Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans

KL Marks, DT Martel, C Wu, GJ Basura… - Science Translational …, 2018 - science.org
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory nerve …

Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans.

KL Marks, DT Martel, C Wu, GJ Basura… - Science …, 2018 - search.ebscohost.com
Noninvasive bimodal auditory stimulation targets the dorsal cochlear nucleus and reduces
tinnitus in guinea pigs and humans. The sound of silence: Tinnitus reduces quality of life for …

Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans

KL Marks, DT Martel, C Wu, GJ Basura, LE Roberts… - 2018 - pubmed.ncbi.nlm.nih.gov
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory nerve …

Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans.

KL Marks, DT Martel, C Wu, GJ Basura… - Science Translational …, 2018 - europepmc.org
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory-nerve …

[PDF][PDF] Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans

KL Marks, DT Martel, C Wu, GJ Basura, LE Roberts… - 2018 - neosensory.com
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory nerve …

[PDF][PDF] Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans

KL Marks, DT Martel, C Wu, GJ Basura - digilander.libero.it
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory-nerve …

[PDF][PDF] Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans

KL Marks, DT Martel, C Wu, GJ Basura, LE Roberts… - 2018 - hnplab.mcmaster.ca
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory nerve …

[PDF][PDF] Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans

KL Marks, DT Martel, C Wu, GJ Basura, LE Roberts… - 2018 - researchgate.net
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory nerve …

[PDF][PDF] Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans

KL Marks, DT Martel, C Wu, GJ Basura, LE Roberts… - 2018 - academia.edu
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory nerve …

[HTML][HTML] Auditory-somatosensory bimodal stimulation desynchronizes brain circuitry to reduce tinnitus in guinea pigs and humans

KL Marks, DT Martel, C Wu, GJ Basura… - Science translational …, 2018 - ncbi.nlm.nih.gov
The dorsal cochlear nucleus is the first site of multisensory convergence in mammalian
auditory pathways. Principal output neurons, the fusiform cells, integrate auditory-nerve …