
Xinyang Normal
Articles
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Jan 13, 2025 |
academic.oup.com | Xinyang Normal
EnrichRBP is a web service that enables researchers to develop original deep learning and machine learning architectures to explore the complex dynamics of RNA-binding proteins. The platform supports 70 deep learning algorithms, covering feature representation, selection, model training, comparison, optimization, and evaluation, all integrated within an automated pipeline.
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Aug 26, 2024 |
link.springer.com | Xinyang Normal
Perillic acid has been studied as an anticancer and antimicrobial drug. Production of perillic acid has attracted considerable attention. Meanwhile, Candida tropicalis is an unconventional diploid yeast, most significantly characterized by its ability to metabolize alkanes or fatty acids for growth and proliferation. Therefore, perillic acid’s precursor (L-limonene) in C. tropicalis was firstly synthesized by expressing a Mentha spicata L-limonene synthase gene, LS_Ms in this work.
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Jun 19, 2024 |
bmcpsychology.biomedcentral.com | Xinyang Normal
In recent years, investigating fear interventions from a social relationship perspective has become a research hotspot [37]. This study, grounded in the Integrative Model of Attachment-System Dynamics, explored the inhibitory effect of activated secure attachment representations on perceptual fear generalization. The results verified the inhibitory effect of secure attachment priming on perceptual fear generalization in terms of both the extent of generalization and generalization extinction.
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May 19, 2024 |
link.springer.com | Xinyang Normal
AbstractThis study examines the transformative impact of cultivating high-quality farmers on the green production efficiency of agricultural practices in Henan Province, China. Utilizing a robust dataset from 2263 exemplary farmers and employing the Data Envelopment Analysis-Slack Based Measure (DEA-SBM) and Tobit models, we explore the nexus between farmer training programs and sustainable agricultural outcomes.
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Apr 15, 2024 |
pubs.rsc.org | Jing Cynthia Wu |Minghui Li |Shasha Gao |Xinyang Normal
Electrospinning-assisted porous skeleton electrolytes for semi-solid Li–O2 batteries† Solid-state lithium–oxygen batteries offer great promise in meeting the practical demand for high-energy-density and safe energy storage. We have developed fibrous gel polymer electrolytes (GPEs) using a polyacrylonitrile (PAN) matrix via electrospinning.
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