Paraspinal tumors: Techniques and results of brachytherapy
Journal Article
·
· International Journal of Radiation Oncology, Biology and Physics; (USA)
- Memorial Sloan-Kettering Cancer Center, New York, NY (USA)
Because of their proximity to nerve roots and the spinal cord, it is frequently difficult to achieve complete resection of paraspinal tumors. We have used brachytherapy in an attempt to prevent local recurrence and its associated neurological sequelae. This report analyzes our experience with 35 patients to determine the feasibility, optimal techniques, and efficacy of this approach. The tumor types were non small-cell lung cancer (18), sarcomas (9), and other tumor types (8). Temporary, single plane implants using Ir-192 (median minimum peripheral dose 3000 cGy) were used in 21 patients, and permanent I-125 implants were used in 14 cases (median matched peripheral dose 12,500 cGy). Local control was achieved in 51% (18/35). However, local control was poor when lung cancers were implanted and in cases where the dura was exposed. Radiation myelitis did not occur despite the combined effects of previous external beam radiotherapy (N = 21) and brachytherapy. Our experience demonstrates that combined surgery and paraspinal brachytherapy can be performed with acceptable toxicity and is reasonably effective in preventing local relapse and its neurologic sequelae, particularly for tumors other than lung cancers.
- OSTI ID:
- 5958362
- Journal Information:
- International Journal of Radiation Oncology, Biology and Physics; (USA), Journal Name: International Journal of Radiation Oncology, Biology and Physics; (USA) Vol. 20:4; ISSN IOBPD; ISSN 0360-3016
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
550603* -- Medicine-- External Radiation in Therapy-- (1980-)
62 RADIOLOGY AND NUCLEAR MEDICINE
BETA DECAY RADIOISOTOPES
BETA-MINUS DECAY RADIOISOTOPES
BETA-PLUS DECAY RADIOISOTOPES
CENTRAL NERVOUS SYSTEM
DAYS LIVING RADIOISOTOPES
DISEASES
DOSES
ELECTRON CAPTURE RADIOISOTOPES
FEASIBILITY STUDIES
HEAVY NUCLEI
IMPLANTS
INTERMEDIATE MASS NUCLEI
INTERNAL CONVERSION RADIOISOTOPES
IODINE 125
IODINE ISOTOPES
IRIDIUM 192
IRIDIUM ISOTOPES
ISOMERIC TRANSITION
ISOTOPES
MEDICINE
NEOPLASMS
NERVOUS SYSTEM
NUCLEAR MEDICINE
NUCLEI
ODD-EVEN NUCLEI
PATIENTS
RADIATION DOSES
RADIATION SOURCE IMPLANTS
RADIATION SOURCES
RADIOISOTOPES
RADIOLOGY
RADIOTHERAPY
SPINAL CORD
THERAPY
62 RADIOLOGY AND NUCLEAR MEDICINE
BETA DECAY RADIOISOTOPES
BETA-MINUS DECAY RADIOISOTOPES
BETA-PLUS DECAY RADIOISOTOPES
CENTRAL NERVOUS SYSTEM
DAYS LIVING RADIOISOTOPES
DISEASES
DOSES
ELECTRON CAPTURE RADIOISOTOPES
FEASIBILITY STUDIES
HEAVY NUCLEI
IMPLANTS
INTERMEDIATE MASS NUCLEI
INTERNAL CONVERSION RADIOISOTOPES
IODINE 125
IODINE ISOTOPES
IRIDIUM 192
IRIDIUM ISOTOPES
ISOMERIC TRANSITION
ISOTOPES
MEDICINE
NEOPLASMS
NERVOUS SYSTEM
NUCLEAR MEDICINE
NUCLEI
ODD-EVEN NUCLEI
PATIENTS
RADIATION DOSES
RADIATION SOURCE IMPLANTS
RADIATION SOURCES
RADIOISOTOPES
RADIOLOGY
RADIOTHERAPY
SPINAL CORD
THERAPY