Malignant astrocytomas: focal tumor recurrence after focal external beam radiation therapy

View More View Less
  • 1 Departments of Neurology and Radiation Oncology, University of Michigan Medical Center, Ann Arbor, Michigan
Restricted access

Purchase Now

USD  $45.00

JNS + Pediatrics - 1 year subscription bundle (Individuals Only)

USD  $515.00

JNS + Pediatrics + Spine - 1 year subscription bundle (Individuals Only)

USD  $612.00
Print or Print + Online

✓ Hochberg and Pruitt have reported glioblastomas recurring within 2 cm of the primary site in 90% of patients after whole-brain radiation therapy. They suggested that computerized tomography (CT) scan accuracy would permit smaller radiation fields. A treatment protocol with smaller-field focal brain irradiation following surgical resection is reported. The first 4500 cGy of radiation is focused to within a 3-cm margin around the tumor, with a 1500-cGy boost within a 1.5-cm margin. Forty-two patients with grade III or IV astrocytoma, treated with focal brain radiation therapy were reviewed retrospectively to assess patterns of tumor recurrence. Thirty patients received intra-arterial bromodeoxyuridine (BUdR) radiosensitization with focal brain radiation therapy, and 12 patients underwent conventional focal brain radiation therapy. Tumor margin was defined on preoperative and recurrence CT scans as the contrast-enhanced area; these were traced on acetate templates and compared with each other and with the actual scans.

In all 42 patients, the lesion recurred within a 2-cm margin of the original tumor. Four patients had two recurrent areas: the second area was within the 2-cm margin in two, and outside this margin in two. These results are similar to those of Hochberg and Pruitt. It is suggested that focal irradiation is now the optimal treatment for malignant astrocytoma. Since recurrences continue to be within the irradiated volumes, it appears that higher focal doses of radiation are appropriate for clinical treatment trials of malignant astrocytomas.

JNS + Pediatrics - 1 year subscription bundle (Individuals Only)

USD  $515.00

JNS + Pediatrics + Spine - 1 year subscription bundle (Individuals Only)

USD  $612.00
  • 1.

    Bashir R, , Hochberg F, & Oot R: Regrowth patterns of glioblastoma multiforme related to planning of interstitial brachytherapy radiation fields. Neurosurgery 23:2730, 1988 Bashir R, Hochberg F, Oot R: Regrowth patterns of glioblastoma multiforme related to planning of interstitial brachytherapy radiation fields. Neurosurgery 23:27–30, 1988

    • Search Google Scholar
    • Export Citation
  • 2.

    Caldwell WL, & Aristizabelk SA: Treatment of glioblastoma multiforme: a review. Acta Radiol 14:505512, 1975 Caldwell WL, Aristizabelk SA: Treatment of glioblastoma multiforme: a review. Acta Radiol 14:505–512, 1975

    • Search Google Scholar
    • Export Citation
  • 3.

    Choucair AK, , Levin VA, & Gutin PH, et al: Development of multiple lesions during radiation therapy and chemotherapy in patients with gliomas. J Neurosurg 65:654658, 1986 Choucair AK, Levin VA, Gutin PH, et al: Development of multiple lesions during radiation therapy and chemotherapy in patients with gliomas. J Neurosurg 65:654–658, 1986

    • Search Google Scholar
    • Export Citation
  • 4.

    Concannon JP, , Kramer S, & Berry R: The extent of intracranial gliomata at autopsy and its relationship to techniques used in radiation therapy of brain tumors. AJR 87:574584, 1962 Concannon JP, Kramer S, Berry R: The extent of intracranial gliomata at autopsy and its relationship to techniques used in radiation therapy of brain tumors. AJR 87:574–584, 1962

    • Search Google Scholar
    • Export Citation
  • 5.

    Daumas-Duport C, , Scheithauer BW, & Kelly PJ: A histologic and cytologic method for the spatial definition of gliomas. Mayo Clin Proc 62:435449, 1987 Daumas-Duport C, Scheithauer BW, Kelly PJ: A histologic and cytologic method for the spatial definition of gliomas. Mayo Clin Proc 62:435–449, 1987

    • Search Google Scholar
    • Export Citation
  • 6.

    Fraass BA, & McShan DL: 3-D treatment planning I. Overview of a clinical planning system, in Vander Giessen PH, , Van Kleffens HS, & Wittkämper SW (eds): The Use of Computers in Radiation Therapy. Amsterdam: North-Holland, 1987, pp 273276 Fraass BA, McShan DL: 3-D treatment planning I. Overview of a clinical planning system, in Vander Giessen PH, Van Kleffens HS, Wittkämper SW (eds): The Use of Computers in Radiation Therapy. Amsterdam: North-Holland, 1987, pp 273–276

    • Search Google Scholar
    • Export Citation
  • 7.

    Fraass BA, & McShan DL: A fast 3-D photon calculation model, in Vander Giessen PH, , Van Kleffens HS, & Wittkämper SW (eds): The Use of Computers in Radiation Therapy. Amsterdam: North-Holland, 1987, pp 521524 Fraass BA, McShan DL: A fast 3-D photon calculation model, in Vander Giessen PH, Van Kleffens HS, Wittkämper SW (eds): The Use of Computers in Radiation Therapy. Amsterdam: North-Holland, 1987, pp 521–524

    • Search Google Scholar
    • Export Citation
  • 8.

    Fraass BA, , McShan DL, & Weeks KJ: 3-D treatment planning III, in Vander Giessen PH, , Van Kleffens HS, & Wittkämper SW (eds): Complete Beam-Eye-View Planning Capabilities. Amsterdam: North-Holland, 1987, pp 193196 Fraass BA, McShan DL, Weeks KJ: 3-D treatment planning III, in Vander Giessen PH, Van Kleffens HS, Wittkämper SW (eds): Complete Beam-Eye-View Planning Capabilities. Amsterdam: North-Holland, 1987, pp 193–196

    • Search Google Scholar
    • Export Citation
  • 9.

    Goiten M, & Abrams M: Multidimensional treatment planning: II. Beam's eye view, backprojection, and projection through CT sections. Int J Radiat Oncol Biol Phys 9:789797, 1983 Goiten M, Abrams M: Multidimensional treatment planning: II. Beam's eye view, backprojection, and projection through CT sections. Int J Radiat Oncol Biol Phys 9:789–797, 1983

    • Search Google Scholar
    • Export Citation
  • 10.

    Greenberg HS, , Chandler WF, & Diaz RF, et al: Intra-arterial bromodeoxyuridine radiosensitization and radiation in treatment of malignant astrocytomas. J Neurosurg 69:500505, 1988 Greenberg HS, Chandler WF, Diaz RF, et al: Intra-arterial bromodeoxyuridine radiosensitization and radiation in treatment of malignant astrocytomas. J Neurosurg 69:500–505, 1988

    • Search Google Scholar
    • Export Citation
  • 11.

    Greenberg HS, , Chandler WF, & Diaz RF, et al: Radiosensitization with constant intra-arterial infusion of bromodeoxyuridine (BUdR) and focal external beam radiation in the treatment of malignant astrocytomas, in Ensminger WD, & Selam JL (eds): Infusion Systems in Medicine. Mt Kisco, NY: Futura, 1987, pp 221232 Greenberg HS, Chandler WF, Diaz RF, et al: Radiosensitization with constant intra-arterial infusion of bromodeoxyuridine (BUdR) and focal external beam radiation in the treatment of malignant astrocytomas, in Ensminger WD, Selam JL (eds): Infusion Systems in Medicine. Mt Kisco, NY: Futura, 1987, pp 221–232

    • Search Google Scholar
    • Export Citation
  • 12.

    Greenberg HS, , Chandler WF, & Ensminger WD, et al: Radiosensitization with carotid arterial infusion bromodeoxyuridine and external beam radiation for gliomas, in Ensminger WD, & Selam JL (eds): Update in Drug Delivery Systems. Mt Kisco, NY: Futura, 1989, pp 233246 Greenberg HS, Chandler WF, Ensminger WD, et al: Radiosensitization with carotid arterial infusion bromodeoxyuridine and external beam radiation for gliomas, in Ensminger WD, Selam JL (eds): Update in Drug Delivery Systems. Mt Kisco, NY: Futura, 1989, pp 233–246

    • Search Google Scholar
    • Export Citation
  • 13.

    Halperin EC, , Bental G, & Heinz ER, et al: Radiation therapy treatment planning in supratentorial glioblastoma multiforme: an analysis based on post mortem topographic anatomy with CT correlation. Int J Radiat Oncol Biol Phys 17:13471350, 1989 Halperin EC, Bental G, Heinz ER, et al: Radiation therapy treatment planning in supratentorial glioblastoma multiforme: an analysis based on post mortem topographic anatomy with CT correlation. Int J Radiat Oncol Biol Phys 17:1347–1350, 1989

    • Search Google Scholar
    • Export Citation
  • 14.

    Hochberg FH, & Pruitt A: Assumptions in the radiotherapy of glioblastoma. Neurology 30:907911, 1980 Hochberg FH, Pruitt A: Assumptions in the radiotherapy of glioblastoma. Neurology 30:907–911, 1980

    • Search Google Scholar
    • Export Citation
  • 15.

    Karnofsky DA, & Burchenal JH: The clinical evaluation of chemotherapeutic agents in cancer, in MacLeod CM (ed): Evaluation of Chemotherapeutic Agents. New York: Columbia University Press, 1949, pp 191205 Karnofsky DA, Burchenal JH: The clinical evaluation of chemotherapeutic agents in cancer, in MacLeod CM (ed): Evaluation of Chemotherapeutic Agents. New York: Columbia University Press, 1949, pp 191–205

    • Search Google Scholar
    • Export Citation
  • 16.

    Onoyama Y, , Abe M, & Yobumoto E, et al: Radiation therapy in the treatment of glioblastoma. AJR 126:481492, 1976 Onoyama Y, Abe M, Yobumoto E, et al: Radiation therapy in the treatment of glioblastoma. AJR 126:481–492, 1976

    • Search Google Scholar
    • Export Citation
  • 17.

    Salazar OM, & Rubin P: The spread of glioblastoma multiforme as a determining factor in the radiation treated volume. Int J Radiat Oncol Biol Phys 1:627637, 1976 Salazar OM, Rubin P: The spread of glioblastoma multiforme as a determining factor in the radiation treated volume. Int J Radiat Oncol Biol Phys 1:627–637, 1976

    • Search Google Scholar
    • Export Citation
  • 18.

    Sheline G: Radiation therapy of brain diseases. Cancer 39:873881, 1977 Sheline G: Radiation therapy of brain diseases. Cancer 39:873–881, 1977

    • Search Google Scholar
    • Export Citation
  • 19.

    Taveras JM, , Thompson HG, & Pool JL: Should we treat glioblastoma multiforme? AJR 87:473479, 1962 Taveras JM, Thompson HG, Pool JL: Should we treat glioblastoma multiforme? AJR 87:473–479, 1962

    • Search Google Scholar
    • Export Citation
  • 20.

    Thornton AF, , Hegarty TJ, & TenHaken RK, et al: Three-dimensional treatment planning of astrocytomas — a dosimetric study of cerebral irradiation. Int J Radiat Oncol Biol Phys (In press, 1991)Thornton AF, Hegarty TJ, TenHaken RK, et al: Three-dimensional treatment planning of astrocytomas — a dosimetric study of cerebral irradiation. Int J Radiat Oncol Biol Phys (In press, 1991)

    • Search Google Scholar
    • Export Citation
  • 21.

    Walker MD, , Strike TA, & Sheline GE: An analysis of dose-effect relationship in the radiotherapy of malignant gliomas. Int J Radiat Oncol Biol Phys 5:17251731, 1979 Walker MD, Strike TA, Sheline GE: An analysis of dose-effect relationship in the radiotherapy of malignant gliomas. Int J Radiat Oncol Biol Phys 5:1725–1731, 1979

    • Search Google Scholar
    • Export Citation
  • 22.

    Wallner KE, , Galicich JH, & Krol G, et al: Patterns of failure following treatment for glioblastoma multiforme and anaplastic astrocytoma. Int J Radiat Oncol Biol Phys 16:14051409, 1989 Wallner KE, Galicich JH, Krol G, et al: Patterns of failure following treatment for glioblastoma multiforme and anaplastic astrocytoma. Int J Radiat Oncol Biol Phys 16:1405–1409, 1989

    • Search Google Scholar
    • Export Citation

Metrics

All Time Past Year Past 30 Days
Abstract Views 888 179 11
Full Text Views 250 8 2
PDF Downloads 102 10 3
EPUB Downloads 0 0 0