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通过多位置校准光声温度计监测的体内光热疗法

In vivo photothermal therapy monitored by multi-position calibrated photoacoustic thermometer.

作者信息

Peng Kuan, Wang Yongjun, Li Lingfeng, Zhang Jiaxi, Chen Haobin, Xiao Jiaying

机构信息

Department of Biomedical Engineering, School of Basic Medical Science, Central South University, Changsha 410083, China.

Shenzhen Research Institute, Central South University, Shenzhen 518057, China.

出版信息

Photoacoustics. 2023 Apr 28;31:100501. doi: 10.1016/j.pacs.2023.100501. eCollection 2023 Jun.

Abstract

With the ability of monitoring both temperature and photothermal agents, the photoacoustic (PA) imaging is a promising guiding tool for the photothermal therapy (PTT). The calibration line which depicts the relative variation of PA amplitude with the temperature should be obtained before using PA thermometer. In existing study, a calibration line was generated based on the data from one spatial position, and used in the whole region of interesting (ROI). However, the generalization of this calibration line in ROI was not verified, especially for ROI with heterogeneous tissues. Moreover, the relationship between the distributions of photothermal agents and effective treatment area is not clear, hindering using photothermal agents' distribution to optimize the administration-therapy interval. In this study, the distribution of effective photothermal agents and temperature in subcutaneously transplanted tumor mouse models were continuously monitored by 3D photoacoustic/ ultrasonic dual-modality imaging in 8 h after administration. With multiple micro-temperature probes in tumor and surrounding normal tissue, the PA thermometer was calibrated and evaluated at multiple spatial positions for the first time. The generalization in homologous tissue and tissue specificity in heterogeneous tissues of the PA thermometer calibration line were verified. Our study not only validated the effectivity of PA thermometer by proving the generalization of calibration line, but also removes a major obstacle that prevents applying the PA thermometer to a heterogeneous tissues ROI. The positive correlation between the proportion of effective treatment area and the proportion of effective photothermal agent area in the tumor was observed. Since the latter can be monitored with fast PA imaging, PA imaging can be employed as a convenient tool for seeking optimal administration-treatment interval.

摘要

由于具备同时监测温度和光热剂的能力,光声(PA)成像对于光热疗法(PTT)而言是一种很有前景的引导工具。在使用光声温度计之前,应获取描绘光声振幅随温度相对变化的校准曲线。在现有研究中,校准曲线是基于一个空间位置的数据生成的,并应用于整个感兴趣区域(ROI)。然而,该校准曲线在ROI中的通用性并未得到验证,尤其是对于组织异质性的ROI。此外,光热剂分布与有效治疗区域之间的关系尚不清楚,这阻碍了利用光热剂分布来优化给药 - 治疗间隔。在本研究中,通过在给药后8小时内采用三维光声/超声双模态成像,对皮下移植肿瘤小鼠模型中有效光热剂的分布和温度进行了连续监测。借助肿瘤及周围正常组织中的多个微温度探头,首次在多个空间位置对光声温度计进行了校准和评估。验证了光声温度计校准曲线在同源组织中的通用性以及在异质组织中的组织特异性。我们的研究不仅通过证明校准曲线的通用性验证了光声温度计的有效性,还消除了将光声温度计应用于异质组织ROI的一个主要障碍。观察到肿瘤中有效治疗区域比例与有效光热剂区域比例之间呈正相关。由于后者可通过快速光声成像进行监测,光声成像可作为寻找最佳给药 - 治疗间隔的便捷工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7f1/10172711/a3955a6f0658/gr1.jpg

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