Claims
- 1. An ultrasound couplant and medical device lubricant comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 65 wt. %, the balance water.
- 2. The ultrasound couplant and medical device lubricant of claim 1 wherein said polyethylene oxide has a molecular weight of about 100,000 to about 8,000,000.
- 3. The ultrasound couplant and medical device lubricant of claim 1 wherein said polyethylene oxide has a molecular weight of about 200,000 to about 2,000,000.
- 4. The ultrasound couplant and medical device lubricant of claim 1 wherein said polyethylene oxide has a molecular weight of about 600,000.
- 5. The ultrasound couplant and medical device lubricant of claim 4 comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 10 wt %.
- 6. The ultrasound couplant and medical device lubricant of claim 4 comprising polyethylene oxide in a concentration amount of about 4 wt. %.
- 7. The ultrasound couplant and medical device lubricant of claim 6 further comprising propylene glycol in an amount of 18 wt. %.
- 8. The ultrasound couplant and medical device lubricant of claim 1 wherein said ultrasound couplant is biocompatible with body fluids and tissue.
- 9. The ultrasound couplant and medical device lubricant of claim 1 being an in vivo biocompatible ultrasound couplant and medical device lubricant.
- 10. The ultrasound couplant and medical device lubricant of claim 9 being biodegradable, bio-inert, or bio-erodable within a body.
- 11. The ultrasound couplant and medical device lubricant of claim 1 being sterilizable by heat.
- 12. The ultrasound couplant and medical device lubricant of claim 9 wherein said couplant is biodegradable within a body.
- 13. The ultrasound couplant and medical device lubricant of claim 1 having a viscosity of about 4,000 centipoise.
- 14. The ultrasound couplant and medical device lubricant of claim 1 wherein said water is sterile having low and acceptable levels of pyrogens.
- 15. The ultrasound couplant and medical device lubricant of claim 1 being in the form of a fluid or gel.
- 16. The ultrasound couplant and medical device lubricant of claim 1 being excretable from within the human body through natural pathways and processes.
- 17. The ultrasound couplant and medical device lubricant of claim 1 further comprising polyalkylene glycol in the amount of 1 to 45 wt. %.
- 18. An ultrasound couplant and medical device lubricant comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 65 wt. %, polyalkylene glycol in the amount of 1 to 45 wt. %, and the balance water.
- 19. The ultrasound couplant and medical device lubricant of claim 18 wherein said polyalkylene glycol comprises propylene glycol.
- 20. An in vivo biocompatible ultrasound couplant and medical device lubricant comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 65 wt. %, the balance water.
- 21. The in vivo biocompatible ultrasound couplant and medical device lubricant of claim 20 wherein said polyethylene oxide has a molecular weight of about 100,000 to about 2,000,000.
- 22. The in vivo biocompatible ultrasound couplant and medical device lubricant of claim 21 comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 35 wt. %.
- 23. The in vivo biocompatible ultrasound couplant and medical device lubricant of claim 22 wherein said polyethylene oxide has a molecular weight of about 200,000 to about 2,000,000.
- 24. The in vivo biocompatible ultrasound couplant and medical device lubricant of claim 23 comprising polyethylene oxide in a concentration amount of about 1% to about 20%.
- 25. An in vivo biocompatible ultrasound couplant and medical device lubricant comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 65 wt. %, polyalkylene glycol in the amount of 1 to 45 wt. %, and the balance water.
- 26. The in vivo biocompatible ultrasound couplant and medical device lubricant of claim 25 wherein said polyalkylene glycol comprises propylene glycol.
- 27. A method of conducting ultrasound energy between an ultrasound transducer and a target to be imaged from within a body cavity, said method comprising:
providing said transducer with an active area for transmitting and receiving said ultrasound energy, applying an ultrasound couplant to at least one of said target, said transducer, within a transducer cover fitted onto said transducer, and on the exterior of a transducer cover fitted onto said transducer, said couplant being in vivo biocompatible and comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 65 wt. %, the balance water, said couplant having acoustic properties generally equivalent to acoustic properties of said target, placing said transducer into said body cavity aided by the lubricity of said couplant with said active area in contact with said couplant on said target, transmitting and receiving said ultrasound energy respectively to and/or from said target through said ultrasound couplant, whereby subsequent to said transmitting and receiving, said transducer is removed from said cavity and said couplant remains within the body cavity by design or by accident, where it is biodegradable, bio-inert or bioerodable with respect to said target and said body cavity.
- 28. The method of claim 27 wherein said ultrasound couplant further comprises polyalkylene glycol in the amount of 1 to 45 wt. %.
- 29. The method of claim 28 wherein said polyalkylene glycol comprises propylene glycol.
- 30. A method of conducting ultrasound energy between an ultrasound transducer and a target, said method comprising:
providing said transducer with an active area for transmitting and receiving said ultrasound energy, arranging an ultrasound conducting sheath outwardly of said transducer active area, providing an ultrasound couplant between said active area and said sheath, said couplant being in vivo biocompatible and comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 65 wt. %, and the balance water, said couplant having acoustic properties generally equivalent to acoustic properties of said target, placing said couplant on said target if said target is located externally on a body, placing the covered transducer on said target, transmitting and receiving said ultrasound energy respectively to and/or from said target through said sheath and said ultrasound couplant.
- 31. The method of claim 30 wherein said ultrasound couplant further comprises polyalkylene glycol in the amount of 1 to 45 wt. %.
- 32. The method of claim 31 wherein said polyalkylene glycol comprises propylene glycol.
- 33. In an ultrasound guided needle puncture procedure wherein an ultrasound transducer is utilized to guide said needle through skin of a patient and into a target within the body of said patient, the improvement comprising:
applying an ultrasound couplant on said skin, said couplant being in vivo biocompatible and comprising polyethylene oxide in a concentration amount of about 0.05 wt. % to about 65 wt., the balance water, carrying out said needle puncture procedure utilizing said ultrasound transducer to guide said needle to said target, whereby couplant carried by said needle into said body during the procedure remains in said body where it is biodegradable, bio-inert or bioerodable with respect to said body.
- 34. The procedure of claim 33 wherein said ultrasound couplant further comprises polyalkylene glycol in the amount of 1 to 45 wt. %.
- 35. The method of claim 34 wherein said polyalkylene glycol comprises propylene glycol.
Parent Case Info
[0001] This application is a continuation-in-part of copending application Ser. No. 09/169,359 filed Oct. 9, 1998.
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09346463 |
Jul 1999 |
US |
| Child |
09804124 |
Mar 2001 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
09169359 |
Oct 1998 |
US |
| Child |
09346463 |
Jul 1999 |
US |