IP Library › Granted Patent US 10,226,397
Granted Patent B2
US 10,226,397 · App. 15/373,637 · Granted Mar 12, 2019

System and method for treating soft tissue with force impulse and electrical stimulation

Inventors: Tamas Becse (Wexford, PA); John Crunick (Cranberry Twp., PA); Louis L. Laskey, Jr. (Prospect, PA)
Assignee: Sigma Instruments Holdings, LLC
A61H23/0245A61B5/0533A61B9/00A61B17/22004A61H23/008A61N1/00A61N1/0452A61N1/0476A61N1/326A61N1/36003A61N1/36014A61N1/37247A61B2090/064A61H2201/0157A61H2201/10A61H2201/123A61H2201/1664A61H2201/1685A61H2201/5005A61H2201/5038A61H2201/5046A61H2201/5058A61H2201/5064
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Quick Facts
Patent No.
US 10,226,397
App. No.
15/373,637
Granted
Mar 12, 2019
Kind
B2
Abstract

A system for treating soft tissue of a patient. The system includes a treatment head and a computer portion. The treatment head includes a probe and an electrode operably coupled to the probe. The probe and electrode are configured to respectively deliver a mechanical force impulse and an electrical stimulation to the soft tissue when placed in operable contact with the soft tissue. The computer portion includes a CPU and is configured to coordinate the delivery of the mechanical force impulse and electrical stimulation relative to each other. The system is configured to sense a shockwave in the soft tissue of the patient, the shockwave resulting from the mechanical force impulse delivered to the soft tissue via the probe. The system is also configured to analyze a characteristic of the sensed shockwave and configure the electrical stimulation to be delivered to the soft tissue via the electrode based on the characteristic analysis of the sensed shockwave. The characteristic may be at least one of frequency of the sensed shockwave, amplitude of the sensed shockwave, and/or wave shape (form) of the sensed shockwave.

Claims (34)

1. A system for treating soft tissue of a patient, the system comprising:

a treatment head including a probe, an electrode operably coupled to the probe, a force impulse wave sensor, and a pressure sensor separated from the force impulse wave sensor, the pressure sensor configured so that when the probe is pressed against the tissue and reaches a predetermined pressure, the pressure sensor causes a release of current such that the probe and electrode respectively deliver a mechanical force impulse and an electrical stimulation to the soft tissue, and the force impulse wave sensor configured to sense a frequency of the mechanical force impulse associated with at least one treatment point of the soft tissue, wherein at least one treatment protocol for the at least treatment point is modified based on the sensed frequency of the mechanical force impulse; and

a computer portion including a CPU and configured to modify the at least one treatment protocol based on feedback from the force impulse wave sensor and coordinate the delivery of the mechanical force impulse and electrical stimulation relative to each other.

2. The system of claim 1 , wherein the computer portion further includes a memory, wherein the computer portion causes the electrical stimulation to be delivered relative to the mechanical force impulse according to a treatment protocol stored in the memory.

3. The system of claim 2 , wherein the treatment protocol causes the electrical stimulation to be delivered subsequent to the delivery of the mechanical force impulse.

4. The system of claim 1 , wherein the electrode is further configured to sense a galvanic response associated with the soft tissue.

5. The system of claim 4 , wherein the computer portion determines a difference in galvanic response associated with the soft tissue and uses the difference in galvanic response to determine a characteristic associated with the soft tissue.

6. The system of claim 5 , wherein the computer portion uses the characteristic to determine an appropriate electrical stimulation to be delivered to the soft tissue via the electrode.

7. The system of claim 6 , wherein the appropriate electrical stimulation includes at least one of hi voltage mono-phasic, hi voltage bi-phasic, Russian symmetrical bi- phasic, square wave mono-phasic, or square wave bi-phasic.

8. The system of claim 1 , wherein the computer portion uses the sensed frequency of the mechanical force impulse associated with the soft tissue response to determine a characteristic associated with the soft tissue.

9. The system of claim 8 , wherein the computer portion uses the characteristic to determine an appropriate electrical stimulation to be delivered to the soft tissue via the electrode.

10. The system of claim 1 , wherein the computer portion further includes a computer display that displays a representative patient image, and selection of a specific region of the representative patient image causes the computer portion to determine an appropriate electrical stimulation to be delivered to the soft tissue via the electrode.

11. The system of claim 1 , wherein the system is configured to sense a Shockwave in the soft tissue of the patient, the Shockwave resulting from the mechanical force impulse delivered to the soft tissue via the probe, wherein the system is configured to analyze a characteristic of the sensed Shockwave and configure the electrical stimulation to be delivered to the soft tissue via the electrode based on the characteristic analysis of the sensed Shockwave.

12. The system of claim 11 , wherein the characteristic is one of a frequency of the sensed Shockwave, an amplitude of the sensed Shockwave, or a wave shape of the sensed Shockwave.

13. The system of claim 1 , wherein the computer portion comprises a memory including an electrical stimulation protocol database containing multiple treatment protocols referenced to respective multiple affliction diagnoses.

14. The system of claim 13 , wherein the multiple affliction diagnoses includes at least one of muscular dystrophy, multiple sclerosis, muscle atrophy due to stroke or paralysis, pre-operative surgical preparation, post-operative surgical recovery or physical therapy, or discopathy.

15. A method of treating soft tissue of a patient, the method comprising:

a) cause a probe of a treatment head to contact the patient at a target treatment location;

b) use the probe to apply a preload tissue compression force to the target treatment location and use a pressure sensor to determine the preload tissue compression force;

c) use an electrode operably coupled to the probe to deliver an electrical stimulation to the target treatment location;

d) use a force impulse wave sensor of the treatment head to sense a frequency of a mechanical force impulse associated with the soft tissue from the application of b), the force impulse wave sensor being separated from the pressure sensor, the pressure sensor being configured so that when the probe is pressed against the tissue and reaches a predetermined pressure, the pressure sensor causes a release of current such that the probe and the electrode respectively deliver a mechanical force impulse and an electrical stimulation to the soft tissue;

e) modify a treatment protocol for the target treatment location based on the sensed frequency of the mechanical force impulse resulting from the application of d);

f) select an electrical stimulation to be delivered to the target treatment location, the selection being based upon the modified treatment protocol of e);

g) use the probe to deliver percussive impacts to the target treatment location; and

h) use an electrode to deliver the electrical stimulation selected in f to the target treatment location.

16. The method of claim 15 , wherein the percussive impacts and electrical stimulation delivered to the target treatment location are delivered generally simultaneously.

17. The method of claim 15 , wherein the tissue signal of the analysis of c) includes a galvanic response.

18. The method of claim 15 , wherein the tissue signal of the analysis of c) includes a frequency associated with the target treatment location and resulting from the preload tissue compression force.

19. A system for treating tissue associated with a desired outcome of a treatment procedure on a patient, the system comprising:

a display screen configured to display information associated with the treatment procedure; a central processing unit (CPU) configured to provide for the selection of a type of treatment and a treatment location on the patient, the treatment location being shown on the display screen as a part of an image of a patient region associated with the treatment location, wherein a treatment point, which is associated with the treatment procedure, is identified on the image;

an input device in electrical communication with the display screen and configured to receive information associated with the treatment procedure to be delivered at the treatment point;

a memory in electrical communication with the CPU and including treatment parameters associated with the treatment procedure to be delivered at the treatment point; and

a treatment head comprising a transducer sensor for detecting a wave generated in the tissue via the administration of a mechanical force impulse to the tissue in electrical communication with the computer processor and configured to deliver at least one of mechanical force impulse and/or electrical therapy energy to the treatment point in accordance with the treatment parameters, wherein the treatment head further comprises a probe, an electrode operably coupled to the probe, and a pressure sensor separated from the transducer sensor, the pressure sensor configured so that when the probe is pressed against the tissue and reaches a predetermined pressure, the pressure sensor causes a release of current such that the probe and electrode respectively deliver the mechanical force impulse and an electrical stimulation to the soft tissue, and the transducer sensor configured to sense a frequency of the mechanical force impulse associated with the treatment point of the soft tissue, wherein the treatment procedure for the treatment point is modified based on the sensed frequency of the mechanical force impulse.

20. The system of claim 19 , wherein the treatment head comprises an impulse head capable of being placed in electrical communication with the CPU and including a solenoid driven anvil configured to deliver the mechanical force impulse to the tissue.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2017
From: CRUNICK, JOHN; BECSE, TAMAS; LASKEY, LOUIS L., JR.
To: SIGMA INSTRUMENTS HOLDINGS, LLC
Reel/Frame 043408/0056 →
Continuity (15)
Continuation 14372989
Continuation In Part 14895843 · Dec 3, 2015
Continuation In Part 14991732 · Jan 8, 2016
Continuation In Part 14205105 · Mar 11, 2014
Continuation In Part PCTUS2012055551 · Sep 14, 2012
Continuation 14344313 · Sep 4, 2014
Continuation 14344311 · Nov 20, 2014
Provisional Application 61587484 · Jan 17, 2012
Provisional Application 61831054 · Jun 4, 2013
Provisional Application 61791203 · Mar 15, 2013
Provisional Application 61616967 · Mar 28, 2012
Provisional Application 61535225 · Sep 15, 2011
Provisional Application 61616989 · Mar 28, 2012
Provisional Application 61616974 · Mar 28, 2012
Related Publication 20170151125A1 · Jun 1, 2017