4.1 Article

Early Recurrences after Paroxysmal Atrial Fibrillation Ablation: When is the Proper Timing for Reablation?

Journal

PACE-PACING AND CLINICAL ELECTROPHYSIOLOGY
Volume 34, Issue 6, Pages 709-716

Publisher

WILEY
DOI: 10.1111/j.1540-8159.2010.03023.x

Keywords

paroxysmal atrial fibrillation; early recurrence; reablation; pulmonary vein; ectopic foci

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Methods and Results: One hundred and seventeen (31.2%) from the pool of 375 patients experienced ERs at 7.5 +/- 5.5 days postablation. They were allocated into two groups randomly: early reablation group (ERe+) (n = 57) and nonearly reablation group (ERe-) (n = 60). Forty patients (70.2%) in ERe+ group underwent early reablation at 28.1 +/- 2.7 days postablation. Forty patients (66.7%) in ERe- group underwent late reablation at 98.2 +/- 5.2 days postablation. The proportion of reablation was comparable (P = 0.68). ERs subsided in 17 (29.8%) in ERe+ group and in 20 (33.3%) in ERe- group. In ERe+ group, PV reconnection in 36 (80.0%), non-PV foci in six (10.5%), and right or left atrial flutter in five (8.8%) was abolished by ablation. In ERe- group, pulmonary vein (PV) reconnection in 29 (72.5%), non-PV foci in eight (13.3%), and right or left atrial flutter in eight (13.3%) was ablated successfully. The proportion of PV reconnection, nonfoci, and atrial flutter was comparable, P = 0.45, 0.64, and 0.56, respectively. At the end of 16.5 +/- 2.0 (ERe+ group) and 15.2 +/- 2.6 (ERe- group) months' follow-up, 47 (82.5%) in ERe+ group and 51 (85%) in ERe- group were free of atrial tachyarrhythmias, P = 0.70. Conclusions: Compared with reablation 2 months later after initial ablation, early reablation at approximate to 1 month had similar clinical effectiveness. The proper timing for reablation can be set at approximate to 1 month after initial paroxysmal AF ablation. (PACE 2011; 1-8).

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Article Astronomy & Astrophysics

Search for the chiral magnetic effect in Au plus Au collisions at ?sNN=27 GeV with the STAR forward event plane detectors

B. E. Aboona, J. Adam, L. Adamczyk, J. R. Adams, I. Aggarwal, M. M. Aggarwal, Z. Ahammed, D. M. Anderson, E. C. Aschenauer, J. Atchisona, V. Bairathi, W. Baker, J. G. Ball Cap, K. Barish, R. Bellwied, P. Bhagat, A. Bhasin, S. Bhatta, J. Bielciko, J. Bielcikova, J. D. Brandenburg, X. Z. Cai, H. Caines, M. Calderon de la Barca Sanchezi, D. Cebrai, J. Ceskao, I. Chakaberia, P. Chaloupka, B. K. Chan, Z. Chang, D. Chen, J. Chen, J. H. Chen, Z. Chen, J. Cheng, Y. Cheng, S. Choudhury, W. Christie, X. Chu, H. J. Crawford, M. Csanad, G. Dale-Gau, A. Das, M. Daugherity, I. M. Deppnert, A. Dhamija, L. Di Carlobi, L. Didenko, P. Dixitw, X. Dong, J. L. Drachenberg, E. Duckworth, J. C. Dunlop, J. Engelage, G. Eppley, S. Esumi, O. Evdokimovm, A. Ewigleben, O. Eyser, R. Fatemi, S. Fazio, C. J. Feng, Y. Feng, E. Finch, Y. Fisyak, F. A. Flor, C. Fu, C. A. Gagliardi, T. Galatyuk, F. Geurts, N. Ghimire, A. Gibson, K. Gopal, X. Gou, D. Grosnick, A. Gupta, W. Guryn, A. Hamedd, Y. Han, S. Harabasz, M. D. Harastyi, J. W. Harris, H. Harrison, W. He, X. H. He, Y. He, N. Herrmann, L. Holub, C. Hu, Q. Hu, Y. Hu, H. Huang, H. Z. Huangj, S. L. Huang, T. Huang, X. Huang, Y. Huang, Y. Huang, T. J. Humanic, D. Isenhower, M. Isshiki, W. W. Jacobs, A. Jalotra, C. Jena, A. Jentsch, Y. Ji, J. Jia, C. Jin, X. Ju, E. G. Judd, S. Kabana, M. L. Kabir, S. Kagamaster, D. Kalinkin, K. Kang, D. Kapukchyan, K. Kauder, H. W. Ke, D. Keane, M. Kelsey, Y. V. Khyzhniak, D. P. Kikola, B. Kimelman, D. Kincses, I. Kisel, A. Kiselev, A. G. Knospe, H. S. Ko, K. Kosarzewski, L. Kramarik, L. Kumar, S. Kumar, R. Kunnawalkam Elayavalli, R. Lacey, J. M. Landgraf, J. Lauret, A. Lebedev, J. H. Lee, Y. H. Leung, N. Lewis, C. Li, C. Li, W. Li, X. Li, Y. Li, Y. Li, Z. Li, X. Liang, Y. Liang, R. Licenik, T. Lin, M. A. Lisa, C. Liu, F. Liu, H. Liu, H. Liu, L. Liu, T. Liu, X. Liu, Y. Liu, Z. Liu, T. Ljubicic, W. J. Llope, O. Lomicky, S. Longacre, E. Loyd, T. Lu, S. Lukow, F. Luo, L. Ma, R. Ma, Y. G. Ma, N. Magdy, D. Mallick, S. Margetis, C. Markert, H. S. Matis, J. A. Mazer, G. McNamara, K. Mi, S. Mioduszewski, B. Mohanty, I. Mooney, A. Mukherjee, M. I. Nagy, A. S. Nain, J. D. Nam, Md. Nasim, D. Neff, J. M. Nelson, D. B. Nemes, M. Nie, T. Niida, R. Nishitani, T. Nonaka, A. S. Nunes, G. Odyniec, A. Ogawa, S. Oh, K. Okubo, B. S. Page, R. Pak, J. Pan, A. Pandav, A. K. Pandey, T. Pani, A. Paul, B. Pawlik, D. Pawlowska, C. Perkins, J. Pluta, B. R. Pokhrel, M. Posik, T. Protzman, V. Prozorova, N. K. Pruthi, M. Przybycien, J. Putschke, Z. Qin, H. Qiu, A. Quintero, C. Racz, S. K. Radhakrishnan, N. Raha, R. L. Ray, R. Reed, H. G. Ritter, C. W. Robertson, M. Robotkova, M. A. Rosales Aguilar, D. Roy, P. Roy Chowdhury, L. Ruan, A. K. Sahoo, N. R. Sahoo, H. Sako, S. Salur, S. Sato, W. B. Schmidke, N. Schmitz, F. -J. Seck, J. Seger, R. Seto, P. Seyboth, N. Shah, P. V. Shanmuganathan, M. Shao, T. Shao, M. Sharma, N. Sharma, R. Sharma, S. R. Sharma, A. I. Sheikh, D. Y. Shen, K. Shen, S. S. Shi, Y. Shi, Q. Y. Shou, F. Si, J. Singh, S. Singha, P. Sinha, M. J. Skoby, N. Smirnov, Y. Sohngen, Y. Song, B. Srivastava, T. D. S. Stanislaus, M. Stefaniak, D. J. Stewart, B. Stringfellow, Y. Su, A. A. P. Suaide, M. Sumbera, C. Sun, X. Sun, Y. Sun, Y. Sun, B. Surrow, Z. W. Sweger, P. Szymanski, A. Tamis, A. H. Tang, Z. Tang, T. Tarnowsky, J. H. Thomas, A. R. Timmins, D. Tlusty, T. Todoroki, C. A. Tomkiel, S. Trentalange, R. E. Tribble, P. Tribedy, T. Truhlar, B. A. Trzeciak, O. D. Tsai, C. Y. Tsang, Z. Tu, T. Ullrich, D. G. Underwood, I. Upsal, G. Van Buren, J. Vanek, I. Vassiliev, V. Verkest, F. Videbaek, S. A. Voloshin, F. Wang, G. Wang, J. S. Wang, X. Wang, Y. Wang, Y. Wang, Y. Wang, Z. Wang, J. C. Webb, P. C. Weidenkaff, G. D. Westfall, D. Wielanek, H. Wieman, G. Wilks, S. W. Wissink, R. Witt, J. Wu, J. Wu, X. Wu, Y. Wu, B. Xi, Z. G. Xiao, W. Xie, H. Xu, N. Xu, Q. H. Xu, Y. Xu, Y. Xu, Z. Xu, Z. Xu, G. Yan, Z. Yan, C. Yang, Q. Yang, S. Yang, Y. Yang, Z. Ye, Z. Ye, L. Yi, K. Yip, Y. Yu, H. Zbroszczyk, W. Zha, C. Zhang, D. Zhang, J. Zhang, S. Zhang, X. Zhang, Y. Zhang, Y. Zhang, Y. Zhang, Z. J. Zhang, Z. Zhang, Z. Zhang, F. Zhao, J. Zhao, M. Zhao, C. Zhou, J. Zhou, S. Zhou, Y. Zhou, X. Zhu, M. Zurek, M. Zyzak

Summary: This study presents a low-energy search for the Chiral Magnetic Effect (CME) in Au+Au collisions at RHIC and finds consistency between CME and flow-driven background hypothesis based on the definition of event planes and centrality range. This work opens up a possible roadmap for future CME exploration with high-statistics data from RHIC.

PHYSICS LETTERS B (2023)

Article Oncology

Association of modifiable lifestyle with colorectal cancer incidence and mortality according to metabolic status: prospective cohort study

Peng Xie, Siqing Wu, Zichong Kuo, Huidong Tian, Qiangsheng He, Yanfei Li, Ningning Mi, Linmin Hu, Haitong Zhao, Wenjing Li, Bin Xia, Jinqiu Yuan, Kehu Yang, Changhua Zhang, Yulong He

Summary: This study aimed to investigate the individual and joint effects of modifiable healthy lifestyle and metabolic health status on colorectal cancer incidence and mortality. The results showed that adherence to a healthy lifestyle could substantially reduce the burden of colorectal cancer, and behavioral lifestyle changes should be encouraged for colorectal cancer prevention even in participants with metabolic syndrome.

FRONTIERS IN ONCOLOGY (2023)

Article Medicine, General & Internal

How about the evidence assessment tools used in education and management systematic reviews?

Hui Lan, Xuan Yu, Zhe Wang, Ping Wang, Yajia Sun, Zijun Wang, Renfeng Su, Ling Wang, Junxian Zhao, Yue Hu, Shouyuan Wu, Mengjuan Ren, Kehu Yang, Xingrong Liu, Yaolong Chen

Summary: This study aims to examine the usage of evidence assessment tools in systematic reviews of management and education. The results show that only 34.8% of the systematic reviews used evidence assessment tools, with a total of 66 different tools being utilized. "Risk of Bias" and its updated version were the most frequently used tools. The study also highlights the need for improved understanding and reporting of evidence assessment tools among researchers and users.

FRONTIERS IN MEDICINE (2023)

Article Mechanics

Squeeze flow of a Maxwell fluid between two parallel disks or two spheres

Zhaolin Zheng, Haiou Xie, Xuedong Chen, Xuhui Liu, Wei Yang, Yong Xu, Wenbin Huang

Summary: In this study, the squeeze flow behavior of an upper convected Maxwell fluid between two rigid disks or spheres was investigated. It was found that the velocity field of the Maxwell squeeze flow between two disks is similar to that of a Newtonian fluid when the Deborah number is low. Based on the Newtonian fluid velocity field, the pressure distribution between two parallel disks was analyzed, and a theoretical model of normal squeeze force was developed. The same method was also used to analyze the interaction between two nearly contacting, arbitrary rigid spheres. Analytical expressions for the pressure distribution and normal squeeze force were obtained, which can be used in the contact model for discrete element simulation of wet particle systems with the Maxwell fluid.

PHYSICS OF FLUIDS (2023)

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