0000000000293791

AUTHOR

Alessandra D'angelo

showing 2 related works from this author

Ambulatory Arterial Stiffness Index (AASI) is Unable to Estimate Arterial Stiffness of Hypertensive Subjects: Role of Nocturnal Dipping of Blood Pres…

2018

BACKGROUND: Ambulatory Arterial Stiffness Index (AASI) has been proposed as an indirect and simpler method to estimate the Arterial Stiffness (AS). AASI, calculated from a set of data collected during a 24-hours ambulatory blood pressure monitoring (ABPM), is defined as 1 minus the regression slope of diastolic on systolic blood pressure (BP) values. For a given increase in diastolic BP, the increase in systolic BP is smaller in a compliant compared to a stiff artery; the stiffer the arterial tree, the closer AASI is to 1. AASI was demonstrated to predict cardiovascular mortality, cerebrovascular events and to be associated with target organ damage. Taking into account the almost complete a…

AdultMalemedicine.medical_specialtyAmbulatory blood pressureTime Factorsnocturnal dippingAmbulatory Arterial Stiffness Index (AASI)night/day blood pressure ratioPopulationDiastoleBlood PressureComorbidity030204 cardiovascular system & hematologyEssential hypertension03 medical and health sciences0302 clinical medicineVascular StiffnessPredictive Value of TestsRisk FactorsInternal medicineInternal MedicineMedicineHumans030212 general & internal medicineeducationAgededucation.field_of_studybiologyDipperbusiness.industryBlood Pressure Monitoring AmbulatoryMiddle Agedbiology.organism_classificationmedicine.diseaseCircadian RhythmBlood pressureItalyCardiologyArterial stiffnessFemaleEssential HypertensionbusinessBody mass indexCurrent hypertension reviews
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Are the Myokines the Mediators of Physical Activity-Induced Health Benefits?

2016

BACKGROUND: The concept of the muscle as a secretory organ, developed during the last decades, partially answers to the issue of how the crosstalk between skeletal muscle and distant tissues happens. The beneficial effects of exercise transcend the simple improved skeletal muscle functionality: systemic responses to exercise have been observed in distal organs like heart, kidney, brain and liver. Increasing data have accumulated regarding the synthesis, the kinetics of release and the biological roles of muscular cytokines, now called myokines. The most recent techniques have meaningfully improved the identification of the muscle cell secretome, but several issues regarding the extent of se…

0301 basic medicineFGF21Physical activityMuscle ProteinsMyostatinHealth benefitsBioinformatics03 medical and health sciencesMyokineDrug DiscoveryMyokinemedicineMyocyteHumansMuscle SkeletalExercisePharmacologybiologySkeletal muscle030104 developmental biologymedicine.anatomical_structureImmunologybiology.proteinCytokinesmedicine.symptomMuscle contraction
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