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Results 1 to 25 of 29

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An Algorithm Used for Ventricular Fibrillation Detection Without Interrupting Chest CompressionYONGQIN LI; BISERA, Joe; HARRY WEIL, Max et al.IEEE transactions on biomedical engineering. 2012, Vol 59, Num 1, pp 78-86, issn 0018-9294, 9 p.Article

Electrocardiographic waveform analysis for predicting the success of defibrillationPOVOAS, Heitor P; BISERA, Joe.Critical care medicine. 2000, Vol 28, Num 11, pp N210-N211, issn 0090-3493, SUPConference Paper

Optimizing timing of ventricular defibrillationMARN-PERNAT, Andreja; WEIL, Max Harry; WANCHUN TANG et al.Critical care medicine. 2001, Vol 29, Num 12, pp 2360-2365, issn 0090-3493Article

Miniaturized mechanical chest compressor : A new option for cardiopulmonary resuscitationRISTAGNO, Giuseppe; CASTILLO, Carlos; WANCHUN TANG et al.Resuscitation. 2008, Vol 76, Num 2, pp 191-197, issn 0300-9572, 7 p.Article

Stroke volumes generated by precordial compression during cardiac resuscitationKLOUCHE, Kada; WEIL, Max Harry; SUN, Shijie et al.Critical care medicine. 2002, Vol 30, Num 12, pp 2626-2631, issn 0090-3493, 6 p.Article

Electrocardiogram waveforms for monitoring effectiveness of chest compression during cardiopulmonary resuscitationYONGQIN LI; RISTAGNO, Giuseppe; BISERA, Joe et al.Critical care medicine. 2008, Vol 36, Num 1, pp 211-215, issn 0090-3493, 5 p.Article

Identifying potentially shockable rhythms without interrupting cardiopulmonary resuscitationYONGQIN LI; BISERA, Joe; GEHEB, Fredrick et al.Critical care medicine. 2008, Vol 36, Num 1, pp 198-203, issn 0090-3493, 6 p.Article

Predicting the success of defibrillation by electrocardiographic analysisPOVOAS, Heitor P; WEIL, Max Harry; WANCHUN TANG et al.Resuscitation. 2002, Vol 53, Num 1, pp 77-82, issn 0300-9572Article

Decreases in mesenteric blood flow associated with increases in sublingual PCO2 during hemorrhagic shockPOVOAS, Heitor P; WEIL, Max Harry; WANCHUN TANG et al.Shock (Augusta, Ga.). 2001, Vol 15, Num 5, pp 398-402, issn 1073-2322Article

A comparison of defibrillation efficacy between different impedance compensation techniques in high impedance porcine modelYONGQIN LI; RISTAGNO, Giuseppe; TAO YU et al.Resuscitation. 2009, Vol 80, Num 11, pp 1312-1317, issn 0300-9572, 6 p.Article

Miniaturized chest compressorCASTILLO, Carlos; YOUNG, Clayton; BISERA, Joe et al.Critical care medicine. 2004, Vol 32, Num 9, pp S366-S368, issn 0090-3493, SUPConference Paper

Comparisons between sublingual and gastric tonometry during hemorrhagic shockPOVOAS, Heitor P; WEIL, Max Harry; WANCHUN TANG et al.Chest. 2000, Vol 118, Num 4, pp 1127-1132, issn 0012-3692Article

The resuscitation blanket: A useful tool for hands-on defibrillationTAO YU; RISTAGNO, Giuseppe; YONGQIN LI et al.Resuscitation. 2010, Vol 81, Num 2, pp 230-235, issn 0300-9572, 6 p.Article

Electrocardiographic analysis during uninterrupted cardiopulmonary resuscitationQING TAN; FREEMAN, Gary A; GEHEB, Fred et al.Critical care medicine. 2008, Vol 36, Num 11, issn 0090-3493, S409-S412, SUPConference Paper

A selective α2-adrenergic agonist for cardiac resuscitationKLOUCHE, Kada; WEIL, Max Harry; WANCHUN TANG et al.The Journal of laboratory and clinical medicine. 2002, Vol 140, Num 1, pp 27-34, issn 0022-2143Article

Myocardial dysfunction after electrical defibrillationYAMAGUCHI, Hitoshi; WEIL, Max Harry; WANCHUN TANG et al.Resuscitation. 2002, Vol 54, Num 3, pp 289-296, issn 0300-9572Article

Evolution of the stone heart after prolonged cardiac arrestKLOUCHE, Kada; WEIL, Max Harry; SHIJIE SUN et al.Chest. 2002, Vol 122, Num 3, pp 1006-1011, issn 0012-3692Article

The effects of a newly developed miniaturized mechanical chest compressor on outcomes of cardiopulmonary resuscitation in a porcine modelWEI CHEN; YINLUN WENG; XIAOBO WU et al.Critical care medicine. 2012, Vol 40, Num 11, pp 3007-3012, issn 0090-3493, 6 p.Article

The amplitude spectrum area correctly predicts improved resuscitation and facilitated defibrillation with head coolingTSAI, Min-Shan; BARBUT, Denise; JUN GUAN et al.Critical care medicine. 2008, Vol 36, Num 11, issn 0090-3493, S413-S417, SUPConference Paper

The optimal phasic relationship between synchronized shock and mechanical chest compressionsYONGQIN LI; TAO YU; RISTAGNO, Giuseppe et al.Resuscitation. 2010, Vol 81, Num 6, pp 724-729, issn 0300-9572, 6 p.Article

Comparison of efficacy of pulsed biphasic waveform and rectilinear biphasic waveform in a short ventricular fibrillation pig modelYONGQIN LI; HAO WANG; JUN HWI CHO et al.Resuscitation. 2009, Vol 80, Num 9, pp 1047-1051, issn 0300-9572, 5 p.Article

Adverse outcomes of interrupted precordial compression during automated defibrillationTING YU; WEIL, Max Harry; WANCHUN TANG et al.Circulation (New York, N.Y.). 2002, Vol 106, Num 3, pp 368-372, issn 0009-7322Article

Amplitude spectrum area: Measuring the probability of successful defibrillation as applied to human dataYOUNG, Clayton; BISERA, Joe; GEHMAN, Stacy et al.Critical care medicine. 2004, Vol 32, Num 9, pp S356-S358, issn 0090-3493, SUPConference Paper

Preserved heart rate variability during therapeutic hypothermia correlated to 96 hrs neurological outcomes and survival in a pig model of cardiac arrestYONGQIN LI; RISTAGNO, Giuseppe; JUN GUAN et al.Critical care medicine. 2012, Vol 40, Num 2, pp 580-586, issn 0090-3493, 7 p.Article

Defibrillation delivered during the upstroke phase of manual chest compression improves shock successYONGQIN LI; HAO WANG; JUN HWI CHO et al.Critical care medicine. 2010, Vol 38, Num 3, pp 910-915, issn 0090-3493, 6 p.Article

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