@zmartyniuk_akcent: Widzimy się już dziś w Częstochowie! 🎶🔥

Zenon Martyniuk
Zenon Martyniuk
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Region: PL
Saturday 14 December 2024 14:05:17 GMT
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jagajagodaja
jagajagodaja :
ileż tu złośliwości ...a ja Pana pana bardzo lubię
2024-12-14 17:50:51
68
ewciaj24
ewciaj24 :
Koncert w adwencie 🤔 to nie dla mnie
2024-12-14 16:38:15
40
wiktoria.._.._em
Wiktoria :
P Zenek Martyniuk to jest facet inteligentny i z klasą dobry serdeczny i rodzinny i dlatego tłumy go uwielbiają pozdrawiam p serdecznie i życzę samych sukcesów
2024-12-14 20:46:42
27
andyxxxx342
Andy Xxxx342 :
A będzie Kurski na scenie? Bo jak nie to nie jadę
2024-12-14 14:22:20
28
sportowezakapiory3
Darunia Sportowy Zakapior :
Na pewno , na pewno , pewnie , jasne , zobaczymy czas pokaże 😂
2024-12-14 15:28:30
9
pawel_.2
Paweł 22090402 :
Oj bida Kurski nie zaprasza do tv
2024-12-14 18:11:45
20
kryszak80
kryszak :
Sympatyczny gość 🥰🥰🥰
2024-12-14 19:52:43
11
user3250165859955
barabara :
Jesteś dobrym człowiekiem pozdrawiam serdecznie 🥰🥰🥰🥰🥰🥰🥰🥰🥰🥰🥰
2024-12-14 20:03:18
5
hanna.m4555
Hanna M :
uwielbiam pana piosenki Pozdrawiam
2024-12-14 19:40:26
6
perelka1995
Basia :
Podobają mi się Pana piosenki I uwielbiam je słuchać 🥰🥰🥰
2024-12-14 21:52:21
6
helagawinecka
Hela Z Kujaw :
Bardzo lubię Pana piosenki Panie Zenku . pozdrawiam
2024-12-14 20:35:06
5
barbaragoraj851
Barbara Goraj :
pan Zenon pięknie śpiewa... uwielbiam pana piosenki😘😘😘
2024-12-14 20:39:32
5
elzbieta.zegota
Elzbieta Zegota :
Szczytno pozdrawia ❤️❤️❤️
2024-12-14 16:58:52
5
user11121q1
user11121q1 :
pozdrawiamy 🥰
2024-12-14 17:07:20
5
aleksandra0000tiktok
💕OLA💕 :
Uwielbiam Pana ❤️❤️
2024-12-14 19:57:53
5
renatarenata2659
renatarenata2659 :
👍👍👍👍Będę.Uwielbiam Pana.
2024-12-14 18:24:54
6
dyu245bi8g2i
dyu245bi8g2i :
Witam Panie Zenku i pozdrawiam 🥰
2024-12-14 15:48:11
6
anett748
Anett :
Super 🥰 czytając komentarze, mysle sobie ile tutaj jadu ludzi 🙈 wstyd za brak klasy...ale tego nie da się kuoić👌klae się poprostu ma
2024-12-14 21:50:43
5
mauzi0517
Mauzi :
Panie Zenku, niech się pan nie przejmuje zazdrosnikami. Podziwiam za klasę , ,,zielone oczy” i rozumiem 🌹
2024-12-14 15:34:47
17
piotrszczerba185
Piotr Szczerba185 :
o w Częstochowie to pewnie i Rydzyk będzie 🤣
2024-12-14 17:07:18
6
augustbbgreg
augustBBgreg :
Obym tego w życiu nie zobaczył 🤣😂❤️
2024-12-14 19:13:46
18
mariuszbartosiak03
mariuszbartosiak03 :
adwent?!!!?
2024-12-14 19:47:33
4
ela.chabowska
Ela Chabowska :
Pozdrawiam serdecznie 🥰
2024-12-15 13:32:20
2
magdalenamarina20
magdalenamarina20 :
Serdecznie pozdrawiam
2024-12-15 09:24:24
2
krystynaolszewska4
krystynaolszewska4 :
lubię twoje piosenki
2024-12-14 21:22:30
4
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Other Videos

Neuroscience has long assumed memory lives in the strength of individual synapses. Researchers just wiped out more than half of them in a mouse's brain — and the memories survived anyway.   Kazumasa Tanaka's team at the Okinawa Institute of Science and Technology trained mice on specific tasks — finding food hidden in a maze, associating a particular scent with a mild shock — then induced an artificial hibernation-like state for two days, using it as a way to dramatically remodel the brain and see what memory could survive.   The remodeling was severe. Hippocampal firing rates dropped by roughly 70%, and more than half of all synapses and their supporting dendritic spines in that region physically disappeared. By any conventional model, that scale of destruction should have erased the memories entirely.   When the mice warmed back up, they still performed the trained tasks and still displayed the expected fear response. Place-cell maps — the brain's internal representation of physical space — remained accurate too.   The synapse loss wasn't random. Isolated connections between memory-encoding
Neuroscience has long assumed memory lives in the strength of individual synapses. Researchers just wiped out more than half of them in a mouse's brain — and the memories survived anyway.   Kazumasa Tanaka's team at the Okinawa Institute of Science and Technology trained mice on specific tasks — finding food hidden in a maze, associating a particular scent with a mild shock — then induced an artificial hibernation-like state for two days, using it as a way to dramatically remodel the brain and see what memory could survive.   The remodeling was severe. Hippocampal firing rates dropped by roughly 70%, and more than half of all synapses and their supporting dendritic spines in that region physically disappeared. By any conventional model, that scale of destruction should have erased the memories entirely.   When the mice warmed back up, they still performed the trained tasks and still displayed the expected fear response. Place-cell maps — the brain's internal representation of physical space — remained accurate too.   The synapse loss wasn't random. Isolated connections between memory-encoding "engram" cells were the ones preferentially lost, while synapses tightly clustered together on the same dendritic branch were far more likely to survive. Even more strikingly, after normal hibernation cycles, lost connections often regrew in the exact same dendritic locations far more often than chance would predict — as if some deeper structural "address" persisted even after the physical connection itself vanished.   The implication is that memory may depend less on any single synapse and more on a resilient, higher-order clustering pattern linking engram cells together — a structure that could explain how memories survive the constant synaptic turnover of a living brain, and potentially why some memory can persist even through synapse loss seen in aging or neurodegenerative disease.   source: Tanaka, K., et al. (2026). Structural resilience of memory engrams through synaptic remodeling during hibernation. Science.

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