IP Library Granted Patent US 10,213,132
Granted Patent B2
US 10,213,132 · App. 15/270,890 · Granted Feb 26, 2019

Method to evaluate patients for thoracic outlet syndrome

Inventor: Scott A. Werden (San Francisco, CA)
Assignee: Vanguard Specialty Imaging, Inc.
A61B5/055A61B5/004A61B5/02007A61B5/7282A61B2576/00
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Quick Facts
Patent No.
US 10,213,132
App. No.
15/270,890
Granted
Feb 26, 2019
Kind
B2
Abstract

Methods to obtain three-dimensional models and images for diagnosis of Thoracic Outlet Syndrome are described.

Claims (37)

1. A method of generating and outputting a plurality of three-dimensional models and a plurality of series of images to evaluate a human subject for a presence or absence of thoracic outlet syndrome (TOS) which method comprises:

generating a first three-dimensional model of a brachial plexus on an affected side(s), the first three-dimensional model generated based at least in part on reconstruction and reformation of a first set of magnetic resonance imaging (MRI) slices obtained in each of three planes, in the absence of a contrast agent, with a subject in a supine position with both arms in a neutral position by a side of a body of the subject, wherein obtaining the first set of MRI slices is configured to comprise:

obtaining a gradient echo T1, spin echo T1, or fast spin echo T2-weighted sequence that comprises sagittal slices that cover scalene triangle, costoclavicular space, and retropectoralis spaces on an affected side(s);

obtaining another gradient echo T1, spin echo T1, or fast spin echo T2-weighted sequence that comprises axial slices that cover mid and lower cervical spinal portions, lower neck, the brachial plexus, supraclavicular space, superior mediastinum, and lung apex on the affected side(s); and

obtaining a Short Tau Inversion Recovery (STIR) sequence that comprises slices that cover a volume of the brachial plexus on the affected side(s);

outputting a first series of images including the first set of MRI slices, to be displayed on a workstation to determine, based at least in part on the first set of MRI slices, a presence or absence of stenosis and to determine the presence or absence of thoracic outlet syndrome (TOS);

outputting the first three-dimensional model to the workstation to determine the presence or absence of thoracic outlet syndrome (TOS);

obtaining a second set of MRI slices obtained in one or more planes, in the absence of the contrast agent, with the subject in a supine position with both arms placed in abduction and external rotation, by imaging upper chest and neck portions and a supraclavicular fossa region on the affected side(s), wherein the second set of MRI slices is configured to be obtained by the gradient echo T1, spin echo T1, or fast spin echo T2-weighted sequence that comprises sagittal slices that cover scalene triangle, costoclavicular space and retropectoralis space on the affected side(s);

outputting a second series of images including the second set of MRI slices, to be displayed on the workstation to determine, based at least in part on the second set of MRI slices, the presence or absence of stenosis and to determine the presence or absence of thoracic outlet syndrome (TOS);

generating a second three-dimensional model of arteries on the affected side(s), the second three-dimensional model generated based at least in part on reconstruction and reformation of a plurality of slices from a contrast-enhanced magnetic resonance angiogram (MRA), wherein the plurality of MRA slices images subclavian and axillary arteries on both sides of the subject, wherein the plurality of MRA slices are configured to be obtained by administering a diluted contrast agent comprising 50% gadolinium into a vein on a first side of the subject such that the contrast agent enters arteries on both sides of the subject and veins on both sides of the subject and obtaining a contrast-enhanced MRA, which images, in the subject, the contrast agent;

outputting a third series of images including the plurality of MRA slices, to be displayed on the workstation to determine, based at least in part on the plurality of MRA slices, a presence or absence of stenosis, external compression, or aneurysm, if any, in each of the subclavian and the axillary arteries by assessing vascular contrast enhancement, on both sides of the subject and to determine the presence or absence of thoracic outlet syndrome (TOS);

outputting the second three-dimensional model to the workstation to determine the presence or absence of thoracic outlet syndrome (TOS);

generating a third three-dimensional model of veins on the affected side(s), the third three-dimensional model generated based at least in part on reconstruction and reformation of a plurality of slices from a magnetic resonance venogram (MRV), wherein the plurality of MRV slices images the subclavian, axillary, and brachiocephalic veins on both sides of the subject, wherein the plurality of MRV slices are configured to be obtained by administering the diluted contrast agent comprising 50% gadolinium into the vein on the first side of the subject such that the contrast agent enters arteries on both sides of the subject and veins on both sides of the subject and obtaining the MRV, which images, in the subject, the contrast agent;

outputting a fourth series of images including the plurality of MRV slices, to be displayed on the workstation to determine, based at least in part on the plurality of MRV slices, the presence or absence of stenosis or external compression in each of the subclavian, axillary, and brachiocephalic veins on both sides of the subject by assessing vascular contrast enhancement, on both sides of the subject and to determine the presence or absence of thoracic outlet syndrome (TOS); and

outputting the third three-dimensional model to the workstation to determine the presence or absence of thoracic outlet syndrome (TOS).

2. The method of claim 1 , wherein the contrast agent further comprises 50% normal saline.

3. The method of claim 1 , wherein the arteries comprise upper extremity arteries and wherein the veins comprise upper extremity veins.

4. The method of claim 1 , wherein the obtaining the first set of MRI slices is further configured to comprise disposing a surface coil over the subject to cover the upper chest and neck and the supraclavicular fossa region on the affected side(s).

5. A method of generating and outputting a plurality of three-dimensional models and a plurality of series of images to evaluate a human subject for a presence or absence of thoracic outlet syndrome (TOS) which method comprises:

generating a first three-dimensional model of a brachial plexus on an affected side(s), the first three-dimensional model generated based at least in part on reconstruction and reformation of a first set of magnetic resonance imaging (MRI) slices obtained in each of three planes, in the absence of a contrast agent, with a subject in a supine position with both arms in a neutral position by a side of a body of the subject, wherein obtaining the first set of MRI slices is configured to comprise:

obtaining a gradient echo, spin echo, or fast spin echo sequence that comprises sagittal slices that cover a thoracic outlet on an affected side(s);

obtaining another gradient echo, spin echo, or fast spin echo sequence that comprises axial slices that cover mid and lower cervical spinal portions, lower neck, the brachial plexus, supraclavicular space, superior mediastinum and lung apex on the affected side(s); and

obtaining a Short Tau Inversion Recovery (STIR) sequence that comprises slices that cover a volume of the brachial plexus on the affected side(s);

outputting a first series of images including the first set of MRI slices, to be displayed on a workstation to determine, based at least in part on the first set of MRI slices, a presence or absence Of stenosis and to determine the presence or absence of thoracic outlet syndrome (TOS);

outputting the first three-dimensional model to the workstation for evaluation to determine the presence or absence of thoracic outlet syndrome (TOS);

obtaining a second set of MRI slices obtained in one or more planes, in the absence of the contrast agent, with the subject in a supine position with both arms in abduction and external rotation, by imaging upper chest and neck portions and a supraclavicular fossa region on the affected side(s), wherein the second set of MRI slices is configured to be obtained by the gradient echo, spin echo, or fast spin echo sequence that comprises sagittal slices that cover the thoracic outlet on the affected side(s);

outputting a second series of images including the second set of MRI slices, to be displayed on the workstation to determine, based at least in part on the second set of MRI slices, the presence or absence of stenosis and to determine the presence or absence of thoracic outlet syndrome (TOS);

generating a second three-dimensional model of arteries on the affected side(s), the second three-dimensional model generated based at least in part on reconstruction and reformation of a plurality of slices from a contrast-enhanced magnetic resonance angiogram (MRA), wherein the plurality of MRA slices images subclavian and axillary arteries on both sides of the subject, wherein the plurality of MRA slices are configured to be obtained by administering a diluted contrast agent comprising 50% gadolinium into a vein on a first side of the subject such that the contrast agent enters arteries on both sides of the subject and veins on both sides of the subject and obtaining a contrast-enhanced MRA, which images, in the subject, the contrast agent; and

outputting a third series of images including the plurality of MRA slices, to be displayed on the workstation to determine, based at least in part on the plurality of MRA slices, a presence or absence of stenosis, external compression, or aneurysm, if any, in each of the subclavian and the axillary arteries by assessing vascular contrast enhancement, on both sides of the subject and to determine the presence or absence of thoracic outlet syndrome (TOS);

outputting the second three-dimensional model to the workstation to determine the presence or absence of thoracic outlet syndrome (TOS);

generating a third three-dimensional model of veins on the affected side(s), the third three-dimensional model generated based at least in part on reconstruction and reformation of a plurality of slices from a magnetic resonance venogram (MRV), wherein the plurality of MRV slices images the subclavian, axillary, and brachiocephalic veins on both sides of the subject, wherein the plurality of MRV slices are configured to be obtained by administering the diluted contrast agent comprising 50% gadolinium into the vein on the first side of the subject such that the contrast agent enters arteries on both sides of the subject and veins on both sides of the subject and obtaining the MRV, which images, in the subject, the contrast agent;

outputting a fourth series of images including the plurality of MRV slices, to be displayed on the workstation to determine, based at least in part on the plurality of MRV slices, the presence or absence of stenosis or external compression in each of the subclavian, axillary, and brachiocephalic veins on both sides of the subject by assessing vascular contrast enhancement, on both sides of the subject and to determine the presence or absence of thoracic outlet syndrome (TOS); and

outputting the third three-dimensional model to the workstation to determine the presence or absence of thoracic outlet syndrome (TOS).

6. The method of claim 5 , wherein the contrast agent further comprises 50% normal saline.

7. The method of claim 5 , wherein the arteries comprise upper extremity arteries and wherein the veins comprise upper extremity veins.

8. The method of claim 5 , wherein the obtaining the first set of MRI slices is further configured to comprise disposing a surface coil over the subject to cover the upper chest and neck and the supraclavicular fossa region on the affected side(s).

9. The method of claim 5 , wherein the thoracic outlet comprises a scalene triangle, a costoclavicular space, and a rectropectoralis space.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2018
From: WERDEN, SCOTT A.
To: SAN FRANCISCO RADIOLOGY MEDICAL GROUP
Reel/Frame 047111/0031 →
CHANGE OF NAME Recorded Oct 9, 2018
From: SAN FRANCISCO RADIOLOGY MEDICAL GROUP
To: VANGUARD SPECIALTY IMAGING, INC.
Reel/Frame 047208/0392 →
Continuity (4)
Continuation 14629310 · Feb 23, 2015
Continuation 11595741 · Nov 9, 2006
Provisional Application 60840887 · Aug 28, 2006
Related Publication 20170071498A1 · Mar 16, 2017