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REFERENCES
1. Yamada S, Takada K. Angiogenesis in pituitary adenomas. Microsc Res Tech 2003;60:236-243.
2. Jugenburg M, Kovacs K, Stefaneanu L, Scheithauer BW. Vasculature in Nontumorous Hypophyses, Pituitary Adenomas, and Carcinomas: A Quantitative Morphologic Study. Endocr Pathol 1995;6:115-124.
3. Bonneville JF, Bonneville F, Cattin F. Magnetic resonance imaging of pituitary adenomas. Eur Radiol 2005;15:543-548.
4. Sudhakar N, Ray A, Va dis JA. Complications after trans-sphenoidal surgery: our experience and a review of the literature. Br J Neurosurg 2004;18:507-512.
5. Roelfsema F, Biermasz NR, Pereira AM. Clinical factors involved in the recurrence of pituitary adenomas after surgical remission: a structured review and meta-analysis. Pituitary 2012;15:71-83.
6. Vahrmeijer AL, Hutteman M, van der Vorst JR, van de Velde CJ, Frangioni JV. Image- guided cancer surgery using near-infrared  uorescence. Nat Rev Clin Oncol 2013.
7. Tummers QR, Verbeek FP, Prevoo HA et al. First Experience on Laparoscopic Near-Infrared Fluorescence Imaging of Hepatic Uveal Melanoma Metastases Using Indocyanine Green. Surg Innov 2014.
8. van der Vorst JR, Schaafsma BE, Hutteman M et al. Near-Infrared Fluorescence-Guided Resection of Colorectal Liver Metastases. Cancer. In press.
9. van der Vorst JR, Schaafsma BE, Verbeek FP et al. Intraoperative near-infrared  uorescence imaging of parathyroid adenomas with use of low-dose methylene blue. Head Neck 2013.
10. Tummers QR, Verbeek FP, Schaafsma BE et al. Real-time intraoperative detection of breast cancer using near-infrared  uorescence imaging and Methylene Blue. Eur J Surg Oncol 2014;40:850-858.
11. Schaafsma BE, Mieog JS, Hutteman M et al. The clinical use of indocyanine green as a near-infrared  uorescent contrast agent for image-guided oncologic surgery. J Surg Oncol 2011;104:323-332.
12. Simal-Julian JA, Miranda-Lloret P, Evangelista-Zamora R et al. Indocyanine green videoangiography methodological variations: review. Neurosurg Rev 2014.
13. Zehri AH, Ramey W, Georges JF et al. Neurosurgical confocal endomicroscopy: A review of contrast agents, confocal systems, and future imaging modalities. Surg Neurol Int 2014;5:60.
14. Litvack ZN, Zada G, Laws ER, Jr. Indocyanine green  uorescence endoscopy for visual di erentiation of pituitary tumor from surrounding structures. J Neurosurg 2012;116:935-941.
15. Jafari MD, Lee KH, Halabi WJ et al. The use of indocyanine green  uorescence to assess anastomotic perfusion during robotic assisted laparoscopic rectal surgery. Surg Endosc 2013;27:3003-3008.
16. Kudszus S, Roesel C, Schachtrupp A, Hoer JJ. Intraoperative laser  uorescence angiography in colorectal surgery: a noninvasive analysis to reduce the rate of anastomotic leakage. Langenbecks Arch Surg 2010;395:1025-1030.
17. Ris F, Hompes R, Cunningham C et al. Near- infrared (NIR) perfusion angiography in minimally invasive colorectal surgery. Surg Endosc 2014;28:2221-2226.
18. van der Vorst JR, Schaafsma BE, Hutteman M et al. Near-infrared  uorescence-guided resection of colorectal liver metastases. Cancer 2013;119:3411-3418.
19. Schwartz TH, Stieg PE, Anand VK. Endoscopic transsphenoidal pituitary surgery with intraoperative magnetic resonance imaging. Neurosurgery 2006;58:ONS44-ONS51.
20. Atkinson JL, Kasperbauer JL, James EM, Lane JI, Nippoldt TB. Transcranial- transdural real-time ultrasonography during transsphenoidal resection of a large pituitary tumor. Case report. J Neurosurg 2000;93:129- 131.
21. Ashitate Y, Stockdale A, Choi HS, Laurence RG, Frangioni JV. Real-time simultaneous near-infrared  uorescence imaging of bile duct and arterial anatomy. J Surg Res 2011;Jul;176(1):7-13.
22. Matsui A, Tanaka E, Choi HS et al. Real-time intra-operative near-infrared  uorescence identi cation of the extrahepatic bile ducts using clinically available contrast agents. Surgery 2010;148:87-95.
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