医学
围手术期
阶段(地层学)
转化式学习
重症监护医学
精密医学
肿瘤科
免疫疗法
内科学
肺癌
靶向治疗
分析
肺
放射科
仿形(计算机编程)
放化疗
精确肿瘤学
医学物理学
作者
Chaoqi Zhang,Xuanyu Gu,Pan Wang,Dongyu Li,Guochao Zhang,Ting Wang,Peng Wu,Wei Rao,Shan Muhammad,Binghua Tan,Yun Che,Mobai Zhu,Qilin Qiao,Fanbo Lai,Bohui Zhao,Kailun Fei,Yue Wu,Zhihui Zhang,Min Dai,Wanqing Chen
摘要
The clinical landscape of early stage nonsmall cell lung cancer is at transformative crossroads. Driven by the widespread adoption of low-dose computed tomography screening, the frequent detection of ground-glass opacities, and a rising incidence among never-smokers, the diagnostic center of gravity has shifted toward earlier, potentially curable disease. This shift has been accompanied by equally important therapeutic advances, including parenchyma-sparing surgical techniques, minimally invasive platforms enhanced by digital navigation, and the transformative integration of perioperative immunotherapy and targeted agents. Concurrently, noninvasive monitoring approaches, such as liquid biopsy, have emerged as powerful tools to guide precision management. Despite this progress, substantial barriers to achieving a universal cure persist. Clinicians continue to face uncertainty in the management of ground-glass opacities, the anatomy-based TNM staging system fails to capture the biologic heterogeneity of early tumors, and global disparities in access to innovation remain unresolved. To address these challenges, the authors propose a shift toward a risk-adaptive management paradigm that harnesses artificial intelligence-driven analytics and multi-omics profiling to tailor treatment intensity according to each patient's biologic risk. Such an approach would enable appropriate escalation for high-risk individuals while permitting safe de-escalation for those at low risk. This holistic, lifespan-oriented strategy must be embraced to deliver equitable and durable cures for patients with early stage nonsmall cell lung cancer.
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