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US Patent 8956274 Transcranial magnetic stimulation field shaping

Patent 8956274 was granted and assigned to Cervel Neurotech on February, 2015 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Current Assignee
Cervel Neurotech
Cervel Neurotech
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
89562740
Patent Inventor Names
David J. Mishelevich0
M. Bret Schneider0
Date of Patent
February 17, 2015
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Patent Application Number
128382990
Date Filed
July 16, 2010
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Patent Citations Received
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US Patent 12121719 Non-invasive neural interface
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US Patent 11883643 Systems and methods for treatment of a patient including RF and electrical energy
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US Patent 12076576 Methods and devices for aesthetic treatment of biological structures by radiofrequency and magnetic energy
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US Patent 12109426 Aesthetic method of biological structure treatment by magnetic field
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US Patent 12109427 Aesthetic method of biological structure treatment by magnetic field
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US Patent 12115365 Device and method for unattended treatment of a patient
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US Patent 11766564 Ocular stimulation method and system
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US Patent 11865340 Apparatus and method for microcurrent-stimulation therapy
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Patent Primary Examiner
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Christine Matthews
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Patent abstract

Described herein are Transcranial Magnetic Simulation (TMS) systems and methods of using them for emitting focused, or shaped, magnetic fields for TMS. In particular, described herein are arrays of TMS electromagnets comprising at least one primary (e.g., central) TMS electromagnet and a plurality of secondary (e.g., lateral or surrounding) TMS electromagnets. The secondary TMS electromagnets are arranged around the primary TMS electromagnet(s), and are typically configured to be synchronously fired with the primary TMS electromagnets. Secondary TMS electromagnets may be fired at a fraction of the power used to energize the primary TMS electromagnet to shape the resulting magnetic field. The secondary TMS electromagnets may be stimulated at opposite polarity to the primary TMS electromagnet(s). Focusing in this manner may prevent or reduce stimulation of adjacent non-target brain regions.

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