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首页> 外文期刊>Medical Physics >A handheld fluorescence molecular tomography system for intraoperative optical imaging of tumor margins.
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A handheld fluorescence molecular tomography system for intraoperative optical imaging of tumor margins.

机译:用于肿瘤边缘术中光学成像的手持式荧光分子层析成像系统。

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PURPOSE: Accurate identification of tumor margins presents a major challenge in the surgical treatment of human cancers. Inability of complete removal of tumor lesions after surgery causes local recurrence and increases the incidence of developing tumor metastasis. It is clear that novel approaches that allow defining tumor margins intraoperatively for removal of small tumor lesions in the surgical cavity is critical for improving prognosis of cancer patients. To facilitate image-guided surgery using targeted optical imaging probes, we have developed a reflection-mode fluorescence molecular tomography (FMT) system with a handheld probe that is able to provide three-dimensional tumor margin information. METHODS: The imaging method and system were validated using both simulated and phantom experiments. We further examined the accuracy of the handheld FMT system in an orthotopic mouse mammary tumor model following systemic delivery of near-infrared (NIR) dye-labeled and urokinase plasminogen activator receptor targeted magnet iron oxide nanoparticles. RESULTS: Our results show that when the targets are located within 5 mm beneath the surface of the media, fluorescent images can be reliably detected and reconstructed with an average positional error of 0.5 mm laterally and 1.5 mm axially. For in vivo imaging in the mouse tumor model, the location and size of the tumor detected by FMT correlated well with that measured by the magnetic resonance imaging (MRI). CONCLUSIONS: Our system can three-dimensionally image targets located at a depth of up to 7 mm. The in vivo results suggest that in combination with targeted optical imaging probes, this handheld FMT system can be potentially used as an intraoperative tool for the detection of tumor margins and for image-guided surgery.
机译:目的:准确识别肿瘤边缘是人类癌症手术治疗的主要挑战。手术后无法完全清除肿瘤病变会导致局部复发并增加发生肿瘤转移的可能性。清楚的是,允许在术中限定肿瘤边界以去除手术腔中的小肿瘤病变的新颖方法对于改善癌症患者的预后至关重要。为了促进使用靶向光学成像探针的图像引导手术,我们开发了一种反射模式荧光分子层析成像(FMT)系统,该系统带有能够提供三维肿瘤边界信息的手持式探针。方法:采用模拟和幻影实验对成像方法和系统进行了验证。我们进一步检查了系统性递送近红外(NIR)染料标记和尿激酶纤溶酶原激活剂受体靶向的磁性氧化铁纳米粒子后,在原位小鼠乳腺肿瘤模型中手持FMT系统的准确性。结果:我们的结果表明,当目标位于介质表面下方5 mm以内时,可以可靠地检测和重建荧光图像,其横向平均位置误差为0.5 mm,轴向平均位置误差为1.5 mm。对于小鼠肿瘤模型中的体内成像,FMT检测到的肿瘤的位置和大小与磁共振成像(MRI)所测量的位置和大小密切相关。结论:我们的系统可以对位于最深7毫米处的目标进行三维成像。体内结果表明,该手持式FMT系统与目标光学成像探头结合,可潜在地用作术中工具,以检测肿瘤边缘和进行图像引导的手术。

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