Methods and devices for endovascular therapy
The present invention provides methods and devices for treating endovascular disease. Vibrational energy is delivered to change compliance and increase permeability at the treatment area. To improve clinical outcomes, one or more therapeutic drugs may be delivered to the treatment area.
1. A method of treating tissue, blood clots or liquids via a patient's endovascular system comprising the steps of:
positioning a vibrational device at a treatment area within interior walls of a body lumen of the patient's endovascular system, wherein the vibrational device comprises an elongated flexible shaft, a transmission member, and a lumen in the elongated flexible shaft, wherein the transmission member extends at least partially through the lumen of the elongated flexible shaft;
introducing an irrigation fluid into the body lumen with the vibrational device;
propagating vibrational energy through the transmission member from a proximal transducer located outside the patient to a distal portion of the transmission member, the vibrational energy producing: (1) elliptic surface waves to propagate distal to the transmission member toward the treatment area along an interface between the irrigation fluid and the interior walls of the body lumen, and (2) longitudinal waves propagating from a tip of the vibrational device; and
while producing the elliptic surface waves along the interior walls of the body lumen and the longitudinal waves, simultaneously introducing a therapeutic agent to the irrigation fluid via the vibrational device to thereby increase a permeability of the therapeutic agent passing into the treatment area by causing the therapeutic agent to mix with the irrigation fluid delivered by the vibrational device.
2. The method of claim 1 , wherein the transmission member has a distal end, and a proximal end connectable to a separate vibrational energy generating device and configured to deliver vibrational energy to the distal end of the transmission member.
3. The method of claim 2 , wherein a radiopaque marker is positioned on the distal end of the transmission member.
4. The method of claim 2 , wherein a tip is positioned on the distal end of the vibrational device so that, when the vibrational device is positioned proximate to the treatment site within the body lumen, the tip extends distal to the treatment site while the transmission member remains proximal to the treatment site.
5. The method of claim 4 , wherein the tip is formed of the same material as the transmission member.
6. The method of claim 4 , wherein the tip is attached to the distal end of the transmission member.
7. The method of claim 1 , wherein the vibrational energy transmission member is partially positioned outside the flexible shaft.
8. The method of claim 1 , wherein vibrational energy is delivered in one of the following manners: before removal of the tissue, blood clots or liquids, during removal of the tissue, blood clots or liquids, after removal of the tissue, blood clots or liquids, or a combination thereof.
9. A method of removing tissue, blood clots and liquids from a body lumen of a patient, the method comprising the steps of:
positioning a vibrational device at a treatment area with 1 in the body lumen of the patient, wherein the vibrational device comprises an elongated flexible shaft, a transmission member, and a lumen in the elongated flexible shaft, wherein the transmission member extends at least partially through the lumen of the elongated flexible shaft;
introducing an irrigation fluid into the body lumen of the patient with the vibrational device;
propagating vibrational energy through the transmission member from a proximal transducer located outside the patient to a distal end of the transmission member while introducing the irrigation fluid, the vibrational energy causing (1) elliptic surface waves to propagate along an interface between the interior walls of the body lumen and the irrigational fluid in the body lumen at the distal end of the transmission member toward the treatment area, (2) longitudinal waves propagating from a tip of the vibrational device, and (3) transverse waves propagating from a portion of the elongated flexible shaft extending out of the lumen; and
while producing the transverse waves, the longitudinal waves, and the elliptic surface waves along the interior walls of the body lumen, simultaneously introducing a therapeutic agent into the irrigation fluid via the vibrational device so that the elliptic surface waves produce an increase in a permeability of the therapeutic agent passing into the treatment area by causing the therapeutic agent to mix with the irrigation fluid delivered by the vibrational device.
10. A method of removing tissue, blood clots and liquids from a patient comprising the steps of:
positioning a vibrational device at a treatment area within a body lumen of the patient, wherein the vibrational device comprises an elongated flexible shaft, a transmission member, and a lumen in the elongated flexible shaft, wherein the transmission member extends at least partially through the lumen of the elongated flexible shaft;
introducing an irrigation fluid into the body lumen from the vibrational device;
propagating vibrational energy through the transmission member from a proximal transducer located outside the patient to a distal end of the transmission member while introducing the irrigation fluid, the vibrational energy causing (1) elliptic surface waves at the distal end of the transmission member to propagate along an interface between the irrigation fluid and the interior walls of the body lumen toward the treatment area, and (2) transverse waves propagating from a portion of the elongated flexible shaft extending out of the lumen; and
while producing the elliptic surface waves along the interior walls of the body lumen and the transverse waves, simultaneously introducing a therapeutic agent to the treatment area via the vibrational device to thereby facilitate an increase in a permeability of the therapeutic agent passing into the treatment area by causing the therapeutic agent to mix with the irrigation fluid delivered by the vibrational device.
11. The method of claim 10 , further comprising delivering the surface waves in a continuous mode.
12. The method of claim 10 , further comprising delivering the surface waves in a pulse mode.
13. The method of claim 10 , further comprising delivering the surface waves in a modulated mode.
14. The method of claim 10 , further comprising delivering the surface waves in the combination of a pulse mode and at least one of a continuous mode and a modulated mode.
15. The method of claim 10 , further comprising delivering the surface waves in the combination of a continuous mode and at least one of a pulse mode and a modulated mode.
16. The method of claim 10 wherein the vibrational energy propagating from the transmission member is configured to increase the permeability of the therapeutic agent by promoting intra-cellular activation of cells within the patient's endovascular system.
17. The method of claim 10 wherein the vibrational energy propagating from the transmission member is configured to increase the permeability of the therapeutic agent by creating cavitation that results in micro-indentation in the treatment area.
18. The method of claim 10 wherein the vibrational energy propagating from the transmission member is configured to increase the permeability of the therapeutic agent by causing local vasodilation or sonophoresis of the tissue in the treatment area.
19. The method of claim 10 wherein a tip is positioned on the distal end of the vibrational device so that, when the vibrational device is positioned proximate to the treatment site within the body lumen, the tip extends distal to the treatment site while the transmission member remains proximal to the treatment site.