Showing 81 - 100 results of 1,306 for search 'hard is (((((removedds. OR revolvesdss.) OR resolves.) OR involved.) OR involves.) OR resolve.)', 查詢時間: 0.50s Refine Results
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    Table 1_Error-related potentials during multitasking involving sensorimotor control: an ERP and offline decoding study for brain-computer interface.docx Masaki Yasuhara (20626676)

    出版 2025
    “...Post-hoc analyses revealed that the classifier trained on single-task ErrPs exhibited reduced accuracy under hard-task scenarios. To our knowledge, this study is the first to investigate how ErrPs are modulated in a multitasking environment involving both sensorimotor control and BCI operation in an offline framework. ...”
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    The hARD1 NLS mutant causes alterations in cell cycle. Ji-Hyeon Park (554738)

    出版 2014
    “...*<i>p</i><0.05, **<i>P</i><0.01 <b>B</b>. Deletion of NLS from hARD1 increased the protein levels involved in the G2/M phase and decreased those involved in the G0/G1 phase. ...”
  17. 97

    NLS insertion into hARD1 rescues the impaired cell cycle. Ji-Hyeon Park (554738)

    出版 2014
    “...The exogenous NLS restored the altered protein expression involved in cell cycle regulation of the NLS mutant. ...”
  18. 98

    Hard Surface Biocontrol in Hospitals Using Microbial-Based Cleaning Products Alberta Vandini (635388)

    出版 2014
    “...Although many questions remain regarding the actual mechanisms involved, this study demonstrates that microbial cleaning is a more effective and sustainable alternative to chemical cleaning and non-specific disinfection in healthcare facilities....”
  19. 99

    On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating Longfu Li (7971398)

    出版 2022
    “...Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. ...”
  20. 100

    On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating Longfu Li (7971398)

    出版 2022
    “...Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. ...”