Page 48 - TD-2-1
P. 48

Tumor Discovery                                                         Breast cancer optical differentiation



            17.  Sahu A, 2012, Hyperspectral Imaging to Discern Malignant   cancer. Histopathology, 35(1): 14–18.
               and Benign Canine Mammary Tumors a Thesis Proposal      https://doi.org/10.1046/j.1365-2559.1999.00667.x
               Submitted to the Temple University Graduate Board By
               Amrita Sahu.                                    28.  Aref M, Youssef AB, Hussein AA,  et al., 2022, Custom
                                                                  fluorescence imaging system exploiting hyperspectral
            18.  Ouyang Y, Tsui P, Wu S, et al., 2019, Classification of benign   camera to characterize and diagnose RNA breast cancer.
               and malignant breast tumors using H-scan ultrasound   Biointerface Res Appl Chem, 12(4): 5548–5566.
               imaging. Diagnostics (Basel), 9(4): 182.
                                                                  https://doi.org/10.33263/BRIAC124.55485566
               https://doi.org/10.3390/diagnostics9040182
                                                               29.  Welch AJ, Van Gemert MJ, 2011, Optical-Thermal Response
            19.  Merrill AL, Coopey SB, Tang R, et al., 2016, Implications of   of Laser-Irradiated Tissue Vol. 2. Berlin: Springer.
               new lumpectomy margin guidelines for breast-conserving
               surgery: Changes in reexcision rates and predicted rates of   30.  Bioucas-Dias  JM,  Plaza  A,  Camps-Valls  G,  et al.,  2013,
               residual tumor. Ann Surg Oncol, 23(3): 729–734.    Hyperspectral remote sensing data analysis and future
                                                                  challenges. IEEE Geosci Remote Sens Magazine, 1(2): 6–36.
               https://doi.org/10.1245/s10434-015-4916-2
                                                               31.  Adão T, Hruška J, Pádua L,  et al., 2017, Hyperspectral
            20.  Vos EL, Jager A, Verhoef C,  et al., 2015, Overall survival   imaging: A review on UAV-based sensors, data processing
               in patients with a re-excision following breast conserving   and applications for agriculture and forestry. Remote Sens,
               surgery compared to those without in a large population-  9(11): 1110.
               based cohort. Eur J Cancer, 51(3): 282–291.
                                                                  https://doi.org/10.3390/rs9111110
               https://doi.org/10.1016/j.ejca.2014.12.003
                                                               32.  Robles-Kelly A, Huynh CP, 2013, Imaging spectroscopy for
            21.  Kho E, Dashtbozorg B, de Boer LL, et al., 2019, Broadband   scene analysis. In: Imaging Spectroscopy for Scene Analysis.
               hyperspectral imaging for breast tumor detection   Berlin: Springer.
               using spectral and spatial information.  Biomed Opt      https://doi.org/10.1007/978-1-4471-4652-0
               Express, 10(9): 4496.
                                                               33.  Lu G, Fei B, 2014, Medical hyperspectral imaging: A review.
               https://doi.org/10.1364/boe.10.004496
                                                                  J Biomed Opt, 19(1): 10901.
            22.  Boyce BF, 2017, An update on the validation of whole slide      https://doi.org/10.1117/1.JBO.19.1.010901
               imaging systems following FDA approval of a system for a
               routine pathology diagnostic service in the United States.   34.  Fabelo H, Ortega S, Lazcano R, et al., 2018, An intraoperative
               Biotech Histochem, 92(6): 381–389.                 visualization system using hyperspectral imaging to aid in
                                                                  brain tumor delineation. Sensors (Basel), 18(2): 430.
               https://doi.org/10.1080/10520295.2017.1355476
                                                                  https://doi.org/10.3390/s18020430
            23.  Evans AJ, Bauer TW, Bui MM, et al., 2018, US Food and Drug
               Administration approval of whole slide imaging for primary   35.  Goto A, Nishikawa J, Kiyotoki S,  et al., 2015, Use of
               diagnosis: A key milestone is reached and new questions are   hyperspectral imaging technology to develop a diagnostic
               raised. Arch Pathol Lab Med, 142(11): 1383–1387.   support system for gastric cancer. J Biomed Opt, 20(1): 16017.
               https://doi.org/10.5858/arpa.2017-0496-CP          https://doi.org/10.1117/1.JBO.20.1.016017
            24.  Flotte TJ, Bell DA, 2018, Anatomical pathology is at a   36.  Regeling B, Thies B, Gerstner AO, et al., 2016, Hyperspectral
               crossroads. Pathology, 50(4): 373–374.             imaging using flexible endoscopy for laryngeal cancer
                                                                  detection. Sensors (Basel), 16(8): 1288.
               https://doi.org/10.1016/j.pathol.2018.01.003
                                                                  https://doi.org/10.3390/s16081288
            25.  Motomura K, Inaji H, Komoike Y, et al., 2000, Intraoperative
               sentinel lymph node examination by imprint cytology   37.  Aref MH, Youssef AB, Aboughaleb IH,  et al., 2021,
               and frozen sectioning during breast surgery. Br J   Prospective study for commercial and low-cost hyperspectral
               Surg, 87(5): 597–601.                              imaging systems to evaluate thermal tissue effect on bovine
                                                                  liver samples. J Spectral Imaging, 10: a5.
               https://doi/org/10.1046/j.1365-2168.2000.01423.x
                                                               38.  Aref MH, Aboughaleb IH, Youssef AB,  et al., 2021,
            26.  Flett MM, Going JJ, Stanton PD,  et al., 1998, Sentinel   Hyperspectral image-based analysis of thermal damage for
               node localization in patients with breast cancer. Br J Surg,   ex-vivo bovine liver utilizing radiofrequency ablation. Surg
               85(7): 991–993.                                    Oncol, 38: 101564.
               https://doi.org/10.1046/j.1365-2168.1998.00746.x     https://doi.org/10.1016/j.suronc.2021.101564
            27.  Van Diest PJ, Torrenga H, Borgstein PJ,  et al., 1999,   39.  El-Sharkawy YH, Aref MH, Elbasuney S, et al., 2022, Oxygen
               Reliability of  intraoperative  frozen section and  imprint   saturation measurements using novel diffused reflectance
               cytological investigation of sentinel lymph nodes in breast   with  hyperspectral  imaging:  Towards  facile  COVID-19


            Volume 2 Issue 1 (2023)                         13                          https://doi.org/10.36922/td.258
   43   44   45   46   47   48   49   50   51   52   53