Magna Mutatio – Natron

Generative video, 4K, single-channel. High-performance workstation (NVIDIA RTX series) Result is a continuous projection of water micro-world.


SeriesMagna Mutatio
ID2022-MM-NAT-01
Date of origin9.9.2022
TechniqueGenerative video, 4K, single-channel
Dimensions4K, single-channel
Duration00:02:22
SoftwareEcoGenesis Engine v1.0 — Custom patch in TouchDesigner. Iterative feedback loop for processing satellite data (ESA).
HardwareHigh-performance workstation (NVIDIA RTX series)
Data sourceESA Sentinel-2, multispectral data. Analysis of time series of chlorophyll-a concentration, phycocyanin, and salinity index in the northern part of Lake Natron, Tanzania.
InteractionNone direct. Generative, data-driven.
Location of originGalerie Artefin, Prague; Artefin NFT marketplace
Type of exhibitionGallery installation
CollectionArtefin NFT marketplace
PhotoAuthor archive
Author of textKryštof Brůha
Key conceptsBiological pixel, liquid archive, data metabolism, fragility of record, digital mandala, tectonics of remembrance
Text titleMagna Mutatio: Tectonics of Digital Remembrance
DateExhibition
8.9.2022NFT Challenge – Galerie Artefin, Prague
SeriesRelated works
Magna MutatioMagna Mutatio – Pantha Rei (2022) — shares Lake Natron data source
Magna MutatioMagna Mutatio – Gelu (2022) — sibling — ecological transformations in time
Magna MutatioMagna Mutatio – Lake MacKay (2022) — sibling — ephemeral water surfaces

CONCEPT

The fluid interpolation of spatiotemporal layers transforms ESA multispectral data from Lake Natron in Tanzania into generative graphics. Each pixel is a dynamic link in the chain between geological memory and algorithmic interpretation; monthly changes in salinity and cyanobacterial colonies are compressed into pulsating visual cycles. Data born from orbital sensors exist as fractal patterns and dissolve into a gradient of digital noise.

The color red—spanning from the microscopic pigments of cyanobacteria to the satellite-captured „bloody lake“—serves as a material metaphor for fragile resilience. Surviving in extreme pH levels, cyanobacteria create an organic pigment system parallel to digital recording, with their colonies functioning as biological pixels (inspired by Hana Janečková’s theory of adaptive systems). Here, color is not a mere attribute, but a metabolic trace, reflecting both the chemical equilibrium of the water and the limits of human perception. Red permeates the work as a living archive—transience materializes into a hue that fades with each iteration of the algorithm.

The interaction between the micro- and macro-scales creates an unstable network of visual relations. Flamingos, whose pink plumage is a reflection of the food chain tied to cyanobacteria, become moving dots within an algorithmic score; their migration synchronizes biological rhythms with the pulse of the data visualization. The viewer oscillates between the perspectives of the satellite and the bacterial colony, between thermal maps and organic textures. The work functions as a data metabolism: it digests raw numbers from space probes and secretes a visual essence—time here is not a linear flow, but a layered sediment.

We capture the evaporation of the lake and the migration of the flamingos, yet the technology itself is subject to the same transience. Satellite images are temporary records in the ocean of cloud storage—as fragile as cyanobacterial colonies in extreme pH. Lake Natron becomes a memento: every representation repeats the cycle of birth and decay.


GALLERY