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1.
Acta Clin Belg ; 70(6): 403-7, 2015 Dec.
Article in English | MEDLINE | ID: mdl-26138909

ABSTRACT

An association between migraine and ischaemic stroke has been observed for many years, but the exact mechanisms by which migraine can lead to stroke are still unknown. The purpose of this study was to determine the prevalence of migraine headaches in patients with ischaemic stroke. In this prospective cohort study, we assessed 323 patients with ischaemic stroke; these diagnoses were assigned based on the International Headache Society criteria for migraine with or without aura. Patients were recruited without major risk factors such as stroke, hypertension, hyperlipidaemia, diabetes, taking oral contraceptive pills, history of drug abuse and trauma in issue of their Stroke. Data were collected via a written questionnaire upon admission and were analysed with SPSS version 16 software. Comparisons were performed using Mann-Whitney's U test and chi-square and t-test. Migraine headache was present in 11.2% (36 of 323) of patients, 8.1% of women and 3.1% of men. Migraine prevalence was highest in the age over 60  years. There was a history of migraine without aura for over 2  years in 6.2% of patients with ischaemic stroke. Also, we found no significant correlation between migraine headache and location of the lesion in patients with ischaemic stroke.


Subject(s)
Migraine Disorders/complications , Stroke/etiology , Aged , Female , Humans , Iran/epidemiology , Male , Middle Aged , Migraine Disorders/epidemiology , Prevalence , Prospective Studies , Stroke/epidemiology
2.
Phys Rev E Stat Nonlin Soft Matter Phys ; 82(5 Pt 1): 051605, 2010 Nov.
Article in English | MEDLINE | ID: mdl-21230486

ABSTRACT

The motion of a C60 molecule over a graphene sheet at finite temperature is investigated both theoretically and computationally. We show that a graphene sheet generates a van der Waals laterally periodic potential, which directly influences the motion of external objects in its proximity. The translational motion of a C60 molecule near a graphene sheet is found to be diffusive in the lateral directions, while in the perpendicular direction, the motion may be described as diffusion in an effective harmonic potential which is determined from the distribution function of the position of the C60 molecule. We also examine the rotational diffusion of C60 and show that its motion over the graphene sheet is not a rolling motion.

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