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Neuroscience
Three-dimensional imaging discussions for neural circuits, cell morphology and cleared tissue.
For a useful fit assessment, share sample size, labels, clearing or fixation method, target spatial scale and analysis goal.
APPLICATION AREAS
One instrument does not replace sample preparation or experimental design. We begin with the research question, sample conditions and desired output.
01
Three-dimensional imaging discussions for neural circuits, cell morphology and cleared tissue.
For a useful fit assessment, share sample size, labels, clearing or fixation method, target spatial scale and analysis goal.
02
Workflow discussions for tumour tissue, microenvironment and spatial distribution.
For a useful fit assessment, share sample size, labels, clearing or fixation method, target spatial scale and analysis goal.
03
Visualisation of vascular networks, perfusion labels and organ-scale structures.
For a useful fit assessment, share sample size, labels, clearing or fixation method, target spatial scale and analysis goal.
04
Imaging discussions for embryos, developmental processes and multichannel labels.
For a useful fit assessment, share sample size, labels, clearing or fixation method, target spatial scale and analysis goal.
05
Project evaluation for 3D reconstruction of skeletal samples and preparation conditions.
For a useful fit assessment, share sample size, labels, clearing or fixation method, target spatial scale and analysis goal.
06
Workflows spanning tissue clearing, refractive-index matching, volume acquisition and data processing.
For a useful fit assessment, share sample size, labels, clearing or fixation method, target spatial scale and analysis goal.
FROM SAMPLE TO INSIGHT
From sample preparation, fluorescent labels and clearing conditions to acquisition, stitching, 3D visualisation and downstream analysis, we discuss configuration around the complete workflow so research teams can plan the next experiment with greater clarity.
Discuss your research need