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9961por Abraham, Rachy, Mudaliar, Prashant, Jaleel, Abdul, Srikanth, Jandhyam, Sreekumar, EaswaranEnlace del recurso
Publicado 2015
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9962por Resta, Elena, Mula, Silvana, Baldner, Conrad, Di Santo, Daniela, Agostini, Maximilian, Bélanger, Jocelyn J., Gützkow, Ben, Kreienkamp, Jannis, Abakoumkin, Georgios, Khaiyom, Jamilah Hanum Abdul, Ahmedi, Vjollca, Akkas, Handan, Almenara, Carlos A., Atta, Mohsin, Bagci, Sabahat Cigdem, Basel, Sima, Kida, Edona Berisha, Bernardo, Allan B. I., Buttrick, Nicholas R., Chobthamkit, Phatthanakit, Choi, Hoon‐Seok, Cristea, Mioara, Csaba, Sara, Damnjanović, Kaja, Danyliuk, Ivan, Dash, Arobindu, Douglas, Karen M., Enea, Violeta, Faller, Daiane Gracieli, Fitzsimons, Gavan J., Gheorghiu, Alexandra, Gómez, Ángel, Hamaidia, Ali, Han, Qing, Helmy, Mai, Hudiyana, Joevarian, Jeronimus, Bertus F., Jiang, Ding‐Yu, Jovanović, Veljko, Kamenov, Zeljka, Kende, Anna, Keng, Shian‐Ling, Kieu, Tra Thi Thanh, Koc, Yasin, Kovyazina, Kamila, Kozytska, Inna, Krause, Joshua, Kruglanski, Arie W., Kurapov, Anton, Kutlaca, Maja, Lantos, Nóra Anna, Lemay, Edward P., Lesmana, Cokorda Bagus J., Louis, Winnifred R., Lueders, Adrian, Malik, Najma Iqbal, Martinez, Anton P., McCabe, Kira O., Mehulić, Jasmina, Milla, Mirra Noor, Mohammed, Idris, Molinario, Erica, Moyano, Manuel, Muhammad, Hayat, Muluk, Hamdi, Myroniuk, Solomiia, Najafi, Reza, Nisa, Claudia F., Nyúl, Boglárka, O'Keefe, Paul A., Osuna, Jose Javier Olivas, Osin, Evgeny N., Park, Joonha, Pica, Gennaro, Pierro, Antonio, Rees, Jonas H., Reitsema, Anne Margit, Rullo, Marika, Ryan, Michelle K., Samekin, Adil, Santtila, Pekka, Sasin, Edyta, Schumpe, Birga M., Selim, Heyla A., Stanton, Michael Vicente, Stroebe, Wolfgang, Sultana, Samiah, Sutton, Robbie M., Tseliou, Eleftheria, Utsugi, Akira, van Breen, Jolien A., van Lissa, Caspar J., van Veen, Kees, van Dellen, Michelle R., Vázquez, Alexandra, Wollast, Robin, Yeung, Victoria Wai‐lan, Zand, Somayeh, Žeželj, Iris Lav, Zheng, Bang, Zick, Andreas, Zúñiga, Claudia, Leander, N. PontusEnlace del recurso
Publicado 2021
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9963por Wilson, Lydia, Gracie, Lara, Kidy, Farah, Thomas, G. Neil, Nirantharakumar, Krishnarajah, Greenfield, Sheila, Manaseki-Holland, Semira, Ward, Derek J., Gooden, Tiffany E.Enlace del recurso
Publicado 2023
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9964por St. George, Lindsay B., Clayton, Hilary M., Sinclair, Jonathan K., Richards, Jim, Roy, Serge H., Hobbs, Sarah Jane“…Three-dimensional kinematic and surface electromyography (sEMG) data were collected from right triceps brachii, biceps femoris, middle gluteal, and splenius from 10 ridden horses during straight left- and right-lead canter. …”
Publicado 2023
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9965“…OBJECTIVES: Both arthroscopic and open surgical techniques are commonly utilized for proximal biceps tenodesis of the long head of biceps brachii. One concern about the arthroscopic approach is that a portion of the biceps tendon may remain in the bicipital groove, which is a possible source of persistent post-operative pain. [1] The purpose of this study was to determine the location of tendon fixation in an open subpectoral technique and an arthroscopic technique that attempted to place the biceps inferior to the bicipital groove. …”
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9966“…The high grade tumors have the iodine numbers between that for palmitic acid, stearic acid, arachidic acid (N(I)=0) and oleic acid (N(I)=87). Most low grade tumors have N(I) similar to that of OA. …”
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9967por Lovre, Dragana, Marlatt, Kara, Beyl, Robbie A, Burant, Charles F, Ravussin, Eric, Mauvais-Jarvis, Franck“…Treatment with CE/BZA was associated with higher levels of diacylglycerols (DAGs) and triacylglycerols (TAGs) composed of long-chain saturated fatty acids (SFA, palmitic C16:0 and arachidic C20:0), monounsaturated FAs (MUFA, palmitoleic C16:1, oleic C18:1 and ecosenoic C20:1), and polyunsaturated FAs (PUFA, linoleic C18:2, arachidonic C20:4, eicosapentaenoic C20:5, and docosahexaenoic C22:6) compared to placebo (all p<0.05). …”
Publicado 2020
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9968por Seeberg, Trine M., Kocbach, Jan, Danielsen, Jørgen, Noordhof, Dionne A., Skovereng, Knut, Meyer, Frédéric, Sandbakk, Øyvind“…Both the LI and HI sessions induced large terrain-dependent fluctuations (relative to the maximal levels) in heart rate (HR, 17.7 vs. 12.2%-points), oxygen uptake ([Formula: see text] , 33.0 vs. 31.7%-points), and muscle oxygen saturation in the triceps brachii (23.9 vs. 33.4%-points) and vastus lateralis (12.6 vs. 24.3%-points). …”
Publicado 2021
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9969por Lopes, Jamile Benite Palma, Miziara, Isabela Marques, Kahani, Danial, Parreira, Rodolfo Borges, de Almeida Carvalho Duarte, Natalia, Lazzari, Roberta Delasta, Santos, Lucas Villalta, de Mello Monteiro, Carlos Bandeira, da Silva Cardoso, Deborah Carvalho, de Oliveira Hassel Mendes, Juliana, dos Santos Alves, Vera Lucia, Silva, Iransé Oliveira, Oliveira, Luis Vicente, Conway, Bernard Arthur, Galli, Manuela, Cimolin, Veronica, Oliveira, Claudia Santos“…Evaluations will consist of analyses of electroencephalographic signals, electromyographic signals of the biceps and triceps brachii, and the three-dimensional reconstruction of the reaching movement. …”
Publicado 2022
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9970por Samuel, Tinu M., Thielecke, Frank, Lavalle, Luca, Chen, Cheng, Fogel, Paul, Giuffrida, Francesca, Dubascoux, Stephane, Martínez-Costa, Cecilia, Haaland, Kirsti, Marchini, Giovanna, Agosti, Massimo, Rakza, Thameur, Costeira, Maria Jose, Picaud, Jean-Charles, Billeaud, Claude, Thakkar, Sagar K.“…RESULTS: Over the first 4 months, nutrient profiles in the milk of mothers who delivered vaginally (n = 237) showed significantly higher levels of palmitoleic acid (16:1n-7), stearic acid (18:0), oleic acid (18:1n-9), arachidic acid (20:0), alpha-linolenic acid (18:3n-3), eicosapentaenoic acid (20:5n-3), docosahexenoic acid (22:6n-3), erucic acid (22:1n-9), monounsaturated fatty acids (MUFA)%, calcium, and phosphorus, whereas the ratios of arachidonic acid/docosahexaenoic acid (ARA/DHA) and n-6/n-3, as well as polyunsaturated fatty acids (PUFA)% were higher in milk from women who had C-sections, in the unadjusted analyses (p < 0.05 for all), but did not retain significance when adjusted for confounders in the mixed models. …”
Publicado 2022
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9971por Rothkopf, Michael, Brown, Rebecca, DePalma, Andrew, Gagliardotto, Francine, Haselhorst, Jamie, Saracco, Michael“…Stearic (267.2; nl 590.2 – 1377.2) and arachidic (8.86; nl 16.8 – 38.5) acids were low. Total polyunsaturated (1.6; nl 3.57 – 8.11) and total n-6 fatty acids (1.3; nl 3.3 – 7.1) were low. …”
Publicado 2022
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9972por Latham, Christine M., Owen, Randi N., Dickson, Emily C., Guy, Chloey P., White-Springer, Sarah H.“…Muscle was collected from the gluteus medius (GM) and triceps brachii at wk 0, 8, and 12 of exercise training. Data were analyzed using linear models with age, training, muscle, and all interactions as fixed effects. …”
Publicado 2021
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9973por Kaller, Réka, Arbănași, Emil Marian, Mureșan, Adrian Vasile, Voidăzan, Septimiu, Arbănași, Eliza Mihaela, Horváth, Emőke, Suciu, Bogdan Andrei, Hosu, Ioan, Halmaciu, Ioana, Brinzaniuc, Klara, Russu, Eliza“…Results: The maturation of AVF at 6 weeks was clearly lower in cases of patients in the high-NLR (31.88% vs. 91.36%; p < 0.0001), high-PLR (46.94% vs. 85.55%; p < 0.0001), high-SII (44.28% vs. 88.89%; p < 0.0001), high-CRP (46.30% vs. 88.73%; p < 0.0001), high-Ca-P product (40.43% vs. 88.46%; p < 0.0001), and low-PNI (34.78% vs. 91.14%; p < 0.0001) groups, as well as in patients with a lower radial artery (RA) diameter (40% vs. 94.87%; p = 0.0009), cephalic vein (CV) diameter (44.82% vs. 97.14%; p = 0.0001) for a radio-cephalic AVF (RC-AVF), and brachial artery (BA) diameter (30.43% vs. 89.47%; p < 0.0001) in addition to CV diameter (40% vs. 94.59%; p < 0.0001) for a brachio-cephalic AVF (BC-AVF), respectively. There was also a significant increase in early thrombosis and short-time mortality in the same patients. …”
Publicado 2022
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9974por Zhen, Huimin, Shen, Jiyuan, Wang, Jiqing, Luo, Yuzhu, Hu, Jiang, Liu, Xiu, Li, Shaobin, Hao, Zhiyun, Li, Mingna, Shi, Bingang, Gu, Yuanhua“…The circRNAs were only expressed in triceps brachii, quadriceps femoris and longissimus dorsi muscle tissues in nine caprine tissues investigated, with the highest expression level in longissimus dorsi muscle. …”
Publicado 2022
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9975por Morfopoulou, Sofia, Buddle, Sarah, Torres Montaguth, Oscar Enrique, Atkinson, Laura, Guerra-Assunção, José Afonso, Moradi Marjaneh, Mahdi, Zennezini Chiozzi, Riccardo, Storey, Nathaniel, Campos, Luis, Hutchinson, J. Ciaran, Counsell, John R., Pollara, Gabriele, Roy, Sunando, Venturini, Cristina, Antinao Diaz, Juan F., Siam, Ala’a, Tappouni, Luke J., Asgarian, Zeinab, Ng, Joanne, Hanlon, Killian S., Lennon, Alexander, McArdle, Andrew, Czap, Agata, Rosenheim, Joshua, Andrade, Catarina, Anderson, Glenn, Lee, Jack C. D., Williams, Rachel, Williams, Charlotte A., Tutill, Helena, Bayzid, Nadua, Martin Bernal, Luz Marina, Macpherson, Hannah, Montgomery, Kylie-Ann, Moore, Catherine, Templeton, Kate, Neill, Claire, Holden, Matt, Gunson, Rory, Shepherd, Samantha J., Shah, Priyen, Cooray, Samantha, Voice, Marie, Steele, Michael, Fink, Colin, Whittaker, Thomas E., Santilli, Giorgia, Gissen, Paul, Kaufer, Benedikt B., Reich, Jana, Andreani, Julien, Simmonds, Peter, Alrabiah, Dimah K., Castellano, Sergi, Chikowore, Primrose, Odam, Miranda, Rampling, Tommy, Houlihan, Catherine, Hoschler, Katja, Talts, Tiina, Celma, Cristina, Gonzalez, Suam, Gallagher, Eileen, Simmons, Ruth, Watson, Conall, Mandal, Sema, Zambon, Maria, Chand, Meera, Hatcher, James, De, Surjo, Baillie, Kenneth, Semple, Malcolm Gracie, Martin, Joanne, Ushiro-Lumb, Ines, Noursadeghi, Mahdad, Deheragoda, Maesha, Hadzic, Nedim, Grammatikopoulos, Tassos, Brown, Rachel, Kelgeri, Chayarani, Thalassinos, Konstantinos, Waddington, Simon N., Jacques, Thomas S., Thomson, Emma, Levin, Michael, Brown, Julianne R., Breuer, JudithEnlace del recurso
Publicado 2023
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9976por Mula, Silvana, Di Santo, Daniela, Resta, Elena, Bakhtiari, Farin, Baldner, Conrad, Molinario, Erica, Pierro, Antonio, Gelfand, Michele J., Denison, Emmy, Agostini, Maximilian, Bélanger, Jocelyn J., Gützkow, Ben, Kreienkamp, Jannis, Abakoumkin, Georgios, Abdul Khaiyom, Jamilah Hanum, Ahmedi, Vjollca, Akkas, Handan, Almenara, Carlos A., Atta, Mohsin, Bagci, Sabahat Cigdem, Basel, Sima, Kida, Edona Berisha, Bernardo, Allan B.I., Buttrick, Nicholas R., Chobthamkit, Phatthanakit, Choi, Hoon-Seok, Cristea, Mioara, Csaba, Sára, Damnjanovic, Kaja, Danyliuk, Ivan, Dash, Arobindu, Douglas, Karen M., Enea, Violeta, Faller, Daiane Gracieli, Fitzsimons, Gavan J., Gheorghiu, Alexandra, Gómez, Ángel, Hamaidia, Ali, Han, Qing, Helmy, Mai, Hudiyana, Joevarian, Jeronimus, Bertus F., Jiang, Ding-Yu, Jovanović, Veljko, Kamenov, Željka, Kende, Anna, Keng, Shian-Ling, Kieu, Tra Thi Thanh, Koc, Yasin, Kovyazina, Kamila, Kozytska, Inna, Krause, Joshua, Kruglanski, Arie W., Kurapov, Anton, Kutlaca, Maja, Lantos, Nóra Anna, Lemay, Edward P., Lesmana, Cokorda Bagus Jaya, Louis, Winnifred R., Lueders, Adrian, Malik, Najma Iqbal, Martinez, Anton, McCabe, Kira O., Mehulić, Jasmina, Milla, Mirra Noor, Mohammed, Idris, Moyano, Manuel, Muhammad, Hayat, Muluk, Hamdi, Myroniuk, Solomiia, Najafi, Reza, Nisa, Claudia F., Nyúl, Boglárka, O'Keefe, Paul A., Olivas Osuna, Jose Javier, Osin, Evgeny N., Park, Joonha, Pica, Gennaro, Rees, Jonas H., Reitsema, Anne Margit, Rullo, Marika, Ryan, Michelle K., Samekin, Adil, Santtila, Pekka, Sasin, Edyta, Schumpe, Birga Mareen, Selim, Heyla A., Stanton, Michael Vicente, Stroebe, Wolfgang, Sultana, Samiah, Sutton, Robbie M., Tseliou, Eleftheria, Utsugi, Akira, van Breen, Jolien Anne, van Lissa, Caspar J., Van Veen, Kees, vanDellen, Michelle R., Vázquez, Alexandra, Wollast, Robin, Yeung, Victoria Wai-lan, Zand, Somayeh, Žeželj, Iris Lav, Zheng, Bang, Zick, Andreas, Zúñiga, Claudia, Leander, N. PontusEnlace del recurso
Publicado 2022
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9977por Forouhi, Nita G, Koulman, Albert, Sharp, Stephen J, Imamura, Fumiaki, Kröger, Janine, Schulze, Matthias B, Crowe, Francesca L, Huerta, José María, Guevara, Marcela, Beulens, Joline WJ, van Woudenbergh, Geertruida J, Wang, Laura, Summerhill, Keith, Griffin, Julian L, Feskens, Edith JM, Amiano, Pilar, Boeing, Heiner, Clavel-Chapelon, Françoise, Dartois, Laureen, Fagherazzi, Guy, Franks, Paul W, Gonzalez, Carlos, Jakobsen, Marianne Uhre, Kaaks, Rudolf, Key, Timothy J, Khaw, Kay-Tee, Kühn, Tilman, Mattiello, Amalia, Nilsson, Peter M, Overvad, Kim, Pala, Valeria, Palli, Domenico, Quirós, J Ramón, Rolandsson, Olov, Roswall, Nina, Sacerdote, Carlotta, Sánchez, María-José, Slimani, Nadia, Spijkerman, Annemieke MW, Tjonneland, Anne, Tormo, Maria-José, Tumino, Rosario, van der A, Daphne L, van der Schouw, Yvonne T, Langenberg, Claudia, Riboli, Elio, Wareham, Nicholas J“…By contrast, measured odd-chain SFAs (15:0 [pentadecanoic acid] and 17:0 [heptadecanoic acid]) were inversely associated with incident type 2 diabetes (HR [95% CI] per 1 SD difference: 0·79 [0·73–0·85] for pentadecanoic acid and 0·67 [0·63–0·71] for heptadecanoic acid), as were measured longer-chain SFAs (20:0 [arachidic acid], 22:0 [behenic acid], 23:0 [tricosanoic acid], and 24:0 [lignoceric acid]), with HRs ranging from 0·72 to 0·81 (95% CIs ranging between 0·61 and 0·92). …”
Publicado 2014
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9978“…Clin Nutr. 2018;37:1121–32 12. Bracha HS, et al. Am J Geriatr Psychiatry. 2004;12:544–5 13. …”
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9979por Manchado-Gobatto, Fúlvia Barros, Torres, Ricardo Silva, Marostegan, Anita Brum, Rasteiro, Felipe Marroni, Hartz, Charlini Simoni, Moreno, Marlene Aparecida, Pinto, Allan Silva, Gobatto, Claudio Alexandre“…Our results revealed that the graphs generated by this analysis were altered when inspiratory muscle pre-activation was applied, emphasizing muscle oxygenation responses in the leg and arm. …”
Publicado 2022
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9980por Sun, Zhuo, Deng, Zequn, Wei, Xiaohui, Wang, Na, Yang, Jiaqi, Li, Wenyun, Wu, Min, Liu, Yuwei, He, Gengsheng“…RESULTS: In our cross-sectional study, we found plasma proportion of palmitic acid (C16:0) was positively associated (aOR: 1.10 per 1% increase; 95% CI: 1.04, 1.17), while plasma stearic acid (C18:0) (aOR: 0.76 per 1% increase; 95% CI: 0.66, 0.89), arachidic acid (C20:0) (aOR: 0.92 per 0.1% increase; 95% CI: 0.87, 0.97), behenic acid (C22:0) (aOR: 0.94 per 0.1% increase; 95% CI: 0.92, 0.97), and lignoceric acid (C24:0) (aOR: 0.94 per 0.1% increase; 95% CI: 0.92, 0.97) were inversely associated with GDM. …”
Publicado 2022
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