By Mitsuo Kusano, Norihiro Kokudo, Masakazu Toi, Masaki Kaibori

This publication offers a complete review and outlook for the way forward for indocyanine eco-friendly (ICG) fluorescence navigation surgical procedure, that's attracting scientific curiosity as a secure and not more invasive strategy not just in detecting cerebral vessels, coronary arteries, and biliary timber, but additionally in picking out sentinel lymph nodes in melanoma. The ebook starts off with the features of ICG and photodynamic cameras/endoscopes, by way of distinctive descriptions of the functions of ICG fluorescence imaging in a number of parts akin to ocular surgical procedure, neurosurgery, cardiovascular surgical procedure, and cosmetic surgery. It additionally covers making a choice on sentinel lymph nodes in breast melanoma in addition to cancers of the gastrointestinal tract, and offers worthwhile details for hepato-biliary-pancreatic surgeons, resembling making a choice on tattooing of liver segments and bile leakage. Written fullyyt via specialists of their respective components, ICG Fluorescence Imaging and Navigation Surgery deals a vital source for surgeons working on cancers and vascular problems within the mind and cardiovascular structures and in plastic surgery.

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Extra resources for ICG Fluorescence Imaging and Navigation Surgery

Sample text

This SLN concept is well established in the treatment of patients with several types of solid carcinomas, such as melanoma and breast cancer [2–4]. The SLN concept has revolutionized surgical strategies and modern techniques benefit patients by preventing a range of complications associated with unnecessary prophylactic dissection in cases when the SLN is negative for cancer metastasis. Recently, this highly advantageous SLN concept has been applied to the examination of head and neck cancers [5, 6].

20. Amin-Hanjani S, Meglio G, Gatto R et al (2006) The utility of intraoperative blood flow measurement during aneurysm surgery using an ultrasonic perivascular flow probe. Neurosurgery 58:ONS 305–312 21. Bailes JE, Tantuwaya LS, Fukushima T et al (1997) Intraoperative microvascular Doppler sonography in aneurysm surgery. Neurosurgery 40:965–70 22. Zhao J, Wang Y, Zhao Y et al (2006) Neuroendoscope-assisted minimally invasive microsurgery for clipping intracranial aneurysms. Minim Invasive Neurosurg 49(6):335–41 23.

But flow images using this software should not be understood as a stand-alone tool for quantitative flow assessment [34]. In the future, true quantitative blood flow 4 ICG Videoangiography in Neurosurgical Procedures 43 analysis using fluorescence angiography may become possible following studies coupled with thermal imaging [56], magnetic resonance imaging [57], and fluorescence molecular tomography [58]. References 1. Bensori RC, Kunes HA (1978) Fluorescence properties of indocyanine green as related to angiography.

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ICG Fluorescence Imaging and Navigation Surgery by Mitsuo Kusano, Norihiro Kokudo, Masakazu Toi, Masaki Kaibori
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