论文标题
骨髓中白血病化疗的数学建模
Mathematical Modeling of Leukemia Chemotherapy in Bone Marrow
论文作者
论文摘要
急性淋巴细胞白血病(所有)占小儿时代的80%的白血病。近年来,这些患者的生存率增加了大量。但是,大约15-20%的治疗方法不成功。因此,绝对需要提出研究并选择哪些患者更高复发风险的新策略。因此,监测白血病细胞数量预测第一个治疗阶段复发的重要性。在这项工作中,我们开发了一个数学模型,描述了所有人的行为,在应用治疗时检查了白血病克隆的演变。在对该模型的研究中,可以观察到复发的风险如何与第一个治疗阶段的反应有关。该模型能够在没有治疗的情况下模拟细胞动力学,代表虚拟患者的骨髓行为。此外,有几个参数与治疗动态有关,因此为未来的童年作品提供了基础,所有的生存改善。
Acute Lymphoblastic Leukemia (ALL) accounts for the 80% of leukemias when coming down to pediatric ages. Survival of these patients has increased by a considerable amount in recent years. However, around 15-20% of treatments are unsuccessful. For this reason, it is definitely required to come up with new strategies to study and select which patients are at higher risk of relapse. Thus the importance to monitor the amount of leukemic cells to predict relapses in the first treatment phase. In this work we develop a mathematical model describing the behavior of ALL, examining the evolution of a leukemic clone when treatment is applied. In the study of this model it can be observed how the risk of relapse is connected with the response in the first treatment phase. This model is able to simulate cell dynamics without treatment, representing a virtual patient bone marrow behavior. Furthermore, several parameters are related to treatment dynamics, therefore proposing a basis for future works regarding childhood ALL survival improvement.