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Multiplying Perspectives, Maximizing Insights

The SUPERNOVA-600, the latest flagship platform product from TRANSVISTA, breaking the barriersbetween wide-field fluorescence imaging, fixed imaging, and freely moving imaging, it supports: triple-cololimaging, dual-probe dual-color imaging, optogenetics integration, with enhanced functionality, optimizedworkflows, and superior efficiency, it redefines the frontier of in vivo neuroscience research.
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Multiplying Perspectives, Maximizing Insights
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Features
High-quality Data

Multiple lasers: 780, 920, 1030nm

High resolution: max 0.75 μm

Large FOV: max 900*750 μm

Synchronization with animal behaviors in high temporal resolution: ≤ 40ms

Integrated and efficient

Multi-color imaging

Dual-headpiece dual-color imaging

Compatible with optogenetics

Full workflow streamlined for multi-modal imaging

Stable and scalable

Modular functional design, allowing for easy expansion and upgrades

Stable performance under high load operation

Remote diagnosis and service available

Multi-Color Imaging in Freely Moving Mice

Proprietary technology for multi-wavelength beam stabilization and coupling
The imaging system utilizes a miniaturized probe to perform dual-color imaging at 920 nm and 1030 nm wavelengths. Even when mice exhibit sudden and vigorous movement responses to electrical shock stimuli, this system consistently and stably tracks neuronal calcium transients and astrocytic morphological changes, fully demonstrating its exceptional robustness.

Multi-Headpiece Imaging in Freely Moving Mice

Proprietary technology for dual-color, dual-headpiece beam stabilization and coupling
Two miniaturized headpieces can be configured to achieve simultaneous imaging of two brain areas or two experimental animals.
Simultaneous Two-photon lmaging + Optogenetics Stimulation
Multiplexed imaging fiber bundles enable simultaneous two-photon imaging and optogenetic stimulation in freely moving mice.

The SUPERNOVA-600 system is compatible with optogenetic stimulation modules of various wavelengths, enabling efficient optogenetic manipulation within the imaging field-of-view while performing miniaturized two-photon microscopy.

 

The single-photon optogenetic module offers selectable wavelengths (473 nm, 589 nm, 635 nm), with freely switchable automatic/manual stimulation modes and automatic tagging of stimulation signals.

Application example

Miniaturized two-photon microscopy enables single-cell resolution imaging and optogenetic manipulation in specific deep brain regions.

 

Activation of VIP neurons or inhibition of PV neurons in the dmPFC (dorsomedial prefrontal cortex) enhanced overall neuronal activity in this region, which promoted effortful behaviors in mice and led to winning outcomes.

 

Conversely, suppression of VP neuron activity or activation of PVergic neurons reduced overall neuronal activity in the dmPFC, resulting in retreat behaviors and submissive outcomes.

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