生物医学工程

分类

    现刊
    3D-printed Recoverable Microdrive and Base Plate System for Rodent Electrophysiology
    用于啮齿动物电生理学的3D打印可恢复微驱动器和基板系统
    [Abstract]

    Extracellular recordings in freely moving animals allow the monitoring of brain activity from populations of neurons at single-spike temporal resolution. While state-of-the-art electrophysiological recording devices have been developed in recent years (e.g., µLED and Neuropixels silicon probes), implantation methods for silicon probes in

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    Building a Total Internal Reflection Microscope (TIRF) with Active Stabilization (Feedback SMLM)
    建立一个主动稳定的全内反射显微镜(TIRF)
    作者:Simao Coelho, Jongho Baek, J. Justin Gooding and Katharina Gaus日期:07/05/2021,浏览量:1814,Q&A: 0
    [Abstract]

    The data quality of high-resolution imaging can be markedly improved with active stabilization, which is based on feedback loops within the microscope that maintain the sample in the same location throughout the experiment. The purpose is to provide a highly accurate focus lock, therefore eliminating drift and improving localization precision.

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    A Detailed Protocol for Preparing Millimeter-sized Supergiant Liposomes that Permit Efficient Eukaryotic Cell-free Translation in the Interior
    一种制备毫米大小的允许在内部有效的真核细胞游离翻译的超巨大脂质体的详细方案
    作者:Hajime Takahashi and Atsushi Ogawa日期:06/20/2021,浏览量:883,Q&A: 0
    [Abstract]

    Liposomes have been used as a pseudo cell membrane for encapsulating biomolecules and creating an artificial cell in the interior where biochemical reactions can occur. Among the several methods used to prepare biomolecule-encapsulating liposomes, the spontaneous emulsion transfer method is superior to others in that it allows us to readily

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    Inkjet 3D Printing of Polymers Resistant to Fungal Attachment
    抗真菌附着聚合物的喷墨3D打印
    作者:Yinfeng He, Cindy Vallieres, Morgan R. Alexander, Ricky D. Wildman and Simon V. Avery日期:05/05/2021,浏览量:2002,Q&A: 0
    [Abstract]

    Inkjet 3D printing is an additive manufacturing method that allows the user to produce a small batch of customized devices for comparative study versus commercial products. Here, we describe the use of a commercial 2D ink development system (Dimatix material printing) to manufacture small batches of 3D medical or other devices using a recently

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    Multilayered Fabrication Assembly Technique to Engineer a Corneal Stromal Equivalent
    用多层制造组装技术制做角膜基质等效物
    作者:Julia Fernández-Pérez, Peter W. Madden and Mark Ahearne日期:03/20/2021,浏览量:1239,Q&A: 0
    [Abstract]

    Tissue engineering has emerged as a strategy to combat the donor shortage of human corneas for transplantation. Synthetic corneal substitutes are currently unable to support the normal phenotype of human cells and so decellularized animal corneas have been deployed to more closely provide the topographical and biochemical cues to promote cell

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