Optical Coherence Tomography: Emerging In Vivo Optical Biopsy Technique for Oral Cancers

Oral cancers are a major health burden, and patients suffer from low survival rate owing to their late detection. Optical techniques are rapid, objective, and noninvasive methods with the potential to serve as adjunct screening/diagnostic tools, especially for cancers. This chapter highlights the advancements in oral cancer exploration using optical coherence tomography (OCT) with a discussion on basic principles of OCT, followed by a detailed description of oral cancer studies, subgrouped into animal studies, and ex vivo and in vivo human studies. We have included full-field OCT system-derived in vivo oral mucosa images in a healthy volunteer at different subsites showing standard microanatomy at various depths and also narrated some strategies to improve OCT results by multimodal approaches as well as through contrast enhancement for improved visualization.

[1]  Peter Williams,et al.  Ex vivo detection and characterization of early dental caries by optical coherence tomography and Raman spectroscopy. , 2005, Journal of biomedical optics.

[2]  J. Schmitt,et al.  Optical coherence tomography for the characterization of basal cell carcinoma in vivo: a pilot study. , 2006, Journal of the American Academy of Dermatology.

[3]  Siavash Yazdanfar,et al.  Molecular contrast in optical coherence tomography by use of a pump-probe technique. , 2003, Optics letters.

[4]  Freddy T. Nguyen,et al.  Optical coherence tomography: a review of clinical development from bench to bedside. , 2007, Journal of biomedical optics.

[5]  Jimi L. Brandon,et al.  Automated classification of optical coherence tomography images for the diagnosis of oral malignancy in the hamster cheek pouch. , 2014, Journal of biomedical optics.

[6]  Zhongping Chen,et al.  Optical coherence tomography of malignancy in hamster cheek pouches. , 2004, Journal of biomedical optics.

[7]  Jennifer Kehlet Barton,et al.  Use of microbubbles as an optical coherence tomography contrast agent. , 2002, Academic radiology.

[8]  R N Graf,et al.  Parallel frequency-domain optical coherence tomography scatter-mode imaging of the hamster cheek pouch using a thermal light source. , 2008, Optics letters.

[9]  Andreas Leunig,et al.  Evaluation of optical coherence tomography to discriminate lesions of the upper aerodigestive tract , 2013, Head & neck.

[10]  P. Wilder-Smith,et al.  Feasibility of three-dimensional optical coherence tomography and optical Doppler tomography of malignancy in hamster cheek pouches. , 2006, Photomedicine and laser surgery.

[11]  Euiheon Chung,et al.  In vivo wide-field reflectance/fluorescence imaging and polarization-sensitive optical coherence tomography of human oral cavity with a forward-viewing probe. , 2015, Biomedical optics express.

[12]  Ann Sandison,et al.  In vitro examination of suspicious oral lesions using optical coherence tomography. , 2010, The British journal of oral & maxillofacial surgery.

[13]  Waseem Jerjes,et al.  Optical coherence tomography in the assessment of oral squamous cell carcinoma resection margins. , 2016, Photodiagnosis and photodynamic therapy.

[14]  T. M. Joergensen,et al.  Assessment of Optical Coherence Tomography Imaging in the Diagnosis of Non‐Melanoma Skin Cancer and Benign Lesions Versus Normal Skin: Observer‐Blinded Evaluation by Dermatologists and Pathologists , 2009, Dermatologic surgery : official publication for American Society for Dermatologic Surgery [et al.].

[15]  B. Wong,et al.  In vivo optical coherence tomography of the human oral cavity and oropharynx. , 2006, Archives of otolaryngology--head & neck surgery.

[16]  J. Fujimoto,et al.  Optical biopsy in human urologic tissue using optical coherence tomography. , 1997, The Journal of urology.

[17]  Javier A. Jo,et al.  A dual-modality optical coherence tomography and fluorescence lifetime imaging microscopy system for simultaneous morphological and biochemical tissue characterization , 2010, Biomedical optics express.

[18]  Pierre Lane,et al.  Wide-field in vivo oral OCT imaging. , 2015, Biomedical optics express.

[19]  Anant Agrawal,et al.  Quantitative evaluation of optical coherence tomography signal enhancement with gold nanoshells. , 2006, Journal of biomedical optics.

[20]  Jun Zhang,et al.  In vivo diagnosis of oral dysplasia and malignancy using optical coherence tomography: Preliminary studies in 50 patients , 2009, Lasers in surgery and medicine.

[21]  J. Fujimoto,et al.  Optical coherence tomography: an emerging technology for biomedical imaging and optical biopsy. , 2000, Neoplasia.

[22]  C. Krishna,et al.  Raman Spectroscopy of Experimental Oral Carcinogenesis , 2016, Technology in cancer research & treatment.

[23]  A. V. Maslennikova,et al.  In-vivo longitudinal imaging of microvascular changes in irradiated oral mucosa of radiotherapy cancer patients using optical coherence tomography , 2017, Scientific Reports.

[24]  Robert Wilson The use of gold nanoparticles in diagnostics and detection. , 2008, Chemical Society reviews.

[25]  Arti R. Hole,et al.  Raman spectroscopy in experimental oral carcinogenesis: investigation of abnormal changes in control tissues , 2016 .

[26]  Karsten König,et al.  Clinical optical coherence tomography combined with multiphoton tomography of patients with skin diseases , 2009, Journal of biophotonics.

[27]  G. Gelikonov,et al.  In vivo OCT imaging of hard and soft tissue of the oral cavity. , 1998, Optics express.

[28]  P. Escobar,et al.  Diagnostic efficacy of optical coherence tomography in the management of preinvasive and invasive cancer of uterine cervix and vulva , 2003, International Journal of Gynecologic Cancer.

[29]  D. Huffman,et al.  Application of polarization effects in light scattering: a new biophysical tool. , 1976, Proceedings of the National Academy of Sciences of the United States of America.

[30]  Ruikang K. Wang,et al.  In vivo imaging of functional microvasculature within tissue beds of oral and nasal cavities by swept-source optical coherence tomography with a forward/side-viewing probe , 2014, Biomedical optics express.

[31]  S. Boppart,et al.  Optical Coherence Tomography: Feasibility for Basic Research and Image-guided Surgery of Breast Cancer , 2004, Breast Cancer Research and Treatment.

[32]  Hsiang-Chieh Lee,et al.  Differentiating oral lesions in different carcinogenesis stages with optical coherence tomography. , 2009, Journal of biomedical optics.

[33]  Ton G. van Leeuwen,et al.  A clinical probe for combined Raman spectroscopy-optical coherence tomography (RS-OCT) of the skin cancers , 2010, BiOS.

[34]  S. A. Boppart,et al.  Integrated structural and functional optical imaging combining spectral-domain optical coherence and multiphoton microscopy , 2005, physics/0512161.

[35]  R. Jain,et al.  Cancer imaging by optical coherence tomography: preclinical progress and clinical potential , 2012, Nature Reviews Cancer.

[36]  J. Fujimoto Optical coherence tomography for ultrahigh resolution in vivo imaging , 2003, Nature Biotechnology.

[37]  Zhongping Chen,et al.  Ultrahigh-resolution optical coherence tomography by broadband continuum generation from a photonic crystal fiber. , 2003, Optics letters.

[38]  Dirk Faber,et al.  Comparative optical coherence tomography imaging of human esophagus: how accurate is localization of the muscularis mucosae? , 2002, Gastrointestinal endoscopy.

[39]  Daniel L Marks,et al.  Optical probes and techniques for molecular contrast enhancement in coherence imaging. , 2005, Journal of biomedical optics.

[40]  Matthew Brenner,et al.  Broadband diffuse optical spectroscopy assessment of hemorrhage- and hemoglobin-based blood substitute resuscitation. , 2009, Journal of biomedical optics.

[41]  K. Suslick,et al.  Engineered microsphere contrast agents for optical coherence tomography. , 2003, Optics letters.

[42]  Younan Xia,et al.  Gold nanocages as contrast agents for spectroscopic optical coherence tomography. , 2005, Optics letters.

[43]  M. Dickinson,et al.  Hemodynamic measurements from individual blood cells in early mammalian embryos with Doppler swept source OCT. , 2009, Optics letters.

[44]  T. Milner,et al.  Review of polarization sensitive optical coherence tomography and Stokes vector determination. , 2002, Journal of biomedical optics.

[45]  Automated analysis of multimodal fluorescence lifetime imaging and optical coherence tomography data for the diagnosis of oral cancer in the hamster cheek pouch model , 2016, Biomedical optics express.

[46]  Anthony M. D. Lee,et al.  Towards biopsy guidance of oral lesions with wide-field OCT imaging , 2016 .

[47]  Orly Liba,et al.  Contrast-enhanced optical coherence tomography with picomolar sensitivity for functional in vivo imaging , 2016, Scientific Reports.

[48]  Zhongping Chen,et al.  In vivo optical coherence tomography for the diagnosis of oral malignancy , 2004, Lasers in surgery and medicine.

[49]  Xingde Li,et al.  Imaging of subsquamous Barrett's epithelium with ultrahigh-resolution optical coherence tomography: a histologic correlation study. , 2010, Gastrointestinal endoscopy.

[50]  S. Boppart,et al.  Nonlinear optical contrast enhancement for optical coherence tomography. , 2003, Optics express.

[51]  Yogesh Verma,et al.  Human ex-vivo oral tissue imaging using spectral domain polarization sensitive optical coherence tomography , 2016, Lasers in Medical Science.

[52]  C. Mathers,et al.  Cancer incidence and mortality worldwide: Sources, methods and major patterns in GLOBOCAN 2012 , 2015, International journal of cancer.

[53]  W. Jerjes,et al.  Structural validation of oral mucosal tissue using optical coherence tomography , 2012, Head & neck oncology.

[54]  Hsiang-Chieh Lee,et al.  Delineation of an oral cancer lesion with swept-source optical coherence tomography. , 2008, Journal of biomedical optics.

[55]  J. Fujimoto,et al.  Optical Coherence Tomography , 1991 .

[56]  Chih-Wei Lu,et al.  Oral Cancer Diagnosis with Optical Coherence Tomography , 2005, 2005 IEEE Engineering in Medicine and Biology 27th Annual Conference.

[57]  Tahwinder Upile,et al.  Optical coherence tomography in the assessment of suspicious oral lesions: an immediate ex vivo study. , 2013, Photodiagnosis and photodynamic therapy.

[58]  Jennifer Kehlet Barton,et al.  Dual modality instrument for simultaneous optical coherence tomography imaging and fluorescence spectroscopy. , 2004, Journal of biomedical optics.

[59]  Matthew D. Keller,et al.  Combined Raman spectroscopy and optical coherence tomography device for tissue characterization. , 2008, Optics letters.

[60]  C. Chiang,et al.  Diagnosis of oral precancer with optical coherence tomography , 2012, Biomedical optics express.

[61]  Javier A. Jo,et al.  Design of a dual-modality imaging system using optical coherence tomography and fluorescence lifetime imaging microscopy for anatomical and biochemical diagnosis of tissue , 2010, BiOS.

[62]  Amy L Oldenburg,et al.  Plasmon-resonant gold nanorods as low backscattering albedo contrast agents for optical coherence tomography. , 2006, Optics express.

[63]  T. Jørgensen,et al.  Machine‐learning classification of non‐melanoma skin cancers from image features obtained by optical coherence tomography , 2008, Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) [and] International Society for Digital Imaging of Skin (ISDIS) [and] International Society for Skin Imaging.

[64]  B E Bouma,et al.  Diagnosis of specialized intestinal metaplasia by optical coherence tomography. , 2001, Gastroenterology.

[65]  Ruikang K. Wang,et al.  In vivo volumetric imaging of vascular perfusion within human retina and choroids with optical micro-angiography. , 2008, Optics express.

[66]  Javier A. Jo,et al.  In Vivo Simultaneous Morphological and Biochemical Optical Imaging of Oral Epithelial Cancer , 2010, IEEE Transactions on Biomedical Engineering.

[67]  Zhongping Chen,et al.  Enhanced detection of early-stage oral cancer in vivo by optical coherence tomography using multimodal delivery of gold nanoparticles. , 2009, Journal of biomedical optics.

[68]  D. D. de Bruin,et al.  Optical biopsy of epithelial cancers by optical coherence tomography (OCT) , 2013, Lasers in Medical Science.

[69]  A. Rollins,et al.  Intracoronary optical coherence tomography: a comprehensive review clinical and research applications. , 2009, JACC. Cardiovascular interventions.

[70]  Meng-Tsan Tsai,et al.  Noninvasive structural and microvascular anatomy of oral mucosae using handheld optical coherence tomography. , 2017, Biomedical optics express.

[71]  Francisco E. Robles,et al.  Detecting precancerous lesions in the hamster cheek pouch using spectroscopic white-light optical coherence tomography to assess nuclear morphology via spectral oscillations. , 2009, Journal of biomedical optics.

[72]  Hsiang-Chieh Lee,et al.  Effective indicators for diagnosis of oral cancer using optical coherence tomography. , 2008, Optics express.

[73]  Dan L. Bader,et al.  Quantitative analysis of optical coherence tomography and histopathology images of normal and dysplastic oral mucosal tissues , 2012, Lasers in Medical Science.

[74]  B. Wong,et al.  In Vivo Optical Coherence Tomography of the Human Larynx: Normative and Benign Pathology in 82 Patients , 2005, The Laryngoscope.

[75]  K. Takada,et al.  New measurement system for fault location in optical waveguide devices based on an interferometric technique. , 1987, Applied optics.

[76]  Jun Zhang,et al.  Advances in oral cancer detection using optical coherence tomography , 2005, IEEE Journal of Selected Topics in Quantum Electronics.

[77]  C. Betz,et al.  Measurement of epithelial thickness within the oral cavity using optical coherence tomography , 2012, Head & neck.

[78]  Josep Malvehy,et al.  In Vivo Noninvasive Imaging of Healthy Lower Lip Mucosa: A Correlation Study between High-Definition Optical Coherence Tomography, Reflectance Confocal Microscopy, and Histology , 2013, Dermatology research and practice.

[79]  J. Fujimoto,et al.  Spectroscopic optical coherence tomography. , 2000 .

[80]  Ruikang K. Wang,et al.  Microvascular imaging and monitoring of human oral cavity lesions in vivo by swept-source OCT-based angiography , 2017, Lasers in Medical Science.

[81]  James G. Fujimoto,et al.  Feasibility of optical coherence tomography for high-resolution imaging of human gastrointestinal tract malignancies , 2000, Journal of Gastroenterology.

[82]  Changho Chong,et al.  In vivo imaging of human labial glands using advanced optical coherence tomography. , 2009, Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics.

[83]  Zhongping Chen,et al.  Multimodality approach to optical early detection and  mapping of oral neoplasia. , 2011, Journal of biomedical optics.