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  1. 363261
    “…Three review authors independently assessed risk of bias using RoB 1 tool as outlined in the Cochrane Handbook for Systematic Reviews of Interventions. We carried out statistical analysis using Review Manager 5. We did not conduct a meta‐analysis, and we did not assess publication bias. …”
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  2. 363262
  3. 363263
    “…A backward, stepwise logistic regression analysis was performed in order to define the best model for predicting lasting responses to treatment. Statistical significance was assumed at p < 0.05. Results: A total of 125 patients (median age ± standard deviation (SD) 72.0 ± 9.5 years) were enrolled: 64 men (51.2%) and 61 women (48.8%). …”
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  4. 363264
    “…DESIGN, SETTING, AND PARTICIPANTS: This population-based cross-sectional study was conducted from October 5, 2021, to June 3, 2022, and involved 530 965 autistic children in kindergarten through grade 12. Core-based statistical areas (CBSAs; defined as areas containing a city and its surrounding commuter region), the Civil Rights Data Collection (CRDC) data set, and 51 071 autism resources (collected from October 1, 2015, to December 18, 2022) geographically distributed into 912 CBSAs were combined and analyzed to understand variation in access to autism health care services among autistic children of different races and ethnicities. …”
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  5. 363265
  6. 363266
    “…The median NT pro-BNP values were higher in the BCI group on admission, hospital day (HD) 2, and HD 3, however, no statistical difference was observed (125 (49–245) vs. 130 (47–428) pg/mL, p = 0.08, 124 (68–224) vs. 187 (55–519) pg/mL, p = 0.09, and 121(59–225) vs. 133 (56–600) pg/mL, p = 0.17, respectively). …”
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  7. 363267
    por Kozar, Victoria, Steffens, David C.
    Publicado 2023
    “…Spearman Correlation Testing was used for statistical analysis to evaluate the relationship between EPII-G components and the positive and negative sum of emotional experiences. …”
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  8. 363268
    por Cao, L., Sutcliffe, W., Van Tonder, R., Bernlochner, F.U., Adachi, I., Aihara, H., Al Said, S., Asner, D.M., Atmacan, H., Aushev, T., Ayad, R., Babu, V., Bauer, M., Behera, P., Belous, K., Bennett, J., Bessner, M., Bhardwaj, V., Bilka, T., Biswal, J., Bonvicini, G., Bozek, A., Bračko, M., Browder, T.E., Campajola, M., Červenkov, D., Chang, M.-C., Chang, P., Chekelian, V., Chen, A., Cheon, B.G., Chilikin, K., Cho, H.E., Cho, K., Cho, S.-J., Choi, S.-K., Choi, Y., Choudhury, S., Cinabro, D., Cunliffe, S., Das, S., Dash, N., De Nardo, G., Di Capua, F., Dingfelder, J., Doležal, Z., Dong, T.V., Dubey, S., Eidelman, S., Epifanov, D., Ferber, T., Ferlewicz, D., Frey, A., Fulsom, B.G., Garg, R., Gaur, V., Garmash, A., Giri, A., Goldenzweig, P., Guan, Y., Hadjivasiliou, C., Hara, T., Hartbrich, O., Hayasaka, K., Hayashii, H., Hedges, M.T., Hernandez Villanueva, M., Hou, W.-S., Hsu, C.-L., Iijima, T., Inami, K., Ishikawa, A., Itoh, R., Iwasaki, M., Iwasaki, Y., Jacobs, W.W., Jang, E.-J., Jeon, H.B., Jia, S., Jin, Y., Joo, C.W., Joo, K.K., Kang, K.H., Karyan, G., Kawasaki, T., Kichimi, H., Kiesling, C., Kim, B.H., Kim, C.H., Kim, D.Y., Kim, H.J., Kim, K.-H., Kim, S.H., Kim, Y.-K., Kinoshita, K., Kodyš, P., Konno, T., Korobov, A., Korpar, S., Kotchetkov, D., Kovalenko, E., Križan, P., Kroeger, R., Krokovny, P., Kuhr, T., Kumar, M., Kumar, R., Kumara, K., Kuzmin, A., Kwon, Y.-J., Lalwani, K., Lange, J.S., Lee, I.S., Lee, S.C., Lewis, P., Li, C.H., Li, J., Li, L.K., Li, Y.B., Li Gioi, L., Libby, J., Lieret, K., Liptak, Z., Liventsev, D., MacNaughton, J., MacQueen, C., Masuda, M., Matsuda, T., Matvienko, D., Merola, M., Metzner, F., Miyabayashi, K., Mizuk, R., Mohanty, G.B., Moon, T.J., Mori, T., Mrvar, M., Mussa, R., Nakao, M., Natkaniec, Z., Natochii, A., Nayak, L., Nayak, M., Niiyama, M., Nisar, N.K., Nishida, S., Nishimura, K., Ogawa, S., Ono, H., Onuki, Y., Oskin, P., Pakhlov, P., Pakhlova, G., Pang, T., Pardi, S., Park, C.W., Park, H., Park, S.-H., Patra, S., Paul, S., Pedlar, T.K., Pestotnik, R., Piilonen, L.E., Podobnik, T., Popov, V., Prencipe, E., Prim, M.T., Ritter, M., Röhrken, M., Rostomyan, A., Rout, N., Rozanska, M., Russo, G., Sahoo, D., Sakai, Y., Sandilya, S., Sangal, A., Santelj, L., Sanuki, T., Savinov, V., Schnell, G., Schueler, J., Schwanda, C., Schwartz, A.J., Seino, Y., Senyo, K., Sevior, M.E., Shapkin, M., Sharma, C., Shen, C.P., Shiu, J.-G., Simon, F., Sokolov, A., Solovieva, E., Stanič, S., Starič, M., Stottler, Z.S., Strube, J.F., Sumiyoshi, T., Takizawa, M., Tamponi, U., Tanida, K., Tenchini, F., Trabelsi, K., Uchida, M., Uglov, T., Unno, Y., Uno, S., Urquijo, P., Usov, Y., Vahsen, S.E., Varner, G., Varvell, K.E., Vinokurova, A., Vorobyev, V., Vossen, A., Waheed, E., Wang, C.H., Wang, E., Wang, M.-Z., Wang, P., Watanabe, M., Watanuki, S., Wehle, S., Wiechczynski, J., Won, E., Xu, X., Yabsley, B.D., Yan, W., Yang, S.B., Ye, H., Yin, J.H., Yuan, C.Z., Yusa, Y., Zhang, Z.P., Zhilich, V., Zhukova, V., Zhulanov, V.
    Publicado 2021
    “…The most inclusive measurement corresponds to the phase space with lepton energies of <math display="inline"><mrow><msubsup><mrow><mi>E</mi></mrow><mrow><mo>ℓ</mo></mrow><mrow><mi>B</mi></mrow></msubsup><mo>&gt;</mo><mn>1</mn><mtext> </mtext><mtext> </mtext><mi>GeV</mi></mrow></math>, and we obtain <math display="inline"><mrow><mi mathvariant="normal">Δ</mi><mi mathvariant="script">B</mi><mo stretchy="false">(</mo><mi>B</mi><mo stretchy="false">→</mo><msub><mrow><mi>X</mi></mrow><mrow><mi>u</mi></mrow></msub><msup><mrow><mo>ℓ</mo></mrow><mrow><mo>+</mo></mrow></msup><msub><mrow><mi>ν</mi></mrow><mrow><mo>ℓ</mo></mrow></msub><mo stretchy="false">)</mo><mo>=</mo><mo stretchy="false">(</mo><mn>1.59</mn><mo>±</mo><mn>0.07</mn><mo>±</mo><mn>0.16</mn><mo stretchy="false">)</mo><mo>×</mo><msup><mrow><mn>10</mn></mrow><mrow><mo>-</mo><mn>3</mn></mrow></msup></mrow></math> from a two-dimensional fit of the hadronic mass spectrum and the four-momentum-transfer squared distribution, with the uncertainties denoting the statistical and systematic error. We find <math display="inline"><mrow><mrow><mo stretchy="false">|</mo><msub><mrow><mi>V</mi></mrow><mrow><mi>u</mi><mi>b</mi></mrow></msub><mo stretchy="false">|</mo></mrow><mo>=</mo><mo stretchy="false">(</mo><mn>4.10</mn><mo>±</mo><mn>0.09</mn><mo>±</mo><mn>0.22</mn><mo>±</mo><mn>0.15</mn><mo stretchy="false">)</mo><mo>×</mo><msup><mrow><mn>10</mn></mrow><mrow><mo>-</mo><mn>3</mn></mrow></msup></mrow></math> from an average of four calculations for the partial decay rate with the third uncertainty denoting the average theory error. …”
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  9. 363269
    por Rouchka, Eric C., Chariker, Julia H., Harrison, Benjamin J., Park, Juw Won, Cao, Xueyuan, Pounds, Stanley, Raimondi, Susana, Downing, James, Ribeiro, Raul, Rubnitz, Jeffery, Lamba, Jatinder, Daigle, Bernie J., Burgess, Deborah, Gehrlich, Stephanie, Carmen, John C., Johnson, Nicholas, Emani, Chandrakanth, Gehrlich, Stephanie, Burgess, Deborah, Carmen, John C., De Silva, Kalpani, Heaton, Michael P., Kalbfleisch, Theodore S., Viangteeravat, Teeradache, Mudunuri, Rahul, Ajayi, Oluwaseun, Şen, Fatih, Huang, Eunice Y., Mohebbi, Mohammad, Florian, Luaire, Jackson, Douglas J., Naber, John F., Sabbir, AKM, Ellingson, Sally R., Lu, Yuping, Phillips, Charles A, Langston, Michael A., Sevakula, Rahul K., Thirukovalluru, Raghuveer, Verma, Nishchal K., Cui, Yan, Sayed, Mohammed, Park, Juw Won, Wang, Jing, Liu, Qi, Shyr, Yu, Zhang, Xiaofei, Ellingson, Sally R., Prodduturi, Naresh, Oliver, Gavin R., Grill, Diane, Na, Jie, Eckel-Passow, Jeanette, Klee, Eric W., Goodin, Michael M., Farman, Mark, Inocencio, Harrison, Jang, Chanyong, Jaromczyk, Jerzy W., Moore, Neil, Sovacool, Kelly, Dent, Leon, Izban, Mike, Mandape, Sammed, Sakhare, Shruti, Pratap, Siddharth, Marshall, Dana, DePriest, M Scotty, MacLeod, James N., Kalbfleisch, Theodore S., Emani, Chandrakanth, Adam, Hanady, Blandford, Ethan, Campbell, Joel, Castlen, Joshua, Dixon, Brittany, Gilbert, Ginger, Hall, Aaron, Kreisle, Philip, Lasher, Jessica, Oakes, Bethany, Speer, Allison, Valentine, Maximilian, Nagisetty, Naga Satya V. Rao, Jose, Rony, Viangteeravat, Teeradache, Rooney, Robert, Hains, David
    Publicado 2016
    “…Harrison, Juw Won Park P1 CC-PROMISE: Projection onto the Most Interesting Statistical Evidence (PROMISE) with Canonical Correlation to integrate gene expression and methylation data with multiple pharmacologic and clinical endpoints Xueyuan Cao, Stanley Pounds, Susana Raimondi, James Downing, Raul Ribeiro, Jeffery Rubnitz, Jatinder Lamba P2 Integration of microRNA-mRNA interaction networks with gene expression data to increase experimental power Bernie J Daigle, Jr. …”
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  10. 363270
  11. 363271
    por de Erausquin, Gabriel A., Snyder, Heather, Brugha, Traolach S., Seshadri, Sudha, Carrillo, Maria, Sagar, Rajesh, Huang, Yueqin, Newton, Charles, Tartaglia, Carmela, Teunissen, Charlotte, Håkanson, Krister, Akinyemi, Rufus, Prasad, Kameshwar, D'Avossa, Giovanni, Gonzalez‐Aleman, Gabriela, Hosseini, Akram, Vavougios, George D., Sachdev, Perminder, Bankart, John, Mors, Niels Peter Ole, Lipton, Richard, Katz, Mindy, Fox, Peter T., Katshu, Mohammad Zia, Iyengar, M. Sriram, Weinstein, Galit, Sohrabi, Hamid R., Jenkins, Rachel, Stein, Dan J., Hugon, Jacques, Mavreas, Venetsanos, Blangero, John, Cruchaga, Carlos, Krishna, Murali, Wadoo, Ovais, Becerra, Rodrigo, Zwir, Igor, Longstreth, William T., Kroenenberg, Golo, Edison, Paul, Mukaetova‐Ladinska, Elizabeta, Staufenberg, Ekkehart, Figueredo‐Aguiar, Mariana, Yécora, Agustín, Vaca, Fabiana, Zamponi, Hernan P., Re, Vincenzina Lo, Majid, Abdul, Sundarakumar, Jonas, Gonzalez, Hector M., Geerlings, Mirjam I., Skoog, Ingmar, Salmoiraghi, Alberto, Boneschi, Filippo Martinelli, Patel, Vibuthi N., Santos, Juan M., Arroyo, Guillermo Rivera, Moreno, Antonio Caballero, Felix, Pascal, Gallo, Carla, Arai, Hidenori, Yamada, Masahito, Iwatsubo, Takeshi, Sharma, Malveeka, Chakraborty, Nandini, Ferreccio, Catterina, Akena, Dickens, Brayne, Carol, Maestre, Gladys, Blangero, Sarah Williams, Brusco, Luis I., Siddarth, Prabha, Hughes, Timothy M., Zuñiga, Alfredo Ramírez, Kambeitz, Joseph, Laza, Agustin Ruiz, Allen, Norrina, Panos, Stella, Merrill, David, Ibáñez, Agustín, Tsuang, Debby, Valishvili, Nino, Shrestha, Srishti, Wang, Sophia, Padma, Vasantha, Anstey, Kaarin J., Ravindrdanath, Vijayalakshmi, Blennow, Kaj, Mullins, Paul, Łojek, Emilia, Pria, Anand, Mosley, Thomas H., Gowland, Penny, Girard, Timothy D., Bowtell, Richard, Vahidy, Farhaan S.
    Publicado 2022
    “…The Consortium proposes a combination of design and statistical methods as a means of approaching causal inference of the COVID‐19 neuropsychiatric sequelae. …”
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  12. 363272
    por Szuba, Marek Krzysztof
    Publicado 2017
    “…Event and track cuts used to improve quality of the observed signal, along with procedures for calculating and/or estimating statistical and systematic errors, have been described and dis- cussed. …”
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  13. 363273
    por Peng, Xinye
    Publicado 2019
    “…This method can significantly improve the statistical precision with which the measurement of non-prompt $\rm D^0$ can be made in Pb--Pb collisions with ALICE in the future. …”
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  14. 363274
    por Magazinik, Anastasiya
    Publicado 2022
    “…It was found that the industrial partners could benefit from the collaboration even at the earlier phase of the fundamental scientific study through increased knowledge, market expansion, marketing image enhancement, economic outcome, improved research and development, and learnings on internal services and processes. The highest statistical significance and models’ fits was demonstrated for knowledge, market expansion, R&D; and learning service benefits. …”
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  15. 363275
    por Ceccarelli, Rudy
    Publicado 2022
    “…However, the VBF mechanism, being at the heart of the electroweak symmetry breaking, needs to be studied with ever-improving analysis techniques while waiting for additional data to reduce the statistical uncertainty. Such a rare process is sensitive to new physics phenomena and allows to set stringent constraints on the compatibility of the Higgs boson itself with the SM. …”
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  16. 363276
    por Magazinik, Anastasiya
    Publicado 2022
    “…It was found that the industrial partners could benefit from the collaboration even at the earlier phase of the fundamental scientific study through increased knowledge, market expansion, marketing image enhancement, economic outcome, improved research and development, and learnings on internal services and processes. The highest statistical significance and models’ fits was demonstrated for knowledge, market expansion, R&D and learning service benefits. …”
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  17. 363277
    “…The mean T1ρ relaxation times within the regions were compared between the three groups with ANOVA’s and Student-Newman-Keuls post-hoc tests. Statistical significance was set at p < 0.05. RESULTS: T1ρ relaxation times were significantly longer for injured knees (both single and multiple dislocations) than controls at the medial and central patella, central trochlear groove, and lateral tibia (Fig. 2). …”
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  18. 363278
    “…DATA COLLECTION AND ANALYSIS: Two review authors independently screened studies for inclusion, and extracted data, assessed risk of bias, and assessed the certainty of the evidence using the GRADE approach. We performed statistical analysis using Review Manager software and presented the main findings of the review in a summary of findings table. …”
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  19. 363279
  20. 363280
    “…T-test for independent samples was performed to determinate if there exists a difference between groups in perception of a PTA simulator. The statistical analyses were performed using SPSS version 20.0 Armonk, NY: IBM. …”
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