Hemodynamic changes in the brain are often used as surrogates of neuronal activity to infer the loci of brain activity. A major limitation of conventional Doppler ultrasound for the imaging of these changes is that it is not sensitive enough to detect the blood flow in small vessels where the major part of the hemodynamic response occurs. Here, we present a mu Doppler ultrasound method able to detect and map the cerebral blood volume (CBV) over the entire brain with an important increase in sensitivity. This method is based on imaging the brain at an ultrafast frame rate (1 kHz) using compounded plane wave emissions. A theoretical model demonstrates that the gain in sensitivity of the mu Doppler method is due to the combination of 1) the hi...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
AbstractFunctional ultrasound (fUS) is a novel neuroimaging technique, based on high-sensitivity ult...
We present functional ultrasound (fUS), a method for imaging transient changes in blood volume in th...
Functional ultrasound imaging is a method recently developed to assess brain activity via hemodynami...
AbstractFunctional ultrasound imaging is a method recently developed to assess brain activity via he...
Functional ultrasound (fUS) is a relatively new imaging modality to study the brain with a high spat...
The emergence of functional neuroimaging has dramatically accelerated our understanding of the human...
AbstractFunctional ultrasound imaging is a method recently developed to assess brain activity via he...
High frame rate Doppler ultrasound imaging provides a new way to image blood motion at thousands of ...
Functional ultrasound (fUS) is a neuroimaging method that uses ultrasound to track changes in cerebr...
Red blood cell velocity (RBCv), cerebral blood flow (CBF), and volume (CBV) are three key parameters...
Functional neuroimaging modalities are crucial for understanding brain function, but their clinical ...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
AbstractFunctional ultrasound (fUS) is a novel neuroimaging technique, based on high-sensitivity ult...
We present functional ultrasound (fUS), a method for imaging transient changes in blood volume in th...
Functional ultrasound imaging is a method recently developed to assess brain activity via hemodynami...
AbstractFunctional ultrasound imaging is a method recently developed to assess brain activity via he...
Functional ultrasound (fUS) is a relatively new imaging modality to study the brain with a high spat...
The emergence of functional neuroimaging has dramatically accelerated our understanding of the human...
AbstractFunctional ultrasound imaging is a method recently developed to assess brain activity via he...
High frame rate Doppler ultrasound imaging provides a new way to image blood motion at thousands of ...
Functional ultrasound (fUS) is a neuroimaging method that uses ultrasound to track changes in cerebr...
Red blood cell velocity (RBCv), cerebral blood flow (CBF), and volume (CBV) are three key parameters...
Functional neuroimaging modalities are crucial for understanding brain function, but their clinical ...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...
International audienceFunctional neuroimaging modalities are crucial for understanding brain functio...