IP Library Granted Patent US 11,612,401
Granted Patent B2
US 11,612,401 · App. 16/419,942 · Granted Mar 28, 2023

Orbital trocar device with detachable handle and associated methods

Inventors: John Nino (Simi Valley, CA); David Ivinson (Camarillo, CA)
Assignee: ECA Medical Instruments
A61B17/1695A61B17/1728A61B17/34A61B17/3472A61B17/8061A61B17/88A61B17/30A61B17/3496A61B2017/00473A61B2017/00862
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,612,401
App. No.
16/419,942
Granted
Mar 28, 2023
Kind
B2
Abstract

The present disclosure provides methods for forming or enlarging holes in bone tissue and methods for fixing matched medical plates to bodies. The present disclosure also provides for products produced by the methods of the present disclosure and for apparatuses used to perform the methods of the present disclosure.

Claims (34)

1. A detachable trocar assembly comprising:

a hollow body with a proximal end and a distal end, wherein the distal end is fixedly attached to a spring housing cap, wherein the proximal end comprises a tapered diameter terminating in an extended curved annular wall surface, said extended curved annular wall surface comprising a substantially linear surface at said proximal end;

a trocar compression spring and spring retention feature are enclosed within an interior volume of the hollow body,

wherein the trocar compression spring is configured to be compressed between the spring retention feature and a spring catching feature located at the proximal end of the hollow body;

at least a portion of an elongated blade fixture having a proximal end and a distal end, wherein said portion is slidably disposed within the hollow body with central longitudinal axes of the elongated blade fixture and the hollow body being coaxially aligned;

a trocar locator pin extending from a portion of the elongated blade fixture;

a partially hollow drive shaft having a stop pin fixed inside the shaft and a control pin extending partially within a shaft aperture;

a groove formed at the proximal end of the partially hollow drive shaft configured to temporarily retain the trocar locator pin;

a spring fitted within the drive shaft and against the stop pin; and

a spring pressure pin within the partially hollow drive shaft placed between the spring and elongated blade fixture configured to limit movement via the control pin.

2. The detachable trocar assembly of claim 1 further comprising:

a driver handle with an at least partially hollow driving shaft affixed thereto; and

a first mating feature on an open proximal end of the driving shaft opposite the driver handle.

3. The detachable trocar assembly of claim 2 further comprising:

the elongated blade fixture has a second mating feature on its distal end; and the spring retention feature is located on the elongated blade fixture between the proximal and distal ends.

4. The detachable trocar assembly of claim 3 further comprising:

a collar feature located on the elongated blade fixture between the spring retention feature and the distal end; and

the spring housing cap slidably fitted around the elongated blade fixture between the spring retention feature and the collar feature.

5. The detachable trocar assembly of claim 3 further comprising the trocar compression spring slidably fitted around the elongated blade fixture between the proximal end and the spring retention feature.

6. The detachable trocar assembly of claim 1 further comprising a toroid at the proximal end of the hollow body forming said extended curved annular wall surface.

7. A method of forming a pilot hole in bone tissue, the method comprising:

positioning a matched medical plate having one or more apertures with curved guides adjacent to the bone tissue such that at least one of the one or more apertures is oriented towards the bone tissue;

movably fixing a spring housing within an open proximal end of a driving shaft attached to a driver handle;

the spring housing comprising a hollow body with a proximal end and a distal end, wherein the proximal end comprises a tapered diameter terminating in an extended curved annular wall surface, said extended curved annular wall surface comprising a substantially linear surface at said proximal end, wherein the distal end is fixedly attached to a spring housing cap, a trocar compression spring and spring retention feature are enclosed within an interior volume of the spring housing, the trocar compression spring is configured to be compressed between the spring retention feature and a spring catching feature located at a proximal end of the spring housing, at least a portion of an elongated blade fixture is slidably disposed within the spring housing with central longitudinal axes of the elongated blade fixture and the spring housing being coaxially aligned; wherein a first mating feature and a second mating feature are detachably engaged such that the driving shaft and the elongated blade fixture are detachably connected in coaxial alignment and retained via a control pin of the elongated blade fixture temporarily held within a groove of the driving shaft;

inserting a trocar insertion system into one of the apertures oriented towards the body;

engaging the proximal end of the spring housing with the aperture oriented towards the body;

applying a force to the driver handle relative to the matched medical plate to move the proximal end of the elongated blade fixture through the aperture oriented towards the body;

forming the pilot hole in the bone tissue with the proximal end of the elongated blade fixture; and

removing the trocar insertion system from the matched medical plate aperture.

8. The method of forming a pilot hole of claim 7 wherein the elongated blade fixture has a distal end with a second mating feature on its distal end; and

the spring retention feature is located on the elongated blade fixture between the proximal and distal ends.

9. The method of forming a pilot hole of claim 8 wherein a collar feature is located on the elongated blade fixture between the spring retention feature and the distal end; and

the spring housing cap is slidably fitted around the elongated blade fixture between the spring retention feature and the collar feature.

10. The method of forming a pilot hole of claim 9 wherein the trocar compression spring is slidably fitted around the elongated blade fixture between the proximal end and the spring retention feature.

Assignments (2)
RELEASE OF SECURITY INTEREST Recorded Apr 2, 2026
From: MIDCAP FINANCIAL TRUST
To: ECA MEDICAL INSTRUMENTS; ECA ACQUISITION HOLDINGS, INC.
Reel/Frame 075344/0777 →
SECURITY INTEREST Recorded Mar 16, 2022
From: ECA MEDICAL INSTRUMENTS; ECA ACQUISITION HOLDINGS, INC.
To: MIDCAP FINANCIAL TRUST
Reel/Frame 059909/0160 →