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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
Publicerad 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.
Publicerad 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. …”
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169
Hard questions for soft skills: Carpentries community collaboration in Aotearoa & Australia
Publicerad 2024“…</p><p dir="ltr">What started out as “gapfiller” for technical skill development has evolved to represent best practice in open research methods, pedagogical practice and community development. …”
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NLS insertion into hARD1 rescues the impaired cell cycle.
Publicerad 2014“…The exogenous NLS restored the altered protein expression involved in cell cycle regulation of the NLS mutant. …”
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Hard Surface Biocontrol in Hospitals Using Microbial-Based Cleaning Products
Publicerad 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.…”
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172
S/HIC: Robust Identification of Soft and Hard Sweeps Using Machine Learning
Publicerad 2016“…Here we introduce a new method, S/HIC, which uses supervised machine learning to precisely infer the location of both hard and soft selective sweeps. We show that S/HIC has unrivaled accuracy for detecting sweeps under demographic histories that are relevant to human populations, and distinguishing sweeps from linked as well as neutrally evolving regions. …”
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173
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Publicerad 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
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174
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Publicerad 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
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175
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Publicerad 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
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176
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Publicerad 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
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177
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Publicerad 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
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178
On-Demand Maneuver of Millirobots with Reprogrammable Motility by a Hard-Magnetic Coating
Publicerad 2022“…Using this approach, we demonstrate on-demand maneuvering capability of reconfiguring locomotion involving crawling, overturning and rolling with a single millirobot. …”
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