Sistema de implantes Straumann® BLX

Confianza además de inmediatez.

Sistema de implantes Straumann® BLX

Confianza además de inmediatez.

Straumann® BLX, la combinación ganadora de diseño innovador y tecnología superficial con material de alto rendimiento, diseñado para obtener resultados predecibles en los cuales confiar.

Dynamic Bone Management

Redistribución del hueso nativo y control sobre el torque de inserción para lograr una estabilidad primaria óptima.

Esthetic Ease Concept

Cartera de productos simplificada pero versátil, con una sola conexión y prótesis subcontorneadas.

Confianza real

Precisión y calidad suizas con material Roxolid® y superficie SLActive®.

Folleto de Straumann® BLX

Hinca el diente en los detalles técnicos del producto del sistema de implantes Straumann® BLX. La fuerza de sus prestaciones y ventajas harán que desees experimentar de inmediato la confianza más allá de la inmediatez.

Conectividad digital Straumann® BLX/TLX

Comprueba el flujo de trabajo de tu escáner.

Casos clínicos

Información técnica de un vistazo

Folleto de Straumann® BLX

Hinca el diente en los detalles técnicos del producto del sistema de implantes Straumann® BLX. La fuerza de sus prestaciones y ventajas harán que desees experimentar de inmediato la confianza más allá de la inmediatez.

Ana y el león

El león es el héroe de nuestra campaña BLX. Ana, la niña, es la estrella secreta. Ana y el león representan una historia sobre la confianza. Pero, ¿qué tienen en común una niña valiente y un león con un proveedor líder de productos dentales? 

Lo que dicen los clientes

  • «Ni en mis sueños me hubiera creído que hubiéramos podido lograr un implante como este»

    Ophir Fromovich, Israel

  • «Mientras logres estabilidad primaria, tienes el mundo a tus pies»

    Louwrens Swart, Sudáfrica

  • «Es simple, versátil y flexible».

    Dr. Eirik Salvesen, Noruega

  • «El 100% del tiempo logramos la estabilidad y todo lo que queremos para el paciente».

    Dr. Léon Pariente, Dr. Karim Dada, Francia

Historias destacadas en youTooth

Folletos y vídeos

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Descargas

Documentos

Vídeos y animaciones

Catálogos

Bibliografía

1 Moraschini V, et al. Immediate versus conventional loaded single implants in the posterior mandible: a meta-analysis of randomized controlled trials. Int J Oral Maxillofac Surg 2016 Jan;45(1):85-92. Literature Review, full list available.
2 Ioannidis A, Gallucci GO, Jung RE, Borzangy S, Hämmerle CH, Benic GI. Titanium-zirconium narrow-diameter versus titanium regulardiameter implants for anterior and premolar single crowns: 3-year results of a randomized controlled clinical study. J Clin Periodontol. 2015 Nov;42(11):1060-70. doi: 10.1111/jcpe.12468. Epub 2015 Nov 14.
3 Al-Nawas B, Domagala P, Fragola G, Freiberger P, OrtizVigón A, Rousseau P, Tondela J. A Prospective Noninterventional Study to Evaluate Survival and Success of Reduced Diameter Implants Made From Titanium-Zirconium Alloy. J Oral Implantol. 2015 Aug;41(4):e118-25. doi: 10.1563/AAID-JOI-D-13-00149. Publicación electrónica, 25 de marzo de 2014.
4 Altuna P, Lucas-Taulé E, Gargallo-Albiol J, Figueras-Álvarez O, Hernández-Alfaro F, Nart J. Clinical evidence on titanium-zirconium dental implants: a systematic review and meta-analysis. Int J Oral Maxillofac Surg. 2016 Jul;45(7):842-50. doi: 10.1016/j.ijom.2016.01.004. Epub 2016 Feb 3.
5 Lang NP, Salvi GE, Huynh-Ba G, Ivanovski S, Donos N, Bosshardt DD. Early osseointegration to hydrophilic and hydrophobic implant surfaces in humans. Clin Oral Implants Res. 2011 Apr;22(4):349-56. doi:10.1111/j.1600-0501.2011.02172.x
6 Oates TW, Valderrama P, Bischof M, Nedir R, Jones A, Simpson J, Toutenburg H, Cochran DL. Enhanced implant stability with a chemically modified SLA surface: a randomized pilot study. Int J Oral Maxillofac Implants. 2007 Sep-Oct;22(5):755-60
7 Nicolau P, Guerra F, Reis R, Krafft T, Benz K , Jackowski J. 10-year outcomes with immediate and early-loaded implants with a chemically modified SLA surface, Quintessence Int. (article in press).
8 Nelson, K., Stricker, A., Raguse, J.-D. Nahles, S. (2016), Rehabilitation of irradiated patients with chemically modified and conventional SLA implants: a clinical clarification. J Oral Rehabil, 43: 871–872. doi:10.1111/joor.12434.
9 Heberer S, Kilic S, Hossamo J, Raguse J-D, Nelson K. Rehabilitation of irradiated patients with modified and conventional sandblasted, acid-etched implants: preliminary results of a split-mouth study. Clin. Oral Impl. Res. 22, 2011; 546–551.
10 Cabrera-Domínguez J, Castellanos-Cosano L, Torres-Lagares D, Machuca-Portillo G. A Prospective Case-Control Clinical Study of Titanium-Zirconium Alloy Implants with a Hydrophilic Surface in Patients with Type 2 Diabetes Mellitus. Int J Oral Maxillofac Implants. 2017 Sep/Oct;32(5):1135-1144. doi: 10.11607/jomi.5577;
11  Cabrera-Domínguez J. A prospective, two-year clinical trial of titanium-zirconium alloy implants (Roxolid® Straumann®) with hydrophilic surface (SLActive®) in patients with Type 2 Diabetes Mellitus. presented during 26th Annual Scientific Meeting of the European Association of Osseointegration – 5-7 Oct 2017, Madrid, Spain
12 Kuchler U, Chappuis V, Bornstein mm, Siewczyk M, Gruber R, Maestre L, Buser D. Development of Implant Stability Quotient values of implants placed with simultaneous sinus floor elevation – results of a prospective study with 109 implants. Clin. Oral Impl. Res. 28, 2017, 109–115
13 Schwarz, F., et al., Bone regeneration in dehiscence-type defects at chemically modified (SLActive®) and conventional SLA® titanium implants: a pilot study in dogs. J Clin.Periodontol. 34.1 (2007): 78–86
14 Schwarz, F., et al., Bone regeneration in dehiscence-type defectsat non-submerged and submerged chemically modified (SLActive®) and conventional SLA titanium implants: an immunohistochemical study in dogs. J Clin.Periodontol. 35.1 (2008): 64–75.
15 El Chaar E, Zhang L, Zhou Y, et al. (Superior) osseointegration of superhydrophilic implants placed in defect grafted bones. Int J Oral Maxillofac Implants 2018. (artículo en prensa).

Bibliografía

1 Moraschini V, et al. Immediate versus conventional loaded single implants in the posterior mandible: a meta-analysis of randomized controlled trials. Int J Oral Maxillofac Surg 2016 Jan;45(1):85-92. Literature Review, full list available.
2 Ioannidis A, Gallucci GO, Jung RE, Borzangy S, Hämmerle CH, Benic GI. Titanium-zirconium narrow-diameter versus titanium regulardiameter implants for anterior and premolar single crowns: 3-year results of a randomized controlled clinical study. J Clin Periodontol. 2015 Nov;42(11):1060-70. doi: 10.1111/jcpe.12468. Epub 2015 Nov 14.
3 Al-Nawas B, Domagala P, Fragola G, Freiberger P, OrtizVigón A, Rousseau P, Tondela J. A Prospective Noninterventional Study to Evaluate Survival and Success of Reduced Diameter Implants Made From Titanium-Zirconium Alloy. J Oral Implantol. 2015 Aug;41(4):e118-25. doi: 10.1563/AAID-JOI-D-13-00149. Publicación electrónica, 25 de marzo de 2014.
4 Altuna P, Lucas-Taulé E, Gargallo-Albiol J, Figueras-Álvarez O, Hernández-Alfaro F, Nart J. Clinical evidence on titanium-zirconium dental implants: a systematic review and meta-analysis. Int J Oral Maxillofac Surg. 2016 Jul;45(7):842-50. doi: 10.1016/j.ijom.2016.01.004. Epub 2016 Feb 3.
5 Lang NP, Salvi GE, Huynh-Ba G, Ivanovski S, Donos N, Bosshardt DD. Early osseointegration to hydrophilic and hydrophobic implant surfaces in humans. Clin Oral Implants Res. 2011 Apr;22(4):349-56. doi:10.1111/j.1600-0501.2011.02172.x
6 Oates TW, Valderrama P, Bischof M, Nedir R, Jones A, Simpson J, Toutenburg H, Cochran DL. Enhanced implant stability with a chemically modified SLA surface: a randomized pilot study. Int J Oral Maxillofac Implants. 2007 Sep-Oct;22(5):755-60
7 Nicolau P, Guerra F, Reis R, Krafft T, Benz K , Jackowski J. 10-year outcomes with immediate and early-loaded implants with a chemically modified SLA surface, Quintessence Int. (article in press).
8 Nelson, K., Stricker, A., Raguse, J.-D. Nahles, S. (2016), Rehabilitation of irradiated patients with chemically modified and conventional SLA implants: a clinical clarification. J Oral Rehabil, 43: 871–872. doi:10.1111/joor.12434.
9 Heberer S, Kilic S, Hossamo J, Raguse J-D, Nelson K. Rehabilitation of irradiated patients with modified and conventional sandblasted, acid-etched implants: preliminary results of a split-mouth study. Clin. Oral Impl. Res. 22, 2011; 546–551.
10 Cabrera-Domínguez J, Castellanos-Cosano L, Torres-Lagares D, Machuca-Portillo G. A Prospective Case-Control Clinical Study of Titanium-Zirconium Alloy Implants with a Hydrophilic Surface in Patients with Type 2 Diabetes Mellitus. Int J Oral Maxillofac Implants. 2017 Sep/Oct;32(5):1135-1144. doi: 10.11607/jomi.5577;
11  Cabrera-Domínguez J. A prospective, two-year clinical trial of titanium-zirconium alloy implants (Roxolid® Straumann®) with hydrophilic surface (SLActive®) in patients with Type 2 Diabetes Mellitus. presented during 26th Annual Scientific Meeting of the European Association of Osseointegration – 5-7 Oct 2017, Madrid, Spain
12 Kuchler U, Chappuis V, Bornstein mm, Siewczyk M, Gruber R, Maestre L, Buser D. Development of Implant Stability Quotient values of implants placed with simultaneous sinus floor elevation – results of a prospective study with 109 implants. Clin. Oral Impl. Res. 28, 2017, 109–115
13 Schwarz, F., et al., Bone regeneration in dehiscence-type defects at chemically modified (SLActive®) and conventional SLA® titanium implants: a pilot study in dogs. J Clin.Periodontol. 34.1 (2007): 78–86
14 Schwarz, F., et al., Bone regeneration in dehiscence-type defectsat non-submerged and submerged chemically modified (SLActive®) and conventional SLA titanium implants: an immunohistochemical study in dogs. J Clin.Periodontol. 35.1 (2008): 64–75.
15 El Chaar E, Zhang L, Zhou Y, et al. (Superior) osseointegration of superhydrophilic implants placed in defect grafted bones. Int J Oral Maxillofac Implants 2018. (artículo en prensa).

Bibliografía

1 Moraschini V, et al. Immediate versus conventional loaded single implants in the posterior mandible: a meta-analysis of randomized controlled trials. Int J Oral Maxillofac Surg 2016 Jan;45(1):85-92. Literature Review, full list available.
2 Ioannidis A, Gallucci GO, Jung RE, Borzangy S, Hämmerle CH, Benic GI. Titanium-zirconium narrow-diameter versus titanium regulardiameter implants for anterior and premolar single crowns: 3-year results of a randomized controlled clinical study. J Clin Periodontol. 2015 Nov;42(11):1060-70. doi: 10.1111/jcpe.12468. Epub 2015 Nov 14.
3 Al-Nawas B, Domagala P, Fragola G, Freiberger P, OrtizVigón A, Rousseau P, Tondela J. A Prospective Noninterventional Study to Evaluate Survival and Success of Reduced Diameter Implants Made From Titanium-Zirconium Alloy. J Oral Implantol. 2015 Aug;41(4):e118-25. doi: 10.1563/AAID-JOI-D-13-00149. Publicación electrónica, 25 de marzo de 2014.
4 Altuna P, Lucas-Taulé E, Gargallo-Albiol J, Figueras-Álvarez O, Hernández-Alfaro F, Nart J. Clinical evidence on titanium-zirconium dental implants: a systematic review and meta-analysis. Int J Oral Maxillofac Surg. 2016 Jul;45(7):842-50. doi: 10.1016/j.ijom.2016.01.004. Epub 2016 Feb 3.
5 Lang NP, Salvi GE, Huynh-Ba G, Ivanovski S, Donos N, Bosshardt DD. Early osseointegration to hydrophilic and hydrophobic implant surfaces in humans. Clin Oral Implants Res. 2011 Apr;22(4):349-56. doi:10.1111/j.1600-0501.2011.02172.x
6 Oates TW, Valderrama P, Bischof M, Nedir R, Jones A, Simpson J, Toutenburg H, Cochran DL. Enhanced implant stability with a chemically modified SLA surface: a randomized pilot study. Int J Oral Maxillofac Implants. 2007 Sep-Oct;22(5):755-60
7 Nicolau P, Guerra F, Reis R, Krafft T, Benz K , Jackowski J. 10-year outcomes with immediate and early-loaded implants with a chemically modified SLA surface, Quintessence Int. (article in press).
8 Nelson, K., Stricker, A., Raguse, J.-D. Nahles, S. (2016), Rehabilitation of irradiated patients with chemically modified and conventional SLA implants: a clinical clarification. J Oral Rehabil, 43: 871–872. doi:10.1111/joor.12434.
9 Heberer S, Kilic S, Hossamo J, Raguse J-D, Nelson K. Rehabilitation of irradiated patients with modified and conventional sandblasted, acid-etched implants: preliminary results of a split-mouth study. Clin. Oral Impl. Res. 22, 2011; 546–551.
10 Cabrera-Domínguez J, Castellanos-Cosano L, Torres-Lagares D, Machuca-Portillo G. A Prospective Case-Control Clinical Study of Titanium-Zirconium Alloy Implants with a Hydrophilic Surface in Patients with Type 2 Diabetes Mellitus. Int J Oral Maxillofac Implants. 2017 Sep/Oct;32(5):1135-1144. doi: 10.11607/jomi.5577;
11  Cabrera-Domínguez J. A prospective, two-year clinical trial of titanium-zirconium alloy implants (Roxolid® Straumann®) with hydrophilic surface (SLActive®) in patients with Type 2 Diabetes Mellitus. presented during 26th Annual Scientific Meeting of the European Association of Osseointegration – 5-7 Oct 2017, Madrid, Spain
12 Kuchler U, Chappuis V, Bornstein mm, Siewczyk M, Gruber R, Maestre L, Buser D. Development of Implant Stability Quotient values of implants placed with simultaneous sinus floor elevation – results of a prospective study with 109 implants. Clin. Oral Impl. Res. 28, 2017, 109–115
13 Schwarz, F., et al., Bone regeneration in dehiscence-type defects at chemically modified (SLActive®) and conventional SLA® titanium implants: a pilot study in dogs. J Clin.Periodontol. 34.1 (2007): 78–86
14 Schwarz, F., et al., Bone regeneration in dehiscence-type defectsat non-submerged and submerged chemically modified (SLActive®) and conventional SLA titanium implants: an immunohistochemical study in dogs. J Clin.Periodontol. 35.1 (2008): 64–75.
15 El Chaar E, Zhang L, Zhou Y, et al. (Superior) osseointegration of superhydrophilic implants placed in defect grafted bones. Int J Oral Maxillofac Implants 2018. (artículo en prensa).