We are building Subspatial Intelligence for human biology.

Understanding a cell means understanding how its molecules, membranes, and organelles are organized. We are building the technology to measure that organization at nanometer resolution—and the intelligence to learn from it.

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Artistic interpretation of mitochondrial molecular architecture

We are developing a platform at the frontier of nanoscale subcellular spatial biology.

Subspatial Platform Technology brings together label-free structural discovery and targeted molecular localization, preserving the relationship between the detail and its native subcellular surroundings.

Discover structure without molecular labels. Locate selected targets within that structure. Study both within the wider architecture of the cell.

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Label-free structural discovery

Discover subcellular structure.

Reveal membranes, organelles, and molecular assemblies without choosing a molecular label for each feature.

Targeted molecular localization

Locate selected molecular targets.

Investigate where specific molecules are situated within their subcellular surroundings.

Biology across scales

Connect the detail to the cell.

Relate local structural detail to organelles and the wider organization of the cell.

Published researchMitochondrial molecular architecture in Chlamydomonas reinhardtii.Waltz et al., 2025

We are learning how subcellular organization relates to biological state.

A molecular assembly’s location, its arrangement within a membrane, and its proximity to other structures are part of its biological context.

We are developing Subspatial Intelligence to learn from these relationships and investigate how they vary across cellular states.

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We are building exascale infrastructure for Subspatial Intelligence.

Learning from subcellular organization requires detailed measurements across many cells, samples, and biological conditions. We are building toward the imaging and computational scale needed to study that variation.

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Cinematic rendering of the planned exascale Subspatial foundry