IP Library Granted Patent US 11,612,758
Granted Patent B2
US 11,612,758 · App. 17/013,096 · Granted Mar 28, 2023

Device for repetitive nerve stimulation in order to break down fat tissue means of inductive magnetic fields

Inventor: Tobias Sokolowski (Pullach im Isartal, DE)
Assignee: BTL Medical Solutions A.S.
A61N2/02A61N1/40A61N2/006
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Quick Facts
Patent No.
US 11,612,758
App. No.
17/013,096
Granted
Mar 28, 2023
Kind
B2
Abstract

A device for repetitive nerve stimulation for development of muscle via inductive magnetic fields, having a stimulation coil in a plastic housing. A pulse generator may be provided for electrically actuating the stimulation coil.

Claims (68)

1. A treatment device for repetitive nerve stimulation for development of muscles of a patient using a pulsed magnetic field, comprising:

a stimulation coil encapsulated in a plastic housing, wherein the stimulation coil is flat;

a pulse capacitor coupled to the stimulation coil, wherein the pulse capacitor is configured to be charged;

an operating console configured to control current pulses discharged from the pulse capacitor to the stimulation coil such that the stimulation coil generates the pulsed magnetic field; and

a bayonet closure,

wherein the pulsed magnetic field comprises a diphase pulse,

wherein the current pulses have a current peak in a range of 500 A to 6000 A,

wherein the stimulation coil is configured to be cooled by a fluid cooling media,

wherein the pulsed magnetic field is configured to be applied to a body region of the patient and trigger contractions of the muscles in the body region such that the muscles are developed, wherein the body region comprises a buttock or an abdomen, and

wherein the bayonet closure is configured to enable replacement of the stimulation coil in the plastic housing by a different stimulation coil in a different plastic housing.

2. The treatment device of claim 1 , wherein the treatment device is able to induce an electric field having an intensity in the range of 0.1 V/cm to 1 V/cm in the body region.

3. The treatment device of claim 1 , further comprising a retaining element, wherein the retaining element is configured to maintain a space between the stimulation coil and the plastic housing such that the stimulation coil does not contact the patient.

4. The treatment device of claim 3 , wherein the pulsed magnetic field has a magnetic flow density in a range of 0.01 Tesla to 0.1 Tesla at 5 cm away from a surface of the stimulation coil.

5. The treatment device of claim 4 , wherein the pulsed magnetic field is applied to the body region, wherein the body region comprises a buttock, and wherein the pulsed magnetic field is applied to the body region to cause repetitive contractions of the muscles of the buttock.

6. The treatment device of claim 4 , wherein the operating console is configured to control the current pulses such that the stimulation coil generates the pulsed magnetic field with a stimulation frequency in a range of 10 Hz to 30 Hz.

7. The treatment device of claim 1 , wherein the plastic housing has a concave curvature.

8. A method for a repetitive nerve stimulation for development of muscles of a patient using a treatment device which generates a pulsed magnetic field, comprising:

positioning a plastic housing to the patient, wherein the plastic housing encapsulates a stimulation coil, wherein the stimulation coil is flat, and wherein the plastic housing is operatively coupled to the treatment device

by a bayonet closure so that the stimulation coil in the plastic housing is capable of being replaced by a different stimulation coil in a different plastic housing;

charging a pulse capacitor;

using an operating console to control a frequency of current pulses provided from the pulse capacitor to the stimulation coil, wherein the current pulses have a current peak in a range of 500 A to 6000 A;

generating the pulsed magnetic field by the stimulation coil, wherein the pulsed magnetic field comprises a diphase pulse;

cooling the stimulation coil by a fluid cooling media;

applying the pulsed magnetic field to a body region of the patient, wherein the body region comprises a buttock or an abdomen; and

causing contraction of the muscles and the development of the muscles in the body region.

9. The method of claim 8 , the method further comprising generating the pulsed magnetic field with a magnetic flow density in a range of 0.01 Tesla to 0.1 Tesla at 5 cm away from a surface of the stimulation coil, wherein the pulsed magnetic field comprises a sinusoidal pulse.

10. The method of claim 9 , the method further comprising:

applying the pulsed magnetic field to the body region, wherein the body region comprises the abdomen or thighs; and

causing a repetitive contraction of the muscles.

11. The method of claim 9 , the method further comprising:

using a retaining element to place the stimulation coil to the patient with no body contact; and

maintaining a space between the plastic housing and the stimulation coil by the retaining element.

12. The method of claim 9 , the method further comprising generating the pulsed magnetic field with a stimulation frequency in a range of 10 Hz to 30 Hz for a time period in a range of 1 min to 45 min.

13. The method of claim 11 , wherein the plastic housing comprises a concave curvature.

14. The method of claim 13 , the method further comprising inducing an electric field with an intensity in a range of 0.1 V/m to 1 V/m in the body region.

15. A treatment device for repetitive nerve stimulation for development of muscles of a patient using a pulsed magnetic field, comprising:

a stimulation coil encapsulated in a plastic housing;

a pulse capacitor coupled to the stimulation coil, wherein the pulse capacitor is configured to be charged; and

an operating console configured to control current pulses discharged from the pulse capacitor to the stimulation coil such that the stimulation coil generates the pulsed magnetic field,

wherein the current pulses have a current peak in a range of 500 A to 6000 A,

wherein the pulsed magnetic field comprises a diphase pulse,

wherein the stimulation coil is configured to be cooled by a fluid cooling media,

wherein the plastic housing is operatively coupled to the treatment device by a bayonet closure, and

wherein the pulsed magnetic field is configured to be applied to the muscles in a body region such that the muscles are developed, wherein the body region comprises at least one of thighs, a buttock, or an abdomen.

16. The treatment device of claim 15 , wherein the bayonet closure is further configured to replace the stimulation coil encapsulated in the plastic housing by the different stimulation coil in a different plastic housing.

17. The treatment device of claim 15 , wherein the stimulation coil generates the pulsed magnetic field with a magnetic flow density in a range of 0.01 Tesla to 0.1 Tesla at 5 cm away from a surface of the stimulation coil.

18. The treatment device of claim 17 , wherein the stimulation coil is flat, and

wherein the pulsed magnetic field causes a repetitive contraction of the muscles of the abdomen or the buttocks.

19. The treatment device of claim 15 , wherein the treatment device further comprising a retaining element configured to maintain a spacing between the plastic housing and the stimulation coil such that the stimulation coil does not contact the patient.

20. The treatment device of claim 15 , wherein the stimulation coil generates the pulsed magnetic field with a stimulation frequency in a range of 10 Hz to 30 Hz.

21. The treatment device of claim 20 , wherein the plastic housing has a concave curvature.

22. The treatment device of claim 20 , wherein the pulsed magnetic field is able to induce an electric field having an intensity in the range of 0.1 V/cm to 1 V/cm in the body region of the patient.

23. A method of a repetitive nerve stimulation for development of muscles of a patient using a treatment device which generates a pulsed magnetic field, comprising:

positioning a plastic housing to the patient, wherein the plastic housing encapsulates a stimulation coil,

wherein the plastic housing is operatively coupled by a bayonet closure to the treatment device so that the stimulation coil in the plastic housing is capable of being replaced by a different stimulation coil;

charging a pulse capacitor;

using an operating console to control a frequency of current pulses provided from the pulse capacitor to the stimulation coil, wherein the current pulses have a current peak in a range of 500 A to 6000 A;

generating the pulsed magnetic field by the stimulation coil, wherein the pulsed magnetic field comprises a diphase pulse;

cooling the stimulation coil by a fluid cooling media;

applying the pulsed magnetic field to a body region of the patient, wherein the body region comprises thighs, a buttock, or an abdomen; and

causing a contraction of the muscles and the development of the muscles in the body region.

24. The method of claim 23 , wherein the pulsed magnetic field has a magnetic flow density in a range of 0.01 Tesla to 0.1 Tesla at 5 cm away from a surface of the stimulation coil.

25. The method of claim 24 , the method further comprising causing a repetitive contraction of the muscles by the pulsed magnetic field in order to break down fatty tissue.

26. The method of claim 24 , wherein the pulsed magnetic field comprises a sinusoidal pulse.

27. The method of claim 26 , the method further comprising generating the pulsed magnetic field with a stimulation frequency in a range of 10 Hz to 30 Hz for a time period in a range of 1 min to 45 min.

28. The method of claim 23 , wherein the plastic housing has a concave curvature.

29. The method of claim 23 , the method further comprising inducing an electric field having an intensity in the range of 0.1 V/cm to 1 V/cm in the body region of the patient.

30. The method of claim 23 , the method further comprising using the bayonet closure to replace the stimulation coil in the plastic housing by the different coil in a different plastic housing.

Assignments (7)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2022
From: BTL HEALTHCARE TECHNOLOGIES A.S.
To: BTL MEDICAL SOLUTIONS A.S.
Reel/Frame 061407/0416 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2022
From: BTL HEALTHCARE TECHNOLOGIES A.S.
To: BTL MEDICAL SOLUTIONS A.S.
Reel/Frame 063272/0050 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2021
From: NOVAK, FILIP
To: MEDICAL TECHNOLOGIES CZ A.S.
Reel/Frame 058114/0202 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2021
From: SOKOLOWSKI, TOBIAS
To: MAGLETICS GMBH
Reel/Frame 058113/0977 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2021
From: MEDICAL TECHNOLOGIES CZ A.S.
To: BTL MEDICAL TECHNOLOGIES S.R.O.
Reel/Frame 058114/0248 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2021
From: MAGLETICS GMBH
To: NOVAK, FILIP
Reel/Frame 058114/0047 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2021
From: BTL MEDICAL TECHNOLOGIES S.R.O.
To: BTL HEALTHCARE TECHNOLOGIES A.S.
Reel/Frame 056526/0492 →
Priority Claims (1)
DE 10 2012 013 534.3 · Jul 5, 2012 · national
Continuity (2)
Continuation 14412875
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