IP Library Granted Patent US 12708559
Granted Patent B2
US 12708559 · App. 18/086,808 · Granted Aug 18, 2026

Vitrector with disposable cutter

Inventors: Assaf Govari (Haifa, IL); Alexander Shechtman (Haifa, IL); Ilya Sitnitsky (Nahariya, IL); Stanislav Katzir (Hadera, IL); Elad Avraham Diukman (Haifa, IL)
Assignee: Johnson & Johnson Surgical Vision, Inc.
A61F9/00763
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Quick Facts
Patent No.
US 12708559
App. No.
18/086,808
Granted
Aug 18, 2026
Kind
B2
Abstract

Methods and systems provide a disposable cutting section which is removably attachable from a multiple use motor section, to form a handpiece for use in ophthalmic procedures, such as vitrectomies. The motor section includes a motor for driving a needle of the cutting section.

Claims (39)

1 . A cutting section for a vitrector handpiece, the cutting section comprising:

a housing for being removably attachable from a motor section of the vitrector handpiece;

a collar frictionally fit into and extending past an inner wall of a proximal end of the housing, the collar including an outwardly extending annular section for engagement in a corresponding cavity of the motor section;

a cutting needle extending from inside the housing to outside of the housing; and

a drive system in communication with the cutting needle,

the drive system configured for translating rotational motion from a driver to linear motion of the cutting needle,

the driver including a coupler for coupling with a shaft of a motor of the removably attachable motor section in a frictional engagement, the frictional engagement providing frictional forces which: 1) allow for a substantially complete transfer of the rotational motion from the shaft of the motor to the driver substantially free of slippage of the shaft of the motor with respect to the coupler, and 2) allow for the coupler and the shaft of the motor to be manually joined or manually separated from each other.

2 . The cutting section of claim 1 , wherein the coupling of the coupler with the shaft of the motor attaches the housing to the motor section.

3 . The cutting section of claim 2 , wherein the coupling of the coupler with the shaft of the motor of the motor section attaches the housing to the motor section.

4 . The cutting section of claim 1 , wherein the coupler includes a portion shaped and dimensioned to correspond to the shape and dimensions of the shaft of the motor, the portion for receiving the shaft of the motor.

5 . The cutting section of claim 4 , wherein the portion of the coupler receives the shaft of the motor in a male-female fit.

6 . The cutting section of claim 4 , wherein the portion of the coupler includes a resilient material.

7 . The cutting section of claim 6 , wherein the resilient material is selected from the group of silicon or thermoplastic polyurethane (TPU), and of a hardness of approximately Shore A 80-90.

8 . The cutting section of claim 1 , wherein the cutting needle comprises:

an external needle mounted to the housing, and

an internal needle, a portion of the internal needle extending outside of the external needle, the internal needle for moving in accordance with the linear motion from the drive system, the internal needle for cutting tissue pulled into the external needle.

9 . A vitrector handpiece, comprising:

a cutting section comprising:

a housing for being removably attachable from a motor section of the vitrector handpiece;

a collar frictionally fit into and extending past an inner wall of a proximal end of the housing, the collar including an outwardly extending annular section for engagement in a corresponding cavity of the motor section;

a cutting needle extending from inside the housing to outside of the housing; and

a drive system in communication with the cutting needle,

the drive system configured for translating rotational motion from a driver to linear motion of the cutting needle,

the driver including a coupler for coupling with a shaft of a motor of the removably attachable motor section in a frictional engagement, the frictional engagement providing frictional forces which: 1) allow for a substantially complete transfer of the rotational motion from the shaft of the motor to the driver substantially free of slippage of the shaft of the motor with respect to the coupler, and 2) allow for the coupler and the shaft of the motor to be manually joined or manually separated from each other; and

the removably attachable motor section including the motor in communication with the shaft.

10 . The vitrector handpiece of claim 9 , wherein the coupler includes a portion shaped and dimensioned to correspond to the shape and dimensions of the shaft of the motor, the portion for receiving the shaft of the motor.

11 . The vitrector handpiece of claim 10 , wherein the portion of the coupler receives the shaft of the motor in a male-female fit.

12 . The vitrector handpiece of claim 10 , wherein the portion of the coupler includes a resilient material.

13 . The vitrector handpiece of claim 12 , wherein the resilient material is selected from the group of silicon or thermoplastic polyurethane (TPU), and of a hardness of approximately Shore A 80-90.

14 . The vitrector handpiece of claim 9 , wherein the cutting needle comprises:

an external needle mounted to the housing, and

an internal needle, a portion of the internal needle extending outside of the external needle, the internal needle for moving in accordance with the linear motion from the drive system, the internal needle for cutting tissue pulled into the external needle.

15 . A method for using a vitrector handpiece, the method comprising:

obtaining a cutting section comprising:

a housing for being removably attachable from a motor section of the vitrector handpiece;

a collar frictionally fit into and extending past an inner wall of a proximal end of the housing, the collar including an outwardly extending annular section for engagement in a corresponding cavity of the motor section;

a cutting needle extending from inside the housing to outside of the housing; and

a drive system in communication with the cutting needle, the drive system configured for translating rotational motion from a driver to linear motion of the cutting needle, the driver including a coupler for coupling with a shaft of a motor of the removably attachable motor section in a frictional engagement, the frictional engagement providing frictional forces which: 1) allow for a substantially complete transfer of the rotational motion from the shaft of the motor to the driver substantially free of slippage of the shaft of the motor with respect to the coupler, and 2) allow for the coupler and shaft of the motor to be manually joined or manually separated from each other; and

coupling the housing of the cutting section to the motor section in a removably attachable manner, including engaging the shaft of the motor in the coupler.