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Updates every hour. Last Updated: 11-Jun-2026 22:16 ET (12-Jun-2026 02:16 GMT/UTC)
Opportunities and challenges of brain-on-a-chip interfaces
Beijing Institute of Technology Press Co., LtdA review paper by scientists from Tianjin University presented light on brain-on-a-chip interfaces (BoCIs)—a groundbreaking technology that fuses lab-grown biological neural networks with electronic systems to enable bidirectional information exchange.
The new research paper, published on Jun. 17 in the journal Cyborg and Bionic Systems, presented a systematic categorization and detailed characterization of Brain-on-a-Chip Interfaces (BoCIs). It discusses the interaction methods employed in lab-grown brain models, followed by an exploration of hybrid intelligence research based on BoCIs.Exploration of automated measurement for ossicular chains based on 3-dimensional geometric information
Beijing Institute of Technology Press Co., LtdA research paper by scientists at Beijing Friendship Hospital develop a systematic approach for automated ossicular-chain segmentation and measurement using ultra-high-resolution computed tomography (U-HRCT).
The research paper, published on Jul, 2, 2025 in the journal Cyborg and Bionic Systems.- Journal
- Cyborg and Bionic Systems
ECNU Review of Education reveals cultural pathways to improving teacher noticing in collaborative lesson study
ECNU Review of EducationIn an era where student-centered instruction and competency-based learning are gaining traction globally, enhancing teacher capacity remains a pivotal challenge. Recognizing this, a team of Chinese education researchers has turned to framing theory to better understand how collaborative professional development models—particularly lesson study—can drive meaningful shifts in teachers’ instructional practice.
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- ECNU Review of Education
New study explores how experienced chinese teachers notice students’ mathematics learning
ECNU Review of EducationEffective teacher noticing supports teacher learning by enabling reflection of what was noticed, or missed, during teaching. A new study examined two primary school mathematics teachers from China to understand their professional noticing in everyday classroom contexts. The researchers investigated what teachers noticed about students' mathematics learning and how this noticing translated into instructional decisions.
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- ECNU Review of Education
- Funder
- Guangdong Planning Office of Philosophy and Social Science
Demonstration of remote, real-time predictive control of fusion plasma
National Institutes of Natural SciencesFor the first time worldwide, we have achieved remote, real-time control of fusion plasma using a digital twin running on a supercomputer located about 1,000 km away (round-trip network path ~2,000 km).
In magnetic confinement fusion power, sustaining and precisely controlling plasma at temperatures exceeding 100 million ℃ over long durations is essential. Yet “predicting-while-controlling” has been challenging due to model accuracy limits, computation speed, and unresolved physics. Our team has developed a system that applies data assimilation, continuously updating the predictive model with real-time measurements to improve accuracy and using accelerated parallel prediction to determine optimal unrehearsed control actions.
A research team from Kyoto University, the National Institute for Fusion Science (NIFS), the National Institutes for Quantum Science and Technology (QST), and the Institute of Statistical Mathematics (ISM), has connected the Large Helical Device (LHD) in Toki, Gifu, Japan to the new “Plasma Simulator” supercomputer in Rokkasho, Aomori, jointly procured by NIFS and QST, via the high-quality, high-bandwidth academic network SINET6. By exclusively using more than 20,000 Central Processing Unit (CPU) cores and minimizing communication latency, the team has realized real-time predictive control of LHD from a remote supercomputer. This approach — linking a large experimental facility and a large computing system over a ~2,000 km network loop — can serve as a foundation for real-time control beyond fusion.
- Journal
- Scientific Reports