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Multifocus microscopy with precise color multiphase diffractive optics applied in functional neuronal imaging

  • Sara Abrahamsson
  • , Rob Ilic
  • , Jan Wisniewski
  • , Brian Mehl
  • , Liya Yu
  • , Lei Chen
  • , Marcelo Davanco
  • , Laura Oudjedi
  • , Jean Bernard Fiche
  • , Bassam Hajj
  • , Xin Jin
  • , Joan Pulupa
  • , Christine Cho
  • , Mustafa Mir
  • , Mohamed El Beheiry
  • , Xavier Darzacq
  • , Marcelo Nollmann
  • , Maxime Dahan
  • , Carl Wu
  • , Timothée Lionnet
  • J. Alexander Liddle, Cornelia I. Bargmann
  • Rockefeller University
  • National Institute of Standards and Technology
  • Howard Hughes Medical Institute
  • Université de Montpellier
  • Université Pierre et Marie Curie-Paris 6
  • University of California at Berkeley

科研成果: 期刊稿件文章同行评审

摘要

Multifocus microscopy (MFM) allows high-resolution instantaneous three-dimensional (3D) imaging and has been applied to study biological specimens ranging from single molecules inside cells nuclei to entire embryos. We here describe pattern designs and nanofabrication methods for diffractive optics that optimize the lightefficiency of the central optical component of MFM: the diffractive multifocus grating (MFG). We also implement a “precise color” MFM layout with MFGs tailored to individual fluorophores in separate optical arms. The reported advancements enable faster and brighter volumetric time-lapse imaging of biological samples. In live microscopy applications, photon budget is a critical parameter and light-efficiency must be optimized to obtain the fastest possible frame rate while minimizing photodamage. We provide comprehensive descriptions and code for designing diffractive optical devices, and a detailed methods description for nanofabrication of devices. Theoretical efficiencies of reported designs is ≈90% and we have obtained efficiencies of > 80% in MFGs of our own manufacture. We demonstrate the performance of a multi-phase MFG in 3D functional neuronal imaging in living C. elegans.

源语言英语
文章编号253387
页(从-至)855-869
页数15
期刊Biomedical Optics Express
7
3
DOI
出版状态已出版 - 16 2月 2016
已对外发布

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