IP Library Granted Patent US 10,624,704
Granted Patent B2
US 10,624,704 · App. 15/661,147 · Granted Apr 21, 2020

Robotic devices with on board control and related systems and devices

Inventors: Shane Farritor (Lincoln, NE); Erik Mumm (Longmont, CO); Philip Chu (Friendswood, TX); Nishant Kumar (Bergenfield, NJ); Jason Dumpert (Omaha, NE); Yutaka Tsutano (Lincoln, NE)
Assignee: Board of Regents of the University of Nebraska
A61B34/30A61B17/00234A61B17/29A61B34/00A61B34/37A61B90/30A61B90/361A61B2017/2906A61B2034/302A61B2217/005A61B2217/007
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Quick Facts
Patent No.
US 10,624,704
App. No.
15/661,147
Filed
Jul 27, 2017
Granted
Apr 21, 2020
Kind
B2
Examiner
LUO, DAVID S
Art Unit
2837
USPC
318/560
Abstract

The embodiments disclosed herein relate to various medical device components, including components that can be incorporated into robotic and/or in vivo medical devices. Certain embodiments include various modular medical devices for in vivo medical procedures.

Claims (38)

1. A modular surgical robotic system, comprising:

a. a modular robotic device sized to be positioned completely within a patient further comprising:

i. a body component further comprising a first shoulder component and a second shoulder component;

ii. a first movable segmented robotic arm comprising a housing with at least one motor disposed within the housing and operationally connected to the body component by way of the first shoulder component;

iii. a second movable segmented robotic arm comprising a housing with at least one motor disposed within the housing and operationally connected to the body component by way of the second shoulder component;

iv. a first operational component operationally connected to the first robotic arm; and

v. a second operational component operationally connected to the second robotic arm;

b. a port configured for traversing the body of a patient;

c. a support rod for crossing the port from the interior to exterior of the patient and connecting to the first and second body components; and

d. an operations system for control of the modular robotic device from outside the patient by way of the port and support rod, the operations system in electrical communication with the modular robotic device.

2. The modular surgical robotic system of claim 1 , wherein the modular robotic device may be assembled within the body cavity of the patient.

3. The modular surgical robotic system of claim 2 , wherein the support rod is further comprised of a first support rod segment and a second support rod segment.

4. The modular surgical robotic system of claim 3 , wherein the first support rod component and second support rod component are rotationally coupled to the first shoulder component and second shoulder component, respectively.

5. The modular surgical robotic system of claim 4 , wherein the support rod is substantially enclosed in an overtube.

6. The modular surgical robotic system of claim 1 , wherein the body component is cylindrical.

7. The modular surgical robotic system of claim 1 , wherein the first shoulder component and second shoulder component are set at an obtuse angle from one another.

8. The modular surgical robotic system of claim 1 , wherein the first operational component is chosen from a group consisting of a grasping component, a cauterizing component, a suturing component, an imaging component, an operational arm component, a sensor component, and a lighting component.

9. The modular surgical robotic system of claim 1 , wherein the second operational component is chosen from a group consisting of a grasping component, a cauterizing component, a suturing component, an imaging component, an operational arm component, a sensor component, and a lighting component.

10. The modular surgical robotic system of claim 1 , further comprising one or more motors for operation, rotation or movement of at least one of the first shoulder, the second shoulder, the first segmented arm, the second segmented arm, the first operational component, and the second operational component.

11. The modular surgical robotic system of claim 1 , wherein the port creates an insufflation seal in the body.

12. A modular surgical robotic system, comprising:

a. a modular robotic device sized to be positioned completely within a patient further comprising:

i. a first shoulder component;

ii. a second shoulder component;

iii. a body component, formed by the connection of the first shoulder component to the second shoulder component;

iv. a first movable segmented robotic arm comprising at least one motor and operationally connected to the body component by way of the first shoulder component;

v. a second movable segmented robotic arm comprising at least one motor and operationally connected to the body component by way of the second shoulder component;

vi. a first operational component operationally connected to the first robotic arm; and

vii. a second operational component operationally connected to the second robotic arm;

b. a port configured for traversing the body of a patient; and

c. an operations system for control of the modular robotic device from outside the patient by way of the port and support rod, the operations system in electrical communication with the modular robotic device.

13. The modular surgical robotic system of claim 12 , wherein the body component is cylindrical.

14. The modular surgical robotic system of claim 12 , wherein the first shoulder component and second shoulder component are set at an obtuse angle from one another.

15. The modular surgical robotic system of claim 12 , wherein the first operational component is chosen from a group consisting of a grasping component, a cauterizing component, a suturing component, an imaging component, an operational arm component, a sensor component, and a lighting component.

16. The modular surgical robotic system of claim 12 , wherein the second operational component is chosen from a group consisting of a grasping component, a cauterizing component, a suturing component, an imaging component, an operational arm component, a sensor component, and a lighting component.

17. The modular surgical robotic system of claim 12 , further comprising one or more motors for operation, rotation or movement of at least one of the first shoulder, the second shoulder, the first segmented arm, the second segmented arm, the first operational component, and the second operational component.

18. The modular surgical robotic system of claim 12 , wherein the port is constructed and arranged to create an insufflation seal in the body of the patient.

19. The modular surgical robotic system of claim 12 , wherein the modular robotic device may be assembled within the body cavity of the patient.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2017
From: FARRITOR, SHANE; MUMM, ERIK; CHU, PHILIP; KUMAR, NISHANT; DUMPERT, JASON; TSUTANO, YUTAKA
To: BOARD OF REGENTS OF THE UNIVERSITY OF NEBRASKA
Reel/Frame 044335/0734 →
Continuity (3)
Continuation 13573849 · Oct 9, 2012
Provisional Application 61680809 · Aug 8, 2012
Related Publication 20180071036A1 · Mar 15, 2018