Stomatognathic System Changes in Obese Patients Undergoing Bariatric Surgery: A Systematic Review

datacite.rightshttp://purl.org/coar/access_right/c_abf2eng
dc.contributor.authorGualdrón-Bobadilla, Gerson Fabián
dc.contributor.authorBriceño-Martínez, Anggie
dc.contributor.authorCaicedo-Téllez, Víctor
dc.contributor.authorPérez-Reyes, Ginna
dc.contributor.authorSilva-Paredes, Carlos
dc.contributor.authorOrtiz-Benavides, Rina
dc.contributor.authorBernal, Mary Carlota
dc.contributor.authorRivera-Porras, Diego
dc.contributor.authorBermúdez, Valmore
dc.date.accessioned2022-11-22T16:20:47Z
dc.date.available2022-11-22T16:20:47Z
dc.date.issued2022
dc.description.abstractBackground: Obesity is a multifactorial chronic disease involving multiple organs, devices, and systems involving important changes in the stomatognathic system, such as in the orofacial muscles, temporomandibular joint, cheeks, nose, jaw, maxilla, oral cavity, lips, teeth, tongue, hard/soft palate, larynx, and pharynx. Patients with obesity indicated for bariatric surgery reportedly presented with abnormalities in the structures and function of the stomatognathic apparatus. This occurs through the accumulation of adipose tissue in the oral cavity and pharyngeal and laryngeal regions. Therefore, this systematic review aimed to elucidate the changes occurring in the stomatognathic system of patients with obesity after undergoing bariatric surgery. Method: Information was searched based on the equations developed with the descriptors obtained in DECS and MESH using the PRISMA methodology. Studies published between 2010 and October 2021 in databases including PubMed, ProQuest, Scielo, Dialnet, EBSCO, and Springer Link were considered. Results: Eighty articles met the inclusion criteria after evaluating the articles, thereby allowing for the determination of the morphophysiological correlation of the stomatognathic system with the population studied. At the morphological or structural level, changes were observed in the face, nose, cheeks, maxilla, jaw, lips, oral cavity, teeth, tongue, palate, temporomandibular joint, neck, muscles, head, shoulders, larynx, and pharynx. At the morphological level, the main changes occurred in, and the most information was obtained from, the labial structures, teeth, muscles, pharynx, and larynx. Physiological changes were in breathing, phonation, chewing, and swallowing, thereby revealing the imbalance in basic and vital functions. Conclusions: Analyzing the changes and structures of obese patients and candidates for bariatric surgery revealed that, in the preoperative period, the evidence is clear owing to the presence of a wide range of information. However, the information is more limited regarding the postoperative period; thus, further research focusing on characterization of the system postoperatively is warranted.eng
dc.format.mimetypepdfeng
dc.identifier.citationGualdrón-Bobadilla, G. F., Briceño-Martínez, A. P., Caicedo-Téllez, V., Pérez-Reyes, G., Silva-Paredes, C., Ortiz-Benavides, R., Bernal, M. C., Rivera-Porras, D., & Bermúdez, V. (2022). Stomatognathic System Changes in Obese Patients Undergoing Bariatric Surgery: A Systematic Review. Journal of Personalized Medicine, 12(10), 1541. https://doi.org/10.3390/jpm12101541eng
dc.identifier.doihttps://doi.org/10.3390/jpm12101541
dc.identifier.issn20754426
dc.identifier.urihttps://hdl.handle.net/20.500.12442/11455
dc.language.isoengeng
dc.publisherMDPIeng
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internacionaleng
dc.rights.accessrightsinfo:eu-repo/semantics/openAccesseng
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.sourceJournal of Personalized Medicineeng
dc.sourceVol. 12 Issue 10 (2022)eng
dc.subjectobesityeng
dc.subjectbariatric surgeryeng
dc.subjectstomatognathic systemeng
dc.subjectPhysiologyeng
dc.titleStomatognathic System Changes in Obese Patients Undergoing Bariatric Surgery: A Systematic Revieweng
dc.type.driverinfo:eu-repo/semantics/articleeng
dc.type.spaArtículo científicospa
dcterms.referencesBarreto, J.F. Sistema estomatognático y esquema corporal. Colomb. Méd. 1999, 30, 173–180.spa
dcterms.referencesKarlsson, L.; Carlsson, J.; Jenneborg, K.; Kjaeldgaard, M. Perceived oral health in patients after bariatric surgery using oral health-related quality of life measures. Clin. Exp. Dent. Res. 2018, 4, 230–240.eng
dcterms.referencesNettle, D.; Andrews, C.; Bateson, M. Food insecurity as a driver of obesity in humans: The insurance hypothesis. Behav. Brain Sci. 2017, 40, e105.eng
dcterms.referencesGlobus, I.; Kissileff, H.R.; Hamm, J.D.; Herzog, M.; Mitchell, J.E.; Latzer, Y. Comparison of interview to questionnaire for assessment of eating disorders after bariatric surgery. J. Clin. Med. 2021, 10, 1174.eng
dcterms.referencesCadena, E. Obesidad un Factor de Riesgo en el COVID-19; Ministerio de Salud y Protección Social: Bogotá, Colombia, 2021.spa
dcterms.referencesCamhi, S.M.; Must, A.; Gona, P.N.; Hankinson, A.; Odegaard, A.; Reis, J.; Gunderson, E.P.; Jacobs, D.R.; Carnethon, M.R. Duration and stability of metabolically healthy obesity over 30 years. Int. J. Obes. 2019, 43, 1803–1810.eng
dcterms.referencesDe Lorenzo, A.; Gratteri, S.; Gualtieri, P.; Cammarano, A.; Bertucci, P.; Di Renzo, L. Why primary obesity is a disease? J. Transl. Med. 2019, 17, 169.eng
dcterms.referencesMalo Serrano, M.; Castillo, N.; Pajita, D. La obesidad en el mundo. Anal. Fac. Med. 2017, 78, 173–178.spa
dcterms.referencesBates, J.H.T.; Peters, U.; Daphtary, N.; MacLean, E.S.; Hodgdon, K.; Kaminsky, D.A.; Bhatawadekar, S.; Dixon, A.E. Altered airway mechanics in the context of obesity and asthma. J. Appl. Physiol. 2021, 130, 36–47.eng
dcterms.referencesValero, P.; Souki, A.; Arráiz Rodríguez, N.J.; Prieto Fuenmayor, C.; Cano-Ponce, C.; Acosta Martínez, J.; Chávez Castillo, M.; Sánchez, M.E.; Anderson Vásquez, H.E.; Plua Marcillo, W.; et al. Aspectos Básicos en Obesidad; Ediciones Universidad Simón Bolívar: Barranquilla, Colombia, 2018.spa
dcterms.referencesFonseca, A.L.F.; Salgado, W.; Dantas, O. Maximum phonation time in people with obesity not submitted or submitted to bariatric surgery. J. Obes. 2019, 2019, 5903621.eng
dcterms.referencesTomasini, K.; Ziegler, B.; Sanchez, P.R.S.; da Silva Junior, D.P.; Thomé, P.R.; Dalcin, P.T.R. Dyspnea perception during the inspiratory resistive loads test in obese subjects waiting bariatric surgery. Sci. Rep. 2020, 10, 8023.eng
dcterms.referencesCarpio, C.; Santiago, A.; García de Lorenzo, A.; Álvarez-Sala, R. Función pulmonar y obesidad. Nutr. Hosp. 2014, 30, 1054–1062eng
dcterms.referencesMashaqi, S.; Steffen, K.; Crosby, R.; Garcia, L. The impact of bariatric surgery on sleep disordered breathing parameters from overnight polysomnography and home sleep apnea test. Cureus 2018, 10, e2593.eng
dcterms.referencesVictor Taba, J.; Oliveira Suzuki, M.; do Nascimento, F.S.; Ryuchi Iuamoto, L.; Hsing, W.T.; Zumerkorn Pipek, L.; Andraus, W. The development of feeding and eating disorders after bariatric surgery: A systematic review and meta-analysis. Nutrients 2021, 13, 2396.eng
dcterms.referencesBenzerouk, F.; Djerada, Z.; Bertin, E.; Barrière, S.; Gierski, F.; Kaladjian, A. Contributions of emotional overload, emotion dysregulation, and impulsivity to eating patterns in obese patients with binge eating disorder and seeking bariatric surgery. Nutrients 2020, 12, 3099.eng
dcterms.referencesMaluenda, G.F. Cirugía bariátrica. Rev. Med. Clin. Condes 2012, 23, 180–188.spa
dcterms.referencesDel Negro, C.A.; Funk, G.D.; Feldman, J.L. Breathing matters. Nat. Rev. Neurosci. 2021, 19, 351–367.spa
dcterms.referencesAndrade Rocha, A.C.; De Souza Conceição, N.O.; Mangili Toni, L.D. Chewing and swallowing in obese individuals referred to bariatric surgery/gastroplasty—A pilot study. Rev. CEFAC 2021, 221, e8519.eng
dcterms.referencesCrummy, A.; Piper, A.; Naughton, M.T. Obesity and the lung: 2·Obesity and sleep-disordered breathing. Thorax 2008, 63, 38–746eng
dcterms.referencesSouza, N.; Guedes, Z.C.F. Mastigação e deglutição de crianças e adolescentes obesos. Rev. CEFAC 2016, 18, 1340–1347.por
dcterms.referencesMores, R.; Delgado, S.E.; Martins, N.F.; Anderle, P.; Longaray, C.; Pasqualeto, V.M.; Berbert, M.B. Caracterização dos distúrbios de sono, ronco e alterações do sistema estomatognático de obesos candidatos à Cirurgia Bariátrica. Rev. Bras. Obes. Nutr. Emagrecimento 2017, 11, 64–74.por
dcterms.referencesRed Para la Lectoescritura Inicial de Centroamérica y el Caribe. Diseño y Realización de Revisiones Sistemáticas. Una Guía de Formación para Investigadores de Lectoescritura Inicial (LEI); Ediciones RedLEI: Guatemala, 2021; Available online: https://red-lei.org/wp-content/uploads/2021/03/Directrices-de-Revisiones-Sistematicas.pdf (accessed on 2 February 2022).spa
dcterms.referencesBeltrán, O.A. Revisiones sistemáticas de la literature. Rev. Colomb. Gastroenterol. 2005, 20, 60–69.spa
dcterms.referencesGonzalez de Dios, J.; Balaguer Santamaría, A. Valoración crítica de artículos científicos. Parte 2: Revisiones sistemáticas y metaanálisis. FAPap Monogr. 2021, 6, 14–26.eng
dcterms.referencesLanda-Ramírez, E.; Arredondo-Pantaleón, A. Herramienta Pico para la formulación y búsqueda de preguntas clínicamente relevantes en la psicooncología basada en la evidencia. Psicooncología 2014, 11, 259–270.spa
dcterms.referencesLanda-Ramírez, E.; Arredondo-Pantaleón, A. Herramienta Pico para la formulación y búsqueda de preguntas clínicamente relevantes en la psicooncología basada en la evidencia. Psicooncología 2014, 11, 259–270.eng
dcterms.referencesPergunta, D. Estrategia Pico para la construcción de la pregunta de investigación y la búsqueda de evidencias. Rev. Latino Enfermagem. 2007, 15. Available online: https://www.researchgate.net/publication/283522391_Estrategia_pico_para_la_construccion_de_la_pregunta_de_investigacion_y_la_bsqueda_de_evidencias (accessed on 2 February 2022).eng
dcterms.referencesUrrútia, G.; Bonfill, X. Declaración PRISMA: Una propuesta para mejorar la publicación de revisiones sistemáticas y metaanálisis. Med. Clín. 2012, 135, 507–511.eng
dcterms.referencesGarcía, C.M.; del Castillo, M.D.M. Plan de cuidados estandarizado en cirugía bariátrica. NURE Investig. Rev. Cien. Enferm. 2006, 20,spa
dcterms.referencesPachón Salem, L.E. Formulación de criterios para registrar posición lingual en pacientes con deglución atípica mediante Glumap. Areté 2016, 16, 109–120.spa
dcterms.referencesFuenzalida, R.; Hernández-Mosqueira, C.; Serey, J.P. Alteraciones Estructurales y Funcionales del Sistema Estomatognático: Manejo fonoaudiológico. Areté 2017, 17, 29–35.spa
dcterms.referencesBolzan Berlese, D.; Copetti, F.; Maciel Weimmann, A.R.; Fabtinel Fontana, P.; Bonfanti Haeffner, L.S. Atividade dos Músculos Masseter e Temporal em Relação às Características Miofuncionais das Funções de Mastigação e deglutição em obesos. Distúrbios Comun. 2012, 24, 215–221.eng
dcterms.referencesMosquim, V.; Foratoti Junior, G.A.; Saory Hissano, W.; Wang y, L.; de Carvalho Sales Peres, S.H. Obesidade, cirurgia bariátrica e O impactO na saúde bucal: RevisãO de literature. Rev. Salusvita 2019, 38, 117–132.eng
dcterms.referencesTeramoto, S.; Sudo, E.; Matsuse, T.; Ohga, E.; Ishii, T.; Ouch, Y.; Fukuchi, Y. Impaired swallowing reflex in patients with obstructive sleep apnea syndrome. Chest 1999, 116, 17–21.eng
dcterms.referencesGodlewski, A.E.; Veyrune, J.L.; Nicolas, E.; Ciangura, C.A.; Chaussain, C.C.; Czernichow, S.; Basdevant, A.; Hennequin, M. Effect of dental status on changes in mastication in patients with obesity following bariatric surgery. PLoS ONE 2011, 6, e22324.eng
dcterms.referencesZicari, A.M.; Marzo, G.; Rugiano, A.; Celani, C.; Carbone, M.P.; Tecco, S.; Duse, M. Habitual snoring and atopic state: Correlations with respiratory function and teeth occlusion. BMC Pediatrics 2012, 12, 175.eng
dcterms.referencesMarin, G.; Gamez, A.S.; Molinari, N.; Kacimi, D.; Vachier, I.; Paganin, F.; Chanez, P.; Bourdin, A. Distal airway impairment in obese normoreactive women. BioMed Res. Int. 2013, 2013, 707856.eng
dcterms.referencesOppenheimer, B.W.; Berger, K.I.; Segal, L.N.; Stabile, A.; Coles, K.D.; Parikh, M.; Goldring, R.M. Airway dysfunction in obesity: Response to voluntary restoration of end expiratory lung volume. PLoS ONE 2014, 9, e88015.eng
dcterms.referencesPouwels, S.; Smeenk, F.W.; Manschot, L.; Lascaris, B.; Nienhuijs, S.; Bouwman, R.A.; Buise, M.P. Perioperative respiratory care in obese patients undergoing bariatric surgery: Implications for clinical practice. Respir. Med. 2016, 117, 73–80.eng
dcterms.referencesTulek, A.; Mulic, A.; Hogset, M.; Utheim, T.P.; Sehic, A. Therapeutic strategies for dry mouth management with emphasis on electrostimulation as a treatment option. Int. J. Dent. 2021, 2021, 6043488.eng
dcterms.referencesOppenheimer, B.W.; Berger, K.I.; Ali, S.; Segal, L.N.; Donnino, R.; Katz, S.; Parikh, M.; Goldring, R.M. Pulmonary vascular congestion: A mechanism for distal lung unit dysfunction in obesity. PLoS ONE 2016, 11, e0152769.eng
dcterms.referencese Felício, C.M.; da Silva Dias, F.V.; Trawitzki, L.V.V. Obstructive sleep apnea: Focus on myofunctional therapy. Nat. Sci. Sleep 2018, 10, 271–286.eng
dcterms.referencesCella, S.; Fei, L.; D’Amico, R.; Giardiello, C.; Allaria, A.; Cotrufo, P. Binge eating disorder and related features in bariatric surgery candidates. Open Med. 2019, 14, 407–415.eng
dcterms.referencesPizzorni, N.; Radovanovic, D.; Pecis, M.; Lorusso, R.; Annoni, F.; Bartorelli, A.; Rizzi, M.; Schindler, A.; Santus, P. Dysphagia symptoms in obstructive sleep apnea: Prevalence and clinical correlates. Respir. Res. 2021, 22, 117.eng
dcterms.referencesTorrente-Sánchez, M.J.; Ferer-Márquez, M.; Estébanez-Ferrero, B.; Jiménez-Lasserrotte, M.D.; Ruiz-Muelle, A.; Ventura-Miranda, M.I.; Dobarrio-Sanz, I.; Granero-Molina, J. Social support for people with morbid obesity in a bariatric surgery programme: A qualitative descriptive study. Int. J. Environ. Res. Public Health 2021, 18, 6530.eng
dcterms.referencesWomble, J.T.; McQuade, V.L.; Ihrie, M.D.; Ingram, J.L. Imbalanced coagulation in the airway of Type-2 high asthma with comorbid obesity. J. Asthma Allergy 2021, 14, 967–980.eng
dcterms.referencesDeane, S.; Thomson, A. Obesity and the pulmonologist. Arch. Dis. Child. 2006, 91, 188–191.eng
dcterms.referencesParameswaran, K.; Todd, D.C.; Soth, M. Altered respiratory physiology in obesity. Can. Respir. J. 2006, 13, 203–210.eng
dcterms.referencesZammit, C.; Liddicoat, H.; Moonsie, I.; Makker, H. Obesity and respiratory diseases. Int. J. Gen. Med. 2012, 3, 335–343.eng
dcterms.referencesorhomayon, J.; Papadakos, P.; Singh, A.; Nader, N.D. Alteration in respiratory physiology in obesity for anesthesia-critical care physician. HSR Proc. Intens. Care Cardiovasc. Anesth. 2011, 3, 109–118.eng
dcterms.referencesMizraji, M.; Freese, A.M.; Bianchi, R. Sistema estomatognático. Actas Odontológicas 2012, 9, 35–47.eng
dcterms.referencesRocha de Souza, L.B.; Medeiros Pereira, R.; Marques Dos Santos, M.; Almeida Godoy, C.M. Fundamental frequency, phonation maximum time and vocal complaints in morbidly obese women. Arq. Bras. Cir. Dig. 2014, 27, 43–46.eng
dcterms.referencesHuseini, M.; Wood, G.C.; Seiler, J.; Argyropoulos, G.; Irving, B.A.; Gerhard, G.S.; Benotti, P.; Still, C.; Rolston, D. Gastrointestinal symptoms in morbid obesity. Front. Med. 2014, 1, 49.eng
dcterms.referencesBraude Canterji, M.; Miranda Correa, S.P.; Vargas, G.S.; Ruttkay Pereira, J.L.; Finard, S.A. Intervenção fonoaudiológica na cirurgia bariátrica do idoso: Relato De Caso. Arq. Bras. Cir. Dig. 2015, 28, 86–87.eng
dcterms.referencesHodgson, L.E.; Murphy, P.B.; Hart, N. Respiratory management of the obese patient undergoing surgery. J. Thorac. Dis. 2015, 7, 943–952.eng
dcterms.referencesHodgson, L.E.; Murphy, P.B.; Hart, N. Respiratory management of the obese patient undergoing surgery. J. Thorac. Dis. 2015, 7, 943–952.eng
dcterms.referencesNath, A.; Yewale, S.; Tran, T.; Brebbia, J.S.; Shope, T.R.; Koch, T.R. Dysphagia after vertical sleeve gastrectomy: Evaluation of risk factors and assessment of endoscopic intervention. World J. Gastroenterol. 2016, 22, 10371–10379.eng
dcterms.references
dcterms.referencesWickerts, L.; Forsberg, S.; Bouvier, F.; Jakobsson, J. Monitoring respiration and oxygen saturation in patients during the first night after elective bariatric surgery: A cohort study. F1000 Res. 2017, 6, 735.eng
dcterms.referencesSchwartz, M.W.; Seeley, R.J.; Zeltser, L.M.; Drewnowski, A.; Ravussin, E.; Redman, L.M.; Leibel, R.L. Obesity pathogenesis: An endocrine society scientific statement. Endocr. Rev. 2017, 38, 267–296.eng
dcterms.referencesSimões da Rocha, M.R.; Souza, S.; Moraes da Costa, C.; Bertelli Merino, D.F.; de Lima Montebelo, M.I.; Pazzianotto-Forti, R.J. Airway positive pressure vs. exercises with inspiratory loading focused on pulmonary and respiratory muscular functions in the postoperative period of bariatric surgery. Arq. Bras. Cir. Dig. 2018, 31, e1363.eng
dcterms.referencesJehan, S.; Myers, A.K.; Zizi, F.; Pandi-Perumal, S.R.; Jean-Louis, G.; McFarlane, S.I. Obesity, obstructive sleep apnea and type 2 diabetes mellitus: Epidemiology and pathophysiologic insights. Sleep Med. Disord. Int. J. 2018, 2, 52–58.eng
dcterms.referencesMeurgey, J.H.; Brown, R.; Woroszyl-Chrusciel, A.; Steier, J. Peri-operative treatment of sleep-disordered breathing and outcomes in bariatric patients. J. Thorac. Dis. 2018, 10, S144–S152.eng
dcterms.referencesMokhlesi, B.; Masa, J.F.; Brozek, J.L.; Gurubhagavatula, I.; Murphy, P.B.; Piper, A.J.; Tulaimat, A.; Afshar, M.; Balachandran, J.S.; Dweik, R.A.; et al. Evaluation and management of obesity hypoventilation syndrome. An official American Thoracic Society clinical practice guideline. Am. J. Respir. Crit. Care Med. 2019, 200, e6–e24.eng
dcterms.referencesSant’Anna, M.; Carvalhal, R.F.; Oliveira, F.; Zin, W.A.; Lopes, A.J.; Lugon, R.J.; Guimarães, F.S. Mecânica respiratória de pacientes com obesidade morbid. J. Bras. Pneumol. 2019, 45, e20180311.eng
dcterms.referencesJaruvongvanich, V.; Matar, R.; Ravi, K.; Murad, M.H.; Vantanasiri, K.; Wongjarupong, N.; Ungprasert, P.; Vargas, E.J.; Maselli, D.B.; Prokop, L.J.; et al. Esophageal pathophysiologic changes and adenocarcinoma after bariatric surgery: A systematic review and meta-analysis. Clin. Transl. Gastroenterol. 2020, 11, e00225.eng
dcterms.referencesantas Giglio, L.; Felício, C.M.D.; Voi Trawitzki, L. Orofacial functions and forces in male and female healthy young and adults. Codas 2020, 32, e20190045.eng
dcterms.referencesFranco, R.; Barlattani, A., Jr.; Perrone, M.A.; Basili, M.; Miranda, M.; Costacurta, M.; Gualtieri, P.; Pujia, A.; Merra, G.; Bollero, P. Obesity, bariatric surgery and periodontal disease: A literature update. Eur. Rev. Med. Pharmacol. Sci. 2020, 24, 5036–5045.eng
dcterms.referencesGarcía-Delgado, Y.; López-Madrazo-Hernández, M.J.; Alvarado-Martel, D.; Miranda-Calderín, G.; Ugarte-Lopetegui, A.; González-Medina, R.A.; Wägner, A.M. Prehabilitation for Bariatric Surgery: A Randomized, Controlled Trial Protocol and Pilot Study. Nutrients 2021, 13, 2903.eng
dcterms.referencesBerlese, D.B.; Fontana, P.F.F.; Botton, L.; Weimnann, A.R.M.; Haeffner, L.S. Características miofuncionais de obesos respiradores orais e nasais. Rev. Codas 2012, 17, 171–176.eng
dcterms.referencesMarques Gonçalves, R.D.F.; Zimberg Chehter, E. Masticatory profile of morbidly obese patients undergoing gastroplasty/Perfil mastigatorio de obesos morbidos submetidos a gastroplastia. Rev. CEFAC 2012, 14, 489–498.eng
dcterms.referencesPd Azevedo, A.; Cd Santos, C.; Cd Fonseca, D. Transtorno da compulsão alimentar periódica. Arch. Clin. Psychiatry 2004, 31, 170–172eng
dcterms.referencesGonçalves, M.; Zimberg, E. Speech therapy intervention in morbidly obese undergoing fobi-capell gastroplasty method. ABCD. Arq. Bras. Cir. Dig. 2016, 29, 43–47.eng
dcterms.referencesÁlvarez Hernández, J. Disfagia Orofaríngea: Soluciones Multidisciplinares; Hospital Universitario Príncipe de Asturias: Madrid, Spain, 2018.eng
dcterms.referencesXavier Torres, G.M.; Hernandez Alvez, C. Physiology of exercise in orofacial motricity: Knowledge about the issue. Rev. CEFAC 2019, 21, e14318.eng
dcterms.referencesDuarte Aznar, F.; Aznar, F.D.; Lauris, J.R.; Adami Chaim, E.; Cazzo, E.; Sales-Peres, S.H. Dental wear and tooth loss in morbid obese patients after bariatric surgery. Arq. Bras. Cir. Dig. 2019, 32, e1458.eng
dcterms.referencesSilva Gebara, T.; Mocelin Polli, G.; Wanderbroocke, A.C. Eating and bariatric surgery: Social representations of obese people. Psicol. Ciência Profissão 2021, 41, e222795.eng
dcterms.referencesemme, E.M.O.; Alvariz, A.C.; Pereira, G.L. Esophageal functional disorders in the pre-operatory evaluation of bariatric surgery. Arq. Gastroenterol. 2021, 58, 190–194.eng
dcterms.referencesDantas Lima, A.C.D.; Costa Albuquerque, R.; Andrade Cunha, D.A.; Dantas Lima, C.; Henrique Lima, S.J.; Justino Silva, H. Relation of sensory processing and stomatognical system of oral respiratory children. Codas 2021, 34, e20200251.eng
dcterms.referencesMafort, T.T.; Rufino, R.; Costa, C.H.; Lopes, A.J. Obesity: Systemic and pulmonary complications, biochemical abnormalities, and impairment of lung function. Multidiscip. Respir. Med. 2016, 11, 28.eng
dcterms.referencesAguiar, I.C.; Freitas, W.R.; Santos, I.R.; Apostolico, N.; Nacif, S.R.; Urbano, J.J.; Fonsêca, N.T.; Thuler, F.R.; Ilias, E.J.; Kassab, P.; et al. Obstructive sleep apnea and pulmonary function in patients with severe obesity before and after bariatric surgery: A randomized clinical trial. Multidiscip. Respir. Med. 2014, 9, 43.eng
dcterms.referencesilla, M.P.; Evangelisti, M.; Martella, S.; Barreto, M.; Del Pozzo, M. Can myofunctional therapy increase tongue tone and reduce symptoms in children with sleep-disordered breathing? Sleep Breath 2017, 21, 1025–1032eng
dcterms.referencesaparroz, F.; Campanholo, M.; Stefanini, R.; Vidigal, T.; Haddad, L.; Bittencourt, L.R.; Tufik, S.; Haddad, F. Laryngopharyngeal reflux and dysphagia in patients with obstructive sleep apnea: Is there an association? Sleep Breath 2019, 23, 619–626.eng
dcterms.referencesKristo, I.; Paireder, M.; Jomrich, G.; Felsenreich, D.M.; Fischer, M.; Hennerbichler, F.P.; Langer, F.B.; Prager, G.; Schoppmann, S.F. Silent gastroesophageal reflux disease in patients with morbid obesity prior to primary metabolic surgery. Obes. Surg. 2020, 30, 4885–4891.eng
dcterms.referencesSandoval-Munoz, C.P.; Haidar, Z.S. Neuro-Muscular Dentistry: The “diamond’ concept of electro-stimulation potential for stomato-gnathic and oro-dental conditions. Head Face Med. 2021, 17, 2.eng
oaire.versioninfo:eu-repo/semantics/publishedVersioneng

Archivos

Bloque original
Mostrando 1 - 1 de 1
Cargando...
Miniatura
Nombre:
PDF.pdf
Tamaño:
753.98 KB
Formato:
Adobe Portable Document Format
Descripción:
PDF
Bloque de licencias
Mostrando 1 - 1 de 1
No hay miniatura disponible
Nombre:
license.txt
Tamaño:
381 B
Formato:
Item-specific license agreed upon to submission
Descripción:

Colecciones