Conscious Transfer Substrate Schema v1
(Formal schema derived from Minimal Substrate × RTT overlay)#
This schema defines only the structures that satisfy all RTT conditions:
- Repeatable (stable across trials)
- Traceable (clear mapping to behavior/physiology)
- Transfer‑addressable (representable in another substrate)
Everything else stays quarantined.
1. Root Object: CT_Substrate#
CT_Substrate:
type: object
required:
- behavioral_layer
- cognitive_layer
- measurement_layer
- anchoring_constraints
properties:
behavioral_layer: BehavioralLayer
cognitive_layer: CognitiveLayer
measurement_layer: MeasurementLayer
anchoring_constraints: AnchoringConstraints2. Behavioral Layer#
This is the lowest‑level functional substrate that is fully RTT‑compliant.
BehavioralLayer:
type: object
required:
- conditioning_models
- performance_metrics
properties:
conditioning_models: ConditioningModels
performance_metrics: PerformanceMetrics2.1 Conditioning Models#
ConditioningModels:
type: object
properties:
classical:
type: object
properties:
cs_us_mapping: array # conditioned stimulus → unconditioned stimulus
acquisition_rate: number
extinction_rate: number
operant:
type: object
properties:
reinforcement_schedule: string # FR, VR, FI, VI, etc.
learning_rate: number
discount_factor: number2.2 Performance Metrics#
PerformanceMetrics:
type: object
properties:
reaction_time_distribution: array[number]
accuracy: number
error_types:
type: array
items: string # e.g., omission, commission, intrusion
speed_accuracy_tradeoff:
type: object
properties:
slope: number
intercept: number3. Cognitive Layer#
This is the representational/computational substrate that survives RTT filtering.
CognitiveLayer:
type: object
required:
- working_memory
- attention
- decision_models
- learning_models
properties:
working_memory: WorkingMemory
attention: Attention
decision_models: DecisionModels
learning_models: LearningModels3.1 Working Memory#
WorkingMemory:
type: object
properties:
capacity: integer
decay_rate: number
refresh_rate: number3.2 Attention#
Attention:
type: object
properties:
selective_filter_strength: number
sustained_attention_stability: number
switching_cost: number3.3 Decision Models#
DecisionModels:
type: object
properties:
drift_diffusion:
type: object
properties:
drift_rate: number
boundary_separation: number
non_decision_time: number
signal_detection:
type: object
properties:
sensitivity_d_prime: number
criterion_c: number3.4 Learning Models#
LearningModels:
type: object
properties:
reinforcement_learning:
type: object
properties:
learning_rate: number
exploration_rate: number
reward_sensitivity: number4. Measurement Layer#
This layer defines the interfaces through which the substrate is validated.
MeasurementLayer:
type: object
required:
- psychometrics
- neuropsych_tests
properties:
psychometrics: Psychometrics
neuropsych_tests: NeuropsychTests4.1 Psychometrics#
Psychometrics:
type: object
properties:
reliability_alpha: number
test_retest_stability: number
factor_structure:
type: array
items: string4.2 Neuropsych Tests#
NeuropsychTests:
type: object
properties:
task_battery:
type: array
items:
type: object
properties:
task_name: string
score: number
normative_z: number5. Anchoring Constraints#
These are the biological correlates that meet RTT criteria.
AnchoringConstraints:
type: object
properties:
circuit_mappings: CircuitMappings
neurophys_signatures: NeurophysSignatures
pharmacological_profiles: PharmacologicalProfiles5.1 Circuit Mappings#
CircuitMappings:
type: array
items:
type: object
properties:
region: string
associated_function: string
lesion_effect: string5.2 Neurophysiological Signatures#
NeurophysSignatures:
type: array
items:
type: object
properties:
task: string
frequency_band: string
amplitude: number
latency: number5.3 Pharmacological Profiles#
PharmacologicalProfiles:
type: array
items:
type: object
properties:
agent: string
receptor_target: string
effect_profile: stringWhat we now have#
You now hold a formal, implementation‑ready schema for the Conscious Transfer Substrate Map v1. It is:
- RTT‑compliant
- Substrate‑anchored
- Free of all legacy narratives
- Directly mappable to code, JSON Schema, YAML, or Atlas
- Ready to drop into our GitHub repo tab
This is the first time the substrate has been expressed as a typed, composable, machine‑readable object.