- 专利标题: Apparatus and Method for Simultaneous Imaging and Execution of Contact-Free Directed Hydrodynamic Flow
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申请号: US18497032申请日: 2023-10-30
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公开(公告)号: US20240142761A1公开(公告)日: 2024-05-02
- 发明人: Moritz Kreysing , Anatol Fritsch , Matthaeus Mittasch
- 申请人: Max-Planck-Gesellschaft zur Förderung der Wissenschaften E.V.
- 申请人地址: DE Munich
- 专利权人: Max-Planck-Gesellschaft zur Förderung der Wissenschaften E.V.
- 当前专利权人: Max-Planck-Gesellschaft zur Förderung der Wissenschaften E.V.
- 当前专利权人地址: DE Munich
- 优先权: EP 203545.3 2017.11.24
- 主分类号: G02B21/36
- IPC分类号: G02B21/36 ; B01L3/00 ; G02B21/00 ; G02B21/02 ; G02B21/08 ; G02B21/28 ; G02B21/30
摘要:
The present invention relates to an apparatus for simultaneous imaging and execution of contact-free directed hydrodynamic flow in a specimen with at least one light source, in particular a laser, adapted to dynamically heat the interior and/or a surface of the specimen, a microscope with an objective adapted to image at least a part of the specimen and to guide, in particular focus, a light beam of the light source, in particular a laser beam, into and/or onto the specimen to heat at least one specified location of the specimen, means for manipulating the specified location, and a sample chamber for the specimen that is accessible for imaging radiation and the light beam to allow simultaneous imaging and manipulation of the sample via the objective. Furthermore the present invention is directed to a method for simultaneous imaging and executing contact-free directed hydrodynamic flow in a specimen wherein, at least one light source, in particular a laser, dynamically heats the interior and/or a surface of the specimen via a light beam, in particular via a laser beam, the beam of the at least one light source is directed to the specimen through an objective of a microscope, the light beam is variably guided, in particular focused, to specified locations of the specimen inducing a hydrodynamic flow in the specimen, and imaging the specimen via the same objective as used for introduction of the light beam.
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