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Review of High Pressure Science and Technology/Koatsuryoku No Kagaku To Gijutsu最新文献

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Inteligencia artificial en la educación de Panamá: hacia una transformación digital con equidad y aprendizaje 人工智能在巴拿马教育中的作用:实现数字转型,实现公平和学习
Rodolfo Sanjur Maylín
Este artículo analiza el potencial de la inteligencia artificial (IA) para transformar el sistema educativo de Panamá, con enfoque en la mejora del aprendizaje, la ampliación del acceso y la eficiencia administrativa. Desde un enfoque teórico basado en el marco del Banco Interamericano de Desarrollo, se examinan evidencias sobre intervenciones tecnológicas en América Latina y su aplicabilidad en contextos panameños, en especial en zonas rurales e indígenas. La metodología utilizada es cualitativa-documental, con revisión de literatura crítica y análisis temático. Los resultados indican que plataformas de retroalimentación automatizada, los sistemas predictivos de abandono escolar y tutores inteligentes pueden mejorar significativamente los resultados educativos, siempre que se acompañen de conectividad universal, formación docente contextualizada y gobernanza ética de datos. El análisis revela que, sin una política pública integral, la IA podría profundizar las brechas digitales. Se concluye que Panamá debe implementar un plan nacional de transformación digital en educación, estructurado en cuatro pilares: infraestructura equitativa, formación docente transformadora, herramientas contextualizadas y gobernanza ética. Se proponen acciones concretas, como pilotos en escuelas multigrado de comarcas indígenas y la creación de un sello de calidad ética para software educativo, para garantizar equidad, sostenibilidad y justicia algorítmica.
本文探讨了人工智能(AI)改变巴拿马教育系统的潜力,重点是改善学习、扩大准入和提高管理效率。从美洲开发银行框架内的理论方法出发,审查了拉丁美洲技术干预的证据及其在巴拿马情况下的适用性,特别是在农村和土著地区。所采用的方法是定性纪录片,包括批判性文献的审查和专题分析。研究结果表明,自动反馈平台、预测系统和智能导师可以显著改善教育结果,只要它们伴随着普遍的连接、情境化的教师培训和合乎道德的数据治理。分析表明,如果没有全面的公共政策,人工智能可能会加深数字鸿沟。报告的结论是,巴拿马必须实施一项国家教育数字转型计划,该计划基于四大支柱:公平的基础设施、变革性教师培训、基于背景的工具和道德治理。建议采取具体行动,例如在土著地区的多年级学校开展试点,并为教育软件创建一个道德质量标签,以确保公平、可持续性和算法正义。
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引用次数: 0
Analysis of the therapeutic strategies used to treat Amyotrophic Lateral Sclerosis caused by TDP-43 aggregation and/or mislocalization TDP-43聚集和/或定位错误引起的肌萎缩侧索硬化症的治疗策略分析
Sonya Sar
Amyotrophic Lateral Sclerosis (ALS), a fatal neurodegenerative disorder that impairs motor functions, affects 1 in 50,000 people in the world, and has an insignificant hereditary component, with 90% of patients sans any family history of the disease. ALS is a debilitating disease due to the limited effectiveness of treatments. TARDBP, the gene of interest, encodes The TransActive Response DNA-binding protein 43 (TDP-43 (kDa)). Mutations in this gene result in TDP-43 that may undergo deregulated expression (gain or loss of function), be misfolded, cleaved, aggregated, and/or mislocalized. More specifically, TDP-43 may also be aberrantly ubiquitinated, phosphorylated, cleaved, or nuclear depleted. The resultant proteinopathy is associated in the causal chain of many neurodegenerative disorders, including in > 95% of patients with sporadic ALS. TDP-43 consists of mitochondrial and nuclear localization sequences; RNA recognition motifs; intrinsically disordered regions and is involved in the appropriate splicing and transcription of a host of protein-coding-genes. Preventing and/or correcting dysregulated TDP-43 homeostasis and proteinopathy is near-universally effective in vitro and in animal models. This study focuses on analyzing the benefits and limitations of the therapeutic strategies used to treat ALS caused by dysregulated TDP-43 homeostasis and identifying promising methods to target this proteinopathy.
肌萎缩性侧索硬化症(ALS)是一种致命的神经退行性疾病,会损害运动功能,世界上每5万人中就有1人患有这种疾病,遗传成分微不足道,90%的患者没有这种疾病的家族史。由于治疗效果有限,ALS是一种使人衰弱的疾病。目标基因TARDBP编码交互反应dna结合蛋白43 (TDP-43 (kDa))。该基因的突变导致TDP-43可能经历失调表达(获得或失去功能),错误折叠,切割,聚集和/或错误定位。更具体地说,TDP-43也可能异常泛素化、磷酸化、裂解或核耗竭。由此产生的蛋白质病变与许多神经退行性疾病的因果链有关,包括95%的散发性ALS患者。TDP-43由线粒体和核定位序列组成;RNA识别基序;内在无序的区域,并参与适当的剪接和转录的蛋白质编码基因宿主。在体外和动物模型中,预防和/或纠正失调的TDP-43稳态和蛋白质病变几乎普遍有效。本研究的重点是分析用于治疗由TDP-43稳态失调引起的ALS的治疗策略的益处和局限性,并确定针对这种蛋白质病变的有希望的方法。
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引用次数: 1
Foreword 前言
Pub Date : 2022-10-01 DOI: 10.4131/jshpreview.31.129
Kazutaka Yamamoto
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引用次数: 0
ダイヤモンドアンビルセル中の物質の高温高圧その場熱物性測定 金刚石安比尔小区中物质的高温高压当场热物性测定
Pub Date : 2022-09-01 DOI: 10.4131/jshpreview.32.114
Kenji Ohta
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引用次数: 0
超伝導量子干渉素子を用いた高圧力下磁気測定 使用超导量子干涉元件的高压力下磁力测量
Pub Date : 2022-09-01 DOI: 10.4131/jshpreview.32.138
Masaki Mito
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引用次数: 0
High-Pressure Synthesis and In-Situ Physical Property Measurement Using Boron-Doped Diamond 硼掺杂金刚石的高压合成及物理性能原位测试
Pub Date : 2022-09-01 DOI: 10.4131/jshpreview.32.129
R. Matsumoto, Sayaka Yamamoto, Y. Takano
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引用次数: 0
Magnetization and NMR Measurements Using Opposed-Type Anvil Cells on Quantum Magnetism and Superconductivity 用对向型砧细胞对量子磁性和超导性进行磁化和核磁共振测量
Pub Date : 2022-09-01 DOI: 10.4131/jshpreview.32.120
K. Kitagawa, Naoka Hiraoka, Y. Arai, H. Takagi
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引用次数: 0
第10回アジア高圧会議(10th Asian Conference on High Pressure Research) 報告 第10回アジア高圧会议(10th Asian Conference on High Pressure Research)报告
Pub Date : 2022-09-01 DOI: 10.4131/jshpreview.32.159
T. Hattori
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引用次数: 0
琉球大学 理学部 物質地球科学科物理系 多重自由度相関研究室(物性物理学) 琉球大学 理学部 物質地球科学科物理系 多重自由度相関研究室(物性物理学)
Pub Date : 2022-09-01 DOI: 10.4131/jshpreview.32.157
Riki Kobayashi
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引用次数: 0
高圧バイオサイエンスという異分野交流 高压生物科学的跨领域交流
Pub Date : 2022-09-01 DOI: 10.4131/jshpreview.32.111
Fumiyoshi Abe
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引用次数: 0
期刊
Review of High Pressure Science and Technology/Koatsuryoku No Kagaku To Gijutsu
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