Innovative Microbial Data Solutions

We specialize in data collection, preprocessing, and deep learning for microbial communities aboard space stations, enhancing our understanding of their impact on extraterrestrial environments.

A complex network of organic structures resembling tree roots or branching coral is laid over a bed of small rocks and gravel. The image is captured in black and white, highlighting texture and intricate patterns.
A complex network of organic structures resembling tree roots or branching coral is laid over a bed of small rocks and gravel. The image is captured in black and white, highlighting texture and intricate patterns.

Microbial Data Services

We specialize in data collection, preprocessing, and analysis of microbial communities in space.

Feature Extraction Models
Circular colonies of various sizes in shades of yellow, green, and red are scattered across a beige surface. The colonies have diverse textures, with some appearing smooth while others are wrinkled or segmented. A circular, plate-like structure frames the image.
Circular colonies of various sizes in shades of yellow, green, and red are scattered across a beige surface. The colonies have diverse textures, with some appearing smooth while others are wrinkled or segmented. A circular, plate-like structure frames the image.

Utilizing deep learning for microbial community feature extraction and quantification methods.

A close-up view of a textured surface resembling microscopic structures. The image contains numerous round, tube-like formations with varied shades of white, grey, and green. The arrangement appears organic, possibly resembling lichen or coralline structures.
A close-up view of a textured surface resembling microscopic structures. The image contains numerous round, tube-like formations with varied shades of white, grey, and green. The arrangement appears organic, possibly resembling lichen or coralline structures.
Various colonies of bacteria and fungi, including bright yellow and blue growths, are visible on an agar dish. The colonies appear in different sizes and textures, highlighting diverse morphological characteristics. There's a cluster of dense yellow formations amidst scattered blue specks, and a grayish, fuzzy circle to the right.
Various colonies of bacteria and fungi, including bright yellow and blue growths, are visible on an agar dish. The colonies appear in different sizes and textures, highlighting diverse morphological characteristics. There's a cluster of dense yellow formations amidst scattered blue specks, and a grayish, fuzzy circle to the right.
Anomaly Detection Models

Developing deep learning models for classifying and detecting anomalies in microbial communities.

Predictive Modeling Solutions

Designing models to evaluate microbial community trends and environmental impacts.
A close-up view through a microscope revealing intertwined strands and dark, round shapes against a light brown background. The image contains intricate patterns and textures, typical of a microscopic biological sample.
A close-up view through a microscope revealing intertwined strands and dark, round shapes against a light brown background. The image contains intricate patterns and textures, typical of a microscopic biological sample.
Model Development

Creating advanced models for classifying and detecting anomalies in microbial communities using deep learning techniques.

A gloved hand holds a petri dish containing various colonies of bacteria or mold. The colonies are of different shapes and sizes, predominantly displaying brown and beige colors, with a cloudy and somewhat dark appearance in certain areas.
A gloved hand holds a petri dish containing various colonies of bacteria or mold. The colonies are of different shapes and sizes, predominantly displaying brown and beige colors, with a cloudy and somewhat dark appearance in certain areas.
Predictive Trends

Designing models to predict evolutionary trends of microbial communities impacting space station environments.