IP Library › Granted Patent US 12,419,555
Granted Patent B2
US 12,419,555 · App. 18/227,163 · Granted Sep 23, 2025

Systems and methods for autonomous intravenous needle insertion

Inventors: Richard J. Harris (Coconut Grove, FL); Joseph B. Mygatt (Ridgefield, CT); Stuart I. Harris (Coconut Grove, FL)
Assignee: Veebot Systems, Inc.
A61B5/1535A61B5/14A61B5/15003A61B5/150068A61B5/150389A61B5/150503A61B5/150732A61B5/15074A61B5/150748A61B5/150946A61B5/150954A61B5/153A61B8/0891A61B34/10A61B34/25A61B34/30A61M5/20A61M5/52A61B2017/00057A61B2017/00106A61B2034/107A61B90/11A61B90/361
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Quick Facts
Patent No.
US 12,419,555
App. No.
18/227,163
Granted
Sep 23, 2025
Kind
B2
Abstract

Systems and methods for autonomous intravenous needle insertion are disclosed herein. In an embodiment, a system for autonomous intravenous insertion include a robot arm, one or more sensors pivotally attached to the robot arm for gathering information about potential insertion sites in a subject arm, a medical device pivotally attached to the robot arm, and a controller in communication with the sensors and the robot arm, wherein the controller receives the information from the sensors about potential insertion sites, and the controller selects a target insertion site and directs the robot arm to insert the medical device into the target insertion site.

Claims (35)

1. A system for an intravenous insertion comprising:

a robotic positioning system comprising an insertion module, the insertion module comprising:

a sensor assembly engaged to the insertion module, the sensor assembly including one or more sensors attached to the sensor assembly to gather information about a target insertion site in a blood vessel of a subject; and

a holding tool engaged to the insertion module, the holding tool being configured to hold a needle for insertion into the blood vessel;

a tube manipulator configured to transfer one or more blood drawing tubes toward or away from the needle; and

one or more controllers in communication with the one or more sensors, the holding tool, the robotic positioning system, and the tube manipulator,

wherein the one or more controllers are programmed to autonomously direct the needle into the blood vessel at the target insertion site based on the information received from the one or more sensors, and to direct the tube manipulator to enable a connection, thereby allowing blood to be collected in the one or more blood drawing tubes, and

wherein the information from the one or more sensors comprises three-dimensional coordinates and orientation of the blood vessel.

2. The system of claim 1 , wherein the one or more controllers are further programmed to disconnect a filled blood drawing tube from the needle and replace the filled blood drawing tube with an empty blood drawing tube.

3. The system of claim 1 , further comprising a piercing needle in fluid communication with the needle to connect the needle to the one or more blood drawing tubes.

4. The system of claim 1 , wherein the tube manipulator includes a dispenser for storing the one or more blood drawing tubes and a carriage for transferring the one or more blood drawing tubes from the dispenser.

5. The system of claim 4 , further comprising a chuck engaged with the carriage for gripping the one or more blood drawing tubes, wherein the chuck is rotatable relative to the carriage to rotate the one or more blood drawing tubes gripped in the chuck.

6. The system of claim 5 , wherein the one or more controllers are programmed to autonomously rotate the one or more blood drawing tubes gripped in the chuck as needed.

7. The system of claim 5 , wherein the dispenser further comprises a dispenser arm for pushing the one or more blood drawing tubes into the chuck.

8. The system of claim 1 , wherein the tube manipulator further comprises a storage unit for one or more of receiving and storing the one or more blood drawing tubes.

9. The system of claim 8 , wherein the storage unit is temperature controlled.

10. The system of claim 1 , further comprising a reader for collecting patient identification for organization of the one or more blood drawing tubes.

11. A system for an intravenous insertion comprising:

a robotic positioning system comprising an insertion module, the insertion module comprising:

a sensor assembly engaged to the insertion module, the sensor assembly including one or more sensors attached to the sensor assembly to gather information about potential insertion sites in one or more blood vessels of a subject; and

a holding tool engaged to the insertion module, the holding tool being configured to hold a needle for insertion into the one or more blood vessels;

a tube manipulator configured to transfer one or more blood drawing tubes toward or away from the needle; and

one or more controllers in communication with the one or more sensors, the holding tool, the robotic positioning system, and the tube manipulator,

wherein the one or more controllers is programmed to

identify a target insertion site in a target blood vessel in three-dimensional coordinates and orientation of the target blood vessel based on the information received from the one or more sensors; and

based on the three-dimensional coordinates and orientation of the target blood vessel at the target insertion site, to autonomously direct the needle into the target blood vessel at the target insertion site, and to direct the tube manipulator to enable a connection, thereby allowing blood to be collected in the one or more blood drawing tubes.

12. The system of claim 11 , wherein the one or more controllers are further programmed to disconnect a filled blood drawing tube from the needle and replace the filled blood drawing tube with an empty blood drawing tube.

13. The system of claim 11 , further comprising a piercing needle in fluid communication with the needle to connect the needle to the one or more blood drawing tubes.

14. The system of claim 11 , wherein the tube manipulator includes a dispenser for storing the one or more blood drawing tubes and a carriage for transferring the one or more blood drawing tubes from the dispenser.

15. The system of claim 14 , further comprising a chuck engaged with the carriage for gripping the one or more blood drawing tubes, wherein the chuck is rotatable relative to the carriage to rotate the one or more blood drawing tubes gripped in the chuck.

16. The system of claim 15 , wherein the one or more controllers are programmed to autonomously rotate the one or more blood drawing tubes gripped in the chuck as needed.

17. The system of claim 15 , wherein the dispenser further comprises a dispenser arm for pushing the one or more blood drawing tubes into the chuck.

18. The system of claim 11 , wherein the tube manipulator further comprises a storage unit for one or more of receiving and storing the one or more blood drawing tubes.

19. The system of claim 18 , wherein the storage unit is temperature controlled.

20. The system of claim 11 , further comprising a reader for collecting patient identification for organization of the one or more blood drawing tubes.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2025
From: HARRIS, RICHARD J.; MYGATT, JOSEPH B.; HARRIS, STUART I.
To: VEEBOT, LLC
Reel/Frame 070925/0871 →
CHANGE OF NAME Recorded Apr 23, 2025
From: VEEBOT, LLC
To: VEEBOT SYSTEMS, INC.
Reel/Frame 071018/0153 →
Continuity (7)
Continuation 17643438 · Dec 9, 2021
Continuation 16363881 · Mar 25, 2019
Continuation 15881341 · Jan 26, 2018
Continuation 15154656 · May 13, 2016
Division 13335700 · Dec 22, 2011
Provisional Application 61426022 · Dec 22, 2010
Related Publication 20240057911A1 · Feb 22, 2024
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