Chinese Journal of Lasers, Volume. 47, Issue 9, 907003(2020)
Algorithm for Three-Dimensional Enhancement of Blood Vessels in Photoacoustic Endoscopic In Vivo Imaging
[1] Bray F, Ferlay J, Soerjomataram I et al. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries[J]. CA, 68, 394-424(2018).
[2] Jain R K. Normalization of tumor vasculature: an emerging concept in antiangiogenic therapy[J]. Science, 307, 58-62(2005).
[3] Donovan P, Patel J, Dight J et al. Endovascular progenitors infiltrate melanomas and differentiate towards a variety of vascular beds promoting tumor metastasis[J]. Nature Communications, 10, 18(2019).
[4] Li Y, Jing J C, Qu Y Q et al. Fully integrated optical coherence tomography, ultrasound, and indocyanine green-based fluorescence tri-modality system for intravascular imaging[J]. Biomedical Optics Express, 8, 1036-1044(2017).
[5] Tearney G J, Waxman S, Shishkov M et al. Three-dimensional coronary artery microscopy by intracoronary optical frequency domain imaging[J]. JACC Cardiovascular Imaging, 1, 752-761(2008).
[7] Yaqoob Z, Wu J G. McDowell E J, et al. Methods and application areas of endoscopic optical coherence tomography[J]. Journal of Biomedical Optics, 11, 063001(2006).
[8] Harewood G C, Kumar K S. Assessment of clinical impact of endoscopic ultrasound on esophageal cancer[J]. Journal of Gastroenterology and Hepatology, 19, 433-439(2004).
[9] Kelly S, Harris K M, Berry E et al. A systematic review of the staging performance of endoscopic ultrasound in gastro-oesophageal carcinoma[J]. Gut, 49, 534-539(2001).
[10] Klapman J B, Logrono R, Dye C E et al. Clinical impact of on-site cytopathology interpretation on endoscopic ultrasound-guided fine needle aspiration[J]. The American Journal of Gastroenterology, 98, 1289-1294(2003).
[11] Wang L V, Hu S. Photoacoustic tomography: in vivo imaging from organelles to organs[J]. Science, 335, 1458-1462(2012).
[12] Bohndiek S E, Sasportas L S, Machtaler S et al. Photoacoustic tomography detects early vessel regression and normalization during ovarian tumor response to the antiangiogenic therapy trebananib[J]. Journal of Nuclear Medicine: Official Publication, Society of Nuclear Medicine, 56, 1942-1947(2015).
[13] Chekkoury A, Nunes A, Gateau J et al. High-resolution multispectral optoacoustic tomography of the vascularization and constitutive hypoxemia of cancerous tumors[J]. Neoplasia, 18, 459-467(2016).
[14] Orlova A, Sirotkina M, Smolina E et al. Raster-scan optoacoustic angiography of blood vessel development in colon cancer models[J]. Photoacoustics, 13, 25-32(2019).
[15] Bi R Z, Balasundaram G, Jeon S et al. Photoacoustic microscopy for evaluating combretastatin A4 phosphate induced vascular disruption in orthotopic glioma[J]. Journal of Biophotonics, 11, e201700327(2018).
[18] Li Y, Gong X J, Liu C B et al. High-speed intravascular spectroscopic photoacoustic imaging at 1000 A-lines per second with a 0.9-mm diameter catheter[J]. Journal of Biomedical Optics, 20, 065006(2015).
[19] Bai X S, Gong X J, Hau W et al. Intravascular optical-resolution photoacoustic tomography with a 1.1 mm diameter catheter[J]. PLoS One, 9, e92463(2014).
[20] Dai X J, Yang H, Shan T Q et al. Miniature endoscope for multimodal imaging[J]. ACS Photonics, 4, 174-180(2017).
[23] Yang J M, Li C Y, Chen R M et al. Catheter-based photoacoustic endoscope[J]. Journal of Biomedical Optics, 19, 066001(2014).
[24] Frangi A F, Niessen W J, Vincken K L et al. Multiscale vessel enhancement filtering[M]. ∥Medical Image Computing and Computer-Assisted Intervention—MICCAI’98. Berlin: Springer, 130-137(1998).
[25] Manniesing R, Niessen W. Multiscale vessel enhancing diffusion in CT angiography noise filtering. [C]∥Biennial International Conference on Information Processing in Medical Imaging, July. 11-15, 2005, Glenwood Springs, CO, USA. Berlin: Springer, 138-149(2005).
[26] Zhao Q, Lin R Q, Liu C B et al. Quantitative analysis on in vivo tumor-microvascular images from optical-resolution photoacoustic microscopy[J]. Journal of Biophotonics, 12, e201800421(2019).
[28] Zhao H X, Wang G S, Lin R Q et al. Three-dimensional Hessian matrix-based quantitative vascular imaging of rat iris with optical-resolution photoacoustic microscopy in vivo[J]. Journal of Biomedical Optics, 23, 046006(2018).
[30] Li Y, Lin R Q, Liu C B et al. In vivo photoacoustic/ultrasonic dual-modality endoscopy with a miniaturized full field-of-view catheter[J]. Journal of Biophotonics, 11, e201800034(2018).
[31] Yousefi S, Qin J, Zhi Z W et al. Uniform enhancement of optical micro-angiography images using Rayleigh contrast-limited adaptive histogram equalization[J]. Quantitative Imaging in Medicine and Surgery, 3, 5-17(2013).
[32] Câmara Neto L. Ramalho G L B, Rocha Neto J F S, et al. An unsupervised coarse-to-fine algorithm for blood vessel segmentation in fundus images[J]. Expert Systems with Applications, 78, 182-192(2017).
Get Citation
Copy Citation Text
Li Chao, Sun Mingjian, Ma Liyong, Shen Yi, Lin Riqiang, Gong Xiaojing. Algorithm for Three-Dimensional Enhancement of Blood Vessels in Photoacoustic Endoscopic In Vivo Imaging[J]. Chinese Journal of Lasers, 2020, 47(9): 907003
Category: biomedical photonics and laser medicine
Received: Mar. 23, 2020
Accepted: --
Published Online: Sep. 16, 2020
The Author Email: