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MELO, Larissa Di Carvalho et al. Current trends and available evidence on low-level laser therapy for osteoradionecrosis: a scoping review. Photodiagnosis and Photodynamic Therapy, 2024Tradução . . Acesso em: 15 jun. 2025.
APA
Melo, L. D. C., Gallo, C. de B., Silveira, B. B., Monteiro, M. M., Santos, J. A. dos, Ferreira, E. B., et al. (2024). Current trends and available evidence on low-level laser therapy for osteoradionecrosis: a scoping review. Photodiagnosis and Photodynamic Therapy. doi:10.3390/v16060831
NLM
Melo LDC, Gallo C de B, Silveira BB, Monteiro MM, Santos JA dos, Ferreira EB, Reis PED dos, Guerra ENS. Current trends and available evidence on low-level laser therapy for osteoradionecrosis: a scoping review. Photodiagnosis and Photodynamic Therapy. 2024 ;[citado 2025 jun. 15 ]
Vancouver
Melo LDC, Gallo C de B, Silveira BB, Monteiro MM, Santos JA dos, Ferreira EB, Reis PED dos, Guerra ENS. Current trends and available evidence on low-level laser therapy for osteoradionecrosis: a scoping review. Photodiagnosis and Photodynamic Therapy. 2024 ;[citado 2025 jun. 15 ]
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SILVA, Bruno Bachiega et al. In vitro Effectiveness of Different Dental Bleaching Protocols using Violet LED. Photodiagnosis and Photodynamic Therapy, n. Ja 2023, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2022.103245. Acesso em: 15 jun. 2025.
APA
Silva, B. B., Mayer-Santos, E., Jurema, A. L. B., Canepepele, T. M. F., Brugnera Junior, A., & Freitas, P. M. de. (2023). In vitro Effectiveness of Different Dental Bleaching Protocols using Violet LED. Photodiagnosis and Photodynamic Therapy, ( Ja 2023). doi:10.1016/j.pdpdt.2022.103245
NLM
Silva BB, Mayer-Santos E, Jurema ALB, Canepepele TMF, Brugnera Junior A, Freitas PM de. In vitro Effectiveness of Different Dental Bleaching Protocols using Violet LED [Internet]. Photodiagnosis and Photodynamic Therapy. 2023 ;( Ja 2023):[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2022.103245
Vancouver
Silva BB, Mayer-Santos E, Jurema ALB, Canepepele TMF, Brugnera Junior A, Freitas PM de. In vitro Effectiveness of Different Dental Bleaching Protocols using Violet LED [Internet]. Photodiagnosis and Photodynamic Therapy. 2023 ;( Ja 2023):[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2022.103245
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PINHEIRO, Amanda Cavalcante Pereira et al. The effect of tooth bleaching using violet LED (405-410 nm) on the properties of resin-based composites. Photodiagnosis and Photodynamic Therapy, v. No 2023, 2023Tradução . . Acesso em: 15 jun. 2025.
APA
Pinheiro, A. C. P., Aires, O. V., Gasperini, M. R. C., Lima, L. C. de, Turbino, M. L., & Shimokawa, C. A. K. (2023). The effect of tooth bleaching using violet LED (405-410 nm) on the properties of resin-based composites. Photodiagnosis and Photodynamic Therapy, No 2023. doi:10.1016/j.pdpdt.2023.103883
NLM
Pinheiro ACP, Aires OV, Gasperini MRC, Lima LC de, Turbino ML, Shimokawa CAK. The effect of tooth bleaching using violet LED (405-410 nm) on the properties of resin-based composites. Photodiagnosis and Photodynamic Therapy. 2023 ; No 2023[citado 2025 jun. 15 ]
Vancouver
Pinheiro ACP, Aires OV, Gasperini MRC, Lima LC de, Turbino ML, Shimokawa CAK. The effect of tooth bleaching using violet LED (405-410 nm) on the properties of resin-based composites. Photodiagnosis and Photodynamic Therapy. 2023 ; No 2023[citado 2025 jun. 15 ]
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MANZOLI, Tatiane Miranda et al. Violet LED associated with high concentration hydrogen peroxide: effects on bleaching efficacy, pH, and temperature. Photodiagnosis and Photodynamic Therapy, v. 40, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2022.103133. Acesso em: 15 jun. 2025.
APA
Manzoli, T. M., Costa, J. L. de S. G., Besegato, J. F., Gelio, M. B., Galvani, L. D., Bordini, E. A. F., et al. (2022). Violet LED associated with high concentration hydrogen peroxide: effects on bleaching efficacy, pH, and temperature. Photodiagnosis and Photodynamic Therapy, 40. doi:10.1016/j.pdpdt.2022.103133
NLM
Manzoli TM, Costa JL de SG, Besegato JF, Gelio MB, Galvani LD, Bordini EAF, Kuga MC, Dantas AAR. Violet LED associated with high concentration hydrogen peroxide: effects on bleaching efficacy, pH, and temperature [Internet]. Photodiagnosis and Photodynamic Therapy. 2022 ; 40[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2022.103133
Vancouver
Manzoli TM, Costa JL de SG, Besegato JF, Gelio MB, Galvani LD, Bordini EAF, Kuga MC, Dantas AAR. Violet LED associated with high concentration hydrogen peroxide: effects on bleaching efficacy, pH, and temperature [Internet]. Photodiagnosis and Photodynamic Therapy. 2022 ; 40[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2022.103133
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SANTOS, Eric Mayer et al. Blinded, Parallel and Randomized Clinical Evaluation of In-office Dental Bleaching with Violet LED (405-410 nm). Photodiagnosis and Photodynamic Therapy, v. 38, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2022.102739. Acesso em: 15 jun. 2025.
APA
Santos, E. M., Silva, B. B. da, Twiaschor, C. V., Shimokawa, C. A. K., Marinho, G. B., Brugnera Junior, A., et al. (2022). Blinded, Parallel and Randomized Clinical Evaluation of In-office Dental Bleaching with Violet LED (405-410 nm). Photodiagnosis and Photodynamic Therapy, 38. doi:10.1016/j.pdpdt.2022.102739
NLM
Santos EM, Silva BB da, Twiaschor CV, Shimokawa CAK, Marinho GB, Brugnera Junior A, Zanin F, Brugnera AP, Ramalho KM, Freitas PM de. Blinded, Parallel and Randomized Clinical Evaluation of In-office Dental Bleaching with Violet LED (405-410 nm) [Internet]. Photodiagnosis and Photodynamic Therapy. 2022 ; 38[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2022.102739
Vancouver
Santos EM, Silva BB da, Twiaschor CV, Shimokawa CAK, Marinho GB, Brugnera Junior A, Zanin F, Brugnera AP, Ramalho KM, Freitas PM de. Blinded, Parallel and Randomized Clinical Evaluation of In-office Dental Bleaching with Violet LED (405-410 nm) [Internet]. Photodiagnosis and Photodynamic Therapy. 2022 ; 38[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2022.102739
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SESTI-COSTA, Renata e AMBROSIO, Andre Luis Berteli. UV 254 nm is more efficient than UV 222 nm in inactivating SARS-CoV-2 present in human saliva. Photodiagnosis and Photodynamic Therapy, v. 39, p. 103015-1-103015-8, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2022.103015. Acesso em: 15 jun. 2025.
APA
Sesti-Costa, R., & Ambrosio, A. L. B. (2022). UV 254 nm is more efficient than UV 222 nm in inactivating SARS-CoV-2 present in human saliva. Photodiagnosis and Photodynamic Therapy, 39, 103015-1-103015-8. doi:10.1016/j.pdpdt.2022.103015
NLM
Sesti-Costa R, Ambrosio ALB. UV 254 nm is more efficient than UV 222 nm in inactivating SARS-CoV-2 present in human saliva [Internet]. Photodiagnosis and Photodynamic Therapy. 2022 ; 39 103015-1-103015-8.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2022.103015
Vancouver
Sesti-Costa R, Ambrosio ALB. UV 254 nm is more efficient than UV 222 nm in inactivating SARS-CoV-2 present in human saliva [Internet]. Photodiagnosis and Photodynamic Therapy. 2022 ; 39 103015-1-103015-8.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2022.103015
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ABNT
JAGUAR, Graziella Chagas et al. Management of oral care related to oncological treatment: a proposal for the “new normal” [Letter to the editor]. Photodiagnosis and Photodynamic Therapy. Amsterdam: Faculdade de Odontologia, Universidade de São Paulo. Disponível em: https://doi.org/10.1016/j.pdpdt.2020.102166. Acesso em: 15 jun. 2025. , 2021
APA
Jaguar, G. C., Antunes, H. S., Mendoça, N. F. de, Macedo, L. D. de, Martins, M. D., & Alves, F. A. (2021). Management of oral care related to oncological treatment: a proposal for the “new normal” [Letter to the editor]. Photodiagnosis and Photodynamic Therapy. Amsterdam: Faculdade de Odontologia, Universidade de São Paulo. doi:10.1016/j.pdpdt.2020.102166
NLM
Jaguar GC, Antunes HS, Mendoça NF de, Macedo LD de, Martins MD, Alves FA. Management of oral care related to oncological treatment: a proposal for the “new normal” [Letter to the editor] [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ; 33[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.102166
Vancouver
Jaguar GC, Antunes HS, Mendoça NF de, Macedo LD de, Martins MD, Alves FA. Management of oral care related to oncological treatment: a proposal for the “new normal” [Letter to the editor] [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ; 33[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.102166
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ROSSI, Mariana de Cássia Artuni et al. Physiotherapy elastic band disinfection by UV-C irradiation in an intensive care unit. Photodiagnosis and Photodynamic Therapy, v. 34, p. 102262-1-102262-6, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2021.102262. Acesso em: 15 jun. 2025.
APA
Rossi, M. de C. A., Corrêa, T. Q., Blanco, K. C., Bagnato, V. S., & Salvio, A. G. (2021). Physiotherapy elastic band disinfection by UV-C irradiation in an intensive care unit. Photodiagnosis and Photodynamic Therapy, 34, 102262-1-102262-6. doi:10.1016/j.pdpdt.2021.102262
NLM
Rossi M de CA, Corrêa TQ, Blanco KC, Bagnato VS, Salvio AG. Physiotherapy elastic band disinfection by UV-C irradiation in an intensive care unit [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ; 34 102262-1-102262-6.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2021.102262
Vancouver
Rossi M de CA, Corrêa TQ, Blanco KC, Bagnato VS, Salvio AG. Physiotherapy elastic band disinfection by UV-C irradiation in an intensive care unit [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ; 34 102262-1-102262-6.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2021.102262
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ROMERO, Sergio Santos et al. Oral hygiene associated with antimicrobial photodynamic therapy or lingual scraper in the reduction of halitosis after 90 days follow up: a randomized, controlled, single-blinded trial. Photodiagnosis and Photodynamic Therapy, v. 33, p. 7 , 2021Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2020.102057. Acesso em: 15 jun. 2025.
APA
Romero, S. S., Vale, K. L. do, Remolina, V. G., Silva, T. G., Schalch, T. O., Ramalho, K. M., et al. (2021). Oral hygiene associated with antimicrobial photodynamic therapy or lingual scraper in the reduction of halitosis after 90 days follow up: a randomized, controlled, single-blinded trial. Photodiagnosis and Photodynamic Therapy, 33, 7 . doi:10.1016/j.pdpdt.2020.102057
NLM
Romero SS, Vale KL do, Remolina VG, Silva TG, Schalch TO, Ramalho KM, Vicente RMN, Suguimoto ESA, Mayer MPA, Ferrari RAM, Motta LJ, Fernandes KPS, Bussadori SK, Horliana ACRT. Oral hygiene associated with antimicrobial photodynamic therapy or lingual scraper in the reduction of halitosis after 90 days follow up: a randomized, controlled, single-blinded trial [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ; 33 7 .[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.102057
Vancouver
Romero SS, Vale KL do, Remolina VG, Silva TG, Schalch TO, Ramalho KM, Vicente RMN, Suguimoto ESA, Mayer MPA, Ferrari RAM, Motta LJ, Fernandes KPS, Bussadori SK, Horliana ACRT. Oral hygiene associated with antimicrobial photodynamic therapy or lingual scraper in the reduction of halitosis after 90 days follow up: a randomized, controlled, single-blinded trial [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ; 33 7 .[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.102057
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YOUSSEF, Shaddy A. et al. Influence of 35% hydrogen peroxide gel renewal on color change during in-office dental photobleaching with violet LED: a split-mouth randomized controlled clinical trial. Photodiagnosis and Photodynamic Therapy, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2021.102509. Acesso em: 15 jun. 2025.
APA
Youssef, S. A., Cunha, S. R., Santos, E. M., Brito, S. A., Silva, P. M. de F. C. e, Ramalho, J., et al. (2021). Influence of 35% hydrogen peroxide gel renewal on color change during in-office dental photobleaching with violet LED: a split-mouth randomized controlled clinical trial. Photodiagnosis and Photodynamic Therapy. doi:10.1016/j.pdpdt.2021.102509
NLM
Youssef SA, Cunha SR, Santos EM, Brito SA, Silva PM de FC e, Ramalho J, Morimoto S, Gonçalves F, Ramalho KM. Influence of 35% hydrogen peroxide gel renewal on color change during in-office dental photobleaching with violet LED: a split-mouth randomized controlled clinical trial [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ;[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2021.102509
Vancouver
Youssef SA, Cunha SR, Santos EM, Brito SA, Silva PM de FC e, Ramalho J, Morimoto S, Gonçalves F, Ramalho KM. Influence of 35% hydrogen peroxide gel renewal on color change during in-office dental photobleaching with violet LED: a split-mouth randomized controlled clinical trial [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ;[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2021.102509
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SOUZA, Bianca Rossi de et al. In-office bleaching protocols using violet LED: a split mouth case report. Photodiagnosis and Photodynamic Therapy, v. 36, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2021.102497. Acesso em: 15 jun. 2025.
APA
Souza, B. R. de, Lago, A. D. N., Ferreira, L. S., Santos, E. M. dos, Silva, P. M. de F. C. e, Morimoto, S., & Ramalho, K. M. (2021). In-office bleaching protocols using violet LED: a split mouth case report. Photodiagnosis and Photodynamic Therapy, 36. doi:10.1016/j.pdpdt.2021.102497
NLM
Souza BR de, Lago ADN, Ferreira LS, Santos EM dos, Silva PM de FC e, Morimoto S, Ramalho KM. In-office bleaching protocols using violet LED: a split mouth case report [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ; 36[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2021.102497
Vancouver
Souza BR de, Lago ADN, Ferreira LS, Santos EM dos, Silva PM de FC e, Morimoto S, Ramalho KM. In-office bleaching protocols using violet LED: a split mouth case report [Internet]. Photodiagnosis and Photodynamic Therapy. 2021 ; 36[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2021.102497
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ABNT
CARVALHOA, Paulo André Gonçalves de et al. Three photobiomodulation protocols in the prevention/treatment of radiotherapy-induced oral mucositis. Photodiagnosis and Photodynamic Therapy, v. 31, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2020.101906. Acesso em: 15 jun. 2025.
APA
Carvalhoa, P. A. G. de, Lessaa, R. C., Carrarob, D. M., Pellizzonc, A. C. A., Jaguara, G. C., & Alves, F. de A. (2020). Three photobiomodulation protocols in the prevention/treatment of radiotherapy-induced oral mucositis. Photodiagnosis and Photodynamic Therapy, 31. doi:10.1016/j.pdpdt.2020.101906
NLM
Carvalhoa PAG de, Lessaa RC, Carrarob DM, Pellizzonc ACA, Jaguara GC, Alves F de A. Three photobiomodulation protocols in the prevention/treatment of radiotherapy-induced oral mucositis [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 31[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101906
Vancouver
Carvalhoa PAG de, Lessaa RC, Carrarob DM, Pellizzonc ACA, Jaguara GC, Alves F de A. Three photobiomodulation protocols in the prevention/treatment of radiotherapy-induced oral mucositis [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 31[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101906
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ABNT
LINARES, Irwin Alexander Patiño et al. Antileishmanial activity of amphiphilic chlorin derivatives mediated by photodynamic therapy: a study in meat and fruit. Photodiagnosis and Photodynamic Therapy, v. 31, p. 101769, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2020.101769. Acesso em: 15 jun. 2025.
APA
Linares, I. A. P., Velásquez, A. M. A., Graminha, M. A. S., Oliveira, K. T. de, & Perussi, J. R. (2020). Antileishmanial activity of amphiphilic chlorin derivatives mediated by photodynamic therapy: a study in meat and fruit. Photodiagnosis and Photodynamic Therapy, 31, 101769. doi:10.1016/j.pdpdt.2020.101769
NLM
Linares IAP, Velásquez AMA, Graminha MAS, Oliveira KT de, Perussi JR. Antileishmanial activity of amphiphilic chlorin derivatives mediated by photodynamic therapy: a study in meat and fruit [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 31 101769.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101769
Vancouver
Linares IAP, Velásquez AMA, Graminha MAS, Oliveira KT de, Perussi JR. Antileishmanial activity of amphiphilic chlorin derivatives mediated by photodynamic therapy: a study in meat and fruit [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 31 101769.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101769
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ROMANO, Renan Arnon et al. Multispectral autofluorescence dermoscope for skin lesion assessment. Photodiagnosis and Photodynamic Therapy, v. 30, p. 101704-1-101704-7, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2020.101704. Acesso em: 15 jun. 2025.
APA
Romano, R. A., Rosa, R. G. T., Salvio, A. G., Jo, J. A., & Kurachi, C. (2020). Multispectral autofluorescence dermoscope for skin lesion assessment. Photodiagnosis and Photodynamic Therapy, 30, 101704-1-101704-7. doi:10.1016/j.pdpdt.2020.101704
NLM
Romano RA, Rosa RGT, Salvio AG, Jo JA, Kurachi C. Multispectral autofluorescence dermoscope for skin lesion assessment [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 30 101704-1-101704-7.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101704
Vancouver
Romano RA, Rosa RGT, Salvio AG, Jo JA, Kurachi C. Multispectral autofluorescence dermoscope for skin lesion assessment [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 30 101704-1-101704-7.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101704
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ABNT
SILVA, Rafael Trivella Pacheco da et al. Visible light plasmon excitation of silver nanoparticles against antibiotic-resistant Pseudomonas aeruginosa. Photodiagnosis and Photodynamic Therapy, v. 31, p. 7 , 2020Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2020.101908. Acesso em: 15 jun. 2025.
APA
Silva, R. T. P. da, Petri, M. V., Morante, E. Y. V., Camargo, P. H. C. de, Torresi, S. I. C. de, & Spira, B. (2020). Visible light plasmon excitation of silver nanoparticles against antibiotic-resistant Pseudomonas aeruginosa. Photodiagnosis and Photodynamic Therapy, 31, 7 . doi:10.1016/j.pdpdt.2020.101908
NLM
Silva RTP da, Petri MV, Morante EYV, Camargo PHC de, Torresi SIC de, Spira B. Visible light plasmon excitation of silver nanoparticles against antibiotic-resistant Pseudomonas aeruginosa [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 31 7 .[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101908
Vancouver
Silva RTP da, Petri MV, Morante EYV, Camargo PHC de, Torresi SIC de, Spira B. Visible light plasmon excitation of silver nanoparticles against antibiotic-resistant Pseudomonas aeruginosa [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 31 7 .[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101908
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ABNT
SABINO, Caetano Padial et al. UV-C (254 nm) lethal doses for SARS-CoV-2. Photodiagnosis and Photodynamic Therapy. Amsterdam: Faculdade de Medicina Veterinária e Zootecnia, Universidade de São Paulo. Disponível em: https://doi.org/10.1016/j.pdpdt.2020.101995. Acesso em: 15 jun. 2025. , 2020
APA
Sabino, C. P., Sellera, F. P., Medina, D. F. S., Machado, R. R. G., Durigon, E. L., Freitas Junior, L. H. G., & Ribeiro, M. S. (2020). UV-C (254 nm) lethal doses for SARS-CoV-2. Photodiagnosis and Photodynamic Therapy. Amsterdam: Faculdade de Medicina Veterinária e Zootecnia, Universidade de São Paulo. doi:10.1016/j.pdpdt.2020.101995
NLM
Sabino CP, Sellera FP, Medina DFS, Machado RRG, Durigon EL, Freitas Junior LHG, Ribeiro MS. UV-C (254 nm) lethal doses for SARS-CoV-2 [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 32 2 .[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101995
Vancouver
Sabino CP, Sellera FP, Medina DFS, Machado RRG, Durigon EL, Freitas Junior LHG, Ribeiro MS. UV-C (254 nm) lethal doses for SARS-CoV-2 [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 32 2 .[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101995
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ABNT
SEPÚLVEDA, Alex Arbey Lopera et al. Efficacy of photodynamic therapy using TiO2 nanoparticles doped with Zn and hypericin in the treatment of cutaneous Leishmaniasis caused by Leishmania amazonensis. Photodiagnosis and Photodynamic Therapy, v. 30, p. 101675, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2020.101676. Acesso em: 15 jun. 2025.
APA
Sepúlveda, A. A. L., Velasquez, A. M. A., Linares, I. A. P., Almeida, L., Fontana, C. R., Garcia, C., & Graminha, M. A. S. (2020). Efficacy of photodynamic therapy using TiO2 nanoparticles doped with Zn and hypericin in the treatment of cutaneous Leishmaniasis caused by Leishmania amazonensis. Photodiagnosis and Photodynamic Therapy, 30, 101675. doi:10.1016/j.pdpdt.2020.101676
NLM
Sepúlveda AAL, Velasquez AMA, Linares IAP, Almeida L, Fontana CR, Garcia C, Graminha MAS. Efficacy of photodynamic therapy using TiO2 nanoparticles doped with Zn and hypericin in the treatment of cutaneous Leishmaniasis caused by Leishmania amazonensis [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 30 101675.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101676
Vancouver
Sepúlveda AAL, Velasquez AMA, Linares IAP, Almeida L, Fontana CR, Garcia C, Graminha MAS. Efficacy of photodynamic therapy using TiO2 nanoparticles doped with Zn and hypericin in the treatment of cutaneous Leishmaniasis caused by Leishmania amazonensis [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 30 101675.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101676
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ABNT
FREITAS, Maria Camila Pruper de e FIGUEIREDO NETO, Antônio Martins e DAMASCENO, Nágila Raquel Teixeira. Nonlinear optical responses of oxidized low-density lipoprotein: Cutoff point for z-scan peak-valley distance. Photodiagnosis and Photodynamic Therapy, v. 30, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2020.101689. Acesso em: 15 jun. 2025.
APA
Freitas, M. C. P. de, Figueiredo Neto, A. M., & Damasceno, N. R. T. (2020). Nonlinear optical responses of oxidized low-density lipoprotein: Cutoff point for z-scan peak-valley distance. Photodiagnosis and Photodynamic Therapy, 30. doi:10.1016/j.pdpdt.2020.101689
NLM
Freitas MCP de, Figueiredo Neto AM, Damasceno NRT. Nonlinear optical responses of oxidized low-density lipoprotein: Cutoff point for z-scan peak-valley distance [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 30[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101689
Vancouver
Freitas MCP de, Figueiredo Neto AM, Damasceno NRT. Nonlinear optical responses of oxidized low-density lipoprotein: Cutoff point for z-scan peak-valley distance [Internet]. Photodiagnosis and Photodynamic Therapy. 2020 ; 30[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2020.101689
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
REZENDE, Nayara et al. Standardization of a resazurin-based assay for the evaluation of metabolic activity in oral squamous carcinoma and glioblastoma cells. Photodiagnosis and Photodynamic Therapy, v. 26, p. 371-374, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2019.05.004. Acesso em: 15 jun. 2025.
APA
Rezende, N., Jayme, C. C., Annichini, M. S. B., Tedesco, A. C., & Oliveira, H. F. de. (2019). Standardization of a resazurin-based assay for the evaluation of metabolic activity in oral squamous carcinoma and glioblastoma cells. Photodiagnosis and Photodynamic Therapy, 26, 371-374. doi:10.1016/j.pdpdt.2019.05.004
NLM
Rezende N, Jayme CC, Annichini MSB, Tedesco AC, Oliveira HF de. Standardization of a resazurin-based assay for the evaluation of metabolic activity in oral squamous carcinoma and glioblastoma cells [Internet]. Photodiagnosis and Photodynamic Therapy. 2019 ; 26 371-374.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2019.05.004
Vancouver
Rezende N, Jayme CC, Annichini MSB, Tedesco AC, Oliveira HF de. Standardization of a resazurin-based assay for the evaluation of metabolic activity in oral squamous carcinoma and glioblastoma cells [Internet]. Photodiagnosis and Photodynamic Therapy. 2019 ; 26 371-374.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2019.05.004
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
ALVES, Luísa Valente Gotardo Lara et al. Influence of antimicrobial photodynamic therapy in carious lesion: randomized split-mouth clinical trial in primary molars. Photodiagnosis and Photodynamic Therapy, v. 26, p. 124-130, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.pdpdt.2019.02.018. Acesso em: 15 jun. 2025.
APA
Alves, L. V. G. L., Curylofo-Zotti, F. de A., Borsatto, M. C., Salvador, S. L. de S., Valério, R. A., Souza-Gabriel, A. E., & Corona, S. A. M. (2019). Influence of antimicrobial photodynamic therapy in carious lesion: randomized split-mouth clinical trial in primary molars. Photodiagnosis and Photodynamic Therapy, 26, 124-130. doi:10.1016/j.pdpdt.2019.02.018
NLM
Alves LVGL, Curylofo-Zotti F de A, Borsatto MC, Salvador SL de S, Valério RA, Souza-Gabriel AE, Corona SAM. Influence of antimicrobial photodynamic therapy in carious lesion: randomized split-mouth clinical trial in primary molars [Internet]. Photodiagnosis and Photodynamic Therapy. 2019 ; 26 124-130.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2019.02.018
Vancouver
Alves LVGL, Curylofo-Zotti F de A, Borsatto MC, Salvador SL de S, Valério RA, Souza-Gabriel AE, Corona SAM. Influence of antimicrobial photodynamic therapy in carious lesion: randomized split-mouth clinical trial in primary molars [Internet]. Photodiagnosis and Photodynamic Therapy. 2019 ; 26 124-130.[citado 2025 jun. 15 ] Available from: https://doi.org/10.1016/j.pdpdt.2019.02.018