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  1. 2017. Carrier density and Schottky barrier on the performance of DC nanogenerator. J Liu, P Fei, J Song, X Wang, C Lao, R Tummala, ZL Wang. Nano letters 8 (1), 328-332. , 2008. 179. 2008. Piezoelectric potential gated field-effect transistor based on a free-standing ZnO wire.

  2. Jan 28, 2019 · PDF | On Jan 28, 2019, Peng Fei and others published Subvoxel light-sheet microscopy for high-resolution high-throughput volumetric imaging of large biomedical specimens | Find, read and cite all ...

  3. Apr 18, 2018 · A key challenge when imaging whole biomedical specimens is how to quickly obtain massive cellular information over a large field of view (FOV). Here, we report a sub-voxel light-sheet microscopy (SLSM) method enabling high-throughput volumetric imaging of mesoscale specimens at cellular-resolution. A non-axial, continuous scanning strategy is used to rapidly acquire a stack of large-FOV images ...

    • Peng Fei, Jun Nie, Juhyun Lee, Yichen Ding, Shuoran Li, Hao Zhang, Masaya Hagiwara, Tingting Yu, Tat...
    • 2018
  4. 2 stitching of multiple small blocks, this method applies a non-axial, continuous scanning strategy, rapidly acquiring a stack of large FOV images with 3-D nanoscale shifts

  5. In article number , Dan Zhu, Peng Fei, and co‐workers develop an imaging technique, multiangle‐resolved subvoxel selective plane illumination microscopy (termed Mars‐SPIM), that can readily obtain the 3D digital atlas of a cleared ...

    • 10.1002/advs.202070015
    • 2020/02
    • Adv Sci (Weinh). 2020 Feb; 7(3): 2070015.
  6. Feb 5, 2020 · In article number 1901891, Dan Zhu, Peng Fei, and co-workers develop an imaging technique, multiangle-resolved subvoxel selective plane illumination microscopy (termed Mars-SPIM), that can readily obtain the 3D digital atlas of a cleared whole mouse brain with an isotropic single-cell resolution, in a short acquisition time of several minutes ...

  7. Jan 1, 2019 · A subvoxel light-sheet microscopy (SLSM) method enabling high-throughput volumetric imaging of mesoscale specimens at cellular resolution, which could be tailored for a wide range of biomedical applications in pathology, histology, neuroscience, etc. Abstract. A key challenge when imaging whole biomedical specimens is how to quickly obtain massive cellular information over a large field of ...

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