IP Library › Granted Patent US 10,285,605
Granted Patent B2
US 10,285,605 · App. 15/716,906 · Granted May 14, 2019

Integrated optical neural probe

Inventors: Brian Jamieson (Severna Park, MD); Jennette Mateo (Columbia, MD)
Assignee: DIAGNOSTIC BIOCHIPS, INC.
A61B5/04001A61B5/0084A61B5/6848A61B5/6868A61N5/0622A61B2018/2266A61B2018/2272A61B2562/046A61N2005/065A61N2005/0612
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Quick Facts
Patent No.
US 10,285,605
App. No.
15/716,906
Granted
May 14, 2019
Kind
B2
Abstract

In certain embodiments, a neural probe comprises a substrate comprising elongated shanks for penetrating neural tissue, each comprising a proximal end and a distal end; at least one optical source integral to the neural probe for illuminating the neural tissue; and microelectrodes located proximate the distal end of the elongated shanks for monitoring neuronal activity. In certain embodiments, a method of monitoring neuronal activity comprises implanting the neural probe into a test subject such that the elongated shanks protrude into neural tissue of the test subject; illuminating the neural tissue with the at least one optical source; and measuring neuronal activity in response to illuminating the neural tissue. In certain embodiments, a device comprises a semiconductor chip; at least one optical source integral to the semiconductor chip; and sensor elements integral to the semiconductor chip for collecting data responsive to light emitted from the at least one optical source.

Claims (18)

1. A neural probe, comprising:

a semiconductor substrate comprising a back end and one or more elongated shanks for penetrating neural tissue, each elongated shank comprising a proximal end and a distal end;

at least one optical source integral to the neural probe for illuminating the neural tissue,

wherein the optical source is located proximate the distal end of one or more elongated shanks such that, when the probe is implanted, the neural tissue may be illuminated without the use of an optical waveguide; and

one or more conductive microelectrodes located proximate the distal end of one or more of the elongated shanks for monitoring neural activity,

wherein the at least one optical source comprises a buffer layer, an active semiconductor layer comprising a III-V semiconductor, and a passivation layer.

2. The neural probe of claim 1 , further comprising readout circuitry electrically connected to the one or more microelectrodes.

3. The neural probe of claim 1 , the back end further comprising a power source electrically connected to the at least one optical source.

4. The neural probe of claim 1 , wherein the one or more conductive microelectrodes are lithographically printed on one or more of the elongated shanks.

5. The neural probe of claim 1 , further comprising at least one of a lens, a reflector and a grating configured to direct light from the at least one optical source to illuminate the neural tissue.

6. The neural probe of claim 1 , wherein the at least one optical source is a flip chip bonded to a silicon substrate.

7. The neural probe of claim 1 , wherein the at least one optical source is integrated with the neural probe by silicon microfabrication.

8. A method of monitoring neuronal activity comprising:

implanting the neural probe of claim 1 into a test subject such that the one or more elongated shanks protrude into neural tissue of the test subject;

illuminating the neural tissue with the at least one optical source; and

measuring neuronal activity with the microelectrodes in response to illuminating the neural tissue.

9. The method of claim 8 , further comprising transmitting the measured neuronal activity to an analysis unit remote from the test subject.

10. The method of claim 8 , wherein the test subject is a selected one of an animal and a human.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2019
From: JAMIESON, BRIAN; MATEO, JENNETTE
To: DIAGNOSTIC BIOCHIPS, INC.
Reel/Frame 048763/0266 →
Continuity (2)
Continuation 13190441 · Jul 25, 2011
Related Publication 20180028119A1 · Feb 1, 2018