...
首页> 外文期刊>Journal of digital imaging: the official journal of the Society for Computer Applications in Radiology >Insight in human skin microcirculation using in vivo reflectance-mode confocal laser scanning microscopy.
【24h】

Insight in human skin microcirculation using in vivo reflectance-mode confocal laser scanning microscopy.

机译:使用体内反射模式共聚焦激光扫描显微镜对人类皮肤微循环的洞察。

获取原文
获取原文并翻译 | 示例

摘要

Reflectance-mode confocal laser scanning microscopy allows in vivo imaging of the human skin. We hypothesized that this high-resolution technique enables observation of dynamic changes of the cutaneous microcirculation. Twenty-two volunteers were randomly divided in two groups. Group 1 was exposed to local heating and group 2 to local cold stress. Confocal microscopy was performed prior t (0) (control), directly t (1) and 5 min t (2) after local temperature changes to evaluate quantitative blood cell flow, capillary loop diameter, and density of dermal capillaries. In group 1, blood flow increased at t (1) (75.82 +/- 2.86/min) and further at t (2) (84.09 +/- 3.39/min) compared to the control (61.09 +/- 3.21/min). The control capillary size was 9.59 +/- 0.25 microm, increased to 11.16 +/- 0.21 microm (t (1)) and 11.57 +/- 0.24 microm (t (2)). The dermal capillary density increased in t (1) (7.26 +/- 0.76/mm(2)) and t (2) (8.16 +/- 0.52/mm(2)), compared to the control (7.04 +/- 0.62/mm(2)). In group 2, blood flow decreased at t (1) (41.73 +/- 2.61/min) and increased at t (2) (83.27 +/- 3.29/min) compared to the control (60.73 +/- 2.90/min). The control capillary size was 9.55 +/- 0.25 microm, decreased at t (1) (7.78 +/- 0.26 microm) and increased at t (2) (11.38 +/- 0.26 microm). Capillary density decreased at t (1) (5.01 +/- 0.49/mm(2)) and increased at t (2) (7.28 +/- 0.53/mm(2)) compared to the control (7.01 +/- 0.52/mm(2)). Confocal microscopy is a sensitive and noninvasive imaging tool for characterizing and quantifying dynamic changes of cutaneous microcirculation on a histomorphological level.
机译:反射模式共聚焦激光扫描显微镜可以对人体皮肤进行体内成像。我们假设这种高分辨率技术可以观察皮肤微循环的动态变化。 22名志愿者被随机分为两组。第一组暴露于局部加热,第二组暴露于局部冷应激。共聚焦显微镜检查是在局部温度变化之前的t(0)(对照)之前,t(1)和t 5(2)之前进行的,以评估定量的血细胞流量,毛细血管loop直径和真皮毛细血管的密度。在第1组中,与对照组(61.09 +/- 3.21 / min)相比,t(1)(75.82 +/- 2.86 / min)的血流量增加,并且在t(2)(84.09 +/- 3.39 / min)进一步增加。 。对照毛细管尺寸为9.59 +/- 0.25微米,增加到11.16 +/- 0.21微米(t(1))和11.57 +/- 0.24微米(t(2))。与对照组(7.04 +/- 0.62)相比,t(1)(7.26 +/- 0.76 / mm(2))和t(2)(8.16 +/- 0.52 / mm(2))的皮肤毛细血管密度增加。 / mm(2))。在第2组中,与对照组(60.73 +/- 2.90 / min)相比,在t(1)处的血流减少(41.73 +/- 2.61 / min),在t(2)处的血流增加(83.27 +/- 3.29 / min)。 。对照毛细管尺寸为9.55 +/- 0.25微米,在t(1)时减小(7.78 +/- 0.26微米),在t(2)时增大(11.38 +/- 0.26微米)。与对照(7.01 +/- 0.52 /)相比,毛细管密度在t(1)时降低(5.01 +/- 0.49 / mm(2)),在t(2)时增加(7.28 +/- 0.53 / mm(2))。毫米(2))。共聚焦显微镜是一种敏感且无创的成像工具,可用于在组织形态学水平上表征和量化皮肤微循环的动态变化。

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