DR. JOSEF PARVIZI, MD PHD
Neurology at Pasteur Dr, Palo Alto, CA

License number
California A94400
Category
Neurology
Type
Clinical Neurophysiology
Address
Address
300 Pasteur Dr ROOM H3135, Palo Alto, CA 94305
Phone
(650) 723-2300
(650) 725-6648

Organization information

See more information about JOSEF PARVIZI at bizstanding.com

Josef Parvizi MD,PHD

300 Pasteur Dr, Stanford, CA 94305

Industry:
Neurologist
Phone:
(650) 725-6648 (Phone)
Josef Parvizi

Professional information

Josef Parvizi Photo 1

Dr. Josef Parvizi, Stanford CA - MD (Doctor of Medicine)

Specialties:
Neuropsychiatry (Neurology)
Address:
Neuroscience Clinic Stanford
300 Pasteur Dr STE A301, Stanford 94305
(650) 723-6469 (Phone)
Certifications:
Neurology, 2008
Awards:
Healthgrades Honor Roll
Languages:
English
Hospitals:
Neuroscience Clinic Stanford
300 Pasteur Dr STE A301, Stanford 94305
Stanford Hospital and Clinics
300 Pasteur Dr, Stanford 94305
Education:
Medical School
Universitetet I Oslo, Det Medisinske Fakultet
Graduated: 1995


Josef Parvizi Photo 2

Josef Parvizi, Stanford CA

Specialties:
Clinical Neurophysiologist
Address:
300 Pasteur Dr, Stanford, CA 94305
Board certifications:
American Board of Psychiatry and Neurology Certification in Neurology (Psychiatry and Neurology)


Josef Parvizi Photo 3

Josef Parvizi, Stanford CA

Specialties:
Neurology, Clinical Neurophysiology
Work:
Stanford Hospital and Clinics
300 Pasteur Dr, Stanford, CA 94305
Education:
University Of Oslo Medical Faculty (1995)


Josef Parvizi Photo 4

Method Of Sonifying Brain Electrical Activity

US Patent:
2013032, Dec 5, 2013
Filed:
May 30, 2013
Appl. No.:
13/905377
Inventors:
Josef Parvizi - Palo Alto CA, US
International Classification:
A61B 5/00, A61B 5/04, A61B 5/0476
US Classification:
600544
Abstract:
A digital processor system having one or more processors and memory obtains a time-domain signal representing brain activity, the time-domain signal having a time varying signal value. The system concurrently generates a set of acoustic parameters, including a plurality of time-varying acoustic parameters, where one or more of the plurality of time-varying acoustic parameters is modulated in accordance with at least the signal value of the time-domain signal. The system combines the concurrently generated set of acoustic parameters to produce a representation of an acoustic signal corresponding to the time-domain signal, where the acoustic signal, in audible form, manifests one or more audibly discernible variations across a plurality of stages of a brain activity event.