首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >MEASUREMENTS OF THE THERMAL CONDUCTIVITY OF SUB-MILLIMETER BIOLOGICAL TISSUES
【24h】

MEASUREMENTS OF THE THERMAL CONDUCTIVITY OF SUB-MILLIMETER BIOLOGICAL TISSUES

机译:亚毫米生物组织的导热率的测量

获取原文

摘要

Accurate knowledge of the thermal conductivities of biological tissues is important for thermal bioengineering, including applications in cryopreservation, cryosurgery, and other thermal therapies. The thermal conductivity of biomaterials is traditionally measured with macroscale techniques such as the steady longitudinal heat flow method or embedded thermistor method. These techniques typically require relatively large, centimeter-scale samples, limiting their applicability to finer biological structures. They are also vulnerable to errors caused by thermal contact resistances and parasitic heat losses. In contrast, the thermal conductivity of inorganic solids such as semiconductor wafers and thin films is commonly measured using the "3 omega method" [1-3]. This frequency domain technique is robust against thermal contact resistances and parasitic heat losses. It routinely has sub-millimeter spatial resolution, with theoretical limits down to tens of microns. Here we adapt the 3 omega method for measurements of biological tissues. Thermal conductivity measurements are made on both frozen and un-frozen samples including agar gel, water, and mouse liver, including samples with sub-millimeter thicknesses. The measurement results compare favorably with literature values and span the range from around 0.5 to 2.5 W/m-K. This study demonstrates the Promise that this technique holds for thermal measurements of bulk tissues as well as fine sub-millimeter samples.
机译:准确了解生物组织的热导体对于热生物工程来说是重要的,包括在冷冻保存,冷冻疗法和其他热疗法中的应用。生物材料的导热率传统上用宏观技术测量,例如稳定的纵向热流法或嵌入热敏电阻方法。这些技术通常需要相对较大,厘米的样本,限制了它们对更细的生物结构的适用性。它们也容易受到热接触电阻和寄生热损失引起的误差。相反,通常使用“3ω方法”[1-3]通常测量无机固体的导热率,例如半导体晶片和薄膜。该频率域技术对热接触电阻和寄生热损失具有稳健。它经常具有亚毫米空间分辨率,具有理论限制至数十微米。在这里,我们适应3ω的生物组织测量方法。在包括琼脂凝胶,水和小鼠肝脏的冷冻和未冷冻的样品上进行导热率测量,包括具有亚毫米厚度的样品。测量结果与文献值相比,与文献值相比,跨度范围为约0.5至2.5 w / m-k。本研究表明该技术的承诺用于散装组织的热测量以及细亚毫米样品。

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