questionsmedicales.fr
Lipides
Acides gras
Acides gras insaturés
Acides gras trans
Acides gras trans : Questions médicales fréquentes
Termes MeSH sélectionnés :
Diagnostic
2
Acides gras trans
Analyse alimentaire
Profil lipidique
Acides gras trans
Symptômes
2
Symptômes
Acides gras trans
Maladies cardiovasculaires
Acides gras trans
Prévention
2
Prévention
Étiquetage nutritionnel
Alimentation
Acides gras trans
Traitements
2
Régime alimentaire
Acides gras insaturés
Médicaments hypolipémiants
Acides gras trans
Complications
2
Complications
Maladies métaboliques
Santé mentale
Acides gras trans
Facteurs de risque
2
Facteurs de risque
Mode de vie
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"text": "Par analyse chimique, souvent via chromatographie, pour mesurer leur concentration."
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"@type": "Question",
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"@type": "Question",
"name": "Quels aliments éviter pour réduire les acides gras trans ?",
"position": 6,
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"@type": "Question",
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"position": 7,
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"name": "Y a-t-il des médicaments pour contrer les effets des acides gras trans ?",
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Expert en Médecine, Optimisation des Parcours de Soins et Révision Médicale
Validation scientifique effectuée le 21/02/2025
Contenu vérifié selon les dernières recommandations médicales
3 publications dans cette catégorie
Affiliations :
Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences/Key Laboratory of Agro-Products Processing, Ministry of Agriculture, Beijing 100194, PR China. Electronic address: wangqiang06@caas.cn.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
Infertility and Reproductive Health Research Center. Health Research Institute. Babol University of Medical Sciences, Babol, Iran.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
International Agency for Research on Cancer, 69372 Lyon, France.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
Semmelweis University, Department of Medical Chemistry, Molecular Biology and Pathobiochemistry, Budapest, Hungary.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
B&B Analytics Ltd., Érd, Hungary.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
Semmelweis University, Department of Medical Chemistry, Molecular Biology and Pathobiochemistry, Budapest, Hungary.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
Semmelweis University, Department of Medical Chemistry, Molecular Biology and Pathobiochemistry, Budapest, Hungary.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
Semmelweis University, Department of Medical Chemistry, Molecular Biology and Pathobiochemistry, Budapest, Hungary.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
Budapest University of Technology and Economics, Department of Inorganic and Analytical Chemistry, Budapest, Hungary. Electronic address: tblanka@mail.bme.hu.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
Semmelweis University, Department of Medical Chemistry, Molecular Biology and Pathobiochemistry, Budapest, Hungary. Electronic address: csala@eok.sote.hu.
Publications dans "Acides gras trans" :
3 publications dans cette catégorie
Affiliations :
Department of Molecular Epidemiology, German Institute of Human Nutrition Potsdam-Rehbruecke, Nuthetal, Germany.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
Nutrition, Metabolism and Genomics Group, Division of Human Nutrition and Health, Wageningen University, Wageningen, The Netherlands.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
Nutrition, Metabolism and Genomics Group, Division of Human Nutrition and Health, Wageningen University, Wageningen, The Netherlands.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
Division of Global Health Protection, Center for Global Health, Centers for Disease Control and Prevention, 1825 Century Blvd, Atlanta, GA 30345. Email: cli@cdc.gov.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
Resolve to Save Lives, Vital Strategies, New York, New York.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
Division of Laboratory Sciences, National Center for Environmental Health, Centers for Disease Control and Prevention, Atlanta, Georgia.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
At the time of the writing, Melecia Wright, Wendy McKelvey, Christine Johnson Curtis, and Sonia Y. Angell were with the New York City Department of Health and Mental Hygiene, Queens, NY. Lorna E. Thorpe is with the New York University School of Medicine, Department of Population Health, New York, NY. Hubert W. Vesper and Heather C. Kuiper are with Centers for Disease Control and Prevention, National Center for Environmental Health, Atlanta, GA.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences/Key Laboratory of Agro-Products Processing, Ministry of Agriculture, Beijing 100194, PR China.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences/Key Laboratory of Agro-Products Processing, Ministry of Agriculture, Beijing 100194, PR China.
Publications dans "Acides gras trans" :
2 publications dans cette catégorie
Affiliations :
Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences/Key Laboratory of Agro-Products Processing, Ministry of Agriculture, Beijing 100194, PR China.
Publications dans "Acides gras trans" :
Consolidation of memory is believed to involve offline replay of neural activity. While amply demonstrated in rodents, evidence for replay in humans, particularly regarding motor memory, is less compe...
The primary motor cortex (M1) is broadly acknowledged for its crucial role in executing voluntary movements. Yet, its contributions to cognitive and sensory functions remain largely unexplored. Transc...
The primary motor cortex (M1) is critical for movement execution, but its role in motor skill acquisition remains elusive. Here, we examine the role of M1 intracortical circuits during skill acquisiti...
To comprehensively investigate excitability in face and hand M1 and sensorimotor integration in oromandibular dystonia (OMD) patients....
Short-interval intracortical inhibition (SICI), intracortical facilitation (ICF), short (SAI) and long (LAI) afferent inhibition were investigated in face and hand M1 using transcranial magnetic stimu...
Results demonstrated that in OMD patients SICI was reduced in face M1 (p < 0.001), but not in hand M1, compared to HS. In FHD, SICI was significantly impaired in hand M1 (p = 0.029), but not in face M...
In OMD, SICI and SAI were significantly reduced. These abnormalities are specific to the motor cortical area innervating the muscular district involved in focal dystonia....
In OMD, the integration between sensory inflow and motor output seem to be disrupted at cortical level with topographic specificity....
In paragraph 3.5 of their article, the authors provide some information about the nonmotor properties of tongue motor cortex. As a complement to the interesting work of Bono et al. (2022), in this com...
Chronic pain is associated with dysfunctional cortical excitability. Research has identified altered intracortical motor cortex excitability in Chronic Lower Back Pain (CLBP). However, research identi...
Humans use predictions to improve speech perception, especially in noisy environments. Here we use 7-T functional MRI (fMRI) to decode brain representations of written phonological predictions and deg...
The primary motor (M1) and somatosensory (S1) cortices play critical roles in motor control but the signaling between these structures is poorly understood. To fill this gap, we recorded - in three pa...
Theta-burst transcranial ultrasound stimulation (tbTUS) increases primary motor cortex (M1) excitability for at least 30 min. However, the remote effects of focal M1 tbTUS on the excitability of other...
Recent research using paired-pulse transcranial magnetic stimulation (TMS) has shown that the speed with which people can stop an action is linked to GABAergic inhibitory activity in the motor system....