Nova Patents
CA2264103C

Modes/surgical functions

Abstract

This invention is a system for controlling a plurality of ophthalmic microsurgical instruments connected thereto. The microsurgical instruments are for use by a user such as a surgeon in performing ophthalmic surgical procedures. The system includes a data communications bus and a user interface (3) connected to the data communications bus. The user interface (3) provides information to the user and receives information from the user which is representative of microsurgical instruments. The system also includes surgical modules (13) connected to, and controlling the microsurgical instruments as a function of at least one of the operating parameters. The surgical modules (13) are also connected to the data communications bus. The data communications bus provides communication of data representative of operating parameters between the user interface (3) and the surgical modules (13).

CA2264103C, drawing sheet 1
Sheet 1 of 137

Term

Term ended

Expired 28 August 2017, 9.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

15 claims: 7 independent, 8 dependent

  1. 1
    CA 02264103 1999-02-26 WO 98/08452 PCT/ÜS97/15225 Claims 1. A system for controlling a plurality of ophthalmic microsurgical instruments connected thereto, said microsurgical instruments for use by a user such as a surgeon in performing ophthalmic surgical procedures, said 5 system comprising :a data communications bus;a user interface connected to the data communications bus, said user interface providing information to the user and receiving information from the user which information is 10 representative of operating parameters of the microsurgical instruments ;a first surgical module connected to and controlling one of the microsurgical instruments as a function of at least one of the operating parameters, said first surgical 15 module being connected to the data communications bus;a second surgical module connected to and controlling another one of the microsurgical instruments as a function of at least one of the operating parameters, said second surgical module being connected to the data communications 2 0 bus ;wherein the data communications bus provides communication of data representative of the operating parameters between the user interface and the first and second surgical modules;25 wherein the user interface includes a memory storing a plurality of operating parameters and includes a central processor for retrieving a set of the operating parameters from the memory for the microsurgical instruments whereby each surgical module controls the corresponding 30 microsurgical instrument as a function of the set of operating parameters retrieved from the memory;and wherein the operating parameters are retrievable from the memory as a function of user-selected modes, each mode being representative of one or more surgical procedures to 35 be performed and defined by operation of at least one of the microsurgical instruments, and wherein the central processor CA 02264103 1999-02-26 WO 98ΛΜΜ52 PCT/US97/15225 retrieves a set of the operating parameters from the memory for the microsurgical instruments to be used in a selected one of the modes whereby the surgical modules control the 40 corresponding microsurgical instruments as a function of the operating parameters retrieved from the memory.
  2. 5
    A system for controlling a plurality of ophthalmic microsurgical instruments connected thereto, said microsurgical instruments for use by a user such as a surgeon in performing ophthalmic surgical procedures, said 5 system comprising:a data communications bus;a user interface connected to the data communications bus, said user interface providing information to the user and receiving information from the user which information is 10 representative of operating parameters of the microsurgical instruments ;a first surgical module connected to and controlling one of the microsurgical instruments as a function of at *rB CA 02264103 1999-02-26 WO 98/08452 PCT/US97/15225 least one of the operating parameters, said first surgical 15 module being connected to the data communications bus;a second surgical module connected to and controlling another one of the microsurgical instruments as a function of at least one of the operating parameters, said second surgical module being connected to the data communications 20 bus;wherein the data communications bus provides communication of data representative of the operating parameters between the user interface and the first and second surgical modules;25 wherein the user interface includes a memory storing a plurality of operating parameters and includes a central processor for retrieving a set of the operating parameters from the memory for the microsurgical instruments whereby each surgical module controls the corresponding 30 microsurgical instrument as a function of the set of operating parameters retrieved from the memory;wherein the operating parameters are retrievable from the memory as a function of user-selected modes, each mode being representative of one or more surgical procedures to 35 be performed and defined by operation of at least one of the microsurgical instruments, and wherein the central processor retrieves a set of the operating parameters from the memory for the microsurgical instruments to be used in a selected one of the modes whereby the surgical modules control the 40 corresponding microsurgical instruments as a function of the operating parameters retrieved from the memory;and a screen having a display responsive to the user interface for displaying information to the user, said display including a menu of selectable modes, each mode 45 being representative of one or more surgical procedures to be performed and defined by operation of at least one of the microsurgical instruments, and wherein the central processor is responsive to the user selecting one of the modes from the menu for retrieving a set of the operating parameters 50 from the memory for the microsurgical instruments to be used in the selected mode whereby the surgical modules control CA 02264103 1999-02-26 WO 98/08452 PCT/US97/15225 the corresponding microsurgical instruments as a function of the operating parameters retrieved from the memory.
  3. 8
    A system for controlling a plurality of ophthalmic microsurgical instruments connected thereto, said microsurgical instruments for use by a user such as a surgeon in performing ophthalmic surgical procedures, said 5 system comprising:a data communications bus;a user interface connected to the data communications bus, said user interface providing information to the user and receiving information from the user which information is 10 representative of operating parameters;CA 02264103 1999-02-26 WO 98/08452 PCT/ÜS97/15225 a surgical module connected to and controlling one of the microsurgical instruments as a function of at least one of the operating parameters, said surgical module being connected to the data communications bus;15 a remote control circuit connected to and controlling a remote control unit as a function of at least one of the operating parameters, said remote control circuit being connected to the data communications bus, said remote control unit operating to change the operating parameters of 20 the microsurgical instruments during performance of the surgical procedures;wherein the data communications bus provides communication of data representative of the operating parameters between the user interface and the surgical 25 module and the remote control circuit;wherein the user interface includes a memory storing a plurality of operating parameters and includes a central processor for retrieving a set of the operating parameters from the memory whereby the surgical module controls the 30 corresponding microsurgical instrument and the remote control circuit controls the remote control unit as a function of the set of operating parameters retrieved from the memory;and wherein the operating parameters are retrievable from 35 the memory as a function of user-selected modes, each mode being representative of one or more surgical procedures to be performed and defined by operation of at least one of the microsurgical instruments, and wherein the central processor retrieves a set of the operating parameters from the memory 40 for the microsurgical instruments to be used in a selected one of the modes whereby the surgical module controls the corresponding microsurgical instrument as a function of the operating parameters retrieved from the memory.
  4. 9
    The system of claim B wherein the operating parameters are retrievable from the memory as a function of a predefined sequence of modes and wherein the central processor retrieves in sequence the set of operating I! CA 02264103 1999-02-26 WO 98/08452 PCT/US97/15225 5 parameters from the memory for the microsurgical instruments to be used in each of the modes in the sequence.
  5. 12
    A system for controlling a plurality of ophthalmic microsurgical instruments connected thereto, said microsurgical instruments for use by a user such as a surgeon in performing ophthalmic surgical procedures, said 5 system comprising:a data communications bus;a user interface connected to the data communications bus, said user interface providing information to the user and receiving information from the user which information is 10 representative of operating parameters;a surgical module connected to and controlling one of the microsurgical instruments as a function of at least one of the operating parameters, said surgical module being connected to the data communications bus;15 a remote control circuit connected to and controlling a remote control unit as a function of at least one of the operating parameters, said remote control circuit being connected to the data communications bus, said remote control unit operating to change the operating parameters of 20 the microsurgical instruments during performance of the surgical procedures ;wherein the data communications bus provides communication of data representative of the operating CA 02264103 1999-02-26 WO 98/08452 PCT/US97/15225 parameters between the user interface and the surgical 25 module and the remote control circuit;wherein the user interface includes a memory storing a plurality of operating parameters and includes a central processor for retrieving a set of the operating parameters from the memory whereby the surgical module controls the 30 corresponding microsurgical instrument and the remote control circuit controls the remote control unit as a function of the set of operating parameters retrieved from the memory;a screen having a display responsive to the user 35 interface for displaying information to the user, said display including a menu of selectable modes, each mode being representative of one or more surgical procedures to be performed and defined by operation of at least one of the microsurgical instruments, and wherein the central processor 4 0 is responsive to the user selecting one of the modes from the menu for retrieving a set of the operating parameters from the memory for the microsurgical instruments to be used in the selected mode whereby the surgical module controls the corresponding microsurgical instrument as a function of 45 the operating parameters retrieved from the memory.
  6. 14
    A system for controlling a plurality of ophthalmic microsurgical instruments connected thereto, said microsurgical instruments for use by a user such as a CA 02264103 2001-07-05 WO 98/08452 PCT/US97/15225 surgeon in performing ophthalmic surgical procedures, said 5 system comprising:a data communications bus;a user interface connected to the data communications bus, said user interface providing information to the user and receiving information from the user which information is 10 representative of operating parameters;a surgical module connected to and controlling one of the microsurgical instruments as a function of at least one of the operating parameters, said surgical module being connected to the data communications bus;15 a remote control circuit connected to and controlling a remote control unit as a function of at least one of the operating parameters, said remote control circuit being connected to the data communications bus, said remote control unit operating to change the operating parameters of 20 the microsurgical instruments during performance of the surgical procedures;wherein the data communications bus provides communication of data representative of the operating parameters between the user interface and the surgical 25 module and the remote control circuit;and wherein a menu includes an option for returning to the previous mode in a predefined sequence of modes and wherein a central processor retrieves another set of operating parameters from a memory for the 30 microsurgical instruments to be used in the next mode following a selected mode and then retrieves the set of the operating parameters from the memory for the microsurgical instruments to be used in the previous mode in the predefined sequence in response to the user selecting the option from the menu for returning to the previous mode in the predefined sequence.
  7. 15
    A system for controlling a plurality of ophthalmic microsurgical instruments connected thereto, said CA 02264103 1999-02-26 WO 98/08452 PCT/US97/15225 microsurgical instruments for use by a user such as a surgeon in performing ophthalmic surgical procedures, said 5 system comprising:a user interface providing information to the user and receiving information from the user which information is representative of operating parameters of the microsurgical instruments;10 a memory storing a plurality of operating parameters, said operating parameters being retrievable from the memory as a function of user-selected modes, each mode being representative of one or more surgical procedures to be performed and defined by operation of at least one of the 15 microsurgical instruments;a central processor for retrieving a set of the operating parameters from the memory for the microsurgical instruments to be used in a selected one of the modes;and a surgical module connected to and controlling one of 20 the microsurgical instruments as a function of the set of operating parameters retrieved from the memory. I