Overall Solution of In Vivo Electrophysiology
Flexible Electrode
High-Throughput Neural Signal Acquisition and Analysis System
Intelligent Surgical Robot
Multiple-region Flexible Electrodes
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Flexible Implantation Sites
During surgery, the implantation position and depth of each electrode can be flexibly adjusted to support research covering the full brain range.
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Compact Size
The electrode features a miniature profile and enables free movement of small laboratory animals after implantation.
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High Channel Count
It is equipped with 128 channels covering 4 brain regions, and customized versions supporting up to 8 brain regions are available.
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High Compatibility
Custom multifunctional variants compatible with fiber photometry recording and optogenetics can be developed on demand.
High-Throughput Neural Signal Acquisition and Analysis System
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Easy to Use
Streamlined interface with clear interaction logic; no complex training required for operation.
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High Throughput
A single device supports up to 2,048 channels at maximum, enabling simultaneous recording of up to 8 animals.
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Automated
One-click spike sorting greatly reduces data processing workload.
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Customizable
Supports customized algorithm development and plug-in development.
Intelligent Surgical Robot
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Application Scenarios
Wide range of applications covering all cranial surgery experiments for rats and mice
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User-Friendly Surgery
Clear surgical guidance available during operation; surgical data can be recorded in real time during the operation, and all surgical data is systematically managed after the operation.
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Highly Integrated and Mobile
Integrates robotic arms, binocular cameras, microscopes, light sources, surgical navigation, and other modules into one unit; Designed as a movable trolley.
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Rapid and High-Precision Positioning
The robotic arm combined with intelligent algorithms can accurately reach target positions along pre-planned paths rapidly according to target locations and tool characteristics.