Use of the Fractal Dimension to Differentiate Epithelium and Connective Tissue in Oral Leukoplakias
Abstract
:Simple Summary
Abstract
1. Introduction
2. Materials and Method
2.1. Design of the Study
2.2. Computation of the Sample Size
2.3. Type of Samples and Processing
2.4. Inclusion and Exclusion Criteria
2.5. Variables
2.6. Image Scanning and Analysis FD
2.7. Statistical Analysis
3. Results
3.1. Description of the Sample
3.2. Analysis of FD
3.3. Study of the Effect of the Types of Dysplasia on the Values of Dime and Dimc
3.4. Diagnostic Yield Analysis
3.5. Pilot Study of FD in Clinical Images and Its Relationship with Dysplasia
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Van der Waal, I. Oral leukoplakia, the ongoing discussion on definition and terminology. Med. Oral Pathol. Oral Cir. Bucal. 2015, 20, e685–e692. [Google Scholar] [CrossRef] [PubMed]
- Warnakulasuriya, S.; Johnson, N.W.; Van Der Waal, I. Nomenclature and classification of potentially malignant disorders of the oral mucosa. J. Oral Pathol. Med. 2007, 36, 575–580. [Google Scholar] [CrossRef] [PubMed]
- Warnakulasuriya, S.; Kujan, O.; Aguirre-Urizar, J.M.; Bagan, J.V.; González-Moles, M.Á.; Kerr, A.R.; Lodi, G.; Mello, F.W.; Monteiro, L.; Ogden, G.R.; et al. Oral potentially malignant disorders: A consensus report from an international seminar on nomenclature and classification, convened by the WHO Collaborating Centre for Oral Cancer. Oral Dis. 2021, 27, 1862–1880. [Google Scholar] [CrossRef] [PubMed]
- De Mendoza, I.L.I.; Pouso, A.I.L.; Urízar, J.M.A.; Montero, C.B.; Carrión, A.B.; Vila, P.G.; Sayáns, M.P. Malignant development of proliferative verrucous/multifocal leukoplakia: A critical systematic review, meta-analysis and proposal of diagnostic criteria. J. Oral Pathol. Med. 2022, 51, 30–38. [Google Scholar] [CrossRef] [PubMed]
- Van der Waal, I. Potentially malignant disorders of the oral and oropharyngeal mucosa; terminology, classification and present concepts of management. Oral Oncol. 2009, 45, 317–323. [Google Scholar] [CrossRef]
- Aguirre-Urizar, J.M.; de Mendoza, L.-I.; Warnakulasuriya, S. Malignant transformation of oral leukoplakia: Systematic review and meta-analysis of the last 5 years. Oral Dis. 2021, 27, 1881–1895. [Google Scholar] [CrossRef]
- Epstein, J.B.; Gorsky, M.; Fischer, D.; Gupta, A.; Epstein, M.; Elad, S. A Survey of the Current Approaches to Diagnosis and Management of Oral Premalignant Lesions. J. Am. Dent. Assoc. 2007, 138, 1555–1562. [Google Scholar] [CrossRef]
- Kujan, O.; Oliver, R.J.; Khattab, A.; Roberts, S.A.; Thakker, N.; Sloan, P. Evaluation of a new binary system of grading oral epithelial dysplasia for prediction of malignant transformation. Oral Oncol. 2006, 42, 987–993. [Google Scholar] [CrossRef]
- Kumar, A.; Cascarini, L.; McCaul, J.A.; Kerawala, C.J.; Coombes, D.; Godden, D.; Brennan, P.A. How should we manage oral leukoplakia? Br. J. Oral Maxillofac. Surg. 2013, 51, 377–383. [Google Scholar] [CrossRef]
- Gale, N.; Blagus, R.; El-Mofty, S.K.; Helliwell, T.; Prasad, M.L.; Sandison, A.; Volavšek, M.; Wenig, B.M.; Zidar, N.; Cardesa, A. Evaluation of a new grading system for laryngeal squamous intraepithelial lesions—A proposed unified classification. Histopathology 2014, 65, 456–464. [Google Scholar] [CrossRef]
- Falconer, K. Fractal geometry. In Mathematical Foundations and Applications, 3rd ed.; John Wiley & Sons, Ltd.: Chichester, UK, 2014. [Google Scholar]
- Mandelbrot, B.B. The Fractal Geometry of Nature; W.H. Freeman and Co.: San Francisco, CA, USA, 1982. [Google Scholar]
- Bornstein, M.M.; Fernández-Martínez, M.; Guirao, J.L.G.; Gómez-García, F.J.; Guerrero-Sánchez, Y.; López-Jornet, P. On the Symmetry of the Bone Structure Density over the Nasopalatine Foramen via Accurate Fractal Dimension Analysis. Symmetry 2019, 11, 202. [Google Scholar] [CrossRef] [Green Version]
- Fernández-Martínez, M. A survey on fractal dimension for fractals structures. Appl. Math. Nonlinear Sci. 2016, 1, 437–472. [Google Scholar] [CrossRef] [Green Version]
- Fernández-Martínez, M.; Guirao, J.L.G.; Sánchez-Granero, M.A.; Segovia, J.E.T. Fractal Dimension for Fractal Structures: With Applications to Finance; Springer: Berlin/Heidelberg, Germany, 2019; Volume 19. [Google Scholar]
- Pontrjagin, L.; Schnirelmann, L. Sur une proprieté métrique de la dimensión. Ann. Math. Second Series 1932, 33, 156–162. [Google Scholar] [CrossRef]
- White, S.; Rudolph, D.J. Alterations of the trabecular pattern of the jaws in patients with osteoporosis. Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endodontology 1999, 88, 628–635. [Google Scholar] [CrossRef]
- Dawson, D.V.; Drake, D.R.; Hill, J.R.; Brogden, K.A.; Fischer, C.L.; Wertz, P.W. Organization, barrier function and antimicrobial lipids of the oral mucosa. Int. J. Cosmet. Sci. 2013, 35, 220–223. [Google Scholar] [CrossRef] [Green Version]
- Kato, C.N.; Barra, S.G.; Tavares, N.P.; Amaral, T.M.; Brasileiro, C.B.; Mesquita, R.A.; Abreu, L.G. Use of fractal analysis in dental images: A systematic review. Dentomaxillofac. Radiol. 2020, 49, 20180457. [Google Scholar] [CrossRef]
- Soylu, E.; Coşgunarslan, A.; Çelebi, S.; Soydan, D.; Demirbaş, A.E.; Demir, O. Fractal analysis as a useful predictor for determining osseointegration of dental implant? A retrospective study. Int. J. Implant Dent. 2021, 7, 14. [Google Scholar] [CrossRef]
- Klein-Szanto, A.J.; E Schroeder, H. Architecture and density of the connective tissue papillae of the human oral mucosa. J. Anat. 1977, 123 Pt 1, 93–109. [Google Scholar]
- Woo, S.-B. Oral Epithelial Dysplasia and Premalignancy. Head Neck Pathol. 2019, 13, 423–439. [Google Scholar] [CrossRef]
- Barnes, L.; Eveson, J.W.; Reichart, P.; Sidransky, S. World Health Organisation Classification of Tumours: Pathology and Genetics. Head and Neck Tumours; International Agency for Research on Cancer Press: Lyon, France, 2005. [Google Scholar]
- El-Naggar, A.K.; Chan, J.K.; Grandis, J.R.; Takata, T.; Slootweg, P.J. WHO Classification of Head and Neck Tumors. In WHO/IARC Classification of Tumours, 4th ed; International Agency for Research on Cancer (IARC) Press: New York, NY, USA, 2017; Volume 9. [Google Scholar]
- Warnakulasuriya, S.; Reibel, J.; Bouquot, J.; Dabelsteen, E. Oral epithelial dysplasia classification systems: Predictive value, utility, weaknesses and scope for improvement. J. Oral Pathol. Med. 2008, 37, 127–133. [Google Scholar] [CrossRef]
- MacKenzie, I.C.; Hill, M.W. Connective tissue influences on patterns of epithelial architecture and keratinization in skin and oral mucosa of the adult mouse. Cell Tissue Res. 1984, 235, 551–559. [Google Scholar] [CrossRef]
- Sarradin, V.; Siegfried, A.; Uro-Coste, E.; Delord, J.P. Classification de l’OMS 2017 des tumeurs de la tête et du cou: Principales nouveautés et mise à jour des méthodes diagnostiques [WHO classification of head and neck tumours 2017: Main novelties and update of diagnostic methods]. Bull. Cancer 2018, 105, 596–602. [Google Scholar] [CrossRef]
- Kujan, O.; Khattab, A.; Oliver, R.; Roberts, S.; Thakker, N.; Sloan, P. Why oral histopathology suffers inter-observer variability on grading oral epithelial dysplasia: An attempt to understand the sources of variation. Oral Oncol. 2007, 43, 224–231. [Google Scholar] [CrossRef]
- Jurczyszyn, K.; Kazubowska, K.; Kubasiewicz-Ross, P.; Ziółkowski, P.; Dominiak, M. Application of fractal dimension analysis and photodynamic diagnosis in the case of differentiation between lichen planus and leukoplakia: A preliminary study. Adv. Clin. Exp. Med. 2018, 27, 1729–1736. [Google Scholar] [CrossRef]
- Margaritescu, C.; Raica, M.; Pirici, D.; Simionescu, C.; Mogoanta, L.; Stinga, A.; Stinga, A.; Ribatti, D. Podoplanin expression in tumor-free resection margins of oral squamous cell carcinomas: An immunohistochemical and fractal analysis study. Histol. Histopathology. 2010, 25, 701–711. [Google Scholar] [CrossRef]
- Pandey, P.B.; Kandakurti, S.; Saxena, V.S.; Tripathi, P.; Pamula, R.; Yadav, M. Fractal analysis in oral leukoplakia. J. Indian Acad. Oral Med. Radiol. 2015, 27, 354–358. [Google Scholar] [CrossRef]
- Eid, R.A.; Landini, G. Quantification of the Global and Local Complexity of the Epithelial-Connective Tissue Interface of Normal, Dysplastic, and Neoplastic Oral Mucosae Using Digital Imaging. Pathol. Res. Pract. 2003, 199, 475–482. [Google Scholar] [CrossRef]
- Goutzanis, L.; Papadogeorgakis, N.; Pavlopoulos, P.; Katti, K.; Petsinis, V.; Plochoras, I.; Pantelidaki, C.; Kavantzas, N.; Patsouris, E.; Alexandridis, C. Nuclear fractal dimension as a prognostic factor in oral squamous cell carcinoma. Oral Oncol. 2008, 44, 345–353. [Google Scholar] [CrossRef]
- Landini, G.; Rippin, J.W. How important is tumour shape? Quantification of the epithelial-connective tissue interface in oral lesions using local connected fractal dimension analysis. J. Pathol. 1996, 179, 210–217. [Google Scholar] [CrossRef]
- Landini, G.; Hirayama, Y.; Li, T.-J.; Kitano, M. Increased Fractal Complexity of the Epithelial-connective Tissue Interface in the Tongue of 4NQO-treated Rats. Pathol.-Res. Pract. 2000, 196, 251–258. [Google Scholar] [CrossRef]
- Iqbal, J.; Patil, R.; Khanna, V.; Tripathi, A.; Singh, V.; Munshi, M.A.I.; Tiwari, R. Role of fractal analysis in detection of dysplasia in potentially malignant disorders. J. Fam. Med. Prim. Care 2020, 9, 2448–2453. [Google Scholar] [CrossRef]
- Jurczyszyn, K.; Kozakiewicz, M. Application of Texture and Fractal Dimension Analysis to Estimate Effectiveness of Oral Leukoplakia Treatment Using an Er:YAG Laser—A Prospective Study. Materials 2020, 13, 3614. [Google Scholar] [CrossRef] [PubMed]
- Fernández-Martínez, M.; Guerrero-Sánchez, Y.; López-Jornet, P. A novel approach to improve the accuracy of the box dimension calculations: Applications to trabecular bone quality. Discret. Contin. Dyn. Syst. S 2018, 12, 1527–1534. [Google Scholar] [CrossRef] [Green Version]
OL Group | N | Ratio | Gender Distribution | ||
---|---|---|---|---|---|
Men N (Ratio) | Women N (Ratio) | ||||
Gender | Men | 11 | 38 | ||
Women | 18 | 62 | |||
Total | 29 | 100 | |||
Level of dysplasia | No dysplasia | 13 | 45 | 6 (55) | 7 (39) |
Low | 11 | 38 | 3 (27) | 8 (44) | |
High | 5 | 17 | 2 (18) | 3 (17) | |
Total | 29 | 100 | 11 (100) | 18 (100) | |
Biopsy location | Tongue | 14 | 48 | 6 (55) | 8 (44) |
Buccal mucosa | 8 | 28 | 3 (27) | 5 (28) | |
Gum | 1 | 3 | 0 (0) | 1 (6) | |
Alveolar ridge | 2 | 7 | 1 (9) | 1 (6) | |
Palate | 2 | 7 | 1 (9) | 1 (6) | |
Retromolar | 2 | 7 | 0 (0) | 2 (11) | |
Total | 29 | 100 | 11 (100) | 18 (100) | |
Clinical presentation | Homogeneous | 15 | 52 | 8 (73) | 7 (39) |
Warty | 9 | 31 | 2 (18) | 7 (39) | |
erythrocyte | 3 | 10 | 1 (9) | 2 (11) | |
Lichenoid | 2 | 7 | 0 (0) | 2 (11) | |
Total | 29 | 100 | 11 (100) | 18 (100) | |
Previous oral carcinoma | Yes | 5 | 17 | 5 (45) | 0 (0) |
No | 24 | 83 | 6 (55) | 18 (100) | |
Total | 29 | 100 | 11 (100) | 18 (100) | |
Clinical evolution | NR/DK | 2 | 7 | 0 (0) | 2 (11) |
Stable | 18 | 62 | 8 (73) | 10 (56) | |
Malignancy | 8 | 28 | 2 (18) | 6 (33) | |
Recurrence | 1 | 3 | 1 (9) | 0 (0) | |
Total | 29 | 100 | 11 (100) | 18 (100) | |
Smoker | NR/DK | 5 | 17 | 1 (9) | 4 (22) |
No | 15 | 52 | 2 (18,2) | 13 (72) | |
Yes | 3 | 10 | 3 (27,3) | 0 (0) | |
Ex-smoker | 6 | 21 | 5 (45,5) | 1 (6) | |
Total | 29 | 100 | 11 (100) | 18 (100) | |
Alcohol consumer | NR/DK | 9 | 31 | 4 (36,5) | 5 (28) |
No | 16 | 55 | 4 (26,5) | 12 (66) | |
Yes | 4 | 14 | 3 (27) | 1 (6) | |
Total | 29 | 100 | 11 (100) | 18 (100) | |
NOM Group | N | Ratio | Gender Distribution | ||
Men N(Ratio) | Women N(Ratio) | ||||
Gender | Men | 5 | 50 | ||
women | 5 | 50 | |||
Total | 10 | 100 | |||
Receives medication of some kind | Yes | 2 | 20 | 1 (20) | 1 (20) |
No | 8 | 80 | 4 (80) | 4 (80) | |
Total | 10 | 100 | 5 (100) | 5 (100) | |
Smoking | Yes | 4 | 40 | 2 (40) | 2 (40) |
No | 6 | 60 | 3 (60) | 3 (60) | |
Total | 10 | 100 | 5 (100) | 5 (100) |
NOM (N = 10) | OL (N = 29) | |||||||
---|---|---|---|---|---|---|---|---|
Mean | Std | Median | IQR | Mean | Std | Median | IQR | |
dime | 1.56 | 0.07 | 1.56 | 0.08 | 1.67 | 0.10 | 1.67 | 0.12 |
dimc | 1.78 | 0.06 | 1.76 | 0.09 | 1.74 | 0.06 | 1.73 | 0.06 |
Level 1 without Dysplasia (Count = 13) | Level 2: Low Level of Dysplasia (Count = 11) | Level 3: High Level of Dysplasia (Count = 5) | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
Mean | Std | Median | IQR | Mean | Std | Median | IQR | Mean | Std | Median | IQR | |
dime | 1.65 | 0.1 | 1.68 | 0.07 | 1.64 | 0.08 | 1.65 | 0.12 | 1.79 | 0.08 | 1.82 | 0.05 |
dimc | 1.75 | 0.07 | 1.76 | 0.08 | 1.73 | 0.06 | 1.72 | 0.05 | 1.74 | 0.04 | 1.73 | 0.05 |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Guerrero-Sánchez, Y.; Gómez García, F.; Chamorro-Petronacci, C.M.; Suárez-Peñaranda, J.M.; Pérez-Sayáns, M. Use of the Fractal Dimension to Differentiate Epithelium and Connective Tissue in Oral Leukoplakias. Cancers 2022, 14, 2697. https://doi.org/10.3390/cancers14112697
Guerrero-Sánchez Y, Gómez García F, Chamorro-Petronacci CM, Suárez-Peñaranda JM, Pérez-Sayáns M. Use of the Fractal Dimension to Differentiate Epithelium and Connective Tissue in Oral Leukoplakias. Cancers. 2022; 14(11):2697. https://doi.org/10.3390/cancers14112697
Chicago/Turabian StyleGuerrero-Sánchez, Yolanda, Francisco Gómez García, Cintia M. Chamorro-Petronacci, José M. Suárez-Peñaranda, and Mario Pérez-Sayáns. 2022. "Use of the Fractal Dimension to Differentiate Epithelium and Connective Tissue in Oral Leukoplakias" Cancers 14, no. 11: 2697. https://doi.org/10.3390/cancers14112697
APA StyleGuerrero-Sánchez, Y., Gómez García, F., Chamorro-Petronacci, C. M., Suárez-Peñaranda, J. M., & Pérez-Sayáns, M. (2022). Use of the Fractal Dimension to Differentiate Epithelium and Connective Tissue in Oral Leukoplakias. Cancers, 14(11), 2697. https://doi.org/10.3390/cancers14112697