IP Library Granted Patent US 10,137,293
Granted Patent B2
US 10,137,293 · App. 15/113,929 · Granted Nov 27, 2018

Medical stopcock valve

Inventors: Alireza Hamidian Jahromi (Shreveport, LA); David Hilton Ballard (Shreveport, LA); Jeffery Adam Weisman (West Monroe, LA); Horacio Ruben Vincent D'Agostino (Shreveport, LA)
Assignee: Board of Supervisors of Louisiana State University and Agricultural and Mechanical College
A61M39/223A61M2039/229A61M2205/581A61M2205/582
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Quick Facts
Patent No.
US 10,137,293
App. No.
15/113,929
Granted
Nov 27, 2018
Kind
B2
Abstract

A medical stopcock which allows easier switching operation of plural branch-tubes. The main body of the stopcock comprises a chamber part with a nearly spherical inner surface, and an upstream branch-tube, a downstream branch-tube and a merge-branch-tube all extending from the chamber part. A valve body of the stopcock comprises a nearly spherical valve main body and a rod-shaped operating part with a guide hole linking the inner surface of the chamber part to the outside. In operation, the rod-shaped operating part is moved along the guide hole through the use of the horizontal flow passages and the vertical flow passage to allow the predetermined branch-tubes out of the upstream branch-tube, the downstream branch-tube and the merge-branch-tube to communicate with one another or to shut-off the communication.

Claims (34)

1. A medical stopcock valve comprising:

a hollow body having a plurality of through holes around a perimeter of the hollow body;

an outer ring encapsulating the perimeter, the outer ring having a plurality of external ports;

the outer ring being rotatable around the perimeter to open and close access between the external ports and the through holes;

at least three through hole;

at least three exterior ports;

eight possible stable on/off positions of the outer ring as the outer ring rotates around the perimeter; and

eight unstable intermediate positions between the stable on/off positions.

2. The medical stopcock of claim 1 wherein there are one of three, four, and five through holes.

3. The medical stopcock of claim 1 wherein there are an equal number of external ports as through holes.

4. The medical stopcock of claim 1 wherein the hollow body is substantially a sphere shape.

5. The medical stopcock of claim 1 wherein the hollow body is substantially one of an oblate spheroid shape and a prolate spheroid shape.

6. The medical stopcock of claim 1 wherein the through holes are spaced equidistant from one another.

7. The medical stopcock of claim 1 wherein each through hole is spaced 360/(x+1) degrees from at least one adjacent through hole, where x is equal to the number of through holes.

8. The medical stopcock of claim 1 wherein the outer ring, by rotating around the hollow body, has multiple stable closed positions, where no fluid may enter or leave the hollow body, and has at least one all open position where all the through holes are aligned with an external port.

9. The medical stopcock of claim 1 wherein any two through holes may be selectively aligned with a respective external port while any remaining through holes are closed off from external ports.

10. The medical stopcock of claim 1 wherein no rod or lever is present.

11. The medical stopcock of claim 1 wherein a diameter of the hollow body is between 1.5 and 3.5 times a height of the outer ring.

12. The medical stopcock of claim 1 further comprising a plurality of selectively closeable additional through holes, wherein the additional through holes are spaced from the outer ring.

13. The medical stopcock of claim 1 further comprising a selectively closeable additional through hole, wherein the additional through hole is located at a top of the hollow body and is spaced from the outer ring.

14. The medical stopcock of claim 1 wherein one of tactile feedback and auditory feedback is provided when the outer ring is rotated into a stable on or a stable off position.

15. A medical stopcock valve comprising:

a hollow body having three through holes around a perimeter of the hollow body;

the through holes are all along a common plane and each through hole is spaced ninety degrees from at least one adjacent through hole;

an outer ring encapsulating the perimeter, the outer ring being fluid tightly connected to the hollow body and having three external ports;

the outer ring being fully rotatable around the perimeter to open and close access between the external ports and the through holes;

the outer ring, by rotating around the hollow body, has multiple stable closed positions, where no fluid may enter or leave the hollow body, and has at least one all open position where all the through holes are aligned with an external port;

any two through holes may be selectively aligned with a respective external port while any remaining through holes are closed off from external ports;

no rod or lever is present;

a diameter of the hollow body is between 1.5 and 3.5 times a height of the outer ring;

at least one selectively closeable additional through hole is located on a top of the hollow body and is spaced from the outer ring;

the outer ring having at least eight possible stable on/off positions as the outer ring rotates around the perimeter,

the outer ring having at least eight unstable intermediate positions between the stable on/off positions, the outer ring requiring more force to rotate out of a stable position than through an unstable position; and

one of tactile feedback and auditory feedback is provided when the outer ring is rotated into a stable on position or a stable off position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2018
From: HAMIDIAN JAHROMI, ALIREZA; BALLARD, DAVID HILTON; WEISMAN, JEFFERY ADAM; D'AGOSTINO, HORACIO RUBEN VINCENT
To: BOARD OF SUPERVISORS OF LOUISIANA STATE UNIVERSITY AND AGRICULTURAL AND MECHANICAL COLLEGE
Reel/Frame 046777/0111 →
Continuity (2)
Provisional Application 61931610 · Jan 25, 2014
Related Publication 20160339228A1 · Nov 24, 2016
Cited By (2)
US 12,345,352 US 12,453,846