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Infrared Fluorescent Angiography during Experimental Trachea Transplantation

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Bulletin of Experimental Biology and Medicine Aims and scope

Indocyanine green fluorescence was used for evaluation of the degree of trachea revascularization after its autotransplantation in rabbits (transplantation of 1- and 2-cm segment of the trachea). Intravenous administration of indocyanine green was followed by a significant fluorescence of the substance in microvessels of the trachea over 30-40 sec. Immediately after surgery, fluorescence in the implanted segment was absent, but within 7 days it was completely restored in rabbits receiving transplantation of a 1-cm segment. After transplantation of 2-cm segment of the trachea, fluorescence did not recover, which corresponded to the clinical picture and autopsy results. Thus, fluorescent angiography is an informative method for evaluation of trachea revascularization.

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References

  1. Akopov AL, Papayan GV, Chistyakov IV, Karlson A, Gerasin AV, Agishev AS. Intraoperative detection of sentinel lymph nodes using infrared imaging system in local non-small cell carcinoma of lung. Vestn. Khirurg. im. I. I. Greko. 2015;174(4):13-17. Russian.

    CAS  Google Scholar 

  2. Akopov AL, Rusanov AA, Papayan GV, Kazakov NV, Gerasin AV. Endobronchial photodynamic therapy under fluorescence control: photodynamic theranostics. Vestn. Khirurg. im. I. I. Grekova. 2016;175(5):26-31. Russian.

    Google Scholar 

  3. Papayan GV, Chefu SG, Petrishchev NN, Iliin AA, Akopov AL. Possibility of the use of the conjugate of indocyanine green with albumin for infrared fluorescent diagnosis of pathological processes in experiment. Vopr. Onkol. 2016;62(6):838-844. Russian.

    Google Scholar 

  4. Aydogan F, Ozben V, Aytac E, Yilmaz H, Cercel A, Celik V. Excision of Nonpalpable Breast Cancer with Indocyanine Green Fluorescence-Guided Occult Lesion Localization (IFOLL). Breast Care (Basel). 2012;7(1):48-51.

    Article  PubMed  PubMed Central  Google Scholar 

  5. Dariushnia SR, Gill AE, Martin LG, Saad WE, Baskin KM, Caplin DM, Kalva SP, Hogan MJ, Midia M, Siddiqi NH, Walker TG, Nikolic B. Society of Interventional Radiology Standards of Practice Committee. Quality improvement guidelines for diagnostic arteriography. J. Vasc. Interv. Radiol. 2014;25(12):1873-1881.

    Article  PubMed  Google Scholar 

  6. Echalier C, Pluvy I, Pauchot J. Use of indocyanine green angiography in reconstructive surgery: Brief review. Ann. Chir. Plast. Esthet. 2016;61(6):858-867.

    Article  CAS  PubMed  Google Scholar 

  7. Liu DZ, Mathes DW, Zenn MR, Neligan PC. The application of indocyanine green fluorescence angiography in plastic surgery. J. Reconstr. Microsurg. 2011;27(6):355-364.

    Article  CAS  PubMed  Google Scholar 

  8. Guide for the Care and Use of Laboratory Animals. Washington, 2011.

  9. Papayan GV, Akopov AL. Fluorescence diagnostics in the near-IR: apparatus, application. J. Opt. Technol. 2016;83(9):536-542.

    Article  Google Scholar 

  10. Raabe A, Nakaji P, Beck J, Kim LJ, Hsu FP, Kamerman JD, Seifert V, Spetzler RF. Prospective evaluation of surgical microscope-integrated intraoperative near-infrared indocyanine green videoangiography during aneurysm surgery. J. Neurosurg. 2005;103(6):982-989.

    Article  PubMed  Google Scholar 

  11. Sonin D, Papayan G, Pochkaeva E, Chefu S, Minasian S, Kurapeev D, Vaage J, Petrishchev N, Galagudza M. In vivo visualization and ex vivo quantification of experimental myocardial infarction by indocyanine green fluorescence imaging. Biomed. Opt. Express. 2016;8(1):151-161.

    Article  PubMed  PubMed Central  Google Scholar 

  12. Steger B, Romano V, Kaye SB. Corneal indocyanine green angiography to guide medical and surgical management of corneal neovascularization. Cornea. 2016;35(1):41-45.

    Article  PubMed  Google Scholar 

  13. Schweiger T, Schwarz S, Traxler D, Dodier P, Aigner C, Lang G, Klepetko W, Hoetzenecker K. Bronchoscopic indocyanine green fluorescence imaging of the anastomotic perfusion after tracheal surgery. Ann. Thorac. Surg. 2016;101(5):1943-1949.

    Article  PubMed  Google Scholar 

  14. Thind H, Hardesty DA, Zabramski JM, Spetzler RF, Nakaji P. The role of microscope-integrated near-infrared indocyanine green videoangiography in the surgical treatment of intracranial dural arteriovenous fistulas. J. Neurosurg. 2015;122(4):876-882.

    Article  PubMed  Google Scholar 

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Correspondence to A. L. Akopov.

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Translated from Byulleten’ Eksperimental’noi Biologii i Meditsiny, Vol. 164, No. 10, pp. 525-528, October 2017

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Akopov, A.L., Papayan, G.V., Efimov, A.N. et al. Infrared Fluorescent Angiography during Experimental Trachea Transplantation. Bull Exp Biol Med 164, 519–522 (2018). https://doi.org/10.1007/s10517-018-4024-y

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  • DOI: https://doi.org/10.1007/s10517-018-4024-y

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