首页> 外文会议>Conference on lasers in urology, laparoscopy, and general surgery >Discrimination between urinary tract tissue and urinary stones by fiber-optic-pulsed photothermal radiometry method in vivo
【24h】

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

机译:纤维 - 光学脉冲光热辐射法在体内尿道组织和泌尿石的歧视

获取原文

摘要

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:为了在激光结石碎片期间通过假激光照射最小化泌尿外组织损伤,开发了一种新的纤维 - 光学分析系统,其能够将哺乳酸盐的泌尿膜与体内的泌尿器组织区分开来。该系统由光纤脉冲光热辐射测定(PPTR)系统与薄纤维内窥镜组成。使用紫外线AR激光器作为激发光源。该系统的导管直径为6F,由SiO $ -2 $ /玻璃纤维(400 $ MU @ M $ @)作为励磁线,AS-S玻璃纤维(400 $ MU @ M $ PHI @ )作为检测线,和薄纤维内窥镜(610 $ mu @ m $ phi @)。在全身麻醉下,泌尿石被引入犬输尿管鼠。导管系统通过向石头的输尿管的开口插入。在体内测量了组织和石材的光学和/或热性质的PPTR波形的e折叠衰减时间。泌尿石和犬输尿管之间的e折叠衰减时间有显着差异。这些结果表明,纤维 - 光学PPTR分析可能是可显着的有用程序,以防止临床激光石碎裂中的假辐射损伤的哺乳发生伤害。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号