Determinación de la ruptura de burbuja apical en dos equipos ultrasónicos. estudio descriptivo

dc.contributor.advisorOrtiz Castro, Vicky Constanza
dc.contributor.advisorBecerra Buitrago, Hernán
dc.contributor.authorInfante Suárez, Liliana Marcela
dc.contributor.authorNavarro López, Carolay Yisseth
dc.contributor.corporatenameUniversidad Santo Tomás
dc.date.accessioned2025-12-04T22:50:24Z
dc.date.available2025-12-04T22:50:24Z
dc.date.issued2025-12-04
dc.descriptionEl éxito del tratamiento endodóntico depende de la adecuada limpieza y desinfección del sistema de conductos. La presencia de una burbuja apical o “vapor lock” puede limitar la penetración del irrigante en el tercio apical. Este estudio tuvo como objetivo determinar el efecto del tiempo y del tipo de equipo ultrasónico (alámbrico e inalámbrico) sobre la ruptura de la burbuja apical en dientes unirradiculares. Se realizó un estudio in vitro con 52 dientes extraídos, divididos en dos grupos según el tipo de equipo, utilizando hipoclorito de sodio al 5,25% activado en ciclos de 30 segundos. Se registró radiográficamente la ruptura de la burbuja hasta un máximo de 150 segundos. El 80% de las burbujas se rompieron, principalmente en los primeros 30 segundos (28%). No hubo diferencias significativas entre equipos (p=1,00), pero sí con el tiempo (p<0,001). Se concluye que el tiempo de activación influye en la ruptura, mientras que el tipo de equipo no.
dc.description.abstractThe success of endodontic treatment depends on proper cleaning and disinfection of the root canal system. The presence of an apical bubble or “vapor lock” may limit irrigant penetration into the apical third. This study aimed to determine the effect of activation time and ultrasonic device type (corded and cordless) on apical bubble rupture in single-rooted teeth. An in vitro study was conducted using 52 extracted teeth, divided into two groups according to device type, using 5.25% sodium hypochlorite activated in 30-second cycles. The rupture of the apical bubble was radiographically recorded up to 150 seconds. Results showed that 80% of the bubbles ruptured, mainly within the first 30 seconds (28%). No significant differences were found between devices (p=1.00), but a significant relationship with time was observed (p<0.001). It is concluded that activation time influences apical bubble rupture, while the type of ultrasonic device does not.
dc.description.degreelevelEspecializaciónspa
dc.description.degreenameEspecialista en Endodonciaspa
dc.description.domainhttps://www.ustabuca.edu.co/
dc.format.mimetypeapplication/pdf
dc.identifier.citationInfante Suárez, L. M. y Navarro López, C. Y.(2025). Determinación de la ruptura de burbuja apical en dos equipos ultrasónicos. estudio descriptivo[Tesis de posgrado]. Universidad Santo Tomás, Bucaramanga, Colombia
dc.identifier.instnameinstname:Universidad Santo Tomásspa
dc.identifier.reponamereponame:Repositorio Institucional Universidad Santo Tomásspa
dc.identifier.repourlrepourl:https://repository.usta.edu.cospa
dc.identifier.urihttp://hdl.handle.net/11634/70570
dc.language.isospa
dc.publisherUniversidad Santo Tomásspa
dc.publisher.branchCRAI-USTA Bucaramanga
dc.publisher.facultyFacultad de Odontologíaspa
dc.publisher.programEspecialización Endodonciaspa
dc.relation.referencesArcher, R., Reader, A., Nist, R., Beck, M., & Meyers, W. J. (1992). An in vivo evaluation of the efficacy of ultrasound after step-back preparation in mandibular molars. Journal of Endodontics, 18(9), 549–552. https://doi.org/10.1016/S0099-2399(06)81659-4
dc.relation.referencesAhmad, M., Pitt Ford, T. R., & Crum, L. A. (1988). Ultrasonic debridement of root canals: Acoustic streaming and its possible role. Journal of Endodontics, 14(10), 490–499. https://doi.org/10.1016/S0099-2399(88)80195-8
dc.relation.referencesAmza, B.(1980). Acoustic cavitation phenomena in liquids. Journal of the Acoustical Society of America, 68(1), 131–141. https://doi.org/10.1121/1.384658
dc.relation.referencesBrenda, C. D., & da Silva, J. B. (2018). Evaluación de la eficacia de diferentes técnicas de irrigación en la eliminación de restos dentinarios en conductos radiculares. Brazilian Dental Journal, 34(4), 1–8. https://doi.org/10.1590/1806-4760-bdj-34-04-1
dc.relation.referencesBasrani, B. (Ed.). (2015). Endodontic irrigation: Chemical disinfection of the root canal system. Springer. https://doi.org/10.1007/978-3-319-16456-4_10
dc.relation.referencesBarbero-Navarro, C., Vera, J., Arias, A., & Romero, M. (2025). Evaluating the preventive and therapeutic roles of active irrigation systems in root canal treatment. Dentistry, 13(9), 9. https://doi.org/10.3390/dentistry13090009
dc.relation.referencesBorzini, L., Condò, R., De Dominicis, P., Casaglia, A., & Cerroni, L. (2016). Irrigación del conducto radicular: Agentes químicos y extractos de plantas contra Enterococcus faecalis. The Open Dentistry Journal, 10, 692–699. https://doi.org/10.2174/1874210601610010692
dc.relation.referencesBoutsioukis, C., & Kastrinakis, E. (2022). Present status and future directions: Irrigants and irrigation methods. International Endodontic Journal, 55(Suppl. 1), 588–616. https://doi.org/10.1111/iej.13786
dc.relation.referencesBoutsioukis, C., & Arias-Moliz, M. T. (2022). Present status and future directions: Irrigants and irrigation methods. International Endodontic Journal, 55(Suppl. 3), 588–612. https://doi.org/10.1111/iej.13739
dc.relation.referencesCarrillo Várguez, A. G. (2021). Efecto de penetración del hipoclorito de sodio bajo sistema de activación ultrasónico NSK Varios 370 y sónico EQ-S, en premolares unirradiculares [Trabajo de especialidad en Endodoncia, Universidad de Baja California].
dc.relation.referencesChoudhary, A., Farooq, R., & Purra, A. R. (2019). Ultrasonic versus sonic activation of the final irrigant in root canals instrumented with rotary files: An in vitro stereomicroscopic analysis. International Journal of Research and Review, 6(1), 22–26.
dc.relation.referencesCohn, R. (2023). Irrigación: Limpieza y desinfección del sistema de conductos. https://bdigital.uncu.edu.ar/objetos_digitales/19759/cohn-roberto.pdf
dc.relation.referencesCrozeta, B. M., Soares, I. M. V., Capelli, A., & Silva, E. J. N. L. (2022). A utilização do ultrassom em endodontia: Princípios básicos e indicações clínicas. Revista Odontológica do Brasil Central, 31(90), 78–93. https://doi.org/10.36065/robrac.v31i90.1603
dc.relation.referencesDutner, J., Mines, P., & Anderson, A. (2012). Irrigation trends among American Association of Endodontists members: A web-based survey. Journal of Endodontics, 38(1), 37–40. https://doi.org/10.1016/j.joen.2011.08.014
dc.relation.referencesGaller, K. M., Grubmüller, V., Schlichting, R., Widbiller, M., Eidt, A., Schuller, C., & Krastl, G. (2019). Penetration depth of irrigants into root dentine after sonic, ultrasonic and photoacoustic activation. International Endodontic Journal, 52(9), 1210–1217. https://doi.org/10.1111/iej.13104
dc.relation.referencesGálvez-Saavedra, A., & Lavalle-Vidal, G. (2024). In vitro analysis of two irrigation activation systems for cleaning mesial canals in lower molars. Revista de la Facultad de Odontología de la Universidad de Antioquia, 36(1), 42–53. https://doi.org/10.17533/udea.rfo.v36n1a4
dc.relation.referencesGoodman, A., Reader, A., Beck, M., Melfi, R., & Meyers, W. (1985). An in vitro comparison of the efficacy of the step-back technique versus a step-back/ultrasonic technique in human mandibular molars. Journal of Endodontics, 11(6), 249–256. https://doi.org/10.1016/S0099-2399(85)80180-1
dc.relation.referencesGrischke, J., Müller-Heine, A., & Hülsmann, M. (2014). The effect of four different irrigation systems in the removal of a root canal sealer. Clinical Oral Investigations, 18(7), 1845–1851. https://doi.org/10.1007/s00784-014-1248-0
dc.relation.referencesGu, L. S., Kim, J. R., Ling, J., & Lee, Y. (2009). Review of contemporary irrigant agitation techniques and devices. Journal of Endodontics, 35(6), 791–804. https://doi.org/10.1016/j.joen.2009.03.010
dc.relation.referencesGupta, A., Pareek, A., & Kapila, H. (2021). Ultrasonics in endodontics: A review. International Journal of Health Sciences, 5(S1), 264–277. https://doi.org/10.53730/ijhs.v5nS1.5602
dc.relation.referencesHaapasalo, M., & Shen, Y. (2014). Irrigation in endodontics. En M. Haapasalo (Ed.), Endodontic microbiology (pp. 203–220). Springer.
dc.relation.referencesHancock, J. (1994). Ultrasonic cleaning. En ASM handbook (Vol. 5, pp. 44–47). ASM International. http://bluewaveinc.com/ultrasonic-cleaning-101
dc.relation.referencesJiang, L.-M., Verhaagen, B., Versluis, M., & van der Sluis, L. W. M. (2010). Influence of the oscillation direction of an ultrasonic file on the cleaning efficacy of passive ultrasonic irrigation. Journal of Endodontics, 36(8), 1372–1376. https://doi.org/10.1016/j.joen.2010.03.036
dc.relation.referencesKlyn, S. L., Kirkpatrick, T. C., & Rutledge, R. E. (2010). In vitro comparisons of debris removal of the EndoActivator™ system, the F File™, ultrasonic irrigation, and NaOCl irrigation alone after hand-rotary instrumentation in human mandibular molars. Journal of Endodontics, 36(8), 1367–1371. https://doi.org/10.1016/j.joen.2010.03.022
dc.relation.referencesKumar, S., & Kaur, M. (2012). Management of air emphysema following endodontic treatment: A case report. International Journal of Clinical Pediatric Dentistry, 5(3), 241–243. https://doi.org/10.5005/jp-journals-10005-1161
dc.relation.referencesLee, S.-J., Wu, M.-K., & Wesselink, P. R. (2004). The effectiveness of syringe irrigation and ultrasonics to remove debris from simulated irregularities within prepared root canal walls. International Endodontic Journal, 37(10), 672–678. https://doi.org/10.1111/j.1365-2591.2004.00848.x
dc.relation.referencesLev, R., Reader, A., Beck, M., & Meyers, W. (1987). An in vitro comparison of the step-back technique versus a step-back/ultrasonic technique for 1 and 3 minutes. Journal of Endodontics, 13(11), 523–530. https://doi.org/10.1016/S0099-2399(87)80113-5
dc.relation.referencesMandke, L., & Padhye, L. (2018). Apical vapour lock effect in endodontics: A review. International Journal of Contemporary Medical Research, 5(2), 77–83. https://doi.org/10.21276/ijcmr.2018.5.2.1
dc.relation.referencesMartin, H. (1976). Ultrasonic disinfection of the root canal. Oral Surgery, Oral Medicine, Oral Pathology, 42(1), 92–99. https://doi.org/10.1016/0030-4220(76)90035-9
dc.relation.referencesMiliani, R., Lobo, K., & Morales, O. (2012). Irrigación en endodoncia: Puesta al día. Acta Bioclínica, 2(4), 85.
dc.relation.referencesMoorer, W. R., & Wesselink, P. R. (1982). Factors promoting the tissue dissolving capability of sodium hypochlorite. International Endodontic Journal, 15(4), 187–196. https://doi.org/10.1111/j.1365-2591.1982.tb00683.x
dc.relation.referencesMoreira, R. N., De-Deus, G., da Silveira Bueno, C. E., de Almeida, A. L. G., & Neves, A. A. (2018). Passive ultrasonic irrigation in root canal: Systematic review and meta-analysis. Acta Odontologica Scandinavica, 76(8), 636–642. https://doi.org/10.1080/00016357.2018.1499960
dc.relation.referencesMozo, S., Llena, C., & Forner, L. (2012). Review of ultrasonic irrigation in endodontics: Increasing action of irrigating solutions. Medicina Oral, Patología Oral y Cirugía Bucal, 17(3), e512–e516. https://doi.org/10.4317/medoral.17621
dc.relation.referencesNabil, N., & Abdel, A. W. (2021). Effectiveness of gutta-percha/bioceramic sealer removal during retreatment using different irrigation protocols. Egyptian Dental Journal, 67(1), 15–24. https://doi.org/10.21608/edj.2021.78585.1287
dc.relation.referencesOrtiz Castro, V. C., Henao Herrera, A. F., Pedraza Reyes, W. D., & Perea Rivas, W. D. J. (2024). Efectividad de insertos de ultrasonido ULTRA X EIGHTEETH® en eliminar la burbuja apical y barrillo dentinal. Revista de Endodoncia, 12(1), 45–50. https://repository.usta.edu.co/bitstream/handle/11634/55359/2024HenaoAndrés.pdf
dc.relation.referencesPark, R., Choi, M., Seo, J., Park, E. H., Jang, S. W., Shon, W. J., Kim, H. Y., & Kim, W. (2022). Root canal irrigation system using remotely generated high-power ultrasound. Ultrasonics Sonochemistry, 90, 106168. https://doi.org/10.1016/j.ultsonch.2022.106168
dc.relation.referencesPedullà, E., Genovese, C., Messina, R., & Testarelli, L. (2019). Antimicrobial efficacy of cordless sonic or ultrasonic devices on Enterococcus faecalis-infected root canals. Journal of Investigative and Clinical Dentistry, 10(4), e12434. https://doi.org/10.1111/jicd.12434
dc.relation.referencesPérez-Higueras, J. J., Arias, A., & Romero, M. (2016). The effect of ultrasonic irrigation on air bubble removal from root canal systems. Journal of Endodontics, 42(4), 607–611. https://doi.org/10.1016/j.joen.2015.12.027
dc.relation.referencesPeters, O. A., & Paqué, F. (2004). Current challenges and concepts in the preparation of root canal systems: A review. Journal of Endodontics, 30(8), 559–567. https://doi.org/10.1097/01.don.0000129039.59003.9d
dc.relation.referencesPlotino, G., Grande, N. M., Mercadé, M., Cortese, T., Staffoli, S., Gambarini, G., & Testarelli, L. (2019). Efficacy of sonic and ultrasonic irrigation devices in the removal of debris from canal irregularities in artificial root canals. Journal of Applied Oral Science, 27, e20180045. https://doi.org/10.1590/1678-7757-2018
dc.relation.referencesPlotino, G., Pameijer, C. H., Grande, N. M., & Somma, F. (2007). Ultrasonics in endodontics: A review of the literature. Journal of Endodontics, 33(2), 81–95. https://doi.org/10.1016/j.joen.2006.10.008
dc.relation.referencesDe Moor, R. J. G., Meire, M. A., Roeland, D., & Martens, L. C. (2010). Ultrasonic versus laser activation of the irrigant in endodontics: A review of the literature. International Endodontic Journal, 43(8), 597–609. https://doi.org/10.1111/j.1365-2591.2010.01709.x
dc.relation.referencesRetsas, A., Dijkstra, R. J. B., Van der Sluis, L. W. M., & Boutsioukis, C. (2022). The effect of the ultrasonic irrigant activation protocol on the removal of a dual-species biofilm from artificial lateral canals. Journal of Endodontics, 48(6), 775–780. https://doi.org/10.1016/j.joen.2022.03.005
dc.relation.referencesRochenszwalb-Muñoz, R., & Figueroa-Naranjo, L. (2023). Comparación de la concentración de hipoclorito de sodio en la atención dental entre dentistas generales y especialistas en endodoncia. Avances en Odontoestomatología, 39(5), 230–240. http://scielo.isciii.es/scielo.php?script=sci_arttext&pid=S021312852023000500005&lng=es&tlng=es
dc.relation.referencesSantamaría Beltrán, S. (2018). Propuesta de sistema inalámbrico para aminorar fallas en equipos portátiles [Archivo PDF]. CORE. https://core.ac.uk/download/pdf/480402611.pdf
dc.relation.referencesSchilder, H. F., & Schilder, D. (1974). Preparación del conducto radicular: Limpieza y conformación. Editorial Médica Panamericana. https://bibliotecas.unr.edu.ar/muestra/medica_panamericana/9789500604024.pdf
dc.relation.referencesShen, Y., & Haapasalo, M. (2010). Irrigation in endodontics: A review. Endodontic Topics, 24(1), 66–70. https://doi.org/10.1111/j.1601-1546.2010.00216.x
dc.relation.referencesSiqueira, J. F., & Rôças, I. N. (2008). Clinical implications and microbiology of apical periodontitis. Dental Clinics of North America, 52(1), 165–184. https://doi.org/10.1016/j.cden.2007.08.005
dc.relation.referencesTonini, R., Salvadori, M., Audino, E., Sauro, S., Garo, M. L., & Salgarello, S. (2022). Irrigating solutions and activation methods used in clinical endodontics: A systematic review. Frontiers in Oral Health, 3, Article 838043. https://doi.org/10.3389/froh.2022.838043
dc.relation.referencesTorabinejad, M., & Walton, R. E. (2009). Endodontics: Principles and practice. Elsevier Health Sciences.
dc.relation.referencesVan der Sluis, L. W. M., Versluis, M., Wu, M. K., & Wesselink, P. R. (2007). Passive ultrasonic irrigation of the root canal: A review of the literature. International Endodontic Journal, 40(6), 415–426. https://doi.org/10.1111/j.1365-2591.2007.01243.x
dc.relation.referencesVera, J., Arias, A., & Romero, M. (2011). Effect of maintaining apical patency on irrigant penetration into the apical third of root canals when using passive ultrasonic irrigation: An in vivo study. Journal of Endodontics, 37(9), 1276–1278. https://doi.org/10.1016/j.joen.2011.05.042
dc.relation.referencesWagner, M. H., da Rosa, R. A., de Figueiredo, J. A. P., Duarte, M. A. H., Pereira, J. R., & Só, M. V. R. (2017). Final irrigation protocols may affect intraradicular dentin ultrastructure. Clinical Oral Investigations, 21(7), 2173–2182. https://doi.org/10.1007/s00784-016-2006-x
dc.relation.referencesWalmsley, A. D., & Williams, A. R. (1989). Effects of constraint on the oscillatory pattern of endosonic files. Journal of Endodontics, 15(4), 189–194. https://doi.org/10.1016/S0099-2399(89)80263-0
dc.relation.referencesWeller, R. N., Brady, J. M., & Bernier, W. E. (1980). Efficacy of ultrasonic cleaning. Journal of Endodontics, 6(12), 740–743. https://doi.org/10.1016/S0099-2399(80)80081-4
dc.relation.referencesZehnder, M. (2006). Root canal irrigants. Journal of Endodontics, 32(5), 389–398. https://doi.org/10.1016/j.joen.2006.01.001
dc.relation.referencesZhang, H., Dummer, P. M. H., & Ng, Y. L. (2011). Efficacy of ultrasonic irrigation in endodontics: A review. Journal of Endodontics, 37(3), 310–317. https://doi.org/10.1016/j.joen.2010.11.006
dc.rightsAttribution 2.5 Colombiaen
dc.rights.accessrightsinfo:eu-repo/semantics/openAccess
dc.rights.coarhttp://purl.org/coar/access_right/c_abf2
dc.rights.localAbierto (Texto Completo)spa
dc.rights.urihttp://creativecommons.org/licenses/by/2.5/co/
dc.subject.keywordEndodontic irrigation
dc.subject.keywordApical bubble ultrasound
dc.subject.keywordUltrasound
dc.subject.keywordCavitation
dc.subject.keywordSodium hypochlorite
dc.subject.lembConsulta odontológica especializada
dc.subject.lembEnfermedades de los dientes
dc.subject.lembOdontología especializada
dc.subject.proposalIrrigación endodóntica
dc.subject.proposalBurbuja apical
dc.subject.proposalUltrasonido
dc.subject.proposalCavitación
dc.subject.proposalHipoclorito de sodio
dc.titleDeterminación de la ruptura de burbuja apical en dos equipos ultrasónicos. estudio descriptivo
dc.typebachelor thesis
dc.type.categoryFormación de Recurso Humano para la Ctel: Trabajo de grado de Especialización
dc.type.coarhttp://purl.org/coar/resource_type/c_7a1f
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aa
dc.type.driveinfo:eu-repo/semantics/bachelorThesis
dc.type.localTrabajo de gradospa
dc.type.versioninfo:eu-repo/semantics/acceptedVersion

Archivos

Bloque original

Mostrando 1 - 4 de 4
Cargando...
Miniatura
Nombre:
2025NavarroLópez.pdf
Tamaño:
1.02 MB
Formato:
Adobe Portable Document Format
Descripción:
Trabajo de grado
Cargando...
Miniatura
Nombre:
2025NavarroLópez1.pdf
Tamaño:
123.95 KB
Formato:
Adobe Portable Document Format
Descripción:
Carta de facultad
Cargando...
Miniatura
Nombre:
2025NavarroLópez2.pdf
Tamaño:
747.18 KB
Formato:
Adobe Portable Document Format
Descripción:
Acuerdo de publicación
Cargando...
Miniatura
Nombre:
2025NavarroLópez3.pdf
Tamaño:
111.89 KB
Formato:
Adobe Portable Document Format
Descripción:
Apéndices

Bloque de licencias

Mostrando 1 - 1 de 1
Cargando...
Miniatura
Nombre:
license.txt
Tamaño:
807 B
Formato:
Item-specific license agreed upon to submission
Descripción: