Loss of neuronal population organization links pathology to behavior in a model of Alzheimer's disease
Ruff, D. A.; Sheets, D. E. G.; Srinath, R.; Diniz, G. B.; Griggs, D. J.; Beckman, D.; Ott, S. P.; Schwartz, K.; Erices, C. T.; Muller, S.; Kordower, J. H.; Morrison, J. H.; Cohen, M. R.
Show abstract
Alzheimer's disease (AD) and related dementias (ADRD) are defined by molecular and cellular pathology and cognitive decline, but linking these levels requires understanding how pathology alters large-scale neuronal activity. We longitudinally tracked behavior, multi-area neuronal population activity, and fluid and histological biomarkers in a macaque model of early-stage ADRD. As pathology progressed, visually guided behavior became increasingly disorganized, reflected in less structured exploration despite preserved task performance. Guided by systems neuroscience principles linking neuronal population activity with organized goal-directed behavior, we found progressive reductions in coordinated neuronal population activity within and between visual and parietal cortices, even as single-neuron tuning and basic feature encoding remained stable. These changes emerged when tau pathology was largely confined to regions providing feedback to visual cortex. This disorganized state appears modifiable: proof-of-concept methylphenidate administration was associated with transient improvement in behavioral organization. Together, these findings identify disruption of neuronal population organization as a defining feature of early-stage ADRD and frame early dysfunction as a disorder of coordinated population activity.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genetic Disruption of WASHC4 Drives Endo-lysosomal Dysfunction and Cognitive-Movement Impairments in Mice and Humans 94%
- Downregulation of Dickkopf-3, a Wnt antagonist elevated in Alzheimer's disease, restores synapse integrity and memory in a disease mouse model 93%
- Biophysical Kv channel alterations dampen excitability of cortical PV interneurons and contribute to network hyperexcitability in early Alzheimer's 93%
Similar papers in this journal
Similar papers in this journal
- Pathological tau alters head direction signaling and induces spatial disorientation 95%
- Spread of pathological human Tau from neurons to oligodendrocytes and loss of high-firing pyramidal neurons in ageing mice 95%
- Astrocyte calcium dysfunction causes early network hyperactivity in Alzheimer's Disease 94%
Similar papers in this journal
- Efficient propagation of misfolded tau between individual neurons occurs in absence of degeneration 94%
- Amyloid pathology impairs experience-dependent inhibitory synaptic plasticity 92%
- Endothelial Cells are Heterogeneous in Different Brain Regions and are Dramatically Altered in Alzheimer's Disease 92%
Similar papers in this journal
- Aβ42 oligomers trigger synaptic loss through CAMKK2-AMPK-dependent effectors coordinating mitochondrial fission and mitophagy 94%
- Single-nucleus epigenomic dysregulation unmasks genetic risk-associated neurodegenerative glia states 93%
- Disruption of the grid cell network in a mouse model of early Alzheimer's disease 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.