Search results for " time course"

showing 3 items of 3 documents

Time course of changes in bronchial reactivity during early training in healthy subjects

2008

Airway response methacoline training time courseSettore MED/10 - Malattie Dell'Apparato RespiratorioSettore BIO/09 - Fisiologia
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Deterioration of organization in the first minutes of atrial fibrillation: A beat-to-beat analysis of cycle length and wave similarity

2007

Deterioration of AF Organization. Introduction: It has been recently suggested that many episodes of atrial fibrillation (AF) may be partially organized at the onset and thus more suitable for antitachycardia pacing therapy. Nevertheless, the time course of organization in the first minutes of AF has not been quantified yet. Methods and Results: Twenty episodes of paroxysmal AF were studied. Electrograms were recorded from the right atrium (RA), distal (CSd), and proximal coronary sinus (CSp). The time course of AF cycle length (AFCL) and the regularity of wave morphology (similarity index S) were beat-to-beat measured at each recording site during the first 7 minutes of AF. AFCL and S show…

Malemedicine.medical_specialtyPhysiologyBeat (acoustics)Severity of Illness IndexHeart Conduction SystemHeart RateAF organizationPhysiology (medical)Internal medicineHeart ratemedicineHumansElectrogram analysiCycle lengthCoronary sinusFibrillationbusiness.industryAntitachycardia pacingAtrial fibrillationMiddle AgedPrognosismedicine.diseaseAtrial fibrillationAF time courseSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaAntitachycardia PacingCardiologyFemalemedicine.symptomElectrical conduction system of the heartElectrophysiologic Techniques CardiacbusinessCardiology and Cardiovascular MedicineFollow-Up Studies
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Untargeted Metabolomics Investigation on Selenite Reduction to Elemental Selenium by Bacillus mycoides SeITE01

2021

Bacillus mycoides SeITE01 is an environmental isolate that transforms the oxyanion selenite (SeO32−) into the less bioavailable elemental selenium (Se0) forming biogenic selenium nanoparticles (Bio-SeNPs). In the present study, the reduction of sodium selenite (Na2SeO3) by SeITE01 strain and the effect of SeO32− exposure on the bacterial cells was examined through untargeted metabolomics. A time-course approach was used to monitor both cell pellet and cell free spent medium (referred as intracellular and extracellular, respectively) metabolites in SeITE01 cells treated or not with SeO32−. The results show substantial biochemical changes in SeITE01 cells when exposed to SeO32−. The initial u…

Microbiology (medical)Cell signalingMembrane lipidsBacillus mycoides SeITE01 selenite selenium nanoparticles signaling molecules time course untargeted metabolomicschemistry.chemical_elementSettore BIO/19 - Microbiologia GeneraleMicrobiologychemistry.chemical_compoundselenium nanoparticlesExtracellularBacillus mycoides SeITE01time courseSettore CHIM/02 - Chimica Fisicachemistry.chemical_classificationbiologyGlutathioneBacillus mycoidesbiology.organism_classificationQR1-502Amino aciduntargeted metabolomicschemistryBiochemistrysignaling moleculesseleniteSeleniumIntracellular
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