Objective. Low-intensity focused ultrasound stimulation (LIFUS) emerges as an attracting technology for noninvasive modulation of neural circuits, yet the underlying action mechanisms remain unclear. The neuronal intramembrane cavitation excitation (NICE) model suggests that LIFUS excites neurons through a complex interplay between microsecond-scale mechanical oscillations of so-called sonophores in the plasma membrane and the development of a millisecond-scale electrical response. This model predicts cell-type-specific responses that correlate indirectly with experimental data, but it is computationally expensive and difficult to interpret, which hinders its potential validation. Here, we introduce a multi-scale optimized neuronal intramem...
Ultrasonic neuromodulation has the unique potential to provide non-invasive control of neural activi...
Objective Ultrasound stimulation is an emerging neuromodulation technique, for which the exact mecha...
University of Minnesota Ph.D. dissertation.August 2020. Major: Neuroscience. Advisor: Karen Mesce. ...
Objective. Low-intensity focused ultrasound stimulation (LIFUS) emerges as an attracting technology ...
Over the last decade, Low Intensity Focused Ultrasound Stimulation (LIFUS) has emerged as an attract...
Low-Intensity Focused Ultrasound Stimulation (LIFUS) holds promise for the remote modulation of neur...
Objective: To investigate the importance of membrane charge oscillations and redistribution in multi...
Low-intensity ultrasonic waves can remotely and nondestructively excite central nervous system (CNS)...
Objective. To design a computationally efficient model for ultrasonic neuromodulation (UNMOD) of mor...
Ultrasound has been used to manipulate cells in both humans and animal models. While intramembrane c...
Deep brain stimulation and vagal nerve stimulation are therapeutically effective in treating some ne...
Possessing the ability to noninvasively elicit brain circuit activity yields immense experimental an...
Deep brain stimulation and vagal nerve stimulation are therapeutically effective in treating some ne...
Possessing the ability to noninvasively elicit brain circuit activity yields immense experimental an...
Ultrasound stimulation (US) has recently emerged as a promising technology to achieve reliable, sele...
Ultrasonic neuromodulation has the unique potential to provide non-invasive control of neural activi...
Objective Ultrasound stimulation is an emerging neuromodulation technique, for which the exact mecha...
University of Minnesota Ph.D. dissertation.August 2020. Major: Neuroscience. Advisor: Karen Mesce. ...
Objective. Low-intensity focused ultrasound stimulation (LIFUS) emerges as an attracting technology ...
Over the last decade, Low Intensity Focused Ultrasound Stimulation (LIFUS) has emerged as an attract...
Low-Intensity Focused Ultrasound Stimulation (LIFUS) holds promise for the remote modulation of neur...
Objective: To investigate the importance of membrane charge oscillations and redistribution in multi...
Low-intensity ultrasonic waves can remotely and nondestructively excite central nervous system (CNS)...
Objective. To design a computationally efficient model for ultrasonic neuromodulation (UNMOD) of mor...
Ultrasound has been used to manipulate cells in both humans and animal models. While intramembrane c...
Deep brain stimulation and vagal nerve stimulation are therapeutically effective in treating some ne...
Possessing the ability to noninvasively elicit brain circuit activity yields immense experimental an...
Deep brain stimulation and vagal nerve stimulation are therapeutically effective in treating some ne...
Possessing the ability to noninvasively elicit brain circuit activity yields immense experimental an...
Ultrasound stimulation (US) has recently emerged as a promising technology to achieve reliable, sele...
Ultrasonic neuromodulation has the unique potential to provide non-invasive control of neural activi...
Objective Ultrasound stimulation is an emerging neuromodulation technique, for which the exact mecha...
University of Minnesota Ph.D. dissertation.August 2020. Major: Neuroscience. Advisor: Karen Mesce. ...