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DOSIMETRY STUDY FOR β-RADIATION TREATMENT OF IN-STENT RESTENOSIS

机译:β-放射治疗即时再塑的剂量学研究

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摘要

Intravascular brachytherapy (IVBT) has been recognised as a treatment modality for reducing coronary restenosis after angio-plasty and stent-implantation procedures. For the treatment of in-stent restenosis using beta-emitter ~(188) Re, delivering adequate doses to the entire vessel wall is not possible without the potential of overdosing tissues. A method to measure the dose distribution, perturbation and percentage depth dose using plane-parallel and cylindrical tissue-equivalent phantoms has been developed. Good agreement was found between experimental results and Monte Carlo simulation performed using MCNP4C code. The dose given to the affected area in the vascular region for intravascular radiation treatment was 15-30 Gy. Dose inhomogeneity beyond the stent surface decreased significantly with increasing radial distance. In the region close to the stent outer surface (>0.5-mm radial distance), a dose reduction of 11-17% due to the stent was observed. However, the dose perturbations due to the physical properties of metallic stents were found to be significant in IVBT for in-stent restenosis by using measured dose profiles in phantoms. The method can provide accuracy in beta isotope in vivo dosimetry results for treatments involving short-range dose distributions and provide a relatively high-level spatial resolution for detection.
机译:血管内近距离治疗(IVBT)已被认为是减少血管成形术和支架植入术后冠状动脉再狭窄的一种治疗方式。对于使用β-发射体〜(188)Re治疗支架内再狭窄,如果没有组织过量的可能性,则不可能向整个血管壁递送足够的剂量。已经开发出一种使用平面平行和圆柱组织等效体模测量剂量分布,扰动和深度百分比剂量的方法。在实验结果和使用MCNP4C代码执行的蒙特卡洛模拟之间发现了很好的一致性。给予血管区域内的受影响区域以进行血管内放射治疗的剂量为15-30 Gy。随着径向距离的增加,支架表面以外的剂量不均匀性显着降低。在靠近支架外表面的区域(径向距离> 0.5 mm)中,由于支架,剂量减少了11-17%。然而,通过使用幻象中的测量剂量分布,发现金属支架的物理性能引起的剂量扰动在支架内再狭窄的IVBT中很显着。该方法可以为涉及短程剂量分布的治疗提供β同位素体内剂量测定结果的准确性,并为检测提供相对较高水平的空间分辨率。

著录项

  • 来源
    《Radiation Protection Dosimetry》 |2009年第1期|49-54|共6页
  • 作者单位

    Health Physics Division, Institute of Nuclear Energy Research, PO Box 3-10, Longtan 325, Taiwan, Republic of China Faculty of Biomedical Imaging and Radiological Sciences, National Yang Ming University, Taipei 112, Taiwan, Republic of China;

    Institute of Radiological Science, Central Taiwan University of Science and Technology, Taichung 406, ROC;

    Health Physics Division, Institute of Nuclear Energy Research, PO Box 3-10, Longtan 325, Taiwan, Republic of China;

    Faculty of Biomedical Imaging and Radiological Sciences, National Yang Ming University, Taipei 112, Taiwan, Republic of China;

    Institute of Radiological Sciences, Tzu Chi College of Technology, 880 Section 2, Chien-Kuo Road, Hualien 970, Taiwan, Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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