Ordinary light. Extraordinary
insight.

Kulia Labs has developed a hypermodal imaging platform that extracts biological information invisible to conventional cameras. By combining hyperspectral imaging, tissue biophotonics, autofluorescence, and AI, we enable earlier disease detection with low-cost, scalable hardware.

A Platform
for Biological Intelligence.


Instrument #01

ESI™. Our Spectral Intelligence Engine.

Built for the next generation of endoscopy, ESI™ transforms every procedure into a quantitative digital examination - combining enhanced visualization today with AI-powered decision support tomorrow.

  • Real-Time Enhancement
  • AI-Ready Platform
  • KL Imaging Engine
Instrument #02

Hypermodal. Skin Intelligence.

A handheld platform that combines spectroscopy, biophotonics, and autofluorescence to generate a quantitative optical fingerprint of tissue. Built for healthcare today—and consumer health tomorrow.

  • Hypermodal Sensing
  • Optical Fingerprinting
  • AI-Powered Insights

Why hypermodal

405–1000 nm

Conventional cameras compress millions of optical interactions into three color channels. Hypermodal imaging preserves far more of the information carried by light-capturing spectral composition, subsurface biophotonics, and autofluorescence in a single acquisition. More information enables better physics.
Better physics enables better AI.

Reflectance spectroscopy
Light strikes the surface and returns as discrete spectral lines across the band
405Wavelength [nm]1000

Material Composition

Every material reflects light differently across the spectrum. By measuring those differences, reflectance spectroscopy distinguishes tissues and materials that appear identical to the human eye.

Biophotonics
Light enters the tissue, travels along scattering paths and re-emerges carrying what it met

Subsurface Structure

Measures how photons propagate through tissue, exposing subsurface structures and microarchitecture that cannot be observed from surface images alone.

Autofluorescence
Excitation light lands on the surface and the tissue re-emits its own glow in every direction

Molecular Identity

Captures the intrinsic fluorescence of endogenous molecules such as collagen, elastin, NADH, and flavins, providing biochemical information beyond structural imaging.

Sense

Quantitative Optics

Every acquisition measures the physical interactions between light and matter rather than simply recording appearance.

Encode

Biological Fingerprint

Hundreds of millions of measurements are compressed into a unique optical fingerprint for every acquisition.

Learn

Adaptive AI

As the dataset grows, the platform continuously improves its ability to recognize biological patterns across applications.

Tell us what you need to see
info@kulialabs.com

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