IP Library Granted Patent US 10,695,575
Granted Patent B1
US 10,695,575 · App. 16/218,735 · Granted Jun 30, 2020

Aesthetic method of biological structure treatment by magnetic field

Inventors: Tomás Schwarz (Prague, CZ); Ondra Prouza (Ricany u Prahy, CZ)
Assignee: BTL Medical Technologies S.R.O.
A61N2/008A61N2/006A61N2/02
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Quick Facts
Patent No.
US 10,695,575
App. No.
16/218,735
Granted
Jun 30, 2020
Kind
B1
Abstract

Combined methods for treating a patient using time-varying magnetic field are described. The treatment methods combine various approaches for aesthetic treatment. The methods are focused on enhancing a visual appearance of the patient.

Claims (100)

1. A method for toning muscles of a patient, comprising:

positioning a first applicator on the patient, the first applicator housing a first magnetic field generating coil having an inductance;

independently positioning a second applicator on the patient, the second applicator housing a second magnetic field generating coil having the same inductance as the first magnetic field generating coil;

charging a first energy storage device and a second energy storage device;

discharging the first energy storage device to the first magnetic field generating coil such that a first impulse of a first time-varying magnetic field is generated;

discharging the second energy storage device to the second magnetic field generating coil such that a first impulse of a second time-varying magnetic field is generated,

wherein the first impulse of the first time-varying magnetic field and the first impulse of the second time-varying magnetic field each have a magnetic flux density in a range between 0.1 Tesla and 7 Tesla, and wherein the first impulse of the first time-varying magnetic field and the first impulse of the second time-varying magnetic field each have an impulse duration in a range between 3 μs and 3 ms;

establishing a first pulse duration beginning at the beginning of the first impulse generated by the first magnetic field generating coil and ending at the beginning of a second impulse generated by the first magnetic field generating coil, wherein the first impulse generated by the second magnetic field generating coil is generated during the first pulse duration;

cooling each of the first and the second magnetic field generating coils; and

applying a first plurality of impulses generated by the first magnetic field generating coil and applying a second plurality of impulses generated by the second magnetic field generating coil, to muscle fibers, neuromuscular plates, or nerves innervating muscle fibers in a body region of the patient to cause muscles of the body region to contract such that the muscles are toned.

2. The method of claim 1 , further comprising:

coupling each of the first and the second applicator to the patient with a single belt, wherein each of the first and the second magnetic field generating coils is cooled with liquid cooling.

3. The method of claim 2 , further comprising:

positioning the first and the second applicators in a first plane and a second plane, respectively, wherein the first and the second planes are mutually tilted.

4. The method of claim 3 , further comprising:

applying the first plurality of impulses generated by the first magnetic field generating coil to a first muscle positioned below the first applicator; and

applying the second plurality of impulses generated by the second magnetic field generating coil to a second muscle positioned below the second applicator,

wherein each of the first and second muscles are caused to contract such that the muscles are toned,

wherein the first muscle is located on left side of the body region and the second muscle is located on the right side of the body region.

5. The method of claim 3 , wherein the first plurality of impulses has a first repetition rate, and

wherein the second plurality of impulses has the same repetition rate as the first plurality of impulses.

6. The method of claim 5 , wherein the first energy storage device is charged by a first energy source.

7. The method of claim 1 , wherein each of the magnetic field generating coils includes a projected core area in a range between 10% and 40% of a total magnetic field generating coil surface projected area.

8. The method of claim 1 , further comprising:

applying the first plurality of impulses generated by the first magnetic field generating coil to a first muscle positioned below the first applicator; and

applying the second plurality of impulses generated by the second magnetic field generating coil to a second muscle positioned below the second applicator,

wherein the muscle contractions caused by the application of the plurality of impulses from each of the first and the second magnetic field generating coils cause a reduction in adipose tissue proximate the muscles.

9. A method for toning muscles of a patient, comprising:

independently positioning a first applicator and a second applicator on a body region of the patient comprising one of the patient's abdomen or buttocks, such that the first applicator is placed on a right side of the body region, and the second applicator is placed on a left side of the body region;

coupling both the first applicator and the second applicator to the body region by a single belt;

discharging energy to a first magnetic field generating coil housed in the first applicator, thereby generating a plurality of impulses of a first time-varying magnetic field with a repetition rate in a range of 1 Hz to 300 Hz, each impulse having a magnetic flux density in a range of 0.1 Tesla to 7 Tesla;

discharging energy to a second magnetic field generating coil housed in the second applicator, thereby generating a plurality of impulses of a second time-varying magnetic field with a repetition rate in a range of 1 Hz to 300 Hz, each impulse having a magnetic flux density in a range of 0.1 Tesla to 7 Tesla;

cooling the first and the second magnetic field generating coils with oil; and

applying the plurality of impulses of the first and second time-varying magnetic fields such that a muscle on the right side of the body region contracts and a muscle on the left side of the body region contracts, such that muscles on the right and the left side of the body region are simultaneously toned.

10. The method of claim 9 , further comprising:

synchronously switching a first switching device coupled to the first magnetic field generating coil and a second switching device coupled to the second magnetic field generating coil, respectively, such that impulses generated by the first magnetic field generating coil and impulses generated by the second magnetic field generating coil are generated synchronously.

11. The method of claim 10 , further comprising:

establishing a first pulse duration defined by the beginning of a first impulse generated by the first magnetic field generating coil and the beginning of a second impulse generated by the first magnetic field generating coil; and

generating a first impulse by the second magnetic field generating coil during the first pulse duration.

12. The method of claim 11 , further comprising:

generating the first impulse by the first magnetic field generating coil and the first impulse by the second magnetic field generating coil at the same time.

13. The method of claim 9 , further comprising:

controlling, via a single control unit, the discharge of energy to the first and second magnetic field generating coils,

wherein a first energy source provides energy to a first energy storage device configured to discharge energy to the first magnetic field generating coil, and wherein a second energy source provides energy to a second energy storage device configured to discharge energy to the second magnetic field generating coil.

14. The method of claim 9 , further comprising cooling adipose tissue to a temperature in a range of −2° C. to 15° C. by a cooling element.

15. The method of claim 9 further comprising cooling, by a cooling element at a temperature of between −15° C. and 10° C., a region of an epidermis of the patient within the body region.

16. A method for toning muscles of a patient, comprising:

independently positioning a first and a second applicator laterally on at least one body region of the patient, wherein the body region is the patient's buttocks or abdomen, such that the first and second applicators are located on left and right sides of the body, respectively;

attaching both the first and the second applicator to the body region by a belt;

charging a first energy storage device and a second energy storage device;

discharging the first energy storage device to a first circular magnetic field generating coil to generate a first pulse of a first time-varying magnetic field, wherein the first pulse comprises a first impulse and a time of no stimulation;

discharging the second energy storage device to a second circular magnetic field generating coil to generate a first impulse of a second time-varying magnetic field after the first pulse of the first time-varying magnetic field begins but before the first pulse of the first time-varying magnetic field ends, wherein the second magnetic field generating coil has the same inductance as the first magnetic field generating coil, and wherein each impulse has a magnetic flux density in a range of 0.1 Tesla to 7 Tesla and an impulse duration in a range of 3 μs to 1 ms;

cooling the first and the second magnetic field generating coils;

applying a plurality of impulses generated by the first magnetic field generating coil to a muscle, neuromuscular plate, or a peripheral nerve innervating the muscle such that at least one muscle in the body region is caused to contract, the plurality of impulses having a repetition rate in a range of 1 Hz to 300 Hz, wherein the application causes toning of the muscle;

and applying a plurality of impulses generated by the second magnetic field generating coil, to a muscle, neuromuscular plate, or a peripheral nerve innervating the muscle such that at least one muscle in the body region is caused to contract; the plurality of impulses having a repetition rate in a range of 1 Hz to 300 Hz, wherein the application causes toning of the muscle.

17. The method of claim 16 , the cooling of the first and the second magnetic field generating coils further comprising:

flowing oil from a source through a first connecting tube to the first applicator; and

flowing oil from the source through a second connecting tube to the second applicator.

18. The method of claim 16 , wherein the belt does not fix the first and second applicators in particular static positions during the application of the plurality of impulses generated by the first and second magnetic field generating coils.

19. The method of claim 18 , further comprising:

positioning the first and second applicators such that the centers of the first and second coils are spaced apart 15 cm to 40 cm during the application of the plurality of impulses generated by the first and second magnetic field generating coils.

20. The method of claim 16 , further comprising:

applying a first burst and a second burst to the patient by the first magnetic field generating coil, each of the first and second bursts comprising a train of pulses having a constant repetition rate; and

applying a third burst and a fourth burst to the patient by the second magnetic field generating coil, each of the third and fourth bursts comprising a train of pulses having a constant repetition rate.

21. The method of claim 20 , further comprising:

initiating a treatment protocol using a touchscreen graphical user interface, wherein the treatment protocol comprises a set of predetermined treatment sequences having predetermined repetition rates applied for a predetermined time period, and

independently controlling the intensity of the first and second time-varying magnetic fields using the touchscreen graphical user interface.

22. The method of claim 16 , further comprising:

providing energy from a first energy source to the first energy storage device; and

providing energy from a second energy source different from the first energy source to the second energy storage device.

23. The method of claim 20 , further comprising:

applying a fifth burst to the patient by the first magnetic field generating coil, the fifth burst comprising a train of pulses having a constant repetition rate; and

applying a sixth burst to the patient by the second magnetic field generating coil, the sixth burst comprising a train of pulses having a constant repetition rate,

wherein the fifth burst's train's repetition rate is different than the first burst's train's repetition rate and the third burst's train's repetition rate,

wherein the sixth burst's train's repetition rate is different than the first burst's train's repetition rate and the third burst's train's repetition rate, and

wherein the first, second, third, fourth, fifth, and sixth bursts are all applied during one treatment.

24. A method for toning a body region of a patient, comprising:

placing a first applicator including a first circular magnetic field generating coil on a portion of a body region of the patient;

independently placing a second applicator including a second circular magnetic field generating coil on different portion of the body region the patient, wherein the applicators are positioned in mutually tiltable planes defined by an angle;

generating a plurality of impulses of a first time-varying magnetic field by the first magnetic field generating coil, each of the impulses having a magnetic flux density in a range of 0.1 Tesla to 7 Tesla and an impulse duration in a range of 3 μs to 1 ms, and wherein the plurality of impulses have a repetition rate in a range of 1 Hz to 300 Hz;

generating a plurality of impulses of a second time-varying magnetic field by the second magnetic field generating coil, each of the impulses having a magnetic flux density in a range of 0.1 Tesla to 7 Tesla and an impulse duration in a range of 3 μs to 1 ms, and wherein the plurality of impulses have a repetition rate in a range of 1 Hz to 300 Hz;

cooling both magnetic field generating coils by oil;

applying a plurality of the impulses of the first time-varying magnetic field to a muscle, a neuromuscular plate, or a peripheral nerve innervating the muscle of the portion of the body region such that the muscle is caused to contract such that the muscle's tone is increased;

applying a plurality of the impulses of the second time-varying magnetic field to a muscle, a neuromuscular plate, or a peripheral nerve innervating the muscle of the other portion of the body region such that at least one different muscle of the body region is caused to contract such that different muscle's tone is increased;

cooling skin of the body region of the patient such that a temperature of adipose cells is in a range of −2° C. to 15° C. such that the patient's apoptotic index increases.

25. The method of claim 24 , wherein the body region comprises the patient's abdomen.

26. The method of claim 24 , wherein the body region comprises the patient's buttocks.

27. The method of claim 24 , further comprising:

discharging a first energy storage device to the first magnetic field generating coil; and

discharging a second energy storage device to the second magnetic field generating coil,

wherein the first applicator is connected to a source of fluid via a first connecting tube, and wherein the second applicator is connected to the source of fluid via a second connecting tube.

28. The method of claim 24 , further comprising:

applying a first burst and a second burst to the patient by the first magnetic field generating coil, each of the first and second bursts comprising a train of pulses having a constant repetition rate;

applying a third burst and a fourth burst to the patient by the second magnetic field generating coil, each of the third and fourth bursts comprising a train of pulses having a constant repetition rate;

applying a fifth burst to the patient by the first magnetic field generating coil, the fifth burst comprising a train of pulses having a constant repetition rate; and

applying a sixth burst to the patient by the second magnetic field generating coil, the sixth burst comprising a train of pulses having a constant repetition rate,

wherein the fifth burst's train's repetition rate is different than the first burst's train's repetition rate and the third burst's train's repetition rate,

wherein the sixth burst's train's repetition rate is different than the first burst's train's repetition rate and the third burst's train's repetition rate, and

wherein the first, second, third, fourth, fifth, and sixth bursts are all applied during a single treatment.

29. The method of claim 24 , positioning the first and second applicators such that the centers of the coils are spaced apart 15 cm to 40 cm during a treatment.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2022
From: BTL HEALTHCARE TECHNOLOGIES A.S.
To: BTL MEDICAL SOLUTIONS A.S.
Reel/Frame 061498/0810 →
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 Jun 2, 2021
From: BTL MEDICAL TECHNOLOGIES S.R.O
To: BTL HEALTHCARE TECHNOLOGIES A.S.
Reel/Frame 056414/0727 →
MERGER Recorded Aug 13, 2019
From: MEDICAL TECHNOLOGIES CZ A.S.
To: BTL MEDICAL TECHNOLOGIES S.R.O.
Reel/Frame 050034/0451 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2019
From: SCHWARZ, TOMAS; PROUZA, ONDRA
To: MEDICAL TECHNOLOGIES CZ A.S.
Reel/Frame 048067/0675 →
Continuity (18)
Continuation In Part 16042093 · Jul 23, 2018
Continuation In Part 15954783 · Apr 17, 2018
Continuation In Part 15344811 · Nov 7, 2016
Continuation In Part 15862410 · Jan 4, 2018
Continuation In Part 15677371 · Aug 15, 2017
Continuation In Part 15601719 · May 22, 2017
Continuation In Part 15473390 · Mar 29, 2017
Continuation In Part 15446951 · Mar 1, 2017
Continuation In Part 15404384 · Jan 12, 2017
Continuation In Part 15396073 · Dec 30, 2016
Continuation In Part 15178455 · Jun 9, 2016
Continuation In Part 15151012 · May 10, 2016
Continuation In Part 15860443 · Jan 2, 2018
Continuation In Part 16218735 · Dec 13, 2018
Continuation In Part 16034752 · Jul 13, 2018
Continuation In Part 16034793 · Jul 13, 2018
Continuation In Part 16196798 · Nov 20, 2018
Continuation In Part 16196837 · Nov 20, 2018
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