IP Library › Granted Patent US 9,737,290
Granted Patent B2
US 9,737,290 · App. 15/202,738 · Granted Aug 22, 2017

Dilation system and method of using the same

Inventors: Peter Fatone (Exton, PA); Brandon Randall (Chester Springs, PA)
Assignee: DePuy Synthes Products, Inc.
A61B17/025A61B5/0492A61B5/4893A61B17/0218A61B17/3421A61B17/3423A61B17/1757A61B17/3417A61B17/3476A61B2017/003A61B2017/00039A61B2017/00331A61B2017/0262A61B2017/3433A61B2090/062
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 9,737,290
App. No.
15/202,738
Granted
Aug 22, 2017
Kind
B2
Abstract

A method of forming an access opening through a psoas muscle to a patient's spine includes laterally inserting a stimulating dilator into the psoas muscle. The stimulating dilator has a stimulation channel formed in an outer surface thereof. An electrical pulse is transmitted via an EMG into the stimulating dilator to locate a position of a nerve in the patient's psoas muscle. The stimulating dilator is laterally inserted through the psoas muscle and toward the patient's spine in a way that avoids the nerve. A stimulating probe is inserted into the stimulation channel along the outer surface of the stimulating dilator while transmitting an electrical pulse via the EMG into the stimulating probe to verify the position of the nerve.

Claims (24)

1. A method of forming an access opening through a psoas muscle to a patient's spine, comprising:

laterally inserting a stimulating dilator into the psoas muscle, the stimulating dilator having a stimulation channel formed in an outer surface thereof;

transmitting an electrical pulse via an EMG into the stimulating dilator to locate a positon of a nerve in the patient's psoas muscle;

laterally inserting the stimulating dilator through the psoas muscle and toward the patient's spine in a way that avoids the nerve; and

inserting a stimulating probe into the stimulation channel along the outer surface of the stimulating dilator while transmitting an electrical pulse via the EMG into the stimulating probe to verify the position of the nerve.

2. The method of claim 1 , further comprising the step of rotating the stimulating dilator with the stimulating probe positioned in the stimulation channel while transmitting the electrical pulse via the EMG into the stimulating probe to verify the position of the nerve.

3. The method of claim 1 , wherein the stimulation channel is a first stimulation channel, wherein the stimulation dilator has at least a second stimulation channel formed in the outer surface thereof, and wherein the method further comprises:

removing the stimulating probe from the first stimulation channel; and

inserting the stimulating probe into the second stimulation channel while transmitting an electrical pulse via the EMG into the stimulating probe to further verify the position of the nerve.

4. The method of claim 1 , wherein the stimulation channel is a first stimulation channel, wherein the stimulation dilator has a second stimulation channel, a third stimulation channel, and a fourth stimulation channel formed in the outer surface thereof, and wherein the method further comprises:

removing the stimulating probe from the first stimulation channel; and

inserting the stimulating probe into at least one of the second stimulation channel, the third stimulation channel, and the fourth stimulation channel while transmitting an electrical pulse via the EMG into the stimulating probe to further verify the position of the nerve.

5. A method of forming an access opening through a psoas muscle to a patient's spine, comprising:

laterally inserting a stimulating dilator into the psoas muscle, the stimulating dilator having a stimulation channel formed in an outer surface thereof along the entirety of the length of the stimulating dilator;

transmitting an electrical pulse via an EMG into the stimulating dilator to locate a positon of a nerve in the patient's psoas muscle;

laterally inserting the stimulating dilator through the psoas muscle and toward the patient's spine in a way that avoids the nerve; and

inserting a stimulating probe into the stimulation channel along the outer surface of the stimulating dilator while transmitting an electrical pulse via the EMG into the stimulating probe to verify the position of the nerve.

6. The method of claim 5 , further comprising the step of rotating the stimulating dilator with the stimulating probe positioned in the stimulation channel while transmitting the electrical pulse via the EMG into the stimulating probe to verify the position of the nerve.

7. The method of claim 5 , wherein the stimulation channel is a first stimulation channel, wherein the stimulation dilator has at least a second stimulation channel formed in the outer surface thereof along the entirety of the length of the stimulating dilator, and wherein the method further comprises:

removing the stimulating probe from the first stimulation channel; and

inserting the stimulating probe into the second stimulation channel while transmitting an electrical pulse via the EMG into the stimulating probe to further verify the position of the nerve.

8. The method of claim 5 , wherein the stimulation channel is a first stimulation channel, wherein the stimulation dilator has a second stimulation channel, a third stimulation channel, and a fourth stimulation channel each formed in the outer surface thereof along the entirety of the length of the stimulating dilator, and wherein the method further comprises:

removing the stimulating probe from the first stimulation channel; and

inserting the stimulating probe into at least one of the second stimulation channel, the third stimulation channel, and the fourth stimulation channel while transmitting an electrical pulse via the EMG into the stimulating probe to further verify the position of the nerve.

Continuity (3)
Continuation 12681671
Provisional Application 60977882 · Oct 5, 2007
Related Publication 20160310123A1 · Oct 27, 2016