Shock wave device
A device for shock wave production to treat a patient's body comprises a base with a condenser as power supply, an applicator having a pad, at least one piezo-element configured to generate a shock wave in response to a pulse of electric current having a pulse width, an acoustic lens configured to focus the shock wave, and a coil configured to increase the pulse width of the pulse of electric current.
1 . A device for shock wave production to treat urological problems of a patient's body, comprising:
a condenser and a switch configured to discharge a pulse of electric current; and
an applicator configured to be coupled to the condenser and the switch and configured to provide a shock wave pulse to the patient's body, the applicator comprising:
an applicator cell comprising a cavity;
a single piezo-element attached to the applicator cell at a bottom of the cavity configured to generate the shock wave pulse in response to the pulse of electric current;
a dielectric material positioned in the cavity, fixing the single piezo-element in the cavity; and
an acoustic lens attached to the applicator cell below the single piezo-element configured to focus the shock wave pulse into the patient's body to provide pressure to the patient's body to treat the urological problems of the patient's body;
wherein the single piezo-element has a volume in a range of 1.5 cm 3 to 600 cm 3 .
2 . The device according to claim 1 , wherein a repetition frequency of delivery of the shock wave pulse is in a range of 1 Hz to 40 Hz.
3 . The device according to claim 1 , wherein the device further comprises at least one coil forming a circuit with the condenser and the switch, the at least one coil having an inductance in a range of 1 μH to 6 mH.
4 . The device according to claim 3 , wherein the at least one coil comprises a plurality of coils; and wherein the applicator is configured such that individual coils from the plurality of coils may be connected or disconnected in the circuit.
5 . The device according to claim 1 , wherein the acoustic lens has a radius of curvature in a range of 30 mm to 350 mm, and wherein the shock wave is configured to have a depth of focus volume at a vertical maximum focal volume cross section in a range of 0.1 mm to 100 mm.
6 . The device according to claim 1 , wherein the dielectric material has a flexural strength in a range of 10 MN·m −2 to 500 MN·m −2 .
7 . The device according to claim 1 , wherein the dielectric material has a tensile strength in a range of 10 MN m −2 to 300 MN·m −2 .
8 . The device according to claim 1 , wherein the dielectric material has an acoustic impedance in a range of 0.9·10 6 kg·m −2 ·s −1 to 6·10 6 kg·m −2 ·s −1 .
9 . The device according to claim 1 , wherein the least one shock wave pulse has a duration in a range of 200 ns to 30 μs.
10 . A device for shock wave production to treat urological problems of a patient's body, comprising:
a base comprising a condenser and a switch configured to discharge a pulse of electric current;
an applicator configured to be coupled to the base, the applicator comprising:
an applicator cell comprising a cavity, an inside of the cavity comprising:
a single piezo-element attached to the applicator cell at a bottom of the cavity;
a conductive plate attached to the single piezo-element;
a coil configured to be electrically connected in series with the conductive plate and the switch; and
a quantity of dielectric material positioned in the cavity, configured to fix and to protect the single piezo-element inside the cavity;
wherein the single piezo-element is configured to provide a shock wave in response to the pulse of electric current passing through the coil to the conductive plate based on a piezoelectric effect; and
an acoustic lens attached to the applicator cell below the single piezo-element and configured to focus the shock wave pulse into the patient's body;
wherein the shock wave is configured to deliver a pressure in a range of 5 MPa to 250 MPa to the patient's body to treat the urological problems of the patient's body.
11 . The device according to claim 10 , wherein the pulse of electric current has a voltage in a range of 2 kV to 50 kV.
12 . The device according to claim 10 , wherein the pulse of electric current passing through the coil is in a range of 10 A to 1 kA.
13 . The device according to claim 10 , wherein the acoustic lens has a radius of curvature in a range of 30 mm to 350 mm.
14 . The device according to claim 10 , wherein the dielectric material has an acoustic impedance in a range of 0.9·10 6 kg·m −2 ·s −1 to 6·10 6 kg·m −2 ·s −1 ; and wherein the acoustic lens has an acoustic impedance in a range of 10·10 6 kg·m −2 ·s −1 to 46·10 6 kg·m −2 ·s −1 .
15 . The device according to claim 10 , configured to produce first and second shock waves generated by one excitation electric pulse; and wherein a maximal pressure value of the second shock wave is greater than a maximal pressure value of the first shock wave.
16 . A method of treatment of urological problems of a patient's body, comprising:
coupling an applicator to a condenser and a switch configured to discharge a high voltage pulse of electric current;
positioning the applicator adjacent to a tissue of a patient, the applicator comprising:
an applicator cell comprising a cavity;
a coil inside the cavity configured to be electrically coupled to the condenser and the switch on an input of the coil;
a single piezo-element inside the cavity attached to the applicator cell at the bottom of the cavity;
a conductive plate inside the cavity, coupled to the single piezo-element and electrically connected to an output of the coil;
a quantity of dielectric material positioned in the cavity, configured to fix and increase durability of the single piezo-element inside the cavity; and
an acoustic lens configured to be attached to the applicator cell below the single piezo-element;
discharging the high voltage pulse of electric current through the coil to the conductive plate;
redistributing the high voltage pulse of electric current across the single piezo-element via the conductive plate;
generating a shock wave with the single piezo-element in response to the high voltage pulse of the electric current; and
focusing the shock wave pulse into the patient's body with the acoustic lens, such that a pressure delivered to treat the urological problems of the patient's body is in a range of 5 MPa to 250 MPa.
17 . The method according to claim 16 , wherein the high voltage pulse of electric current has a full width at half maximum in a range of 0.05 μs to 30 μs.
18 . The method according to claim 16 , wherein the energy of the shock wave in at least part of the focus volume is in a range of 0.01 mJ·mm −2 to 20 mJ·mm −2 .
19 . The method according to claim 16 , wherein the single piezo-element has a diameter in a range of 1 cm to 20 cm.
20 . The method according to claim 16 , wherein the dielectric material has a dielectric constant in a range of 1.0005 to 2000 and dielectric strength in a range of 1 kV·mm −1 to 90 kV·mm −1 .