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Cited by in CrossRef
For: Liu Q. Role of optical spectroscopy using endogenous contrasts in clinical cancer diagnosis. World J Clin Oncol 2011; 2(1): 50-63 [PMID: 21603314 DOI: 10.5306/wjco.v2.i1.50]
URL: https://www.wjgnet.com/2218-4333/full/v2/i1/50.htm
Number Citing Articles
1
Stefanie Arroyo-Camarena, Judith Domínguez-Cherit, Lorena Lammoglia-Ordiales, Diego A. Fabila-Bustos, Abraham Escobar-Pio, Suren Stolik, Alma Valor-Reed, José de la Rosa-Vázquez. Spectroscopic and Imaging Characteristics of Pigmented Non-Melanoma Skin Cancer and Melanoma in Patients with Skin Phototypes III and IVOncology and Therapy 2016; 4(2): 315 doi: 10.1007/s40487-016-0036-9
2
Afshan Shirkavand, Mozhdeh Babadi, Leila Ataie Fashtami, Ezeddin Mohajerani. Application of optical spectroscopy in diagnosing and monitoring breast cancers: A technical reviewClinical Spectroscopy 2023; 5: 100027 doi: 10.1016/j.clispe.2023.100027
3
Caigang Zhu, Quan Liu. Numerical investigation of lens based setup for depth sensitive diffuse reflectance measurements in an epithelial cancer modelOptics Express 2012; 20(28): 29807 doi: 10.1364/OE.20.029807
4
Floris J. Voskuil, Jasper Vonk, Bert van der Vegt, Schelto Kruijff, Vasilis Ntziachristos, Pieter J. van der Zaag, Max J. H. Witjes, Gooitzen M. van Dam. Intraoperative imaging in pathology-assisted surgeryNature Biomedical Engineering 2021; 6(5): 503 doi: 10.1038/s41551-021-00808-8
5
Bernard Choi, Nikiforos Kollias, Haishan Zeng, Hyun Wook Kang, Brian J. F. Wong, Justus F. Ilgner, Alfred Nuttal, Claus-Peter Richter, Melissa C. Skala, Mark W. Dewhirst, Guillermo J. Tearney, Kenton W. Gregory, Laura Marcu, Andreas Mandelis, Michael D. Morris, Mallika Priya, Subhas Chandra, Bola Sadashiva S. Rao, Satadru Ray, Prashanth Shetty, Stanley Mathew, Krishna Kishore Mahato. Photoacoustic spectroscopy based evaluation of breast cancer conditionPhotonic Therapeutics and Diagnostics XI 2015; 9303: 93032L doi: 10.1117/12.2079159
6
Diego A. Fabila-Bustos, Úrsula D. Arroyo-Camarena, María D. López-Vancell, Marco A. Durán-Padilla, Itzel Azuceno-García, Suren Stolik-Isakina, Alma Valor-Reed, Elizabeth Ibarra-Coronado, Luis F. Hernández-Quintanar, Galileo Escobedo, José M. de la Rosa-Vázquez. Fluorescence Spectroscopy as a Tool for the Assessment of Liver Samples with Several Stages of FibrosisPhotomedicine and Laser Surgery 2018; 36(3): 151 doi: 10.1089/pho.2017.4301
7
Krishnamoorthy Gurushankar, Shaiju S. Nazeer, Ramapurath S. Jayasree, Narendran Krishnakumar. Evaluation of Antitumor Activity of Hesperetin-Loaded Nanoparticles Against DMBA-Induced Oral Carcinogenesis Based on Tissue Autofluorescence Spectroscopy and Multivariate AnalysisJournal of Fluorescence 2015; 25(4): 931 doi: 10.1007/s10895-015-1575-4
8
M. Gohulkumar, Piyush Kumar, C. Murali Krishna, N. Krishnakumar. Evaluation of Raman spectroscopy for prediction of antitumor response to silibinin and its nanoparticulates in DMBA‐induced oral carcinogenesisJournal of Raman Spectroscopy 2016; 47(4): 375 doi: 10.1002/jrs.4831
9
R. Sethupathi, M. Gohulkumar, N. Krishnakumar. Optical diagnosis approach for the early detection of tissue transformation in DMBA induced oral carcinogenesis using fluorescence spectroscopy coupled with multivariate analysisOptik 2016; 127(10): 4205 doi: 10.1016/j.ijleo.2015.12.143
10
Subitcha Jayasankar, Deepak Bajhaiya, Sujatha Narayanan Unni. Deep learning-enabled soft tissue tumor localization using spatially offset Raman spectral analysis: in-silico investigationsJournal of Physics D: Applied Physics 2022; 55(39): 394006 doi: 10.1088/1361-6463/ac8126
11
Ekaterina G. Borisova, Petranka Troyanova. Multimodal Optical Diagnostics of Cancer2020; : 245 doi: 10.1007/978-3-030-44594-2_7
12
Noemy R. Santos, Roseli Künzel, Marcelo B. Freitas, Ronaldo S. Levenhagen, Ana Paula de A. Marques, Lilia C. Courrol. Raman and Fluorescence Profiles Modifications of Muscular and Adipose Tissues Exposed to Low Energy X-ray BeamsApplied Spectroscopy 2021; 75(9): 1124 doi: 10.1177/0003702821989773
13
Breana Hill, Sylvia F. Lam, Pierre Lane, Calum MacAulay, Leonid Fradkin, Michele Follen. Established and Emerging Optical Technologies for the Real-Time Detection of Cervical Neoplasia: A ReviewJournal of Cancer Therapy 2017; 8(13): 1241 doi: 10.4236/jct.2017.813105
14
Arnab Maity, Yana Milyutin, Vivian Darsa Maidantchik, Yael Hershkovitz Pollak, Yoav Broza, Rawan Omar, Youbin Zheng, Walaa Saliba, Tan‐Phat Huynh, Hossam Haick. Ultra‐Fast Portable and Wearable Sensing Design for Continuous and Wide‐Spectrum Molecular Analysis and DiagnosticsAdvanced Science 2022; 9(34) doi: 10.1002/advs.202203693
15
Robert J. Beaulieu, Seth D. Goldstein, Jasvinder Singh, Bashar Safar, Amit Banerjee, Nita Ahuja. Automated diagnosis of colon cancer using hyperspectral sensingThe International Journal of Medical Robotics and Computer Assisted Surgery 2018; 14(3) doi: 10.1002/rcs.1897
16
Rasa Vansevičiūtė, Jonas Venius, Olga Žukovskaja, Daiva Kanopienė, Simona Letautienė, Ričardas Rotomskis. 5-Aminolevulinic-acid-based fluorescence spectroscopy and conventional colposcopy for in vivo detection of cervical pre-malignancyBMC Women's Health 2015; 15(1) doi: 10.1186/s12905-015-0191-4
17
Alexander A. Oraevsky, Lihong V. Wang, Mallika Priya, Bola Sadashiva Satish Rao, Satadru Ray, Krishna Kishore Mahato. Photoacoustic spectroscopy in the monitoring of breast tumor development: a pre-clinical studyPhotons Plus Ultrasound: Imaging and Sensing 2014 2014; 8943: 894347 doi: 10.1117/12.2039365
18
Shuo Chen, Caigang Zhu, Christopher Hoe‐Kong Chui, Gyanendra Sheoran, Bien‐Keem Tan, Quan Liu. Spectral diffuse reflectance and autofluorescence imaging can perform early prediction of blood vessel occlusion in skin flapsJournal of Biophotonics 2017; 10(12): 1665 doi: 10.1002/jbio.201600189
19
Erman K. Oztekin, Sarah E. Smith, David W. Hahn. Differential laser-induced perturbation Raman spectroscopy: a comparison with Raman spectroscopy for analysis and classification of amino acids and dipeptidesJournal of Biomedical Optics 2015; 20(4): 047006 doi: 10.1117/1.JBO.20.4.047006
20
A. Miernik, S. Hein, F. Adams, J. Halbritter, M. Schoenthaler. Steintherapie morgen und übermorgenDer Urologe 2016; 55(10): 1309 doi: 10.1007/s00120-016-0227-x
21
N. Sun, J. Johnson, M.S. Stack, J. Szajko, C. Sander, R. Rebuyon, A. Deatsch, J. Easton, C.E. Tanner, S.T. Ruggiero. Nanoparticle analysis of cancer cells by light transmission spectroscopyAnalytical Biochemistry 2015; 484: 58 doi: 10.1016/j.ab.2015.05.004
22
K Gurushankar, M Gohulkumar, Piyush Kumar, C Murali Krishna, N Krishnakumar. Raman spectroscopy detects biomolecular changes associated with nanoencapsulated hesperetin treatment in experimental oral carcinogenesisLaser Physics Letters 2016; 13(3): 035901 doi: 10.1088/1612-2011/13/3/035901
23
David Abookasis, David Shemesh, Arik Litwin, Hava T. Siegelmann, Elena Didkovsky, Dean D. Ad‐El. Single probe light reflectance spectroscopy and parameter spectrum feature extraction in experimental skin cancer detection and classificationJournal of Biophotonics 2023; 16(8) doi: 10.1002/jbio.202300001
24
U. Anushree, Sachin Shetty, Rajesh Kumar, Sanjay Bharati. Adjunctive Diagnostic Methods for Skin Cancer Detection: A Review of Electrical Impedance‐Based TechniquesBioelectromagnetics 2022; 43(3): 193 doi: 10.1002/bem.22396
25
Brandon S. Nichols, Christine E. Schindler, Jonathon Q. Brown, Lee G. Wilke, Christine S. Mulvey, Marlee S. Krieger, Jennifer Gallagher, Joseph Geradts, Rachel A. Greenup, Jesko A. Von Windheim, Nirmala Ramanujam, Christof Markus Aegerter. A Quantitative Diffuse Reflectance Imaging (QDRI) System for Comprehensive Surveillance of the Morphological Landscape in Breast Tumor MarginsPLOS ONE 2015; 10(6): e0127525 doi: 10.1371/journal.pone.0127525
26
Elumalai Brindha, Ramu Rajasekaran, Prakasarao Aruna, Dornadula Koteeswaran, Singaravelu Ganesan. High wavenumber Raman spectroscopy in the characterization of urinary metabolites of normal subjects, oral premalignant and malignant patientsSpectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2017; 171: 52 doi: 10.1016/j.saa.2016.06.048
27
Irving J. Bigio. Real-time Pathology to Guide Breast Surgery: Seeing Alone Is Not BelievingClinical Cancer Research 2012; 18(22): 6083 doi: 10.1158/1078-0432.CCR-12-2823
28
Jürgen Popp, Valery V. Tuchin, Dennis L. Matthews, Francesco S. Pavone, Paul Garside, E. Borisova, E. Pavlova, T. Kundurjiev, P. Troyanova, Ts. Genova, L. Avramov. Light-induced autofluorescence and diffuse reflectance spectroscopy in clinical diagnosis of skin cancerBiophotonics: Photonic Solutions for Better Health Care IV 2014; 9129: 91291O doi: 10.1117/12.2051406
29
Dale J. Waterhouse, Catherine R. M. Fitzpatrick, Brian W. Pogue, James P. B. O’Connor, Sarah E. Bohndiek. A roadmap for the clinical implementation of optical-imaging biomarkersNature Biomedical Engineering 2019; 3(5): 339 doi: 10.1038/s41551-019-0392-5
30
Rasa Vansevičiūtė, Jonas Venius, Simona Letautienė. 5-Aminolevulinic acid-based fluorescence diagnostics of cervical preinvasive changesMedicina 2014; 50(3): 137 doi: 10.1016/j.medici.2014.08.004
31
Shuo Chen, Quan Liu. Modified Wiener estimation of diffuse reflectance spectra from RGB values by the synthesis of new colors for tissue measurementsJournal of Biomedical Optics 2012; 17(3): 030501 doi: 10.1117/1.JBO.17.3.030501
32
Gurushankar K, Shaiju S. Nazeer, Gohulkumar M, Ramapurath S. Jayasree, Madhavan Nirmal R, Krishnakumar N. Endogenous porphyrin fluorescence as a biomarker for monitoring the anti-angiogenic effect in antitumor response to hesperetin loaded nanoparticles in experimental oral carcinogenesisRSC Adv. 2014; 4(87): 46896 doi: 10.1039/C4RA06140C
33
Prashanth Panta, Laurie J. Rich, Mukund Seshadri. Oral Cancer Detection2019; : 189 doi: 10.1007/978-3-319-61255-3_9