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http://dx.doi.org/10.1021/cr300253x | DOI Listing |
Blood, which forms part of the systemic circulatory system, contains proteins from various tissues and organs. Hence, blood samples are ideal vehicles for studying diseases and physiological states. Plasma is an important component of blood and is essential for clinical proteomics research.
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January 2025
Practical deployments, especially on resource-limited edge devices, necessitate high speed for visual object trackers. To meet this demand, we introduce a new efficient tracker with a Two-Stream architecture, named ToS. While the recent one-stream tracking framework, employing a unified backbone for simultaneous processing of both the template and search region, has demonstrated exceptional efficacy, we find the conventional two-stream tracking framework, which employs two separate backbones for the template and search region, offers inherent advantages.
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September 2025
Efficient and effective personalized assistance strategies are crucial for enhancing exoskeleton performance under varying walking conditions. We proposed a novel real-time adaptive assistance strategy to generate personalized and stride-wise customized ankle exoskeleton assistance profiles that adjusted to diverse and varying human locomotion demands. This approach tuned the assistance magnitude and timing online, starting from a profile pre-optimized during medium constant-speed walking, based on real-time ankle momentum estimation.
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August 2025
Department of Chemistry, School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi, 464-0802, Japan.
De novo protein design has been used to create functional protein assemblies, but its reliance on standard amino acids limits the integration of synthetic supramolecular strategies for precise control of molecular assemblies. Herein, an artificial protein assembly that integrates synthetic supramolecular design with de novo protein engineering is presented. Focusing on unit and connection rigidity, the Bi-Porphyrin Acquisition Designer protein (BiPAD), which captures two synthetic porphyrin molecules via state-of-the-art generative protein design to fuse α/β-folded porphyrin-binding motifs, is designed and created.
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January 2025
With the prevalence of emerging computer vision applications, the demand for capturing dynamic scenes with high-speed motion has increased. A kind of neuromorphic sensor called spike camera shows great potential in this aspect since it generates a stream of binary spikes to describe the dynamic light intensity with a very high temporal resolution. Color spike camera (CSC) was recently invented to capture the color information of dynamic scenes via a color filter array (CFA) on the sensor.
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