SUBACUTE NEUROPATHOLOGICAL EFFECTS OF MICROPLANAR BEAMS OF X-RAYS FROM A SYNCHROTRON WIGGLER

被引:231
作者
SLATKIN, DN
SPANNE, P
DILMANIAN, FA
GEBBERS, JO
LAISSUE, JA
机构
[1] KANTONSSPITAL,INST PATHOL,CH-6004 LUZERN,SWITZERLAND
[2] UNIV BERN,INST PATHOL,CH-3010 BERN,SWITZERLAND
关键词
MICROBEAM; RADIOTHERAPY; NEUROPATHOLOGY;
D O I
10.1073/pnas.92.19.8783
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Microplanar beam radiation therapy has been proposed to treat brain tumors by using a series of rapid exposures to an array of parallel x-ray beams, each beam having uniform microscopic thickness and macroscopic breadth (i.e., microplanar). Thirty-six rats were exposed head-on either to an upright 4 mm-high, 20- or 37-mu m-wide beam or to a horizontal 7-mm-wide, 42-mu m-high beam of mostly 32- to 126-keV, minimally divergent x-rays from the X17 wiggler at the National Synchrotron Light Source at Brookhaven National Laboratory. Parallel slices of the head, separated at either 75 or 200 mu m on center, were exposed sequentially at 310-650 grays (Gy) per second until each skin-entrance absorbed dose reached 312, 625, 1250, 2500, 5000, or 10,000 Gy. The rats were euthanized 2 weeks or 1 month later, Two rats with 10,000-Gy-entrance slices developed brain tissue necrosis, All the other 10,000- and 5000-Gy-entrance slices and some of the 2500- and 1250-Gy-entrance slices showed loss of neuronal and astrocytic nuclei and their perikarya. No other kind of brain damage was evident histologically in any rat with entrance absorbed doses less than or equal to 5000 Gy, Brain tissues in and between all the 312- and 625-Gy-entrance slices appeared normal. This unusual resistance to necrosis is central to the rationale of microplanar beam radiation therapy for brain tumors.
引用
收藏
页码:8783 / 8787
页数:5
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