Claims
- 1. A method for treating tumors by radiosurgery with focused x-rays comprising the steps of:
(a) delivering an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement; (c) repeating steps a and b until a desired amount of said contrast agent is delivered into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with said focused x-rays, wherein said focused x-rays are achieved by arcing.
- 2. A method for treating tumors by radiosurgery with focused x-rays comprising the steps of:
(a) delivering an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement; (c) repeating steps a and b until a desired amount of said contrast agent is delivered into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with said focused x-rays; wherein said focused x-rays are achieved by collimation.
- 3. A method for treating tumors by radiosurgery with focused x-rays comprising the steps of:
(a) delivering an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement; (c) repeating steps a and b until a desired amount of said contrast agent is delivered into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with said focused x-rays; wherein said focused x-rays are achieved by multiple static beams.
- 4. A method for treating tumors by radiosurgery with x-rays comprising the steps of:
(a) delivering an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement; (c) repeating steps a and b until a desired amount of said contrast agent is delivered into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with x-rays, said method resulting in an x-ray dose ehancement in said tumor of about 2:1 to about 10:1; wherein said contrast agent is selected from the group consisting of manganese, iron, NC100150, Clariscan, Echogen, code 7228, Combidex, Imagent, BR-1, Gastromiro, LumenHance, MultiHance, SonoRx, Uromiro, Tomojet, Definity, MS-325, Optimark, Sinerem, Telebrix, Optiject, Dotarem, Endorem, Lipiodol U. F., Bleu Patenté V. Prepacol, Gastrobul, Angiomark, Liebel-Flarsheim contrast injectors, Optison, Albunex, MB-840, Oralex, Abdoscan, Imagopaque, Sonazoid, Gadolite, Biliscopin, Gadovist, Isovist, and Medrad.
- 5. The method of claim 4 wherein said x-rays are focused.
- 6. The method of claim 4 wherein said step of delivering said contrast agent is performed by intravenous injection of said contrast agent.
- 7. The method of claim 4 wherein said step of delivering said contrast agent is performed by injecting said contrast agent directly into said tumor.
- 8. The method of claim 7 wherein said step of delivering said contrast agent injects said contrast agent into a surface portion of said tumor.
- 9. The method of claim 4 wherein said step of delivering said contrast agent is directed by ultrasonography.
- 10. The method of claim 4 wherein said step of calibrating the amount of said contrast agent to determine x-ray dose enhancement is performed with the equation de=1+1.3p, where de means dose enhancement and p is the percentage of said contrast agent by weight in said tumor.
- 11. The method of claim 4 wherein said step of calibrating the amount of said contrast agent to determine x-ray dose enhancement is performed with a computed tomography scanner and further comprises the steps of:
(a) scanning said tumor with said computed tomography scanner: (b) determining a Hounsfield number H in said tumor with said computed tomography scanner; (c) using said Hounsfield number H to calculate the x-ray dose enhancement with the equation de=1+0.0025H, where de equals dose enhancement.
- 12. The method of claim 4 wherein said x-rays have an energy of about 30 keV to about 150 keV.
- 13. The method of claim 12 wherein said x-rays have an energy of about 40 keV to about 80 keV.
- 14. A method for treating tumors by radiosurgery with x-rays, said method comprising the steps of:
(a) injecting an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement with the equation de=1+1.3p, where de means dose enhancement and p is the percentage of said contrast agent by weight in said tumor; (c) repeating steps a and b until a desired amount of said contrast agent is injected into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with x-rays having an energy of between about 40 keV and about 80 keV, wherein said desired amount of said contrast agent results in an x-ray dose enhancement in said tumor of about 2:1 to about 10:1; and wherein said contrast agent is selected from the group consisting of manganese, iron, NC100150, Clariscan, Echogen, code 7228, Combidex, Imagent, BR-1, Gastromiro, LumenHance, MultiHance, SonoRx, Uromiro, Tomojet, Definity, MS-325, Optimark, Sinerem, Telebrix, Optiject, Dotarem, Endorem, Lipiodol U. F., Bleu Patenté V. Prepacol, Gastrobul, Angiomark, Liebel-Flarsheim contrast injectors, Optison, Albunex, MB-840, Oralex, Abdoscan, Imagopaque, Sonazoid, Gadolite, Biliscopin, Gadovist, Isovist, and Medrad.
- 15. The method of claim 14 wherein said x-rays are focused.
- 16. The method of claim 14 wherein said step of injecting said contrast agent is directed by ultrasonography.
- 17. The method of claim 14 wherein said step of injecting said contrast agent injects said contrast agent into a surface portion of said tumor.
- 18. A method for treating tumors by radiosurgery with x-rays, said method comprising the steps of:
(a) injecting an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement by the steps of:
(i) scanning said tumor injected with said contrast agent with a computed tomography scanner; (ii) determining a Hounsfield number H in said tumor with said computed tomography scanner; (iii) using said Hounsfield number H to calculate the dose enhancement with the equation de=1+0.0025H; (c) repeating steps a and b until a desired amount of said contrast agent is injected into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with x-rays having an energy of between about 40 keV and about 80 keV, wherein said desired amount of said contrast agent results in an x-ray dose enhancement in said tumor of about 2:1 to about 10:1; and wherein said contrast agent is selected from the group consisting of manganese, iron, NC100150, Clariscan, Echogen, code 7228, Combidex, Imagent, BR-1, Gastromiro, LumenHance, MultiHance, SonoRx, Uromiro, Tomojet, Definity, MS-325, Optimark, Sinerem, Telebrix, Optiject, Dotarem, Endorem, Lipiodol U. F., Bleu Patenté V. Prepacol, Gastrobul, Angiomark, Liebel-Flarsheim contrast injectors, Optison, Albunex, MB-840, Oralex, Abdoscan, Imagopaque, Sonazoid, Gadolite, Biliscopin, Gadovist, Isovist, and Medrad.
- 19. The method of claim 18 wherein said x-rays are focused.
- 20. The method of claim 18 wherein said step of injecting said contrast agent is directed by ultrasonography.
- 21. The method of claim 18 wherein the step of injecting said contrast agent injects said contrast agent into a surface portion of said tumor.
- 22. A method for treating tumors by radiosurgery with x-rays, said method comprising the steps of:
(a) injecting an amount of a contrast agent into a surface portion of a tumor; (b) calibrating the amount of said contrast agent within said surface portion of said tumor to determine x-ray dose enhancement with the equation de=1+1.3p, where de means dose enhancement and p is the percentage of said contrast agent by weight in said surface portion of said tumor; (c) repeating steps a and b until a desired amount of said contrast agent is injected into said surface portion of said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with x-rays having an energy of between about 40 keV and about 80 keV, wherein said desired amount of said contrast agent results in an x-ray dose enhancement in said surface portion of said tumor of about 2:1 to about 10:1; and wherein said contrast agent is selected from the group consisting of manganese, iron, NC100150, Clariscan, Echogen, code 7228, Combidex, Imagent, BR-1, Gastromiro, LumenHance, MultiHance, SonoRx, Uromiro, Tomojet, Definity, MS-325, Optimark, Sinerem, Telebrix, Optiject, Dotarem, Endorem, Lipiodol U. F., Bleu Patenté V. Prepacol, Gastrobul, Angiomark, Liebel-Flarsheim contrast injectors, Optison, Albunex, MB-840, Oralex, Abdoscan, Imagopaque, Sonazoid, Gadolite, Biliscopin, Gadovist, Isovist, and Medrad.
- 23. The method of claim 22 wherein said x-rays are focused.
- 24. The method of claim 22 wherein said step of injecting said contrast agent is directed by ultrasonography.
- 25. A method for treating tumors by radiosurgery with x-rays, said method comprising the steps of:
(a) injecting an amount of a contrast agent into a surface portion of a tumor; (b) calibrating the amount of said contrast agent within said surface portion of said tumor to determine x-ray dose enhancement by the steps of:
(i) scanning said surface portion of said tumor injected with said contrast agent with a computed tomography scanner; (ii) determining a Hounsfield number H in said surface portion of said tumor with said computed tomography scanner; (iii) using said Hounsfield number H to calculate the dose enhancement with the equation de=1+0.0025H; (c) repeating steps a and b until a desired amount of said contrast agent is injected into said surface portion of said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with x-rays having an energy of between about 40 keV and about 80 keV, wherein said desired amount of said contrast agent results in an x-ray dose enhancement in said surface portion of said tumor of about 2:1 to about 10:1; and wherein said contrast agent is selected from the group consisting of manganese, iron, NC100150, Clariscan, Echogen, code 7228, Combidex, Imagent, BR-1, Gastromiro, LumenHance, MultiHance, SonoRx, Uromiro, Tomojet, Definity, MS-325, Optimark, Sinerem, Telebrix, Optiject, Dotarem, Endorem, Lipiodol U. F., Bleu Patenté V. Prepacol, Gastrobul, Angiomark, Liebel-Flarsheim contrast injectors, Optison, Albunex, MB-840, Oralex, Abdoscan, Imagopaque, Sonazoid, Gadolite, Biliscopin, Gadovist, Isovist, and Medrad.
- 26. The method of claim 25 wherein said x-rays are focused.
- 27. The method of claim 25 wherein said step of injecting said contrast agent is directed by ultrasonography.
- 28. A method for treating tumors by radiosurgery with x-rays, said method comprising the steps of:
(a) injecting an amount of a contrast agent into a tumor, wherein said step of injecting said contrast agent is directed by ultrasonography; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement with the equation de=1+1.3p, where de means dose enhancement and p is the percentage of said contrast agent by weight in said tumor; (c) repeating steps a and b until a desired amount of said contrast agent is injected into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with x-rays having an energy of between about 40 keV and about 80 keV, wherein said desired amount of said contrast agent results in an x-ray dose enhancement in said tumor of about 2:1 to about 10:1; and wherein said contrast agent is selected from the group consisting of manganese, iron, NC100150, Clariscan, Echogen, code 7228, Combidex, Imagent, BR-1, Gastromiro, LumenHance, MultiHance, SonoRx, Uromiro, Tomojet, Definity, MS-325, Optimark, Sinerem, Telebrix, Optiject, Dotarem, Endorem, Lipiodol U. F., Bleu Patenté V. Prepacol, Gastrobul, Angiomark, Liebel-Flarsheim contrast injectors, Optison, Albunex, MB-840, Oralex, Abdoscan, Imagopaque, Sonazoid, Gadolite, Biliscopin, Gadovist, Isovist, and Medrad.
- 29. The method of claim 28 wherein said x-rays are focused.
- 30. A method for treating tumors by radiosurgery with focused x-rays, said method comprising the steps of:
(a) injecting an amount of a contrast agent into a tumor, wherein said step of injecting said contrast agent is directed by ultrasonography; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement by the steps of:
(i) scanning said tumor injected with said contrast agent with a computed tomography scanner; (ii) determining a Hounsfield number H in said tumor with said computed tomography scanner; (iii) using said Hounsfield number H to calculate the dose enhancement with the equation de=1+0.0025H; (c) repeating steps a and b until a desired amount of said contrast agent is injected into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with x-rays having an energy of between about 40 keV and about 80 keV, wherein said desired amount of said contrast agent results in an x-ray dose enhancement in said tumor of about 2:1 to about 10:1; and wherein said contrast agent is selected from the group consisting of manganese, iron, NC100150, Clariscan, Echogen, code 7228, Combidex, Imagent, BR-1, Gastromiro, LumenHance, MultiHance, SonoRx, Uromiro, Tomojet, Definity, MS-325, Optimark, Sinerem, Telebrix, Optiject, Dotarem, Endorem, Lipiodol U. F., Bleu Patenté V. Prepacol, Gastrobul, Angiomark, Liebel-Flarsheim contrast injectors, Optison, Albunex, MB-840, Oralex, Abdoscan, Imagopaque, Sonazoid, Gadolite, Biliscopin, Gadovist, Isovist, and Medrad.
- 31. The method of claim 30 wherein said x-rays are focused.
- 32. A method for treating tumors by immunotherapy with x-rays comprising the steps of:
(a) delivering an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement; (c) repeating steps a and b until a desired amount of said contrast agent is delivered into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with said x-rays, wherein said x-rays produce necrotic cellular debris within said tumor, said necrotice cellular debris eliciting an immune response.
- 33. The method of claim 32 wherein said x-rays are focused.
- 34. The method of claim 32 further comprising (e) treating said tumor with immunocytokines.
- 35. The method of claim 32 further comprising (e) treating said tumor with antigen-presenting cells.
- 36. The method of claim 32 further comprising (e) treating said tumor with lymphocytic cells.
- 37. A method for treating tumors by anti-angiogenesis therapy with x-rays comprising the steps of:
(a) delivering an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement; (c) repeating steps a and b until a desired amount of said contrast agent is delivered into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with said x-rays, wherein said x-rays enhance the activity of anti-angiogenesis within said tumor.
- 38. The method of claim 37 wherein said x-rays are focused.
- 39. A method for treating tumors by chemotherapy with x-rays comprising the steps of:
(a) delivering an amount of a contrast agent into a tumor; (b) calibrating the amount of said contrast agent within said tumor to determine x-ray dose enhancement; (c) repeating steps a and b until a desired amount of said contrast agent is delivered into said tumor to provide a desired amount of x-ray dose enhancement; (d) irradiating said tumor containing said desired amount of said contrast agent with said x-rays, wherein said x-rays increase the therapeutic window of said chemotherapy.
- 40. The method of claim 39 wherein said x-rays are focused.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/057,106, filed Aug. 27, 1997, and further claims the benefit of U.S. patent application Ser. No. 09/140,981, filed Aug. 27, 1998, which is now U.S. Pat. No. 6,125,295, issued Sep. 26, 2000, and further claims the benefit of U.S. patent application Ser. No. 09/550,498, filed Apr. 14, 2000.
Continuations (1)
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Number |
Date |
Country |
Parent |
09140981 |
Aug 1998 |
US |
Child |
10113511 |
Apr 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09550498 |
Apr 2000 |
US |
Child |
10113511 |
Apr 2002 |
US |