Rationale: Cancer treatment outcome is traditionally evaluated by tumor volume change in clinics, while tumor microvascular heterogeneity reflecting tumor response has not been fully explored due to technical limitations. Methods: We introduce a new paradigm in super-resolution ultrasound imaging, termed pattern recognition of microcirculation (PARM), which identifies both hemodynamic and morphological patterns of tumor microcirculation hidden in spatio-temporal space trajectories of microbubbles. Results: PARM demonstrates the ability to distinguish different local blood flow velocities separated by a distance of 24 μm. Compared with traditional vascular parameters, PARM-derived heterogeneity parameters prove to be more sensitive to microvascular changes following anti-angiogenic therapy. Particularly, PARM-identified "sentinel" microvasculature, exhibiting evident structural changes as early as 24 hours after treatment initiation, correlates significantly with subsequent tumor volume changes (|r| > 0.9, P < 0.05). This provides prognostic insight into tumor response much earlier than clinical criteria. Conclusions: The ability of PARM to noninvasively quantify tumor vascular heterogeneity at the microvascular level may shed new light on early-stage assessment of cancer therapy.
Pattern recognition of microcirculation with super-resolution ultrasound imaging provides markers for early tumor response to anti-angiogenic therapy.
利用超分辨率超声成像进行微循环模式识别,可为肿瘤对抗血管生成疗法的早期反应提供标志物
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作者:Yin Jingyi, Dong Feihong, An Jian, Guo Tianyu, Cheng Heping, Zhang Jiabin, Zhang Jue
| 期刊: | Theranostics | 影响因子: | 13.300 |
| 时间: | 2024 | 起止号: | 2024 Jan 20; 14(3):1312-1324 |
| doi: | 10.7150/thno.89306 | 研究方向: | 肿瘤 |
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