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Fuhrmann, M.

Publications and source records attributed to Fuhrmann, M..

2 recordsLinked to original sources

Restoring memory by optogenetic synchronization of hippocampal oscillations in an Alzheimer’s disease mouse model

Disrupted neural oscillations are a feature of Alzheimers disease (AD). We observed reduced frequency of theta oscillations in the hippocampal local field potential (LFP) in a mouse model of beta-amyloidosis. By restoring the temporal organization of theta oscillations using LFP-guided closed-loop optogenetic stimulation of parvalbumin-positive interneurons, we could rescue memory deficits of APP/PS1 mice in the novel object recognition test.

neuroscience

Memory trace superimposition impairs recall in a mouse model of AD

Learning and memory processes depend on the hippocampus and are impaired in Alzheimers disease (AD). Active neuronal ensembles form an engram by encoding information during learning. Their reactivation is required for memory recall. However, it remains unresolved whether the engram in CA1 principal neurons is impaired under AD-like conditions. We used two-photon in vivo imaging to visualize the expression of the immediate early gene c-fos within CA1 neurons during contextual fear conditioning and retrieval. Surprisingly, we identified engrams in wild-type mice and in the mouse model of AD indicating intact memory formation. However, under AD-like conditions engrams were superimposed by a high number of newly recruited fosGFP+ neurons during memory recall. This superimposition resembled the network configuration of wild-type mice exposed to a novel context. Artificial superimposition of the memory trace during recall in wild-type mice was sufficient to induce memory impairment. Thus, we propose superimposition of the CA1 memory trace as a mechanism for memory impairment in a mouse model of AD.\n\nHighlightsO_LIDecreased fosGFP expression in direct vicinity to amyloid-{beta} plaques\nC_LIO_LIIntact engram in CA1 of APP/PS1 mice\nC_LIO_LIImpurity of the retrieval network in CA1 is sufficient to impair memory recall\nC_LI\n\nPoll et al. present a novel mechanism for memory impairment in a mouse model of AD. The potential memory trace was found intact in the CA1 region of the hippocampus. However, excessive neuronal activity during retrieval, was superimposing the memory trace in a mouse model of AD.

neuroscience