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How micro is microdissection? Laser removal of stratum corneum of skin to expose the epidermal battery

机译:微量微量微度如何?激光去除皮肤的角质层以暴露表皮电池

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How micro is laser microdissection? This study compared the spatial resolution of laser microdissection achieved by two laser systems: the ArF excimer laser which is strongly absorbed by tissue protein, and the Er:YAG laser which is strongly absorbed by tissue water. Both lasers penetrate tissue only a couple microns and are suitable for laser microdissection, and in this report the lasers ablated the outer dead-cell layer of the skin called the stratum corneum. The study involved dorsal skin sites on 8 rats for the ArF excimer and 10 rats for the Er:YAG. Ag/AgCl-gel electrodes were used to measure the passive DC resistance (R) and the active DC voltage (V) of skin sites which had received increasing numbers of ablative laser pulses (9 mJ/pulse, Er:YAG; 48 mJ/pulse, ArF excimer). About 8 pulses were required before a sudden drop in Ra and a sudden rise in V was observed. The R dropped from 4 $POM 0.2 (18) Mohm down to 1.5 $POM 0.2 (18) Mohm; mean $POM standard deviation (number of skin sites). The V was initially $MIN@56 $POM 5 mV, then dropped to $MIN@3 $POM 0.4 mV after laser ablation penetrated and destroyed the battery. The Er:YAG laser required 8.3 $POM 1.5 pulses to achieve 50% of the full change in R and V; the ArF excimer laser required 76 $POM 2 pulses. The changes in R and V per depth of tissue ablated were identical for the two lasers, despite their distinct differences in absorbing chromophore and efficiency of ablation.
机译:微型激光微散,如何?该研究比较了由两个激光系统实现的激光微粉的空间分辨率:由组织蛋白强烈吸收的ARF准分子激光器,以及由组织水强烈吸收的ER:YAG激光器。两个激光器只穿过组织,仅耦合微米,并且适合激光微粉,并且在本报告中,激光器将皮肤的外死细胞层烧成了称为Stratum Corneum的皮肤。该研究涉及8只大鼠的背部皮肤位点,用于ARF准分子和10只RES:YAG。 Ag / AgCl-凝胶电极用于测量皮肤部位的无源直流电阻(R)和有源直流电压(V),所述皮肤部位接收越来越多的烧蚀激光脉冲(9MJ /脉冲,ER:YAG; 48 MJ /脉冲,ARF准分子)。在RA突然下降之前需要约8个脉冲,并且观察到突然上升。 r从4 $ POM 0.2(18)MOHM下降到1.5 $ POM 0.2(18)摩尔;意味着$ POM标准偏差(皮肤站点数量)。 v最初是$ min @ 56 $ pom 5 mv,然后在激光烧蚀穿透并摧毁电池后,将0.4 mv掉到$ min 0.4 mv。 ER:YAG激光器需要8.3 $ POM 1.5脉冲,以达到R和V的全部变化的50%; ARF准分子激光器需要76 $ POM 2脉冲。尽管它们在吸收发色团和消融效率方面具有不同的差异,但是对于两个激光器的组织烧蚀的R和V的变化是相同的。

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