Multi-wavelength fluorescence imaging with a da Vinci Firefly—a technical look behind the scenes
暂无分享,去创建一个
H. G. van der Poel | A. Mottrie | M. V. van Oosterom | T. Buckle | G. Kleinjan | Florian van Beurden | F. V. van Leeuwen | D. V. van Willigen | S. Spa | F. V. Leeuwen | K. Bauwens | Matthias N. van Oosterom | P. Meershoek | E. J. van Gennep | F. Beurden | H. G. V. D. Poel | D. M. V. Willigen | Erik J. van Gennep
[1] Borivoj Vojnovic,et al. Multi-Wavelength Fluorescence in Image-Guided Surgery, Clinical Feasibility and Future Perspectives , 2020, Molecular imaging.
[2] Alexander L Vahrmeijer,et al. A zwitterionic near-infrared fluorophore for real-time ureter identification during laparoscopic abdominopelvic surgery , 2019, Nature Communications.
[3] M. Munari,et al. Combined Fluorescence Using 5-Aminolevulinic Acid and Fluorescein Sodium at Glioblastoma Border: Intraoperative Findings and Histopathologic Data About 3 Newly Diagnosed Consecutive Cases. , 2019, World neurosurgery.
[4] H. G. van der Poel,et al. Multispectral-Fluorescence Imaging as a Tool to Separate Healthy from Disease-Related Lymphatic Anatomy During Robot-Assisted Laparoscopy , 2018, The Journal of Nuclear Medicine.
[5] Vasilis Ntziachristos,et al. Synthesis and Preclinical Characterization of the PSMA-Targeted Hybrid Tracer PSMA-I&F for Nuclear and Fluorescence Imaging of Prostate Cancer , 2018, The Journal of Nuclear Medicine.
[6] Xiaoyao Fan,et al. Red-light excitation of protoporphyrin IX fluorescence for subsurface tumor detection. , 2017, Journal of neurosurgery.
[7] Tessa Buckle,et al. Multispectral Fluorescence Imaging During Robot-assisted Laparoscopic Sentinel Node Biopsy: A First Step Towards a Fluorescence-based Anatomic Roadmap. , 2017, European urology.
[8] Toru Iwama,et al. Pathological analysis of the surgical margins of resected glioblastomas excised using photodynamic visualization with both 5-aminolevulinic acid and fluorescein sodium , 2017, Journal of Neuro-Oncology.
[9] Y. Mok,et al. Sentinel Node Mapping Using a Fluorescent Dye and Visible Light During Laparoscopic Gastrectomy for Early Gastric Cancer: Result of a Prospective Study From a Single Institute , 2017, Annals of surgery.
[10] W. Stummer,et al. Dual-labeling with 5-aminolevulinic acid and fluorescein for fluorescence-guided resection of high-grade gliomas: technical note. , 2017, Journal of neurosurgery.
[11] A. Valentijn,et al. Synthesis and systematic evaluation of symmetric sulfonated centrally CC bonded cyanine near-infrared dyes for protein labelling , 2016 .
[12] P. Ferroli,et al. Feasibility of simultaneous sodium fluorescein and indocyanine green injection in neurosurgical procedures , 2016, Clinical Neurology and Neurosurgery.
[13] Kentaro Inoue,et al. Intraoperative Detection of Superficial Liver Tumors by Fluorescence Imaging Using Indocyanine Green and 5-aminolevulinic Acid. , 2016, Anticancer research.
[14] Nynke S. van den Berg,et al. Fluorescence guided surgery and tracer-dose, fact or fiction? , 2016, European Journal of Nuclear Medicine and Molecular Imaging.
[15] Borivoj Vojnovic,et al. A prospective pilot study of detection of sentinel lymph nodes in gynaecological cancers using a novel near infrared fluorescence imaging system , 2015, BMC Research Notes.
[16] Siavash Yazdanfar,et al. Detection of colorectal polyps in humans using an intravenously administered fluorescent peptide targeted against c-Met , 2015, Nature Medicine.
[17] A. V. van Erkel,et al. Luminescence-based Imaging Approaches in the Field of Interventional Molecular Imaging. , 2015, Radiology.
[18] Joshua S Richman,et al. Safety and Tumor Specificity of Cetuximab-IRDye800 for Surgical Navigation in Head and Neck Cancer , 2015, Clinical Cancer Research.
[19] Walter Stummer,et al. Simultaneous fluorescein sodium and 5-ALA in fluorescence-guided glioma surgery , 2015, Acta Neurochirurgica.
[20] A. Cohen-Gadol,et al. A prospective comparative study of microscope-integrated intraoperative fluorescein and indocyanine videoangiography for clip ligation of complex cerebral aneurysms. , 2015, Journal of neurosurgery.
[21] A. Hemal,et al. Fluorescence-enhanced robotic radical prostatectomy using real-time lymphangiography and tissue marking with percutaneous injection of unconjugated indocyanine green: the initial clinical experience in 50 patients. , 2014, European urology.
[22] D. Dimitrov,et al. In vivo optical imaging of folate receptor‐β in head and neck squamous cell carcinoma , 2014, The Laryngoscope.
[23] Hans Tanke,et al. Optical imaging as an expansion of nuclear medicine: Cerenkov-based luminescence vs fluorescence-based luminescence , 2013, European Journal of Nuclear Medicine and Molecular Imaging.
[24] Summer L. Gibbs,et al. Near infrared fluorescence for image-guided surgery. , 2012, Quantitative imaging in medicine and surgery.
[25] Petri Välisuo,et al. A Review of Indocyanine Green Fluorescent Imaging in Surgery , 2012, Int. J. Biomed. Imaging.
[26] 무레 알렌. Full spectrum led illuminator , 2012 .
[27] Aymeric Perchant,et al. Exploring the optimal fluorescein dose in probe-based confocal laser endomicroscopy for colonic imaging. , 2011, Journal of interventional gastroenterology.
[28] P. Low,et al. Intraoperative tumor-specific fluorescence imaging in ovarian cancer by folate receptor-α targeting: first in-human results , 2011, Nature Medicine.
[29] J. Frangioni,et al. Image-Guided Surgery Using Invisible Near-Infrared Light: Fundamentals of Clinical Translation , 2010, Molecular imaging.
[30] S. Achilefu,et al. Fluorescence lifetime measurements and biological imaging. , 2010, Chemical reviews.
[31] M. Kubista,et al. Absorption and fluorescence properties of fluorescein , 1995 .
[32] C. Heusser,et al. Immunophotodiagnosis of colon carcinomas in patients injected with fluoresceinated chimeric antibodies against carcinoembryonic antigen. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[33] Tessa Buckle,et al. Multispectral fluorescence guided surgery; a feasibility study in a phantom using a clinical-grade laparoscopic camera system. , 2017, American journal of nuclear medicine and molecular imaging.
[34] B. Vojnovic,et al. Identifying Ureters In Situ Under Fluorescence During Laparoscopic and Open Colorectal Surgery. , 2016, Annals of surgery.
[35] R. C. Benson,et al. SCIENTIFIC NOTE: Fluorescence properties of indocyanine green as related to angiography , 1978 .