IP Library Granted Patent US 11,612,516
Granted Patent B2
US 11,612,516 · App. 16/768,053 · Granted Mar 28, 2023

Immersive display system for eye therapies

Inventor: Luca Puglisi (Rome, IT)
Assignee: TEC MED S.R.L. TECNOLOGIE MEDICHE
A61F9/007A61B3/0058A61B3/132A61B3/145A61B90/361A61B2090/365A61B2090/367H04N13/344
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Quick Facts
Patent No.
US 11,612,516
App. No.
16/768,053
Granted
Mar 28, 2023
Kind
B2
Abstract

An immersive display system for eye therapies includes an ophthalmic microscope and: a double video camera, connected to a local network infrastructure; the double video camera oriented for filming the surgery operation; at least one computerized control unit, connected to the local network infrastructure, receiving images from the double video camera and processing them in a three-dimensional digital format; and at least one computerized controller, receiving the images processed by the computerized control unit. Also included is at least one helmet adapted to be worn on the head by the surgeon during the surgery operation, the helmet provided with a viewer arranged before the wearer's eyes, configured for three-dimensional image display, providing virtual reality content; the viewer allows the surgeon exclusive viewing of the three-dimensional images processed by the computerized control unit; the helmet being connected to the local network infrastructure to allow image reproduction in real time.

Claims (21)

1. An immersive display system for eye therapies, adapted to provide a surgeon with a three-dimensional image of ocular tissues during an ophthalmological surgery operation using an ophthalmic microscope ( 10 ), the immersive display system comprising:

a double video camera ( 20 ), installed on said ophthalmic microscope ( 10 ) and connected to a local network infrastructure ( 400 ), said double video camera ( 20 ) being oriented so as to continuously capture images of a scene of the surgery operation;

at least one computerized control unit ( 300 ), connected to at least one memory ( 320 ) and connected to said local network infrastructure ( 400 ), said computerized control unit ( 300 ) adapted to receive the images captured by said double video camera ( 20 ) and to process the images into a three-dimensional digital format, said computerized control unit ( 300 ) being adapted to automatically manage operative settings of said double video camera ( 20 ) for at least one of brightness, color, exposure and contrast;

a computerized controller ( 350 ), connected to said local network infrastructure ( 400 ) and adapted to receive the images processed by said computerized control unit ( 300 ); and

a helmet ( 50 ), adapted to be worn on the head by the surgeon during the surgery operation, said helmet ( 50 ) being provided with a viewer ( 51 ) that is adapted to be arranged in front of the eyes of the surgeon when the helmet is worn by the surgeon, the viewer configured to present the surgeon with a three-dimensional image display, and the helmet ( 50 ) being connected to said local network infrastructure ( 400 ),

the computerized controller ( 350 ) adapted to send the images processed by the computerized control unit ( 300 ) to the helmet ( 50 ) via the local network infrastructure,

said helmet ( 50 ) configured to receive the images via the local network infrastructure so as to allow reproduction of the images by means of said viewer ( 51 ) in real time,

said viewer ( 51 ) configured to provide the surgeon exclusive viewing of the three-dimensional images processed by said computerized control unit ( 300 ) and received from said computerized controller ( 350 ), and comprising a left display ( 52 ) and a right display ( 52 ′) respectively arranged to be located in front of the left eye and in front of the right eye of the surgeon wearing the helmet, said left and right displays cooperating to provide the surgeon with the reproduction of the images in a three-dimensional display mode,

wherein the images of the surgery operation are saved in said memory ( 320 ) together with information associating the images with the name of the patient, and

wherein the images of the surgery operation are saved in said memory ( 320 ) together with information associating the images with the name of the surgeon who executes the surgery operation.

2. The immersive display system for eye therapies according to claim 1 , wherein said computerized control unit ( 300 ) is configured to allow said surgeon to set operating parameters of said double video camera ( 20 ) and of said viewer ( 51 ).

3. The immersive display system for eye therapies according to claim 1 , wherein said computerized control unit ( 300 ) is adapted to record in the memory ( 320 ) all the images captured by said double video camera ( 20 ) in a three-dimensional digital format.

4. The immersive display system for eye therapies according to claim 1 , wherein said viewer ( 51 ) is provided with a zoom system that allows the surgeon to enlarge a detail or a particular area of the surgery operation.

5. The immersive display system for eye therapies according to claim 1 , wherein said viewer ( 51 ) is provided with a capture system for capturing the images as photographs to allow the surgeon to capture freeze-frames of the images during the surgery operation.

6. The immersive display system for eye therapies according to claim 2 , wherein said computerized control unit ( 300 ) is adapted to record in the memory ( 320 ) all the images captured by said double video camera ( 20 ) in a three-dimensional digital format.

7. The immersive display system for eye therapies according to claim 2 , wherein said viewer ( 51 ) is provided with a zoom system that allows the surgeon to enlarge a detail or a particular area of the surgery operation.

8. The immersive display system for eye therapies according to claim 3 , wherein said viewer ( 51 ) is provided with a zoom system that allows the surgeon to enlarge a detail or a particular area of the surgery operation.

9. The immersive display system for eye therapies according to claim 2 , wherein said viewer ( 51 ) is provided with a capture system for capturing the images as photographs to allow the surgeon to capture freeze-frames of the images during the surgery operation.

10. The immersive display system for eye therapies according to claim 3 , wherein said viewer ( 51 ) is provided with a capture system for capturing the images as photographs to allow the surgeon to capture freeze-frames of the images during the surgery operation.

11. The immersive display system for eye therapies according to claim 4 , wherein said helmet ( 50 ) is provided with keys for executing the zoom system for enlarging the detail or the particular area of the surgery operation.

12. The immersive display system for eye therapies according to claim 5 , wherein said helmet ( 50 ) is provided with keys for executing the capture system for capturing one or more of the images during the operation as a freeze-frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2020
From: PUGLISI, LUCA
To: TEC MED S.R.L. TECNOLOGIE MEDICHE
Reel/Frame 052781/0529 →
Priority Claims (1)
IT 102017000137984 · Nov 30, 2017 · national
Continuity (1)
Related Publication 20210205126A1 · Jul 8, 2021
Cited By (1)
US 12,510,956