烧蚀
飞秒
激光器
紫外线
激光烧蚀
材料科学
紫外线a
超快光学
生物组织
光电子学
X射线激光器
光学
生物医学工程
医学
物理
激光功率缩放
皮肤病科
内科学
作者
Tatiana Malikova,Syam Mohan P. C. Mohanan,Rainer J. Beck,Robert R. Thomson,Jonathan D. Shephard
摘要
In this work, ablation of clinically relevant mammalian brain tissue was demonstrated using 200-fs laser pulses at 205 nm wavelength. The ablated region depth could be controlled by adjusting the pulse energy and pulse spatial separation; using low-energy deep ultraviolet laser pulses allowed for the removal of very fine layers of tissue. Histopathological analysis revealed minimal thermal damage to the tissue regions adjacent to the ablation craters. Optical coherence tomography was used for surface profile measurements of the laser-processed tissue. The presented deep ultraviolet ultrashort laser ablation technique could be utilised in surgical procedures that require precise tissue removal, for example to facilitate more complete resection of tumour margins located close to brain critical structures where use of conventional surgery tools might cause irreparable damage.
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