Artificial sharp-wave-ripples to support memory and counter neurodegeneration
Искусственные острые волны-рипплы для поддержки памяти и противодействия нейродегенерации
2023-10-21
SCID: 54.1/6sxb2tbz
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Alzheimer's diseasehigh-frequency visual stimulationmemory consolidationneurodegenerative diseasessharp-wave-ripples
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Abstract (AI)
Information processed in our sensory neocortical areas is transported to the hippocampus during memory encoding, and between hippocampus and neocortex during memory consolidation, and retrieval. Short bursts of high-frequency oscillations, so called sharp-wave-ripples, have been proposed as a potential mechanism for this information transfer: They can synchronize neural activity to support the formation of local neural networks to store information, and between distant cortical sites to act as a bridge to transfer information between sensory cortical areas and hippocampus. In neurodegenerative diseases like Alzheimer's Disease, different neuropathological processes impair normal neural functioning and neural synchronization as well as sharp-wave-ripples, which impairs consolidation and retrieval of information, and compromises memory. Here, we formulate a new hypothesis, that artificially inducing sharp-wave-ripples with noninvasive high-frequency visual stimulation could potentially support memory functioning, as well as target the neuropathological processes underlying neurodegenerative diseases. We also outline key challenges for empirical tests of the hypothesis.
Key Findings
1
Artificial sharp-wave-ripple induction may also target neuropathological processes underlying neurodegenerative diseases, although empirical testing faces key challenges.
2
Neurodegenerative diseases such as Alzheimer’s disease disrupt neural synchronization and sharp-wave-ripples, impairing memory consolidation and retrieval.
3
Sharp-wave-ripples are proposed as a mechanism for synchronizing local and distant neural activity during memory encoding, consolidation, and retrieval.
4
The paper hypothesizes that noninvasive high-frequency visual stimulation could artificially induce sharp-wave-ripples to support memory function.
Research Object
Artificially induced sharp-wave-ripples in hippocampal–neocortical memory networks using noninvasive high-frequency visual stimulation
Research Subject
The potential of artificial sharp-wave-ripples to synchronize neural activity, support memory encoding, consolidation, and retrieval, and counter neurodegeneration-related impairments
Publication Details
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2023-10-21
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