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γ-Knife Radiosurgery for Brainstem Lesions: The Wayne State University Experience

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Journal of Radiosurgery

Abstract

Stereotactic radiosurgery (SRS) is increasingly being used for tumors of the brainstem because it suits the anatomical constraints of this area. We now report on the 2-year experience at Wayne State University using γ-knife SRS for such lesions, with an emphasis on toxicity and morbidity. From January 1996 to January 1998, sixteen patients (6 males and 10 females) with lesions in the area of the brainstem were treated with SRS. Average age was 53 years (range 19–80). Nine lesions were malignant; 7 were benign. Median Karnofsky performance status (KPS) prior to SRS was 80 (range 50–100). Median follow-up period from initial diagnosis to analysis, and from the date of SRS to analysis, was 24 months (range 11–73) and 15 months (range 4–29), respectively. Results were analyzed for the whole population treated and then stratified by diagnosis: benign versus malignant. At analysis, 10 (62.6%) patients were alive and 6 (37.5%) were dead. No deaths followed SRS. Values for KPS prior to SRS were compared to 3 months post-SRS. No significant change in KPS scores could be observed for those with benign lesions, but 67% of patients with malignant tumors showed a KPS drop ≥30 points. There was no correlation between the treated volume and survival. At the time of review, no patients had developed new neurological symptoms after SRS. Results for benign lesions indicate that SRS is well tolerated, provides good local control, and does not cause unusual rates of morbidity or mortality. Results for malignant lesions demonstrate that pretreatment performance status influences the post-SRS values. The post-SRS Median Survival (MS) of 10 months for the Malignant Lesions (M) is impressive, in light of the drop of KPS observed; the outcome for such patients is likely determined by the activity of the primary disease process. Our results suggest that SRS in the brainstem is safe, feasible, and merits further study.

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REFERENCES

  1. Kun LE: Brain tumors in children. In Perez CA, Brady LW (eds), Principles and Practice of Radiation Oncology, 2nd ed. Philadelphia: JB Lippincott, 1992, pp. 1417–1441

    Google Scholar 

  2. Plunkett SR: Conventional radiotherapy of specific CNS tumors. In Wilkins RH, Rengachary SS, (eds). Neurosurgery, vol. 1. New York: McGraw-Hill, 1985, pp. 1096–1113

    Google Scholar 

  3. Barcia JA, Barcia-Salorio JL, Ferrer C, Ferrer E, Algas R, Hernandez G: Stereotactic radiosurgery of deeply seated low grade gliomas. Acta Neurochir 62(suppl):58–61, 1994

    Google Scholar 

  4. Kondziolka D, Lunsford LD, Flickinger JC: Intraparenchymal brain stem radiosurgery. Neuro Surg Clin North Am 4:469–479, 1993

    Google Scholar 

  5. Hirato M, Nakamura M, Inoue HK, Ohye C, Hirato J, Shibazaki T, Andou Y: Gamma knife radiosurgery for the treatment of brainstem tumors. Stereotact Funct Neurosurg 64(suppl 1):32–41, 1995

    Google Scholar 

  6. Shaw EG, Coffer RJ, Dinapoli RP: Neurotoxicity of radiosurgery. Semin Radiat Oncol 5:325–245, 1995

    Google Scholar 

  7. Flickinger JC, Lunsford LD, Kondziolka D, Maitz AM, Epstein A, Simons S, Wu A: Radiosurgery and brain tolerance: An analysis of neurodiagnostic imaging changes following gamma knife radiosurgery for arteriovenous malformations. Int J Radiat Oncol Phys 23:19–26, 1992

    Google Scholar 

  8. Linquist C: Gamma knife radiosurgery. Semin Radiat Oncol 5:197–202, 1995

    Google Scholar 

  9. Coy SR, Houdek PV: Radiosurgery treatment planning. Semin Radiat Oncol 5:213–219, 1995

    Google Scholar 

  10. Kondziolka D, Lunsford LD, Coffey RJ, Flickinger JC: Gamma knife radiosurgery for meningiomas. Stereotact Funct Neurosurg 57:11–21, 1991

    Google Scholar 

  11. Flickinger JC, Kondziolka D, Maitz AH, Lunsford LD: Analysis of neurological sequelae from radiosurgery of arteriovenous malformations: How location affects outcome. Int J Radiat Oncol Biol Phys 40:273–278, 1998

    Google Scholar 

  12. Flickinger JC, Kondziolka D, Pollock BE, Maitz AH, Lunsford LD: Complications from arteriovenous malformation radiosurgery: Multivariate analysis and risk modeling. Int J Radiat Oncol Biol Phys 38:485–490, 1997

    Google Scholar 

  13. Young RF: Radiosurgery for the treatment of brain metastases. Semin Surg Oncol 14:70–78, 1998

    Google Scholar 

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Correspondence to Gregory M. M. Videtic.

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Videtic, G.M.M., Gaspar, L.E., Zamorano, L. et al. γ-Knife Radiosurgery for Brainstem Lesions: The Wayne State University Experience. Journal of Radiosurgery 2, 135–139 (1999). https://doi.org/10.1023/A:1022966629467

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  • DOI: https://doi.org/10.1023/A:1022966629467

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