International audienceThe brain areas activated by bilateral galvanic vestibular stimulation (GVS) were studied using functional magnetic resonance imaging. In six human volunteers, GVS led to activation in the region of the temporoparietal junction, the central sulcus, and the anterior interior intraparietal sulcus, which may correspond to macaque areas PIVC, 3aV, and 2v, respectively. In addition, activation was found in premotor regions of the frontal lobe, presumably analogous to areas 6pa and 8a in the monkey. Since these areas were not detected in previous studies using caloric vestibular stimulation, they could be related to the modulation of otolith afferent activity by GVS. However, the simple paradigm used did not allow separation...
The vestibular system is unique among the senses because of the entirely multisensory nature of its ...
Introduction: Human multimodal vestibular cortical regions are bilaterally anterior insulae and post...
Introduction: Human multimodal vestibular cortical regions are bilaterally anterior insulae and post...
International audienceThe brain areas activated by bilateral galvanic vestibular stimulation (GVS) w...
International audienceThe brain areas activated by bilateral galvanic vestibular stimulation (GVS) w...
International audienceThe cortical processing of vestibular information is not hierarchically organi...
International audienceThe cortical processing of vestibular information is not hierarchically organi...
International audienceThe cortical processing of vestibular information is not hierarchically organi...
IntroductionHuman multimodal vestibular cortical regions are bilaterally anterior insulae and poster...
The parieto-insular vestibular cortex (PIVC) plays a central role in the cortical vestibular network...
International audienceThe vestibular system contributes to the control of posture and eye movements ...
International audienceThe vestibular system contributes to the control of posture and eye movements ...
The vestibular system is unique among the senses because of the entirely multisensory nature of its ...
Recent imaging studies have reported the projection of semicircular canal signals onto wide regions ...
The vestibular system is unique among the senses because of the entirely multisensory nature of its ...
The vestibular system is unique among the senses because of the entirely multisensory nature of its ...
Introduction: Human multimodal vestibular cortical regions are bilaterally anterior insulae and post...
Introduction: Human multimodal vestibular cortical regions are bilaterally anterior insulae and post...
International audienceThe brain areas activated by bilateral galvanic vestibular stimulation (GVS) w...
International audienceThe brain areas activated by bilateral galvanic vestibular stimulation (GVS) w...
International audienceThe cortical processing of vestibular information is not hierarchically organi...
International audienceThe cortical processing of vestibular information is not hierarchically organi...
International audienceThe cortical processing of vestibular information is not hierarchically organi...
IntroductionHuman multimodal vestibular cortical regions are bilaterally anterior insulae and poster...
The parieto-insular vestibular cortex (PIVC) plays a central role in the cortical vestibular network...
International audienceThe vestibular system contributes to the control of posture and eye movements ...
International audienceThe vestibular system contributes to the control of posture and eye movements ...
The vestibular system is unique among the senses because of the entirely multisensory nature of its ...
Recent imaging studies have reported the projection of semicircular canal signals onto wide regions ...
The vestibular system is unique among the senses because of the entirely multisensory nature of its ...
The vestibular system is unique among the senses because of the entirely multisensory nature of its ...
Introduction: Human multimodal vestibular cortical regions are bilaterally anterior insulae and post...
Introduction: Human multimodal vestibular cortical regions are bilaterally anterior insulae and post...