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18篇 您的检索式:作者名="Patrick Wheeler"
    题名 作者 年代 出处 被引量
1Control of a Switched Reluctance Gener- ator for Variable - speed Wind Energy Applications 显示文摘Roberto Cardenas Ruben Pena Marcelo Perez Jon Clare Greg Asher Patrick Wheeler 2005IEEE Transactions on Energy Conversion ( S0885 - 8969 )2005,20,4:1
2Genome-wide Association and Follow-Up Replication Studies Identified ADAMTS18 and TGFBR3 as Bone Mass Candidate Genes in Different Ethnic Groups显示文摘Dong-Hai Xiong Xiao-Gang Liu Yan-Fang Guo Li-Jun Tan Liang Wang Bao-Yong Sha Zi-Hui Tang Feng Pan Tie-Lin Yang Xiang-Ding Chen Shu-Feng Lei Laura M. Yerges Xue-Zen Zhu Victor W. Wheeler Alan L. Patrick ClareAnn H. Bunker Yan Guo Han Yan Yu-Fang Pei Yin-Pi 2009The American Journal of Human Genetics2009,,3:1
3Matrix Converters: A Technology Review 显示文摘PATRICK W WHEELER JOSI RODRfGUEZ JON C CLARE 2002IEEE Transaction on Industry and Etetronics2002,49,2:1
4Space-Vector Modulated Multilevel Matrix Converter 显示文摘MENG YEONG LEE PATRICK WHEELER CHRISTIAN KLUMPNER 2010IEEE Transaction on Industry and Eletronics2010,57,10:1
5Developing and evaluating a machine learning based algorithm to predict the need of pediatric intensive care unit transfer for newly hospitalized children显示文摘Haijun Zhai Patrick Brady Qi Li Todd Lingren Yizhao Ni Derek S. Wheeler Imre Solti 2014Resuscitation2014,,:1
6High bone density is associated with prostate cancer in older Afro-Caribbean men: Tobago Prostate Survey显示文摘Clareann H. Bunker Joseph M. Zmuda Alan L. Patrick Victor W. Wheeler Joel L. Weissfeld Lewis H. Kuller Jane A. Cauley 2006Cancer Causes & Control2006,,8:1
7et al A comparative study of three feedback devices for resident- ial realtime energy monitoring显示文摘Mahmoud A Alahmad Patrick G Wheeler A Schwer 2012IEEE Transactions on In- dustrial Electronics2012,59,4:1
8Matrix Converters: A technology review显示文摘Patrick W Wheeler Jos6 Rodriguez Jon C Clare 2002IEEE Transactions on industrial electronics2002,49,2:1
9Converters:A Technology Review显示文摘Patrick W Wheeler Jose Rodriguz Jon C Clare Matrix 0,,02:1
10Matrix Converters:A Technology Review显示文摘Patrick W Wheeler 2002IEEE Transactions on Industrial Electronics2002,49,2:1
11Matrix converters: a technology review显示文摘Patrick W Wheeler Jose Rodriguez Jon C Clare 2002IEEE Transacttions on Industrial Electronics2002,49,2:1
12A 150kVA vector-controlled matrixconverter induction motor drive显示文摘Thomas F Podlesak Dimosthenis C Katsis Patrick W Wheeler 2005IEEE Transactions on Industry Applications2005,41,3:1
13A 150kVA vector-controlled matrix converter induction motor drive显示文摘Thomas F Podlesak Dimosthenis C Katsis Patrick W Wheeler 2005IEEE Transactions on Industry Applications2005,41,3:1
14Matrix Converters:A Technology Review显示文摘Patrick W Wheeler 2002IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS2002,49,2:1
15Comparison of los- ses in voltage source inverters and direct AC-AC con- verters Bland 显示文摘WHEELER PATRICK CLARE 2003European Power Electronics and Drives Journal2003,13,:1
16Generic functional modelling of multi-pulse auto-transformer rectifier units for more-electric aircraft applications显示文摘The Auto-Transformer Rectifier Unit(ATRU) is one preferred solution for high-power AC/DC power conversion in aircraft. This is mainly due to its simple structure, high reliability and reduced k VA ratings. Indeed, the ATRU has become a preferred AC/DC solution to supply power to the electric environment control system on-board future aircraft. In this paper, a general modelling method for ATRUs is introduced. The developed model is based on the fact that the DC voltage and current are strongly related to the voltage and current vectors at the AC terminals of ATRUs. In this paper, we carry on our research in modelling symmetric 18-pulse ATRUs and develop a generic modelling technique. The developed generic model can study not only symmetric but also asymmetric ATRUs. An 18-pulse asymmetric ATRU is used to demonstrate the accuracy and efficiency of the developed model by comparing with corresponding detailed switching SABER models provided by our industrial partner. The functional models also allow accelerated and accurate simulations and thus enable whole-scale more-electric aircraft electrical power system studies in the future.Tao YANG Serhiy BOZHKO Patrick WHEELER Shaoping WANG Shuai WU 2018Chinese Journal of Aeronautics2018,31,5:1
17Matrix Converters: A Technology Review显示文摘Patrick W Wheeler Jose Rodriguez Jon C Clare Lee Empringham Alejandro Weinstein 2002IEEE Transactions on Industrial Electronics2002,49,2:1
18Clonidine use during dexmedetomidine weaning:A systematic review显示文摘BACKGROUND Dexmedetomidine is a centrally acting alpha-2A adrenergic agonist that is commonly used as a sedative and anxiolytic in the intensive care unit(ICU),with prolonged use increasing risk of withdrawal symptoms upon sudden discontinuation.As clonidine is an enterally available alpha-2A adrenergic agonist,it may be a suitable agent to taper off dexmedetomidine and reduce withdrawal syndromes.The appropriate dosing and conversion strategies for using enteral clonidine in this context are not known.The objective of this systematic review is to summarize the evidence of enteral clonidine application during dexmedetomidine weaning for prevention of withdrawal symptoms.AIM To systematically review the practice,dosing schema,and outcomes of enteral clonidine use during dexmedetomidine weaning in critically ill adults.METHODS This was a systematic review of enteral clonidine used during dexmedetomidine weaning in critically ill adults(≥18 years).Randomized controlled trials,prospective cohorts,and retrospective cohorts evaluating the use of clonidine to wean patients from dexmedetomidine in the critically ill were included.The primary outcomes of interest were dosing and titration schema of enteral clonidine and dexmedetomidine and risk factors for dexmedetomidine withdrawal.Other secondary outcomes included prevalence of adverse events associated with enteral clonidine use,re-initiation of dexmedetomidine,duration of mechanical ventilation,and ICU length of stay.RESULTS A total of 3427 studies were screened for inclusion with three meeting inclusion criteria with a total of 88 patients.All three studies were observational,two being prospective and one retrospective.In all included studies,the choice to start enteral clonidine to wean off dexmedetomidine was made at the discretion of the physician.Weaning time ranged from 13 to 167 h on average.Enteral clonidine was started in the prospective studies in a similar protocolized method,with 0.3 mg every 6 h.After starting clonidine,patients remained on dexmedetomidine for a median of 1-28 h.Following the termination of dexmedetomidine,two trials tapered enteral clonidine by increasing the interval every 24 h from 6 h to 8h,12h,and 24 h,followed by clonidine discontinuation.For indicators of enteral clonidine withdrawal,the previously tolerable dosage was reinstated for several days before resuming the taper on the same protocol.The adverse events associated with enteral clonidine use were higher than patients on dexmedetomidine taper alone with increased agitation.The re-initiation of dexmedetomidine was not documented in any study.Only 17(37%)patients were mechanically ventilated with median duration of 3.5 d for 13 patients in one of the 2 studies.ICU lengths of stay were similar.CONCLUSION Enteral clonidine is a strategy to wean critically ill patients from dexmedetomidine.There is an association of increased withdrawal symptoms and agitation with the use of a clonidine taper.Sanu Rajendraprasad Molly Wheeler Erin Wieruszewski Joseph Gottwald Lindsey A.Wallace Danielle Gerberi Patrick M Wieruszewski Nathan J Smischney 2023World Journal of Critical Care Medicine2023,12,1:0
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