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Discrimination between urinary tract tissue and urinary stones by fiber-optic-pulsed photothermal radiometry method in vivo

机译:光纤脉冲光热辐射法体内鉴别尿路组织和尿路结石

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Abstract: To minimize urotherial tissue injuries by false laser irradiation during the laser stones fragmentation, a novel fiber-optic analytical system was developed which was able to distinguish urotherial tissues from urinary stones in vivo. This system was composed of the fiber-optic pulsed photo-thermal radiometry (PPTR) system together with a thin-fiber endoscope. The ultraviolet Ar laser was employed as the excitation light source. The catheter of this system was 6F in diameter and consisted of SiO$-2$/ glass fiber (400 $mu@m$phi@) as an excitation line, an As-S glass fiber (400 $mu@m$phi@) as a detection line, and a thin-fiber endoscope (610 $mu@m$phi@). A urinary stone was introduced into the canine ureter uneter under general anesthesia. The catheter system was inserted through an opening of the ureter distal to the stone. The e-folding decay time of the PPTR waveform of which optical and/or thermal properties of the tissues and stones were characterized was measured in vivo. The e-folding decay times were significantly different between urinary stones and the canine ureter. These results suggest that the fiber-optic PPTR analysis might be significantly useful procedure to prevent urotherial tissue from false irradiation injuries in clinical laser stone fragmentation.!
机译:摘要:为了最小化激光结石破裂过程中错误的激光辐照对尿路组织造成的伤害,开发了一种新型的光纤分析系统,该系统能够在体内区分尿路组织与尿路结石。该系统由光纤脉冲光热辐射法(PPTR)系统和细纤维内窥镜组成。紫外线Ar激光器用作激发光源。该系统的导管直径为6F,由作为激发线的SiO $ -2 $ /玻璃纤维(400 $ mu @ m $ phi @),As-S玻璃纤维(400 $ mu @ m $ phi @)组成。 )作为检测线,以及一台光纤内窥镜(610 $ mu @ m $ phi @)。在全身麻醉下将尿路结石插入犬输尿管。导管系统通过输尿管结石远端的开口插入。在体内测量了表征组织和结石的光学和/或热特性的PPTR波形的电子折叠衰减时间。尿路结石和犬输尿管之间的电子折叠衰减时间显着不同。这些结果表明,光纤PPTR分析可能是防止尿道组织在临床激光结石破裂中受到假辐射伤害的有效方法。

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