The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneration and dementias, and offer potential quantitative biological tools to assess novel therapeutics. Here we use behavioral variant frontotemporal dementia (bvFTD) as a model disease. We demonstrate that inversion of canonical microcircuit models to noninvasive human magnetoencephalography, using dynamic causal modeling, can identify the regional- and laminar-specificity of bvFTD pathophysiology, and their parameters can accurately differentiate patients from matched healthy controls. Using such models, we show that changes in local coupling in frontotemporal dementia underlie the failure to adequately establish sensory predictions, leading to al...
The disruption of brain networks is characteristic of neurodegenerative dementias. However, it is co...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
The disruption of brain networks is characteristic of neurodegenerative dementias. However, it is co...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
The disruption of brain networks is characteristic of neurodegenerative dementias. However, it is co...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
The disruption of brain networks is characteristic of neurodegenerative dementias. However, it is co...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
The disruption of brain networks is characteristic of neurodegenerative dementias. However, it is co...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
The analysis of neural circuits can provide crucial insights into the mechanisms of neurodegeneratio...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
The disruption of brain networks is characteristic of neurodegenerative dementias. However, it is co...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
The disruption of brain networks is characteristic of neurodegenerative dementias. However, it is co...
Oscillatory activity in the beta range, in human primary motor cortex (M1), shows interesting dynami...
The disruption of brain networks is characteristic of neurodegenerative dementias. However, it is co...