Mostrando 49,381 - 49,400 Resultados de 49,655 Para Buscar '"protones"', tiempo de consulta: 1.06s Limitar resultados
  1. 49381
    “…The ALT was obtained by proton nuclear magnetic resonance spectroscopy, and the results were compared according to the degree of cardiac involvement – normal heart, mild LV changes, and severe LV changes (specifically LV remodeling and systolic dysfunction) – and related to inflammation markers [highly-sensitive C-reactive protein and glycoprotein A (GlycA)] and insulin-resistance [homeostatic model assessment for insulin-resistance (HOMA-IR)]. …”
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  2. 49382
    “…Butyrate treatment was associated with a reduction in splenocyte basal respiration (p = 0.077), proton leak (p = 0.022), and non-mitochondrial respiration (p = 0.055), and an increase in MMP (p = 0.007) and mtROS (p = 0.027) compared to untreated septic animals. …”
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  3. 49383
    “…Forty four PPOs were identified with START criteria. 22.72% were related to lack of proton pump inhibitors (PPI) in the presence of gastroesophageal disorders, and the same percentage was for lack of Calcium-vitamin D supplementation in osteoporosis. …”
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  4. 49384
    “…SIMPLE SUMMARY: Organic acids (OAs) are proposed as suitable alternatives in animal production. The released protons of OAs can reduce the pH in the gastrointestinal tract, then, nutrient digestion is stimulated by boosting the secretion of endogenous enzymes. …”
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  5. 49385
    “…The predicted gene network for avUCP highlighted a cluster of 21 genes involved in response to stress and 28 genes related to lipid metabolism and the proton buffering system. Finally, among 11 enriched pathways, crosstalk of 5 signaling pathways including MAPK, adipocytokine, mTOR, insulin, ErbB, and GnRH was predicted, indicating a possible combination of positive or negative feedback among pathways to regulate avUCP functions. …”
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  6. 49386
    “…METHODS: Magnetic resonance images of 40,174 participants were analyzed for liver proton density fat fraction (PDFF), thigh fat-free muscle volume (FFMV) z-score, and muscle fat infiltration (MFI) using the AMRA® Researcher. …”
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  7. 49387
    “…The following information were collected: age, gender, address, type of cancer, comorbidities, history of substance abuse, history of (h/o) palliative chemotherapy or radiotherapy within last 3month, general condition, ESAS (Edmonton symptom assessment scale), ECOG (Eastern cooperative oncology group), PaP score (palliative prognostic score), medication including opioids, NSAIDs (Non-steroidal anti-inflammatory drugs), steroids, antibiotic, adjuvant analgesic, PPI (Proton pump inhibitor), anti-emetic etc. Delirium diagnosis was based on diagnostic criterion of DSM-IV text revised and MDAS. …”
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  8. 49388
    “…In younger adult patients, the independent factors that influenced VCZ C(0) were the levels of total bile acid (TBA) and glutamic-pyruvic transaminase (ALT) and the use of proton-pump inhibitors. The independent factors influencing VCZ C(0)/C(N) were IL-6, age, direct bilirubin, and TBA. …”
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  9. 49389
    “…RESULTS: At week 24, pegbelfermin significantly improved blood-based composite fibrosis scores (ELF, FIB-4, APRI), fibrogenesis biomarkers (PRO-C3 and PC3X), adiponectin, CK-18, hepatic fat fraction measured by MRI-proton density fat fraction, and all four SomaSignal NASH component tests. …”
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  10. 49390
    “…BACKGROUND: Since the discovery and the use of proton pump inhibitors (PPI), the incidence of gastric ulcers has reduced, however, there has been an increase in intestinal lesions since PPIs do not guarantee protection to the intestine. …”
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  11. 49391
    “…The patient was pre-emptively started on daily proton pump inhibitor prior to endoscopy, but discontinued this within less than two weeks as he felt like it induced loose bowel movements. …”
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  12. 49392
    por Anelli, M., Aoki, S., Arduini, G., Back, J.J., Bagulya, A., Baldini, W., Baranov, A., Barker, G.J., Barsuk, S., Battistin, M., Bauche, J., Bay, A., Bayliss, V., Bellagamba, L., Bencivenni, G., Bertani, M., Bezshyyko, O., Bick, D., Bingefors, N., Blondel, A., Bogomilov, M., Boyarsky, A., Bonacorsi, D., Bondarenko, D., Bonivento, W., Borburgh, J., Bradshaw, T., Brenner, R., Breton, D., Brook, N., Bruschi, M., Buonaura, A., Buontempo, S., Cadeddu, S., Calcaterra, A., Calviani, M., Campanelli, M., Capoccia, C., Cecchetti, A., Chatterjee, A., Chauveau, J., Chepurnov, A., Chernyavskiy, M., Ciambrone, P., Cicalo, C., Conti, G., Cornelis, K., Courthold, M., Dallavalle, M.G., D'Ambrosio, N., De Lellis, G., De Serio, M., Dedenko, L., Di Crescenzo, A., Di Marco, N., Dib, C., Dietrich, J., Dijkstra, H., Domenici, D., Donskov, S., Druzhkin, D., Ebert, J., Egede, U., Egorov, A., Egorychev, V., El Alaoui, M.A., Enik, T., Etenko, A., Fabbri, F., Fabbri, L., Fedorova, G., Felici, G., Ferro-Luzzi, M., Fini, R.A., Franke, M., Fraser, M., Galati, G., Giacobbe, B., Goddard, B., Golinka-Bezshyyko, L., Golubkov, D., Golutvin, A., Gorbunov, D., Graverini, E., Grenard, J-L, Guler, A.M., Hagner, C., Hakobyan, H., Helo, J.C., van Herwijnen, E., Horvath, D., Iacovacci, M., Iaselli, G., Jacobsson, R., Kadenko, I., Kamiscioglu, M., Kamiscioglu, C., Khaustov, G., Khotjansev, A., Kilminster, B., Kim, V., Kitagawa, N., Kodama, K., Kolesnikov, A., Kolev, D., Komatsu, M., Konovalova, N., Koretskiy, S., Korolko, I., Korzenev, A., Kovalenko, S., Kudenko, Y., Kuznetsova, E., Lacker, H., Lai, A., Lanfranchi, G., Lauria, A., Lebbolo, H., Levy, J.-M., Lista, L., Loverre, P., Lukiashin, A., Lyubovitskij, V.E., Malinin, A., Manfredi, M., Perillo-Marcone, A., Marrone, A., Matev, R., Messomo, E.N., Mermod, P., Mikado, S., Mikhaylov, Yu., Miller, J., Milstead, D., Mineev, O., Mingazheva, R., Mitselmakher, G., Miyanishi, M., Monacelli, P., Montanari, A., Montesi, M.C., Morello, G., Morishima, K., Movtchan, S., Murzin, V., Naganawa, N., Naka, T., Nakamura, M., Nakano, T., Nurakhov, N., Obinyakov, B., Ocalan, K., Ogawa, S., Oreshkin, V., Orlov, A., Osborne, J., Pacholek, P., Panman, J., Paoloni, A., Paparella, L., Pastore, A., Patel, M., Petridis, K., Petrushin, M., Poli-Lener, M., Polukhina, N., Polyakov, V., Prokudin, M., Puddu, G., Pupilli, F., Rademakers, F., Rakai, A., Rawlings, T., Redi, F., Ricciardi, S., Rinaldesi, R., Roganova, T., Rogozhnikov, A., Rokujo, H., Romaniouk, A., Rosa, G., Rostovtseva, I., Rovelli, T., Ruchayskiy, O., Ruf, T., Saitta, G., Samoylenko, V., Samsonov, V., Sanz Ull, A., Saputi, A., Sato, O., Schmidt-Parzefall, W., Serra, N., Sgobba, S., Shaposhnikov, M., Shatalov, P., Shaykhiev, A., Shchutska, L., Shevchenko, V., Shibuya, H., Shitov, Y., Silverstein, S., Simone, S., Skorokhvatov, M., Smirnov, S., Solodko, E., Sosnovtsev, V., Spighi, R., Spinetti, M., Starkov, N., Storaci, B., Strabel, C., Strolin, P., Takahashi, S., Teterin, P., Tioukov, V., Tommasini, D., Treille, D., Tsenov, R., Tshchedrina, T., Ustyuzhanin, A., Vannucci, F., Venturi, V., Villa, M., Vincke, Heinz, Vincke, Helmut, Vladymyrov, M., Xella, S., Yalvac, M., Yershov, N., Yilmaz, D., Yilmazer, A.U., Vankova-Kirilova, G., Zaitsev, Y., Zoccoli, A.
    Publicado 2015
    “…Under nominal conditions the current SPS is capable of providing an integrated total of 2$\cdot$10$^{20}$ protons on target in five years of operation. This allows access to a significant fraction of the unexplored parameter space for the Hidden Sector, at nearly zero background level, with sensitivities which are several orders of magnitude better than previous experiments. …”
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  13. 49393
    por Abdulhamid, M.I., Aboona, B.E., Adam, J., Adams, J.R., Agakishiev, G., Aggarwal, I., Aggarwal, M.M., Ahammed, Z., Aitbaev, A., Alekseev, I., Anderson, D.M., Aparin, A., Aslam, S., Atchison, J., Averichev, G.S., Bairathi, V., Baker, W., Ball Cap, J.G., Barish, K., Bhagat, P., Bhasin, A., Bhatta, S., Bordyuzhin, I.G., Brandenburg, J.D., Brandin, A.V., Cai, X.Z., Caines, H., Calderón de la Barca Sánchez, M., Cebra, D., Ceska, J., Chakaberia, I., Chan, B.K., Chang, Z., Chatterjee, A., Chen, D., Chen, J., Chen, J.H., Chen, Z., Cheng, J., Cheng, Y., Choudhury, S., Christie, W., Chu, X., Crawford, H.J., Dale-Gau, G., Das, A., Daugherity, M., Dedovich, T.G., Deppner, I.M., Derevschikov, A.A., Dhamija, A., Di Carlo, L., Didenko, L., Dixit, P., Dong, X., Drachenberg, J.L., Duckworth, E., Dunlop, J.C., Engelage, J., Eppley, G., Esumi, S., Evdokimov, O., Ewigleben, A., Eyser, O., Fatemi, R., Fazio, S., Feng, C.J., Feng, Y., Finch, E., Fisyak, Y., Flor, F.A., Fu, C., Geurts, F., Ghimire, N., Gibson, A., Gopal, K., Gou, X., Grosnick, D., Gupta, A., Hamed, A., Han, Y., Harasty, M.D., Harris, J.W., Harrison-Smith, H., He, W., He, X.H., He, Y., Hu, C., Hu, Q., Hu, Y., Huang, H., Huang, H.Z., Huang, S.L., Huang, T., Huang, X., Huang, Y., Huang, Y., Humanic, T.J., Isenhower, D., Isshiki, M., Jacobs, W.W., Jalotra, A., Jena, C., Ji, Y., Jia, J., Jin, C., Ju, X., Judd, E.G., Kabana, S., Kabir, M.L., Kalinkin, D., Kang, K., Kapukchyan, D., Keane, D., Kechechyan, A., Kelsey, M., Kimelman, B., Kiselev, A., Knospe, A.G., Ko, H.S., Kochenda, L., Korobitsin, A.A., Kravtsov, P., Kumar, L., Kumar, S., Kunnawalkam Elayavalli, R., Lacey, R., Landgraf, J.M., Lebedev, A., Lednicky, R., Lee, J.H., Leung, Y.H., Lewis, N., Li, C., Li, W., Li, X., Li, Y., Li, Y., Li, Z., Liang, X., Liang, Y., Lin, T., Liu, C., Liu, F., Liu, G., Liu, H., Liu, H., Liu, L., Liu, T., Liu, X., Liu, Y., Liu, Z., Ljubicic, T., Llope, W.J., Lomicky, O., Longacre, R.S., Loyd, E.M., Lu, T., Lukow, N.S., Luo, X.F., Luong, V.B., Ma, L., Ma, R., Ma, Y.G., Magdy, N., Mallick, D., Margetis, S., Matis, H.S., Mazer, J.A., McNamara, G., Mi, K., Minaev, N.G., Mohanty, B., Mondal, M.M., Mooney, I., Morozov, D.A., Mudrokh, A., Nagy, M.I., Nain, A.S., Nam, J.D., Nasim, M., Neff, D., Nelson, J.M., Nemes, D.B., Nie, M., Nigmatkulov, G., Niida, T., Nishitani, R., Nogach, L.V., Nonaka, T., Odyniec, G., Ogawa, A., Oh, S., Okorokov, V.A., Okubo, K., Page, B.S., Pak, R., Pan, J., Pandav, A., Pandey, A.K., Panebratsev, Y., Pani, T., Parfenov, P., Paul, A., Perkins, C., Pokhrel, B.R., Posik, M., Protzman, T., Pruthi, N.K., Putschke, J., Qin, Z., Qiu, H., Quintero, A., Racz, C., Radhakrishnan, S.K., Raha, N., Ray, R.L., Ritter, H.G., Robertson, C.W., Rogachevsky, O.V., Rosales Aguilar, M.A., Roy, D., Ruan, L., Sahoo, A.K., Sahoo, N.R., Sako, H., Salur, S., Samigullin, E., Sato, S., Schmidke, W.B., Schmitz, N., Seger, J., Seto, R., Seyboth, P., Shah, N., Shahaliev, E., Shanmuganathan, P.V., Shao, T., Sharma, M., Sharma, N., Sharma, R., Sharma, S.R., Sheikh, A.I., Shen, D.Y., Shen, K., Shi, S.S., Shi, Y., Shou, Q.Y., Si, F., Singh, J., Singha, S., Sinha, P., Skoby, M.J., Söhngen, Y., Song, Y., Srivastava, B., Stanislaus, T.D.S., Stewart, D.J., Strikhanov, M., Stringfellow, B., Su, Y., Sun, C., Sun, X., Sun, Y., Sun, Y., Surrow, B., Svirida, D.N., Sweger, Z.W., Tamis, A., Tang, A.H., Tang, Z., Taranenko, A., Tarnowsky, T., Thomas, J.H., Tlusty, D., Todoroki, T., Tokarev, M.V., Tomkiel, C.A., Trentalange, S., Tribble, R.E., Tribedy, P., Tsai, O.D., Tsang, C.Y., Tu, Z., Tyler, J., Ullrich, T., Underwood, D.G., Upsal, I., Van Buren, G., Vasiliev, A.N., Verkest, V., Videbæk, F., Vokal, S., Voloshin, S.A., Wang, F., Wang, G., Wang, J.S., Wang, X., Wang, Y., Wang, Y., Wang, Y., Wang, Z., Webb, J.C., Weidenkaff, P.C., Westfall, G.D., Wieman, H., Wilks, G., Wissink, S.W., Wu, J., Wu, J., Wu, X., Wu, Y., Xi, B., Xiao, Z.G., Xie, G., Xie, W., Xu, H., Xu, N., Xu, Q.H., Xu, Y., Xu, Y., Xu, Z., Xu, Z., Yan, G., Yan, Z., Yang, C., Yang, Q., Yang, S., Yang, Y., Ye, Z., Ye, Z., Yi, L., Yip, K., Yu, Y., Zha, W., Zhang, C., Zhang, D., Zhang, J., Zhang, S., Zhang, W., Zhang, X., Zhang, Y., Zhang, Y., Zhang, Y., Zhang, Z.J., Zhang, Z., Zhang, Z., Zhao, F., Zhao, J., Zhao, M., Zhou, C., Zhou, J., Zhou, S., Zhou, Y., Zhu, X., Zurek, M., Zyzak, M.
    Publicado 2022
    “…In this comprehensive study, we present the STAR measurements of elliptic flow and triangular flow of charged pions, along with the <math><msub><mi>v</mi><mn>2</mn></msub></math> of charged kaons and protons, as a function of charge asymmetry in <math><mi>Au</mi><mo>+</mo><mi>Au</mi></math> collisions at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>27</mn></mrow></math>, 39, 62.4, and 200 GeV. …”
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  14. 49394
  15. 49395
    “…Liver fat content (LFC) was assessed in 53 patients by proton magnetic resonance spectroscopy. RESULTS: Plasma levels of total DhCer, 7 DhCer and 7 Cer species were increased in T2D patients compared to controls. …”
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  16. 49396
    “…The volume segmented by the network was smaller compared to the ground truth labels by 9.20 mL on average with a mean absolute increase in proton density fat fraction (PDFF) inside the segmented regions of 1.19 percentage points. …”
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  17. 49397
    “…CLINICAL RELEVANCE STATEMENT: We have prospectively validated that the use of a multi-decoder convolutional neural network to estimate liver proton density fat fraction allows a significant reduction in MR scan time by reducing the number of echoes required by 50%. …”
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  18. 49398
    “…Combined with T1, T2, and proton density (PD) quantitative data, synthetic MRI has potential for clinical application in bladder tumors.…”
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  19. 49399
    “…Magnetic resonance imaging-derived proton density fat fraction (MRI-PDFF) measured liver fat content in a subsample of 20,692 participants (57.5 ± 7.4 years old, 52.6% female) was the secondary outcome. …”
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  20. 49400
    por Merritt, Kate, McCutcheon, Robert A., Aleman, André, Ashley, Sarah, Beck, Katherine, Block, Wolfgang, Bloemen, Oswald J. N., Borgan, Faith, Boules, Christiana, Bustillo, Juan R., Capizzano, Aristides A., Coughlin, Jennifer M., David, Anthony, de la Fuente-Sandoval, Camilo, Demjaha, Arsime, Dempster, Kara, Do, Kim Q., Du, Fei, Falkai, Peter, Galińska-Skok, Beata, Gallinat, Jürgen, Gasparovic, Charles, Ginestet, Cedric E., Goto, Naoki, Graff-Guerrero, Ariel, Ho, Beng-Choon, Howes, Oliver, Jauhar, Sameer, Jeon, Peter, Kato, Tadafumi, Kaufmann, Charles A., Kegeles, Lawrence S., Keshavan, Matcheri S., Kim, Sang-Young, King, Bridget, Kunugi, Hiroshi, Lauriello, J., León-Ortiz, Pablo, Liemburg, Edith, Mcilwain, Meghan E., Modinos, Gemma, Mouchlianitis, Elias, Nakamura, Jun, Nenadic, Igor, Öngür, Dost, Ota, Miho, Palaniyappan, Lena, Pantelis, Christos, Patel, Tulsi, Plitman, Eric, Posporelis, Sotirios, Purdon, Scot E., Reichenbach, Jürgen R., Renshaw, Perry F., Reyes-Madrigal, Francisco, Russell, Bruce R., Sawa, Akira, Schaefer, Martin, Shungu, Dikoma C., Smesny, Stefan, Stanley, Jeffrey A., Stone, James, Szulc, Agata, Taylor, Reggie, Thakkar, Katharine N., Théberge, Jean, Tibbo, Philip G., van Amelsvoort, Thérèse, Walecki, Jerzy, Williamson, Peter C., Wood, Stephen J., Xin, Lijing, Yamasue, Hidenori, McGuire, Philip, Egerton, Alice
    Publicado 2023
    “…MEDLINE and EMBASE databases were searched from inception to September 2022 for proton magnetic resonance spectroscopy (1H-MRS) studies reporting glutamate, glutamine or Glx in schizophrenia. 123 studies reporting on 8256 patients and 7532 controls were included. …”
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