共 32 条
- [1] Landsman M.L., Kwant G., Mook G.A., Zijlstra W.G., Light-absorbing properties, stability, and spectral stabilization of indocyanine green, J Appl Physiol, 40, 4, pp. 575-583, (1976)
- [2] Choi M., Choi K., Ryu S.W., Lee J., Choi C., Dynamic fluorescence imaging for multiparametric measurement of tumor vasculature, J Biomed Opt, 16, 4, (2011)
- [3] Sevick-Muraca E.M., Houston J.P., Gurfinkel M., Fluorescence-enhanced, near infrared diagnostic imaging with contrast agents, Curr Opin Chem Biol, 6, 5, pp. 642-650, (2002)
- [4] Schaafsma B.E., Mieog J.D., Hutteman M., Et al., The clinical use of indocyanine green as a near-infrared fluorescent contrast agent for image-guided oncologic surgery, J Surg Oncol, 104, 3, pp. 323-332, (2011)
- [5] Brooker L.G.S., Heseltine D.W., Co I.E.K., Tricarbocyanine infrared absorbing dyes, United States Patent, 2895955A, (1959)
- [6] Obana A., Miki T., Hayashi K., Takeda M., Et al., Survey of complications of indocyanine green angiography in Japan, Am J Ophthalmol, 118, 6, pp. 749-753, (1994)
- [7] Alander J.T., Kaartinen I., Laakso A., Et al., A review of indocyanine green fluorescent imaging in surgery, Int J Biomed Imaging, 2012, (2012)
- [8] Boni L., David G., Mangano A., Et al., Clinical applications of indocyanine green (ICG) enhanced fluorescence in laparoscopic surgery, Surg Endosc, 29, 7, pp. 2046-2055, (2015)
- [9] Moore G.E., Fluorescein as an Agent in the Differentiation of Normal and Malignant Tissues, Science, 106, 2745, pp. 130-131, (1947)
- [10] Moore G.E., Peyton W.T., French L.A., Walker W.W., The Clinical Use of Fluorescein in Neurosurgery, J Neurosurg, 5, 4, pp. 392-398, (1948)