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19篇 您的检索式:作者名="MAGNO F"
    题名 作者 年代 出处 被引量
1An invariance in the isohetanes of petroleum显示文摘Magno F D 1987Science1987,237,:1
2Variation of some fermentative sulfur compounds in Italian 'Millesimè' classic sparkling wines during aging and storage on lees显示文摘FEDRIZZI B MAGNO F FINATO F 0,,17:1
3Glutathione S-transferases: an overview in cancer research显示文摘Di Pietro G Magno LA Rios-Santos F 2010Expert Opin Drug Metah Toxicol2010,6,2:1
4Glutathione S-transferases:an overview in cancer research显示文摘Di Pietro G Magno LA Rios-Santos F 0,,:1
5Gas chromatography-mass spectrometry determination of 3-mercaptohexan-1-o1 and 3-mercaptohexyl acetate in wine A comparison ofheadspace solid phase microextraction and solid phase extraction methods显示文摘Fedrizzi B Versini G Lavagnini I Nicolini G Magno F 2007Analytica Chimica Acta2007,596,:1
6Amperometric mediated carbon nanotube paste biosensor for fructose determination显示文摘ANTIOCHIA R LAVAGN1NI I MAGNO F 2004Analyt- ieal Lett2004,37,8:1
7The use of nitrite ion in the chromatographic determination of large amounts of hypochlorite ion and of traces of chlorite and chlorate ions显示文摘G-allina A Pastore P Magno F 1999Analyst1999,124,10:1
8An invariance in the isohetanes of petroleum 显示文摘Magno F D 1987Science1987,237,:1
9Glutathione S - trans- ferases:an overview in cancer research显示文摘Di Petro G Magno LA Rios - Santos F 2010Expert Opin Drug Metab Toxieol2010,6,2:1
10Glow discharge electrolysis on methanol显示文摘 Bontempelli G Magno F 1973Electroanalytical Chemistry and Interfacial Electrochemistry1973,42,:1
11Determination of moxifloxacin in tables and human urine by square- wave adsorptive voltammetry 显示文摘Magno A G T Glaucia M S Valdir S F 2005Microchemical Journal2005,81,:1
12Carnosine inhibits Aβ42 aggregation by perturbing the H-bond network in and around the central hydrophobic cluster 显示文摘Attanasio F Convertino M Magno A 2013Chembiochem2013,14,5:1
13Combined surgical and endoscopic approachfor the reduction of a congenital hiatal hernia in a cat: a case report显示文摘Pisoni L Del Magno S Cinti F 2014Vet Med (Praha)2014,59,3:1
14Influence of Thermomechanical Parameters on the Competi- tion Between Dynamic Reerystallization and Dynamic Strain In duced Transformation in C-Mn and C Mn-Nb Steels Deformed by Hot Torsion 显示文摘Ferreira J L Tulio Magno F de Melo Iavni de Souza Bott 2007ISIJ International2007,47,11:1
15Glutathione S-transferases:an overview in cancer research显示文摘Di Pietro G Magno LA Rios-Santos F 2010Expert Opin Drug Metab Toxicol2010,6,2:1
16Aging effects and grapevariety dependence on the content of sulfur volatiles in wine显示文摘FEDRIZZIB MAGNO F BADOCCO D 2007J AgrFood Chem2007,55,10:1
17Description and validation of an analytical method for the determination of paromomycin sulfate in medicated animal feeds显示文摘PASTORE P GALLINA A MAGNO F 2000Analyst2000,125,11:1
18Optimization of Bragg reflectors in AlGaAs/GaAs VCSELs显示文摘Passaro V M N Magno F de Leonardis F 0,,05:1
19Test of incremental respiratory endurance as home-based, standalone therapy in chronic obstructive pulmonary disease: A case report显示文摘BACKGROUND The prevalence of chronic obstructive pulmonary disease(COPD)is increasing worldwide,and at the same time it is associated with increased mortality and reduced quality of life.Efforts to build sustainable rehabilitation approaches to COPD treatment and prevention are crucial.The system of long-term pulmonary rehabilitation care is insufficient.The main reasons for the absence of these outpatient programs are the lack of experience,the lack of interest of insurance companies in secondary prevention programs,and the lack of healthcare facilities in large geographical areas.The possibility of at-home pulmonary rehabilitation models(telemonitoring and telecoaching)could solve this problem.CASE SUMMARY A 71-year-old man with severe COPD,Global Initiative for Obstructive Lung Diseases stage 3 underwent an 8-wk remotely monitored inspiratory muscle training with a device based on the test of incremental respiratory endurance method.Spirometry,body plethysmography,test of incremental respiratory endurance examination,6-min walking test,body mass index,airflow obstruction,dyspnea,exercise capacity index,and subjective perception of dyspnea were performed as part of the initial and final examination.The patient performed training at home,and the physiotherapist monitored the patient remotely through a web application that allowed the physiotherapist to evaluate all training parameters in real-time and respond to any problems.After 8 wk of home training,there was a significant increase in all monitored values:maximal inspiratory pressure,a novel parameter sustained maximal inspiratory pressure,forced expiratory volume in 1 s,total lung capacity,forced vital capacity,peak expiratory flow,and inspiratory capacity.There was also an improvement in the perception of dyspnea according to the COPD Assessment Test and a modified Medical Research Council Breathlessness Scale,an increase in exercise tolerance according to the 6-min walking test,and a decrease in the exercise capacity index as a predictor of prognosis.CONCLUSION Respiratory telerehabilitation was greatly beneficial in a cooperative patient with COPD and may represent an alternative therapeutic approach to the increasing incidence of all lung diseases.Filip Dosbaba Martin Hartman Ladislav Batalik Kristian Brat Marek Plutinsky Jakub Hnatiak Magno F Formiga Lawrence Patrick Cahalin 2022World Journal of Clinical Cases2022,10,1:0
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