Illuminating Brain Function through Two-Photon Microscopy: Calcium and Voltage Dynamics with Optogenetics

RECORD | Already taken place Tu, 24.3.2026
Discover advances in two-photon microscopy in this webinar featuring Bruker’s Ultima 2Pplus system and modules for 3D optogenetics, voltage imaging, fast volumetric imaging, and mesoscale neuroscience research.
Bruker: Illuminating Brain Function through Two-Photon Microscopy: Calcium and Voltage Dynamics with Optogenetics
Bruker: Illuminating Brain Function through Two-Photon Microscopy: Calcium and Voltage Dynamics with Optogenetics

During this webinar, Jimmy Fong, Director of Products and Technology at Bruker, will give an engaging presentation about the background of Bruker in two-photon imaging and the Ultima 2Pplus multiphoton microscope. He will also elaborate on the advantages of different modules, including developments in 3D holographic optogenetics enabled by the NeuraLight 3D Ultra spatial light modulator, voltage imaging collaborations for new data with the OptoVolt Module, and mesoscale imaging using the xView Module.

Abstract

Two-photon (2P) microscopy has advanced our understanding of computation and connectivity in neuroscience. Through in-vivo calcium imaging at cell-resolution, scientists study brain activity from scales of dendritic spines to neuronal networks. Combined with optogenetics and voltage imaging, 2P microscopy offers new insights into dynamic interactions in neural circuits.

Learn about the history of 2P imaging, Bruker’s Ultima multiphoton systems, and a suite of modules that enhance research possibilities in neuroscience. These modules enable 3D holographic optogenetics with NeuraLight 3D Ultra, voltage imaging with OptoVolt, fast volumetric imaging with NeuraLeap, mesoscale imaging with xView, and more. Attendees will also be introduced to the Inverter Module, which provides new imaging capabilities of different biological samples.

Presenter: Jimmy Fong (Director, Products and Technology)

Jimmy Fong is the director of products and technology at Bruker with expertise in multiphoton imaging systems. He has a keen interest in bringing new microscopy technologies to the greater scientific community and has worked tirelessly with his colleagues to achieve this goal. He holds both a bachelor's and a master’s degree in biomedical engineering with a minor in computer sciences from the University of Wisconsin-Madison.

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