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Implantable Nanophotonic Neural Probes with 3D-Printed Microfluidics

MPG-Autoren
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Mu,  Xin       
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Chen,  Fu-Der
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

/persons/resource/persons286700

Dang,  Ka My
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Brunk,  Michael G. K.       
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Li,  Jianfeng
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Wahn,  Hannes
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Stalmashonak,  Andrei
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Ding,  Peisheng
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Poon,  Joyce K. S.       
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Sacher,  Wesley D.       
Nanophotonics, Integration, and Neural Technology, Max Planck Institute of Microstructure Physics, Max Planck Society;

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Zitation

Mu, X., Chen, F.-D., Dang, K. M., Brunk, M. G. K., Li, J., Wahn, H., et al. (2023). Implantable Nanophotonic Neural Probes with 3D-Printed Microfluidics. In The European Conference on Lasers and Electro-Optics 2023.


Zitierlink: https://hdl.handle.net/21.11116/0000-000E-6A27-0
Zusammenfassung
Implantable neural probes with microfluidic channels have been previously demonstrated for multi-drug delivery [1] and neurochemical sampling [2] in brain tissue. We have previously demonstrated foundry-fabricated implantable nanophotonic neural probes for functional imaging, optogenetic stimulation, and electrophysiology recording [3-5]. To further extend our neural probe functionalities, here we present the integration of microfluidic structures onto neural probes with precise and flexible 3D printing.