ARM-NATIVE · OFFLINE · SINGLE-CELL SAMPLE PROTECTION
BioSpecimen Rescue Mission
Keep a tumour biopsy sequencing-ready while transport faults unfold. Inject failures, compare conventional PID with adaptive BioLoop, and watch the edge controller explain every rescue decision.
LIVE DIGITAL TWIN
MISSION SCN-042 · Hospital → Single-cell Genomics Lab
T+ 00:00ORIGIN
Oncology OT
DESTINATION
scRNA Core Lab
Oncology OT
DESTINATION
scRNA Core Lab
BIOLOOP CAPSULE
SEQUENCING READINESS
98.0%
98.0%
4.2°Ctarget 4.0°C
94%safe ≥ 55%
7.30safe 7.0–7.6
96 minmodel estimate
8%
98%
Conventional PID
98.0%
predicted readinessAdaptive BioLoop
98.0%
predicted readinessMission replay
LIVE
Temperature battle · PID vs BioLoop
Sequencing-readiness projection
Oxygen reserve
Controller actions · cooling / aeration / buffer
30-minute counterfactual forecast
BioLoop and PID currently predict similar outcomes under nominal transport.
+0.0
Live synthetic scRNA Outcome Twin
Illustrative projection driven by accumulated transport stress—not experimentally calibrated.
PID-protected sample
BioLoop-protected sample
Projected sequencing quality
Viable-cell yield96%96%
Median genes/cell2,4002,400
Mitochondrial RNA risk6%6%
Ambient RNA riskLowLow
Biomarker confidence94%94%
PID | BioLoop
REAL DATA × REAL ARM EXECUTION
Specimen Rescue Digital Twin · CELLxGENE → Axion
CHECKING REAL REFERENCE…
REAL CELLXGENE REFERENCE
REFERENCE SIMILARITY100%
MISSION RISK--
WINNING CONTROLLER--
⚡ Arm Compute Race
Scalar ARM64 baseline685.6M states/s
NEON batch-4 + FMA--
ARCHITECTURE--
MODE--
NATIVE EVALUATIONS--
RUNTIME--
Gene-program shockwave
Reference cells are loaded from CZ CELLxGENE. Damage/recovery are simulated relative to that real reference. Controller evidence is executed by the native ARM64 Monte Carlo binary on Google Axion.