University, Seoul 02447, Republic of Korea.
Publications dans "Flavonols" :

Sullim Lee

2 publications dans cette catégorie

Affiliations :
  • Department of Life Science, College of Bio-Nano Technology, Gachon University, Seongnam 13120, Republic of Korea.
Publications dans "Flavonols" :

Dae Sik Jang

2 publications dans cette catégorie

Affiliations :
  • Department of Biomedical and Pharmaceutical Sciences, Graduate School, Kyung Hee University, Seoul 02447, Republic of Korea.
Publications dans "Flavonols" :

Jesus Simal-Gandara

2 publications dans cette catégorie

Affiliations :
  • Universidade de Vigo, Nutrition and Bromatology Group, Department of Analytical and Food Chemistry, Faculty of Sciences, 32004, Ourense, Spain.
Publications dans "Flavonols" :

Hui Cao

2 publications dans cette catégorie

Affiliations :
  • College of Food Science and Technology, Guangdong Ocean University, Guangdong Provincial Key Laboratory of Aquatic Product Processing and Safety, Zhanjiang, 524088, China.
  • Universidade de Vigo, Nutrition and Bromatology Group, Department of Analytical and Food Chemistry, Faculty of Sciences, 32004, Ourense, Spain.
Publications dans "Flavonols" :

Joanna Popiolek-Kalisz

2 publications dans cette catégorie

Affiliations :
  • Department of Bioanalytics, Medical University of Lublin, 20-090 Lublin, Poland.
  • Department of Cardiology, Cardinal Wyszynski Hospital in Lublin, 20-718 Lublin, Poland.

Xiaolan Jiang

2 publications dans cette catégorie

Affiliations :
  • State Key Laboratory of Tea Plant Biology and Utilization, and International Joint Laboratory on Tea Chemistry and Health Effects of Ministry of Education, Anhui Agricultural University, Hefei, Anhui, China.
Publications dans "Flavonols" :

Yufeng Shi

2 publications dans cette catégorie

Affiliations :
  • State Key Laboratory of Tea Plant Biology and Utilization, and International Joint Laboratory on Tea Chemistry and Health Effects of Ministry of Education, Anhui Agricultural University, Hefei, Anhui, China.
Publications dans "Flavonols" :

Zhouping Fu

2 publications dans cette catégorie

Affiliations :
  • State Key Laboratory of Tea Plant Biology and Utilization, and International Joint Laboratory on Tea Chemistry and Health Effects of Ministry of Education, Anhui Agricultural University, Hefei, Anhui, China.
Publications dans "Flavonols" :

Wei-Wei Li

2 publications dans cette catégorie

Affiliations :
  • State Key Laboratory of Tea Plant Biology and Utilization, and International Joint Laboratory on Tea Chemistry and Health Effects of Ministry of Education, Anhui Agricultural University, Hefei, Anhui, China.
Publications dans "Flavonols" :

Sanyan Lai

2 publications dans cette catégorie

Affiliations :
  • State Key Laboratory of Tea Plant Biology and Utilization, and International Joint Laboratory on Tea Chemistry and Health Effects of Ministry of Education, Anhui Agricultural University, Hefei, Anhui, China.
Publications dans "Flavonols" :

Yajun Liu

2 publications dans cette catégorie

Affiliations :
  • School of Life Science, Anhui Agricultural University, Hefei, Anhui, China.
Publications dans "Flavonols" :

Sources (4936 au total)

Electroencephalography in young onset dementia.

Young onset dementia (YOD) is a major diagnostic and management problem.... We set out to explore if electroencephalography (EEG) might be useful in the diagnosis of young onset Alzheimer's disease (YOAD) and young onset frontotemporal dementia (YOFTD). The ARTEMIS project is... 80.9% of patients with YOD had abnormal EEGs (P < 0.00001). Slow wave changes were more frequent in YOAD that YOFTD (P < 0.00001), but no difference in the frequency of epileptiform activity (P = 0.32... The EEG is highly specific for the diagnosis of YOD with the absence of slow wave changes and epileptiform phenomena making the diagnosis unlikely, with 100% negative predictive value and with low pro...

Segmenting electroencephalography wires reduces radiofrequency shielding artifacts in simultaneous electroencephalography and functional magnetic resonance imaging at 7 T.

Simultaneous scalp electroencephalography and functional magnetic resonance imaging (EEG-fMRI) enable noninvasive assessment of brain function with high spatial and temporal resolution. However, at ul... Electromagnetic field simulations and MR measurements assessed the shielding effect of the EEG setup, more specifically the EEG wiring. The effectiveness of segmenting the wiring with resistors to red... The EEG wiring was found to exert a dominant effect on the disruption of the transmit field, whose intensity varied periodically as a function of the wire length. Breaking the electrical continuity of... We demonstrated that segmenting the EEG wiring into shorter lengths using commercially available nonmagnetic resistors is effective at reducing RF shielding artifacts in simultaneous EEG-fMRI. This pr...

Targeting electroencephalography for alcohol dependence: A narrative review.

Electroencephalography (EEG)-based electrophysiological techniques have made progress in diagnosing and treating alcohol dependence in recent years.... The article reviews the latest literature in this field.... Alcohol dependence, which is common and prone to relapsing, poses a serious threat to individuals, families, and society. At present, the objective detection methods for alcohol dependence in clinic a... As electrophysiological techniques developed in psychiatry, some researches on EEG-based monitoring methods such as resting electroencephalography (REEG), event-related potentials (ERP), event-related... In this paper, the status of electrophysiological researches on EEG in alcoholics are reviewed in detail....

Electroencephalography functional connectivity-A biomarker for painful polyneuropathy.

Advanced analysis of electroencephalography (EEG) data has become an essential tool in brain research. Based solely on resting state EEG signals, a data-driven, predictive and explanatory approach is ... Three minutes long, 64 electrode resting-state recordings were obtained from 180 DPN patients. The analysis consisted of a mixture of traditional, explanatory and machine learning analyses. First, the... Predictive analysis indicated that theta and beta bands contain most of the information required for discrimination between painful and non-painful polyneuropathy patients, with area under the receive... Resting state EEG functional connectivity can serve as a highly accurate biomarker for the presence or absence of pain in DPN patients. This highlights the importance of the brain, in addition to the ...

Depression diagnosis based on electroencephalography power ratios.

Depression is a common mental disorder that impacts millions of people across the world. However, its diagnosis is difficult due to the dependence on subjective testing. Although quantitative electroe... We used open-access EEG data from OpenNeuro to investigate power ratios in the resting state of 46 patients with depression and 75 healthy controls. Spectral data were extracted by fast Fourier transf... Decreased anterior frontal, frontal, central, parietal, occipital, and temporal ABR and decreased central and parietal TBR were observed in the depression group. The area under the curve of the ROC cu... The central, frontal, and parietal ABR represent potential biomarkers to differentiate patients with depression from healthy controls....