IP Library Granted Patent US 11,844,584
Granted Patent B2
US 11,844,584 · App. 16/291,007 · Granted Dec 19, 2023

Robotic system for tele-surgery

Inventors: Alireza Mirbagheri (Tehran, IR); Farzam Farahmand (Tehran, IR); Alireza Alamdar (Tehran, IR); Saeed Behzadipour (Tehran, IR); Borna Ghannadi (Tabriz, IR); Hamed Jamshidifar (Fooladshahr, IR); Seyedhamidreza Seyedhashemi (Tehran, IR)
Assignee: SINA ROBOTICS AND MEDICAL INNOVATORS CO. LTD
A61B34/35A61B34/74B25J9/1689A61B2017/00424A61B2034/302
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Quick Facts
Patent No.
US 11,844,584
App. No.
16/291,007
Granted
Dec 19, 2023
Kind
B2
Abstract

Disclosed herein is a robotic tele-surgery system for performing laparoscopic surgeries. The system may include: a patient-side unit, a surgeon-side unit, and a controller that may be configured for establishing a master-slave relationship between the surgeon-side unit and the patient-side unit. The patient side unit may include a patient support assembly, at least two passive mounting mechanisms that may be slidably coupled to the patient support assembly and at least two slave robotic arms, coupled with a surgical instrument via a tool adapting mechanism from their distal end, and mounted on an associated passive support assembly from their base end. The surgeon-side unit may including at least two master robotic arms, and an ergonomic adjustment mechanism that may be configured for housing and adjusting the position and orientation of the master robotic arms.

Claims (32)

1. A robotic tele-surgery system, comprising:

a patient-side unit, comprising:

a patient support assembly, movable in three degrees of freedom;

at least two passive mounting mechanisms, each having five degrees of freedom, each slidably coupled to the patient support assembly allowing the passive mounting mechanisms to be moved along an axis parallel to an upper surface of the patient support assembly; and

at least two slave robotic arms, each having three degrees of freedom, wherein the degrees of freedom of the surgical instrument include at least two members of a group consisting of grasp, roll, pitch, and yaw;

a surgeon-side unit, comprising:

at least two master robotic arms, each having six degrees of freedom; and

an ergonomic adjustment mechanism movable in three degrees of freedom, the ergonomic adjustment mechanism configured to house and adjust position and orientation of the master robotic arms, the ergonomic adjustment mechanism comprising:

a main frame;

a vertical adjustment mechanism, movable along the vertical axis, mounted on the main frame; and

a horizontal adjustment mechanism, rotatably mounted on the vertical adjustment mechanism, having at least two mounting platforms attached thereto, configured for mounting master robotic arms;

wherein, the horizontal adjustment mechanism is rotatable about a rotational axis, a shaft of the horizontal adjustment mechanism rotatable around the rotational axis, and wherein the master robotic arms are slidably mounted on the mounting platforms and are movable along a horizontal axis across the length of the shaft via a horizontal rail, the horizontal axis parallel to the rotational axis; and

a controller configured to establish a master-slave relationship between the patient-side unit and the surgeon-side unit, wherein movement at each master handle produces a proportional movement in a corresponding slave robotic arm.

2. A robotic tele-surgery system, comprising:

a patient-side unit comprising:

a patient support assembly movable in three degrees of freedom;

at least two passive mounting mechanisms, each passive mounting mechanism including five degrees of freedom comprising a first linear axis, a second linear axis, a third linear axis, a pan axis, and a tilt axis, each passive mounting mechanism comprising:

a first sliding segment, slidably coupled to the patient support assembly configured to allow the passive mounting mechanism to be moved along the first linear axis parallel to the upper surface of the patient support assembly;

a second sliding segment, slidably coupled to the first sliding segment, movable along the second linear axis;

a third sliding segment, slidably coupled to the second sliding segment, movable along the third linear axis; and

a pan/tilt mounting mechanism, configured to be attached to the base end of the slave robotic arm and to facilitate movement of the slave robotic arm about the pan axis and about the tilt axis, the pan/tilt mounting mechanism attached to the third sliding segment,

wherein, the first, second, and third linear axes are mutually perpendicular,

at least two slave robotic arms, each having three degrees of freedom, each comprising a base end and a distal end, the distal end configured to be coupled with a conventional surgical instrument; and

a surgeon-side unit including at least two master robotic arms, each having six degrees of freedom, wherein the surgeon-side unit further comprises an ergonomic adjustment mechanism movable in three degrees of freedom, the ergonomic adjustment mechanism configured to house and adjust position and orientation of the master robotic arms, the ergonomic adjustment mechanism comprising:

a main frame;

a vertical adjustment mechanism, movable along the vertical axis, mounted on the main frame; and

a horizontal adjustment mechanism, rotatably mounted on the vertical adjustment mechanism, having at least two mounting platforms attached thereto, configured for mounting master robotic arms;

wherein, the horizontal adjustment mechanism is rotatable about a rotational axis, a shaft of the horizontal adjustment mechanism rotatable around the rotational axis,

wherein the master robotic arms are slidably mounted on the mounting platforms and are movable along a horizontal axis, the horizontal axis parallel to the rotational axis, and

wherein the master robotic arms are movable along the horizontal axis across a length of the shaft via a horizontal rail in parallel to the horizontal axis.

3. The robotic tele-surgery system of claim 2 , wherein

each of the two slave robotic arms configured to be coupled with a surgical instrument, wherein the surgical instrument is one of non-articulating laparoscopic instruments, handled wrist-articulating instruments, and handle-free wrist articulating instruments.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2023
From: MIRBAGHERI, ALIREZA; FARAHMAND, FARZAM; ALAMDAR, ALIREZA; BEHZADIPOUR, SAEED; GHANNADI, BORNA; JAMSHIDIFAR, HAMED; SEYEDHASHEMI, SEYEDHAMIDREZA
To: SINA ROBOTICS AND MEDICAL INNOVATORS CO. LTD
Reel/Frame 065004/0383 →
Continuity (4)
Continuation 15261958 · Sep 11, 2016
Provisional Application 62258584 · Nov 23, 2015
Related Publication 20190192244A1 · Jun 27, 2019
Related Publication 20210378767A9 · Dec 9, 2021