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Scientific software platform

Scientific computation, connected.

One research environment connecting microfluidic engineering, molecular design, metabolic reasoning and field biology. Real scientific tools, real simulation, and results you can trace back to the model that produced them.

Octara Microfluidic showing a live flow-field simulation with the design assistant
octara microfluidic - live field simulation

How Octara works

Octara is not an AI that knows science.

Octara connects real scientific engines, live databases, physical models, simulations and evidence retrieval through one interface. The language model is an orchestration and interaction layer. It routes intent and explains results. It does not perform the physics, the chemistry, the flux analysis or the identification.

Every run moves from a research objective to a traceable scientific output, and keeps the evidence attached at each step.

  1. 01

    Objective

    A research goal in plain language

  2. 02

    Reasoning

    Scientific interpretation and routing

  3. 03

    Tools

    Specialized engines and databases

  4. 04

    Simulation

    Model-based prediction

  5. 05

    Validation

    Checks, gates and provenance

  6. 06

    Record

    Traceable scientific output

Four workstations, one platform

Built for research that does not fit inside one tool

Each workstation is a specialized scientific environment. They share one project model, one design language and one standard of evidence.

Octara MicrofluidicAvailable (limited)

Design the chip. Simulate it. Inspect what fails.

A microfluidics-native design canvas with validated lumped-hydraulic physics and a design assistant. From a research objective to an editable chip architecture you can simulate and export.

  • Prompt Studio - describe intent, get an editable architecture
  • Parametric component library
  • Lumped hydraulic network solver
  • Concentration-gradient and cell-sorting design
  • Droplet and mixer topologies
  • Manufacturing exports (SVG / DXF / STEP / STL)
A Christmas-tree concentration-gradient generator designed in Octara Microfluidic
concentration-gradient generator
Octara Drug
A virtual lead candidate rendered in Octara Drug

Evidence retrieval, molecular design and property modelling in one workspace. Predictions are computational and carry the model that produced them. Octara is not an autonomous drug inventor.

In developmentExplore Drug
Octara Metabolomic
GlcP1P2P3Targetverifiedproposed

Metabolic pathway design and diagnostic reasoning where every scientific claim becomes a traceable record with a verification status. Designed to make unsupported claims detectable.

Octara Flora
Genus verified3 voices

Amanita muscaria

identified by FungiTastic + PlantCLEF + vision

FungiBasidiomycotaAgaricalesAmanitaceae
Toxic / psychoactive. Consumption NOT ESTABLISHED.

Accuracy-first identification of plants and fungi with calibrated multi-model evidence, real occurrence data, and a fail-closed safety layer for wild mushrooms. Flora does not guess.

Research previewExplore Flora

Evidence, not assertion

Predictions remain predictions. Octara keeps the evidence attached.

Computational results carry the model, the confidence and the applicability domain that produced them. Where a claim cannot be supported, the platform is designed to make that detectable rather than hide it.

Read the validation approach
0Unsupported claims reaching verified, across a frozen 41-case metabolic suite
108/108Infeasibility traps caught across repeated trials
< 3%Microfluidic single-phase model vs analytic solutions
4Scientific workstations in one platform

One project. Multiple scientific workstations.

Octara is in limited release. Tell us what you work on and we will be in touch if it matches the current program.