This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal cord to monitor local hemodynamic response to epidural electrical spinal cord stimulation (SCS) on two small and large animal models. SCS has been successfully applied to control chronic refractory pain and recently was evolved to alleviate motor impairment in Parkinson's disease and after spinal cord injury. At present, however, the mechanisms underlying SCS remain unclear, and current methods for monitoring SCS are limited in their capacity to provide the required sensitivity and spatiotemporal resolutions to evaluate functional changes in response to SCS. fUS is an emerging technology that has recently shown promising results in monitoring a...
A comprehensive review of the literature-to-date on functional magnetic resonance imaging (fMRI) of ...
The spinal cord—as the principal pathway between the brain and peripheral nervous system—plays an im...
Purpose: To demonstrate that it is possible to acquire accurate functional magnetic resonance images...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
© 2020 The Authors In this study functional ultrasound (fUS) imaging has been implemented to explore...
Purpose: Electrical epidural spinal cord stimulation (SCS) is used as a treatment for chronic pain a...
Functional ultrasound imaging is a method recently developed to assess brain activity via hemodynami...
Focused ultrasound (FUS) can modulate activity in the central nervous system of animals, however the...
Abstract Functional magnetic resonance imaging of the spinal cord (spinal fMRI) has facilitated the ...
Recent evidence appears to indicate that neurons, responsible for our perception of the world around...
A comprehensive review of the literature-to-date on functional magnetic resonance imaging (fMRI) of ...
The spinal cord—as the principal pathway between the brain and peripheral nervous system—plays an im...
Purpose: To demonstrate that it is possible to acquire accurate functional magnetic resonance images...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
This study presents the first implementation of functional ultrasound (fUS) imaging of the spinal co...
© 2020 The Authors In this study functional ultrasound (fUS) imaging has been implemented to explore...
Purpose: Electrical epidural spinal cord stimulation (SCS) is used as a treatment for chronic pain a...
Functional ultrasound imaging is a method recently developed to assess brain activity via hemodynami...
Focused ultrasound (FUS) can modulate activity in the central nervous system of animals, however the...
Abstract Functional magnetic resonance imaging of the spinal cord (spinal fMRI) has facilitated the ...
Recent evidence appears to indicate that neurons, responsible for our perception of the world around...
A comprehensive review of the literature-to-date on functional magnetic resonance imaging (fMRI) of ...
The spinal cord—as the principal pathway between the brain and peripheral nervous system—plays an im...
Purpose: To demonstrate that it is possible to acquire accurate functional magnetic resonance images...