Synaptic group multipliers. Intra-backbone connections are stronger than those between the SF neurons; the SF population receives stronger inhibitory input than backbone neurons.
<p>Synaptic group multipliers. Intra-backbone connections are stronger than those between the SF neurons; the SF population receives stronger inhibitory input than backbone neurons.</p>
محفوظ في:
| المؤلف الرئيسي: | Michael Satchell (21560808) (author) |
|---|---|
| مؤلفون آخرون: | Edith Butel-Fry (21560811) (author), Zahraa Noureddine (21560814) (author), Alexis Simmons (21560817) (author), Nicolette Ognjanovski (4929175) (author), Sara J. Aton (8230875) (author), Michal R. Zochowski (7848300) (author) |
| منشور في: |
2025
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| الموضوعات: | |
| الوسوم: |
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مواد مشابهة
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Activation and segregation of SF neurons belonging to EB 1/EB 2 as a function of activation of neurons shared by both memories (i.e., SF sub-population that has largest number of connections with backbones of both memories; group denoted as violet on Figs 4, 5, S2, S4, and S5).
حسب: Michael Satchell (21560808)
منشور في: (2025) -
Activation and segregation of the recruited SF representations as a function of length of reactivation bouts of memory 1 and memory 2 backbones.
حسب: Michael Satchell (21560808)
منشور في: (2025) -
Activation and separation of the recruited SF representations as a function of activation delay between reactivation bouts of memory 1 and memory 2 backbones.
حسب: Michael Satchell (21560808)
منشور في: (2025) -
Activation and segregation of memory 1 and memory 2 in SF layer as a function of connection multiplier, (see methods).
حسب: Michael Satchell (21560808)
منشور في: (2025) -
Qualitatively same results in terms of differential activation of SF cells for ACh<sup>+</sup> and ACh- states is obtained while keeping inhibition level to EB and SF populations the same.
حسب: Michael Satchell (21560808)
منشور في: (2025)