Showing 21 - 25 results of 25 for search 'accelerating and plasticizing adaptive', query time: 0.07s Refine Results
  1. 21

    Self-Healing Polymeric Puerarin Hydrogel Dressing Promotes Diabetic Wound Healing Through Synergistic Immunomodulation and Tissue-Regenerative Remodeling by Shaohui Geng, Li Liu, Mureziya Yimingjiang, Zhimin Lin, Jingyuan Fu, Shasha Yu, Xinxin Li, Aimin Yan, Kai Yuan, Guangrui Huang, Anlong Xu

    Published 2025-04-01
    “…The BP hydrogel exhibited exceptional physical characteristics, including adaptability, injectability, plasticity, self-healing capabilities, and robust compressive strength, as well as good biocompatibility. …”
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    Climate Change Affects Choice and Management of Training Systems in the Grapevine by Filippo Del Zozzo, Stefano Poni

    Published 2024-01-01
    “…Although vertical shoot positioned (VSP) training systems, either cane- or spur-pruned, are adopted in the great majority of the vineyards worldwide, the lianas nature of the grapevine and the presence of long and flexible canes confer high plasticity and render structural and pruning changes quite easy. …”
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  4. 24

    Optogenetic approaches for neural tissue regeneration: A review of basic optogenetic principles and target cells for therapy by Davletshin Eldar, Sufianov Albert, Ageeva Tatyana, Sufianova Galina, Rizvanov Albert, Mukhamedshina Yana

    Published 2026-02-01
    “…This trend indicates the potential for creating tools that offer greater flexibility and accuracy in opsin delivery. The adaptations of these viral vectors provide advantages in optogenetic studies by allowing for the restricted expression of opsins through cell-specific promoters and various viral serotypes. …”
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  5. 25

    Design and Calibration of Electron Stack Spectrometer for Diagnosing Hot Electron Temperature in Intense Laser-plasma Interactions by BO Nan1, 2, TIAN Baoxian2, WANG Haoran3, 4, WANG Naiyan2

    Published 2025-04-01
    “…Calibration was performed using a monoenergetic electron beam from a 2 MeV radiofrequency superconducting accelerator at Peking University. The experimental setup included a beryllium window for vacuum isolation, an electromagnet that measures the energy of electron beam and a Faraday cup to measure beam charge, with a plastic scintillator detector cross-referencing the electron flux incident on the spectrometer. …”
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