Showing 21 - 40 results of 4,859 for search 'RPAF~', query time: 2.67s Refine Results
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    Phosphorylation-dependent WRN-RPA interaction promotes recovery of stalled forks at secondary DNA structure by Alessandro Noto, Pasquale Valenzisi, Flavia Di Feo, Federica Fratini, Tomasz Kulikowicz, Joshua A. Sommers, Benedetta Perdichizzi, Maurizio Semproni, Valentina Palermo, Marco Crescenzi, Robert M. Brosh Jr, Annapaola Franchitto, Pietro Pichierri

    Published 2025-01-01
    “…The absence of WRN-RPA binding hampers fork recovery, causing single-strand DNA gaps, enlarged by MRE11, and triggering MUS81-dependent double-strand breaks, which require repair by RAD51 to prevent excessive DNA damage.…”
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    Body Perception and Action Following Deafness by M. S. Houde, S. P. Landry, S. Pagé, M. Maheu, F. Champoux

    Published 2016-01-01
    “…The effect of deafness on sensory abilities has been the topic of extensive investigation over the past decades. …”
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    HiQ-FPAR: A High-Quality and Value-added MODIS Global FPAR Product from 2000 to 2023 by Kai Yan, Xinpei Yu, Jinxiu Liu, Jingrui Wang, Xiuzhi Chen, Jiabin Pu, Marie Weiss, Ranga B. Myneni

    Published 2025-01-01
    “…To solve this problem, we developed the Spatio-Temporal Information Composition Algorithm (STICA), which enhances MODIS FPAR by integrating quality control, spatio-temporal correlations, and original FPAR values, resulting in the High-Quality FPAR (HiQ-FPAR) product. …”
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    Analysis of Indicators for Assessing the Risk of Progression from PACS to APAC and the Degree of Intraocular Pressure Elevation in APAC Using AS-OCT by Rumin Zhao, Qiaofang Du, Yunlong Wu, Wenhui Geng, Zijian Zhang, Bojun Zhao

    Published 2024-01-01
    “…The aim of this study is to quantify anterior chamber parameters to provide potential risk indicators for evaluating the progression of primary angle-closure suspect (PACS) eyes to acute primary angle closure (APAC) and the degree of intraocular pressure elevation in patients with APAC utilizing anterior segment optical coherence tomography (AS-OCT). …”
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    Rapid detection of FAdV-4 by one-tube RPA-CRISPR/Cas12a assay by Lei Ma, Xueping Wang, Mingliang Zhang, Mengjie Zhu

    Published 2025-02-01
    “…Additionally, the agreement rate between the results of RPA-CRISPR/Cas12a and qPCR for detecting clinical samples is as high as 97.5%.DiscussionTherefore, the RPA-CRISPR/Cas12a assay presents a promising alternative for the simple, sensitive, and specific identification of FAdV-4.…”
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    Towards an indigenous Bible (in SASL) for deaf persons by S. Lombaard, J. A. Naudé

    Published 2009-12-01
    “… The aim of this article is to give a proposal for an indigenous Bible in South African Sign Language (SASL) for Deaf persons. Due to deafness and the use of Sign Language, many Deaf people are often deprived of rights and privileges, simply because of communication problems and lack of understanding by the hearing community. …”
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    Practical Aspects of Interface Application in CPAP Treatment by Adel Bachour, Heidi Avellan-Hietanen, Tuula Palotie, Paula Virkkula

    Published 2019-01-01
    “…While continuous positive airway pressure (CPAP) is an effective first-line therapy for sleep apnea, CPAP fails in one third of patients mainly due to poor adherence to the CPAP device and masks. …”
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    Protocol for detecting eDNA in ecological rare fish using RPA-CRISPR-Cas12a technology by Xing-Yi Wei, Yang Pei, Li Liu, Péter Hamar, De-Sheng Pei

    Published 2025-03-01
    “…Here, we present a protocol for eDNA amplification and Cas12a for target recognition using RPA. We describe steps for identifying a target site, synthesis and purification of CRISPR RNA (crRNA), and RPA isothermal amplification. …”
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    RAS/RAF/MEK/ERK and PI3K/PTEN/AKT Signaling in Malignant Melanoma Progression and Therapy by Ichiro Yajima, Mayuko Y. Kumasaka, Nguyen Dinh Thang, Yuji Goto, Kozue Takeda, Osamu Yamanoshita, Machiko Iida, Nobutaka Ohgami, Haruka Tamura, Yoshiyuki Kawamoto, Masashi Kato

    Published 2012-01-01
    “…Mutations of RAF, RAS, and PTEN contribute to antiapoptosis, abnormal proliferation, angiogenesis, and invasion for melanoma development and progression. …”
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