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The role of image-guided intensity modulated proton therapy in glioma

机译:图像引导强度调制质子治疗在神经胶质瘤中的作用

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摘要

Gliomas represent a broad spectrum of disease with life-expectancy outcomes ranging from months to decades. As our understanding of the molecular profiles of gliomas expands rapidly, practitioners are now better able to identify patients with favorable versus nonfavorable prognoses. Radiation therapy plays a key role in glioma treatment, improving disease control and oftentimes survival. However, for survivors, either long-term or short-term, radiation-induced cognitive impairments may negatively impact their quality of life. For patients with both favorable and unfavorable prognoses, intensity modulated proton therapy (IMPT) may offer significant, yet unproven benefits. IMPT is the newest and most advanced proton delivery technique, one with substantial benefits compared with historical proton techniques. IMPT allows practitioners to maximize the physical benefits of protons, increasing normal tissue sparing and reducing the potential for adverse effects. For more aggressive tumors, the dose conformality and normal tissue sparing afforded by IMPT may also allow for dose escalation to target volumes. However, in order to truly maximize the clinical potential of IMPT, the field of radiation oncology must not only implement the most advanced technologies, but also understand and capitalize on the unique biologic aspects of proton therapy.
机译:神经胶质瘤代表着广泛的疾病,预期寿命从数月到数十年不等。随着我们对神经胶质瘤分子谱的理解迅速扩展,从业人员现在能够更好地识别预后良好与预后不良的患者。放射疗法在神经胶质瘤治疗,改善疾病控制和经常生存中起着关键作用。但是,对于幸存者而言,无论是长期还是短期,辐射引起的认知障碍都可能对其生活质量产生负面影响。对于预后良好的患者,调强质子治疗(IMPT)可能会提供明显但尚未得到证实的益处。 IMPT是最新,最先进的质子传递技术,与历史质子技术相比,具有显着的优势。 IMPT使从业人员能够最大限度地利用质子,从而增加正常组织的储备并减少潜在的不良影响。对于更具侵略性的肿瘤,IMPT提供的剂量适形性和备用的正常组织也可能使剂量增加至目标体积。然而,为了真正最大化IMPT的临床潜力,放射肿瘤学领域不仅必须实施最先进的技术,而且必须了解和利用质子治疗的独特生物学方面。

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