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481“…BACKGROUND: Genome-wide repeat sequences, such as LINEs, SINEs and LTRs share a considerable part of the mammalian nuclear genomes. …”
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482“…This was most evident among long interspersed elements, but the relationships between expression and ping-pong pilRNA (piRNA-like) expression were more complex among SINEs. SINE transcripts were equally abundant in the dog and horse yet new SINE insertions were relatively rare in the horse genome, where we identified a stronger piRNA response. …”
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483por Dong, Yongcheng, Huang, Ziyan, Kuang, Qifan, Wen, Zhining, Liu, Zhibin, Li, Yizhou, Yang, Yi, Li, Menglong“…The results show that most short interspersed elements (SINEs) are commonly expressed in all conditions, which are also the major TE types with commonly expression patterns. …”
Publicado 2017
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484“…Short Interspersed Nuclear Elements (SINEs) and DNA transposons are the most frequently enriched classes, while Long Terminal Repeat Retrotransposons (LTRs) are often enriched in a tissue-specific manner. …”
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485por Guo, Renwen, Chen, Jerry Yongqiang, Zhang, Guoqiang, Zhou, Yonggang, Chen, Jiying, Chai, Wei“…The relationship between the placement position of the prosthesis and the LLD value was calculated by Law of Sines and Iterative Calculation. RESULTS: The preoperatively predicted LLD values and the postoperatively measured LLD values were compared, yielding a mean absolute difference of 3.7 (range, 0.1 to 8.6) mm. …”
Publicado 2019
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486por Holland, Peter J., Sibindi, Tafadzwa M., Ginzburg, Marik, Das, Suman, Arkesteijn, Kiki, Frens, Maarten A., Donchin, Opher“…These include its response to sum-of-sines stimuli, its response after lesions of the nucleus prepositus hypoglossi or the flocculus, characteristics of VOR adaptation, and characteristics of drift in the dark. …”
Publicado 2020
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487por Zürcher, Jérôme F., Kleefeldt, Askar A., Funke, Louise F. H., Birnbaum, Jakob, Fredens, Julius, Grazioli, Simona, Liu, Kim C., Spinck, Martin, Petris, Gianluca, Murat, Pierre, Rehm, Fabian B. H., Sale, Julian E., Chin, Jason W.“…We used BASIS to assemble 1.1 Mb of human DNA containing numerous exons, introns, repetitive sequences, G-quadruplexes, and long and short interspersed nuclear elements (LINEs and SINEs). BASIS provides a powerful platform for building synthetic genomes for diverse organisms. …”
Publicado 2023
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488“…Among ME classes, short interspersed nuclear elements (SINEs) were shown to be the most frequent contributor to ME-transcripts, followed by long interspersed nuclear elements (LINEs) and DNA transposons. …”
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489por Lv, Wei, Pan, Xiaoguang, Han, Peng, Wang, Ziyu, Feng, Weijia, Xing, Xue, Wang, Qingqing, Qu, Kunli, Zeng, Yuchen, Zhang, Cailin, Xu, Zhe, Li, Yi, Zheng, Tianyu, Lin, Ling, Liu, Chengxun, Liu, Xuemei, Li, Hanbo, Henriksen, Rasmus Amund, Bolund, Lars, Lin, Lin, Jin, Xin, Yang, Huanming, Zhang, Xiuqing, Yin, Tailang, Regenberg, Birgitte, He, Fan, Luo, Yonglun“…Analysis of the genomic distribution of ucf‐eccDNAs shows that eccDNAs are found on all chromosomes but enriched on chromosomes 17, 19 and 20 with a high density of protein‐coding genes, CpG islands, short interspersed transposable elements (SINEs) and simple repeat elements. Analysis of eccDNA junction sequences further suggests that microhomology and palindromic repeats might be involved in eccDNA formation. …”
Publicado 2022
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490“…RESULTS: Here we demonstrate that a MANOVA approach based on the sines and cosines of the circular data is as powerful as the most-commonly used tests when testing deviation from a uniform distribution, while additionally offering extension to multi-factorial modelling that these conventional circular statistical tests do not. …”
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491por Tripathi, Sandeep, Sayed, Imran A., Dapul, Heda, McGarvey, Jeremy S., Bandy, Jennifer A., Boman, Karen, Kumar, Vishakha K., Bansal, Vikas, Retford, Lynn, Cheruku, Sreekanth, Kaufman, Margit, Heavner, Smith F., Danesh, Valerie C., St. Hill, Catherine A., Khanna, Ashish K., Bhalala, Utpal, Kashyap, Rahul, Gajic, Ognjen, Walkey, Allan J., Gist, Katja M., Mesland, Jean-Baptiste, Henin, Pierre, Petre, Hélène, Buelens, Isabelle, Gerard, Anne-Catherine, Clevenbergh, Philippe, Claure-Del Granado, Rolando, Mercado, Jose A., Vega-Terrazas, Esdenka, Iturricha-Caceres, Maria F., Garza, Ruben, Chu, Eric, Chan, Victoria, Gavidia, Oscar Y, Pachon, Felipe, Sanchez, Yeimy A, El Kassas, Mohamed, Badr, Mohamed, Tawheed, Ahmed, Tawheed, Ahmed, Yahia, Hend, Sierra-Hoffman, Valerio, Fernando, Diaz, Oscar, Coello, Jose Luis Ramos, Perez, Guillermo, Lizardo, Ana Karen Vallecillo, Reyes Guillen, Gabina María, Soto, Helin Archaga, Daga, Mradul Kumar, Agarwal, Munisha, Rohtagi, Ishan, Cherian, Anusha, Parameswaran, Sreejith, Parthiban, Magesh, Priya A., Menu, Vadgaonkar, Girish, Ediga, Rekha, Basety, Shilpa, Dammareddy, Shwetha, Kasumalla, Phani Sreeharsha, Papani, Sridhar, Kamuram, Mahesh, Segu, Smitha S., Chakraborty, Tuhin, Joyce, Epcebha, Raju, Umamaheswara, Manduva, Janaki, Kolakani, Naresh, Sripathi, Shreeja, Chaitanya, Sheetal, Mohan, Surapaneni Krishna, Jyothisree, Ekambaram, Agrawal, Kamlesh Kumar, Baghel, Vijendra, Patel, Kirti Kumar, Dalili, Nooshin, Nafa, Mohsen, Tripathi, Sandeep, Itagaki, Yuki, Kodate, Akira, Suzuki, Reina, Kodate, Akira, Takahashi, Yuki, Moriki, Koyo, Kyo, Michihito, Suzuki, Reina, Sanui, Masamitsu, Horikita, Sho, Matsuda, Wataru, Suzuki, Reina, Tahara, Shu, Hayakawa, Mineji, Maekawa, Kunihiko, Shiga, Takuya, Iwasaki, Yudai, AlFares, Abdulrahman, Rodriguez-Gutierrez, Rene, Gonzalez-Gonzalez, Jose Gerardo, Salcido-Montenegro, Alejandro, Camacho-Ortiz, Adrian, Hassan-Hanga, Fatimah, Galadanci, Hadiza, Shehu Gezawa, Abubakar, Kabara, Halima M. 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Scott, Brown, Margo, Stevens, Rachael, Wetherbie, Andrew, Tea, Kevin, Moore, Mathew, Husain, Abdurrahman, Malhotra, Atul, Zawaydeh, Qais, Sines, Benjamin J, Bice, Thomas J, Vail, Emily A., Nicholson, Susannah, Jonas, Rachelle B., Dement, AnnaRose E., Tang, William, DeRosa, Mark, Villarreal, Robert E., Dy, Rajany V., Iardino, Alfredo, Sharma, Jill, Czieki, Richard, Christopher, Julia, Lacey, Ryan, Mashina, Marwan, Patel, Kushal, Bjornstad, Erica C., Tofil, Nancy M., House, Scott, Aldana, Isabella, Meena, Nikhil K., Caceres, Jose D., Meena, Nikhil K, Epps, Sarenthia M., Goraya, Harmeen, Besett, Kelsey R., James, Ryan, Abusalem, Lana Y., Patel, Akash K., Hasan, Lana S, Gomaa, Dina, Goodman, Michael, Wakefield, Devin, Spuzzillo, Anthony, Shinn, John O., Bihorac, Azra, Ozrazgat Baslanti, Tezcan, Omalay, George, Hashemighouchani, Haleh, Cupka, Julie S., Ruppert, Matthew M, McGonagill, Patrick W., Galet, Colette, Hubbard, Janice, Wang, David, Allan, Lauren, Badheka, Aditya, Chegondi, Madhuradhar, Nazir, Usman, Rampon, Garrett, Riggle, Jake, Dismang, Nathan, Montgomery, Vicki, Sullivan, Janice, Morris, Sarah, Nason, Jennifer, Alvarez, Roger A., Alarcon-Calderon, Amarilys, Anne Sosa, Marie, Mahabir, Sunita K., Patel, Mausam J., Park, Pauline, Admon, Andrew, Hanna, Sinan, Chanderraj, Rishi, Pliakas, Maria, Wolski, Ann, Cirino, Jennifer, Dandachi, Dima, Regunath, Hariharan, Camazine, Maraya N., Geiger, Grant. E., Njai, Abdoulie O., Saad, Baraa M., Ali Shah, Faraaz, Chuan, Byron, Rawal, Sagar L., Piracha, Manal, Tonna, Joseph E., Levin, Nicholas M., Suslavich, Kayte, Tsolinas, Rachel, Fica, Zachary T., Skidmore, Chloe R., Stapleton, Renee D., Dixon, Anne E., Johnson, Olivia, Ardren, Sara S., Burns, Stephanie, Raymond, Anna, Gonyaw, Erika, Hodgdon, Kevin, Housenger, Chloe, Lin, Benjamin, McQuesten, Karen, Pecott-Grimm, Heidi, Sweet, Julie, Ventrone, Sebastian, Khandelwal, Nita, West, T. Eoin, Caldwell, Ellen S., Lovelace-Macon, Lara, Garimella, Navya, Dow, Denisse B., Akhter, Murtaza, Abdul Rahman, Rania, Mulrow, Mary, Wilfong, Erin M., Vela, Kelsi, Khanna, Ashish K., Harris, Lynne, Cusson, Bruce, Fowler, Jacob, Vaneenenaam, David, McKinney, Glen, Udoh, Imoh, Johnson, Kathleen, Lyons, Patrick G., Michelson, Andrew P, Haluf, Sara S., Lynch, Lauren M., Nguyen, Nguyet M., Steinberg, Aaron, Braus, Nicholas, Pattan, Vishwanath, Papke, Jessica, Jimada, Ismail, Mhid, Nida, Chakola, SamuelEnlace del recurso
Publicado 2021
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492por Valtuille, Zaba, Lefevre-Utile, Alain, Ouldali, Naim, Beyler, Constance, Boizeau, Priscilla, Dumaine, Cécile, Felix, Arthur, Assad, Zein, Faye, Albert, Melki, Isabelle, Kaguelidou, Florentia, Meinzer, Ulrich“…The model accounted for seasonality by using harmonic terms (a pair of sines and cosines with 12-month periods). The circulation of eight common seasonal pathogens (adenovirus, influenza, metapneumovirus, Mycoplasma pneumoniae, norovirus, rhinovirus, rotavirus, respiratory syncytial virus, and Streptococcus pneumonia) over the same period was included in the model to analyse the fraction of Kawasaki disease potentially attributable to each pathogen. …”
Publicado 2023
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493por Wagstaff, Bradley J., Kroutter, Emily N., Derbes, Rebecca S., Belancio, Victoria P., Roy-Engel, Astrid M.“…Although we observe some variation in Alu subfamily retrotransposition efficiency, any coevolution that may have occurred between LINEs and SINEs is not evident from these data. Population dynamics and stochastic variation in the number of active source elements likely play an important role in individual LINE or SINE subfamily amplification. …”
Publicado 2013
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494por Venø, Morten T., Hansen, Thomas B., Venø, Susanne T., Clausen, Bettina H., Grebing, Manuela, Finsen, Bente, Holm, Ida E., Kjems, Jørgen“…A global comparison of porcine circRNAs reveals that introns flanking circularized exons are longer than average and more frequently contain proximal complementary SINEs, which potentially can facilitate base pairing between the flanking introns. …”
Publicado 2015
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495por Li, Cheng-Lin, Pu, Mintie, Wang, Wenke, Chaturbedi, Amaresh, Emerson, Felicity J., Lee, Siu Sylvia“…SINEs have been suggested to regulate transcription in response to various cellular stresses in mammals. …”
Publicado 2021
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496por Zarchan, PaulTabla de Contenidos: “…Numerical basics -- Method of least squares -- Recursive least-quares filtering -- Polynomial Kalman filters -- Kalman filters in a nonpolynomial world -- Continuous polynomial Kalman filter -- Extended Kalman filtering -- Drag and falling object -- Cannon-launched projectile tracking problem -- Tracking a sine wave -- Satellite navigation -- Biases -- Linearized Kalman filtering -- Miscellaneous topics -- Fundamentals of Kalman-filtering software.…”
Publicado 2000
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497por Ramayo-Caldas, Yuliaxis, Mach, Nuria, Esteve-Codina, Anna, Corominas, Jordi, Castelló, Anna, Ballester, Maria, Estellé, Jordi, Ibáñez-Escriche, Noelia, Fernández, Ana I, Pérez-Enciso, Miguel, Folch, Josep M“…In addition, a range of 5.8 to 7.3% of repetitive elements was found, with SINEs being the most abundant elements. The expression in liver of 186 (L) and 270 (H) lncRNAs was also detected. …”
Publicado 2012
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498por Gravina, Giovanni Luca, Mancini, Andrea, Sanita, Patrizia, Vitale, Flora, Marampon, Francesco, Ventura, Luca, Landesman, Yosef, McCauley, Dilara, Kauffman, Michael, Shacham, Sharon, Festuccia, Claudio“…Selective Inhibitor of Nuclear Export (SINE) compounds bind to XPO-1 and block its ability to export cargo proteins. …”
Publicado 2015
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499“…TEs themselves evolve, with clade specific LTR/ERV, LINEs and SINEs responsible for the bulk of species-specific genomic features. …”
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500por Chen, Cai, Wang, Wei, Wang, Xiaoyan, Shen, Dan, Wang, Saisai, Wang, Yali, Gao, Bo, Wimmers, Klaus, Mao, Jiude, Li, Kui, Song, Chengyi“…RESULTS: In the present study, we performed de novo detection of retrotransposons in pigs by using multiple pipelines, four distinct families of pig-specific L1 s classified into 51 distinct subfamilies and representing four evolution models and three expansion waves of pig-specific SINEs represented by three distinct families were identified. …”
Publicado 2019
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