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Active thermodynamic contrast imaging for label-free tumor detection in a murine xenograft tumor model

机译:主动热力学对比成像在小鼠异种移植肿瘤模型中无标记肿瘤的检测

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摘要

Passive thermal imaging provides a limited differentiation between a tumor and neighboring tissue based on the temperature difference. We propose active thermodynamic contrast imaging (ATCI) with convection thermal modulators to provide more physiologically relevant parameters with high contrast such as the rate of temperature change, and thermal recovery time for tumor detection with a murine xenograft tumor model. With early stage tumors, we found the average rate of temperature change was higher in the tumor (0.22 ± 0.06 °C/sec) than that of neighboring tissue (0.13 ± 0.01 °C/sec) with heating modulation. With established tumors (volume > 100 mm3), this tendency was greater. On the other hand, the thermal recovery time was shorter in tumor tissue (τ = 7.30 ± 0.59 sec) than that of neighboring tissue (τ = 11.91 ± 2.22 sec). We also found distinct thermal contrast with cooling modulation. These data suggest ATCI is a potential tumor detection modality for clinical application with its inherently label-free and physiology-based approach. Furthermore, this strategy may find applications in endoscopic tumor detection in the future.
机译:被动热成像基于温度差在肿瘤和邻近组织之间提供了有限的区分。我们提出了具有对流热调节器的主动热力学对比成像(ATCI),以提供具有更高对比度的更多生理相关参数,例如温度变化率和用于小鼠异种移植肿瘤模型的肿瘤热恢复时间。对于早期肿瘤,我们发现在加热调节下,肿瘤的平均温度变化率(0.22±0.06°C / sec)比邻近组织的平均温度变化率(0.13±0.01°C / sec)高。对于已确定的肿瘤(体积> 100 mm 3 ),这种趋势更大。另一方面,肿瘤组织的热恢复时间(τ= 7.30±0.59 sec)比邻近组织的热恢复时间(τ= 11.91±2.22 sec)短。我们还发现冷却调制具有明显的热对比度。这些数据表明,ATCI凭借其固有的无标签和基于生理学的方法,是一种潜在的临床应用肿瘤检测方法。此外,该策略将来可能在内窥镜肿瘤检测中找到应用。

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