caTrace
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-22
@@ -203,12 +203,12 @@ interacting: NTreleaseHigh
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##### Ca2+TracesAccumulationLow: interacting
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Serve a dare la velocita' al trasporto di vesicles da RP a RRP. The biological meaning is that a synapse that has just been through a burst is primed for fast recovery — the molecular machinery for vesicle docking is already engaged, calcium-dependent priming factors are still elevated, and the system is in a ready state. A synapse that has been silent for several seconds has cooled down and replenishes slowly.
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So after one second of silence CaTrace has fallen to ~37% of its peak value, after two seconds to ~14%, after three seconds to ~5%. It asymptotes toward zero but never exactly reaches it. Between spikes, Ca2+ falls toward zero as the pumps clear it.
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The result is that Tr_Ca encodes not the instantaneous calcium level but the recent history of calcium activity — a smoothed, time-averaged measure of how active the synapse has been over the past one to two seconds.
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Serve a dare la velocita' al trasporto di vesicles da RP a RRP.
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- The biological meaning is that a synapse that has just been through a burst is primed for fast recovery — the molecular machinery for vesicle docking is already engaged, calcium-dependent priming factors are still elevated, and the system is in a ready state. A synapse that has been silent for several seconds has cooled down and replenishes slowly.
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- So after one second of silence CaTrace has fallen to ~37% of its peak value, after two seconds to ~14%, after three seconds to ~5%. It asymptotes toward zero but never exactly reaches it. Between spikes, Ca2+ falls toward zero as the pumps clear it. The result is that CaTrace encodes not the instantaneous calcium level but the recent history of calcium activity — a smoothed, time-averaged measure of how active the synapse has been over the past one to two seconds.
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- Abbiamo 3 tracce, high, medium and low. Andiamo a verificare se una di queste e' high per fare la modulazione
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- RF e' a 10, questo dovrebbe essere un RF di campionamento durante AP_ctx context che dovremmo assicurarci sia tipo 100. Il che implicherebbe 10 campionamenti.
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---
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```Gen
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@@ -216,26 +216,39 @@ interacting: Ca2+TracesAccumulationLow
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contained_by: PRESYNAPSE
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in_context: AP_ctx
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rf: ( active: 24x ) # Low
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rf: ( active: 10x )
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hypothesis: (Ca2+ emptiness)
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action: [CaTraceLow increase]
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trace: None
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```
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##### Ca2+TracesAccumulationMedium: interacting
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```Gen
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interacting: Ca2+TracesAccumulationMedium
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contained_by: PRESYNAPSE
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in_context: AP_ctx
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rf: ( active: 10x )
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hypothesis: (Ca2+ mediumness)
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action: [CaTrace increase]
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action: [CaTraceMed increase]
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trace: None
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```
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##### Ca2+TracesAccumulationHigh: interacting
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Qui le tracce CaTrace si accumulano di piu' perche' RF e' minore, se c'e' la condizione, perche' va a fare il controllo piu' spesso.
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```Gen
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interacting: Ca2+TracesAccumulationHigh
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contained_by: PRESYNAPSE
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in_context: AP_ctx
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rf: ( active: 12x ) # high
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rf: ( active: 10x ) # high
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hypothesis: (Ca2+ fullness)
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action: [CaTrace increase]
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action: [CaTraceHigh increase]
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trace: None
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```
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@@ -265,17 +278,27 @@ interacting: eCBClearance
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##### Ca2+TracesClearance: interacting
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Qui non facciamo un flush di Catrace, riduciamo ogni mezzo secondo (context) di un RF di questo episodio.
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Qui non facciamo un flush di CaTraceX, riduciamo ogni mezzo secondo (context) di un RF di questo episodio.
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```Gen
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interacting: Ca2+TracesClearance
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contained_by: PRESYNAPSE
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in_context: NOT AP_ctx
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rf: ( active: 24x ) # Slow
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rf: ( active: 30x ) # Slow
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hypothesis: NOT (CaTrace empty)
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action: [CaTRace decrease]
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hypothesis: NOT (CaTraceHigh empty)
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action: [CaTRaceHigh decrease]
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trace: None
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hypothesis: NOT (CaTraceMedium empty)
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action: [CaTRaceMedium decrease]
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trace: None
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hypothesis: NOT (CaTraceLow empty)
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action: [CaTRaceLow decrease] hypothesis: NOT (CaTraceHigh empty)
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action: [CaTRaceHigh decrease]
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trace: None
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trace: None
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```
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@@ -294,7 +317,7 @@ interacting: RPShuttleLow
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in_context: NOT AP_ctx
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rf: ( active: 48x ) # Low
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hypothesis: (CaTrace emptiness) OR
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hypothesis: (CaTraceLow fullness) OR
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(RP emptiness) OR
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(RRP fullness)
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action: [RP decrease, RRP increase]
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@@ -314,10 +337,10 @@ interacting: RPShuttleMedium
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in_context: AP_ctx
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rf: ( active: 24x ) # Medium
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hypothesis: (CaTrace mediumness) AND (RP mediumness) AND (RRP mediumness) OR
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(CaTrace fullness) AND (RP mediumness) AND (RRP mediumness) OR # signal boost
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(CaTrace mediumness) AND (RP fullness) AND (RRP mediumness) OR # supply boost
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(CaTrace mediumness) AND (RP mediumness) AND (RRP emptiness) # vacancy boost
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hypothesis: (CaTraceMedium fullness) AND (RP mediumness) AND (RRP mediumness) OR
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(CaTraceHigh fullness) AND (RP mediumness) AND (RRP mediumness) OR # signal boost
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(CaTraceMedium fullness) AND (RP fullness) AND (RRP mediumness) OR # supply boost
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(CaTraceMedium fullness) AND (RP mediumness) AND (RRP emptiness) # vacancy boost
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action: [RP decrease, RRP increase]
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trace: None
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```
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@@ -335,9 +358,9 @@ interacting: RPShuttleHigh
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in_context: AP_ctx
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rf: ( active: 12x ) # Fast
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hypothesis: (CaTrace fullness) AND (RP fullness) AND (RRP mediumness) OR # signal + supply
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(CaTrace fullness) AND (RP mediumness) AND (RRP emptiness) OR # signal + vacancy
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(CaTrace mediumness) AND (RP fullness) AND (RRP emptiness) # supply + vacancy
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hypothesis: (CaTraceHigh fullness) AND (RP fullness) AND (RRP mediumness) OR # signal + supply
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(CaTraceHigh fullness) AND (RP mediumness) AND (RRP emptiness) OR # signal + vacancy
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(CaTraceMedium fullness) AND (RP fullness) AND (RRP emptiness) # supply + vacancy
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action: [RP decrease, RRP increase]
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trace: None
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```
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