Andersson-Engels S, Johansson J, Svanberg S, Svanberg K
Anal Chem. 1989 Dec 15;61(24):1367A-1373A. doi: 10.1021/ac00199a001.
Lasers are useful in many applications in medicine and biology. Historically, most laser use has involved heat generated in the interaction of the laser beam with the tissue. Today, however, the spectroscopic aspects of this laser use are playing a more dominant role in a number of applications. In this two-part series, Sune Svanberg and co-workers present illustrations of emerging clinical applications from cooperative work performed by the Lund Institute of Technology and the Lund University Hospital. Part I includes a survey of laser techniques for atomic and molecular analyses of samples of medical interest, spectroscopic analysis of the laser-induced plasma obtained when a high-power pulsed laser beam interacts with tissue, and the use of tumor-seeking agents in combination with laser radiation to provide new possibilities for malignant tumor detection and treatment. Part II, which will appear in the January 1, 1990, issue, describes the use of laser-induced fluorescence for tumor and plaque diagnostics. Different lasers have been used, and research efforts increasingly are being focused on excimer lasers and lasers in the IR region for the ablation of atherosclerotic plaques, cell layer by cell layer.
激光在医学和生物学的许多应用中都很有用。从历史上看,大多数激光应用都涉及激光束与组织相互作用时产生的热量。然而,如今,这种激光应用的光谱学方面在许多应用中发挥着更为主导的作用。在这个两部分系列中,苏内·斯万伯格及其同事展示了隆德理工学院和隆德大学医院合作开展的工作中一些新兴临床应用的实例。第一部分包括对用于医学相关样品的原子和分子分析的激光技术的综述、对高功率脉冲激光束与组织相互作用时产生的激光诱导等离子体的光谱分析,以及将寻瘤剂与激光辐射结合使用为恶性肿瘤检测和治疗提供新可能性。第二部分将发表在1990年1月1日那一期,描述了激光诱导荧光在肿瘤和斑块诊断中的应用。人们使用了不同的激光,并且研究工作越来越集中在准分子激光和红外区域的激光上,用于逐层消融动脉粥样硬化斑块。