Bio-Computational Lab

Simulate evolution. Track genetic drift.

Observe phenotypic particle agents, adjust environmental camouflage, and trigger catastrophic bottleneck events in real-time.

Camouflage dynamics
Bottleneck modeling

1,200

Prey Population

10

Predator Count

98.2%

Gen. Stability

Interactive bio-simulation canvas with particle agents

Active Stage

Predation & Camouflage

98.2%

Allele Frequency

Bottleneck

Flood Event Active

Stage 1 WorkspaceECOSIM Lab Telemetry v4.2

Predation & Camouflage Dynamics

Watch autonomous prey adapt to environment shifts. Apex predators hunt by visual contrast: prey whose pigment matches the background evade predator detection fields, passing their alleles to future generations.

ACTIVE PREY
60organisms
PREDATORS
10apex hunters
MORTALITY
0eaten
REPRODUCTION
0spawned
CYCLE TICK
1generations
ENV BIOME: ABYSSAL SLATE
HUNT ACCURACY: 70%
60 FPS Particle Engine
LIVE ALLELE DISTRIBUTIONTotal: 60 Agents
Emerald(25%)
Azure(25%)
Amber(25%)
Violet(25%)
Crimson(0%)
Environment Biome Color
Change the canvas background to alter which prey color has camouflage advantage.
Hunting Parameters
Adjust predator visual efficiency and natural mutation thresholds.
70%

Higher efficiency allows predators to detect lower-contrast camouflage.

60
15%

Organisms inherit the color pigment of surviving lineages. When an environment shifts, previously vulnerable phenotypes gain reproductive advantage.

Module 02: Selection EngineGen 1

Environment & Mutation Controls

Alter environmental coloration, adjust predation pressure, and toggle genetic mutation to observe real-time phenotype survivability based on camouflage.

BIO-CANVAS 01
Prey: 45Predators: 6Camo Match: 78%
Dominant: Emerald Variant
Culls: 0
Prey = Camouflaged Circles
Predator = Apex Vector Cone
Reproduction Cycles: 0
Environmental Biomes:
Environment Background Color
158° HUE
Shifts the canvas color spectrum. Prey matching this hue evade predator detection cones.
Hue Spectrum (0° – 360°)158°
hsl(158, 42%, 9%)
78% Optimal
Mutation Rate & Allele Drift
35% PROBABILITY
Controls the probability of offspring developing novel phenotypic color alleles during reproduction.
Offspring Mutation Frequency35%
0% (Clonal Clone)50% (Standard Drift)100% (Hyper-mutant)
Predation & Vision Mechanics
60% EFFICIENCY
Configures apex predator optical acuity against camouflaged prey and active hunting squad density.
Visual Acuity / Hunting Efficiency60%

Active hunters roaming the petri field

Units
Higher hunting efficiency allows predators to identify prey even with near-identical background coloration.
STAGE 2 LABPREDATOR ISOLATION ACTIVE

Catastrophic Flood & Genetic Bottleneck

Observe non-selective environmental mortality. The simulated flood abruptly culls 80% of the prey population regardless of camouflage fitness, radically skewing gene pool allele frequencies for subsequent generations.

POPULATION CANVAS
GEN 4
AGENTS:100
Emerald Prey
52%
Azure Prey
26%
Amber Mutant
14%
Violet Mutant
8%
Catastrophic Event Triggers

Step 1: Release rapid flood wavefront to eliminate 80% of prey specimens at random.

Step 2: Triple remaining survivor lineages (3x repopulation cycle) with zero predator interference.

Telemetry & Genetic Drift
Mortality FilterNon-Selective (Flood)
Predator StatusInactive (0 Predators)
Founder Bias IndexEQUILIBRIUM
Allele Frequency Dynamics Over Generations

Continuous tracking of chromatic alleles before and after catastrophic bottleneck culls.

Shift Timestamp: Post-Gen 4
Laboratory Finding: Catastrophes eliminate alleles purely by chance rather than fitness. Rare alleles (like Amber and Violet) risk complete extinction, drastically reducing genetic diversity in the repopulated community.
LAB MODULE #03POPULATION TELEMETRY

Allele Frequency & Generation Graph

Track natural selection, camouflage differential survival, random mutation, and catastrophic bottleneck culls in real time across generations.

Live Petri Chamber
Gen 1
0 Apex Predators100 Prey Agents
Chamber Biome:
Allele Phenotype Distribution
Active Gen: 1
Proportion of color alleles surviving in current population pool.
Emerald Phenotype40 (40%)
Azure Phenotype35 (35%)
Amber Phenotype25 (25%)
Violet Mutant Phenotype0 (0%)
Evolutionary Parameters
Modulate hunting acuity and spontaneous genetic variation rates.
65%

Higher detection allows predators to pierce matching background camouflage faster.

25%

Frequency at which newborn offspring express the novel violet phenotype.

Allele Frequency Across Generations
Continuous timeline tracking phenotypic shift before and after catastrophic bottleneck culls.
Emerald Azure Amber Violet
Bottleneck dynamics: surviving alleles repopulate at a 3x multiplier
Active Data Points: 1 Generations