MycoBrain Platform

Reading the microvolt language of living materials.

MycoBrain is our testing-stage sensing and control platform for MyBC development. It detects microvolt-level electrical activity for EEG-like treatment of biological data, builds a digital twin of the growth phase, and prepares the stack for an open source release targeted for 2027.

Microvolt signal capture Digital twin development Testing version Open source 2027
Signal / Control Stack MBR_2027

EEG-like analysis of electrical activity in the microvolt range.

Control

MOSFETS / Relays

Sensors

CO2, TEMP, HUM

MycoBrain / Hardware SYS_MB_01
Real-time telemetry microvolt / ADC
Signals

Microvolt activity

Analysis

EEG-like treatment

MycoBrain captures several electrical ranges and biophysical properties, then sends the stream into a digital twin model of the MyBC growth phase.

Control / Sensing CTL_014
Actuation

MOSFETS / Relays

ADC Range

Multi-range inputs

Environment

CO2 / TEMP / HUM

Places

Several nodes

The platform coordinates sensing and actuation across the substrate, allowing the system to respond to the biological state instead of only recording it.

Roadmap / Release RND_2027
Current state

Testing version now, open source software planned for 2027.

Digital twin Validation Release track
MyBC Material Design

Consultation for substrate-to-MyBC design.

Clients send the material they want to transform into a MyBC. We test fungi, conditions, formulations, sensing, and processing routes to build a measured workflow that links adaptation, correlation, and performance.

Fungal library

7 strains

Support media

3 materials

Included in the consultation
Additives Mix tuning
Digital twin Growth phase
Characterization Physical data
Economics Small and industrial
Reports Data sharing

Figure 06 / particle to composite

Our consistent data acquisition from devices and methods is designed to build reliable digital twins for future machine learning-driven discoveries.

Production Pipeline

A rigorous, multi-stage protocol translating raw agricultural byproduct into stabilized, high-density industrial material.

01

Substrate Prep

Sterilization and nutritional balancing of agricultural waste vectors.

02

Inoculation

Introduction of proprietary fungal strains under cleanroom conditions.

03

Directed Growth

Environmental parameter manipulation to dictate density and fiber alignment.

04

Stabilization

Drying and Coating to lock material properties.

sensors

Sensing & Measurement

Material Roulette
AUTO CYCLE
Mycelium material sample Mycelium density sample Mycelium paper and mix sample Substrate comparison sample Longer growth time sample
MyBC_Test

Material sample roulette

1 / 5
Phase 01

Formulation

experiment

Recipe design, subgroup definition, and input normalization for consistent batches.

Subgroups Embeddings
Phase 02

Organic

pentagon

Biological growth, sensing, and signal capture translated into structured data for learning.

Sensing Correlations
Phase 03

Material

layers

Characterization, postprocessing, and quality control that refine the final material output.

Postprocessing Quality

Design the next MyBC substrate with a measured process, not a guess.

Send your material, and we will return a practical consultation path with strain selection, formulations, digital twin data, characterization, and production economics.