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Astra Tech Inc 4.0 × osseospeed tx
Surface roughness S a , S dr , and S sk parameters (mean and SD) and material volume of the implants before and after insertion into bone (* p < 0.05 and ** p < 0.01, *** p < 0.001). Data reported from measurements at the thread crest and valley. OS = <t>OsseoSpeed</t> TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; S sk = degree of symmetry of the surface heights about the mean plane; TU = TiUnite MkIII.
4.0 × Osseospeed Tx, supplied by Astra Tech Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/4.0 × osseospeed tx/product/Astra Tech Inc
Average 90 stars, based on 1 article reviews
4.0 × osseospeed tx - by Bioz Stars, 2026-05
90/100 stars

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1) Product Images from "Impact of High Insertion Torque on Implant Surface Integrity"

Article Title: Impact of High Insertion Torque on Implant Surface Integrity

Journal: Clinical Implant Dentistry and Related Research

doi: 10.1111/cid.70030

Surface roughness S a , S dr , and S sk parameters (mean and SD) and material volume of the implants before and after insertion into bone (* p < 0.05 and ** p < 0.01, *** p < 0.001). Data reported from measurements at the thread crest and valley. OS = OsseoSpeed TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; S sk = degree of symmetry of the surface heights about the mean plane; TU = TiUnite MkIII.
Figure Legend Snippet: Surface roughness S a , S dr , and S sk parameters (mean and SD) and material volume of the implants before and after insertion into bone (* p < 0.05 and ** p < 0.01, *** p < 0.001). Data reported from measurements at the thread crest and valley. OS = OsseoSpeed TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; S sk = degree of symmetry of the surface heights about the mean plane; TU = TiUnite MkIII.

Techniques Used:

The surface functional height ( S vk + S k + S pk ) of implants before and after insertion into bone (* p < 0.05, ** p < 0.01, *** p < 0.001). OS = OsseoSpeed TX; S k = core roughness height of the surface with the predominant peaks and valleys removed; SL = SLA Active Bone Level; S pk = peak height above the core roughness; S vk = valley depth below the core roughness; TU = TiUnite MkIII.
Figure Legend Snippet: The surface functional height ( S vk + S k + S pk ) of implants before and after insertion into bone (* p < 0.05, ** p < 0.01, *** p < 0.001). OS = OsseoSpeed TX; S k = core roughness height of the surface with the predominant peaks and valleys removed; SL = SLA Active Bone Level; S pk = peak height above the core roughness; S vk = valley depth below the core roughness; TU = TiUnite MkIII.

Techniques Used: Functional Assay

Surface roughness S a and S dr , and material volume ( V m ) proportional difference ((Final value/Initial value)/Initial value) of the implants before and after insertion comparing normal and high torque protocols. Data reported from measurements at the crest of the thread. OS = OsseoSpeed TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; TU = TiUnite MkIII.
Figure Legend Snippet: Surface roughness S a and S dr , and material volume ( V m ) proportional difference ((Final value/Initial value)/Initial value) of the implants before and after insertion comparing normal and high torque protocols. Data reported from measurements at the crest of the thread. OS = OsseoSpeed TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; TU = TiUnite MkIII.

Techniques Used:



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Surface roughness S a , S dr , and S sk parameters (mean and SD) and material volume of the implants before and after insertion into bone (* p < 0.05 and ** p < 0.01, *** p < 0.001). Data reported from measurements at the thread crest and valley. OS = OsseoSpeed TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; S sk = degree of symmetry of the surface heights about the mean plane; TU = TiUnite MkIII.

Journal: Clinical Implant Dentistry and Related Research

Article Title: Impact of High Insertion Torque on Implant Surface Integrity

doi: 10.1111/cid.70030

Figure Lengend Snippet: Surface roughness S a , S dr , and S sk parameters (mean and SD) and material volume of the implants before and after insertion into bone (* p < 0.05 and ** p < 0.01, *** p < 0.001). Data reported from measurements at the thread crest and valley. OS = OsseoSpeed TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; S sk = degree of symmetry of the surface heights about the mean plane; TU = TiUnite MkIII.

Article Snippet: Cylindrical threaded dental implants of similar dimensions but with different surface topographies were selected ( n = 6 per group): 4.0 × 10 mm TiUnite MkIII (TU) (Nobel Biocare AB, Göteborg, Sweden), 4.0 × 11 mm OsseoSpeed TX (OS) (Astra Tech AB, Mölndal, Sweden), and 4.1 × 10 mm SLActive Bone Level (SL) (Straumann AG, Waldenburg, Switzerland).

Techniques:

The surface functional height ( S vk + S k + S pk ) of implants before and after insertion into bone (* p < 0.05, ** p < 0.01, *** p < 0.001). OS = OsseoSpeed TX; S k = core roughness height of the surface with the predominant peaks and valleys removed; SL = SLA Active Bone Level; S pk = peak height above the core roughness; S vk = valley depth below the core roughness; TU = TiUnite MkIII.

Journal: Clinical Implant Dentistry and Related Research

Article Title: Impact of High Insertion Torque on Implant Surface Integrity

doi: 10.1111/cid.70030

Figure Lengend Snippet: The surface functional height ( S vk + S k + S pk ) of implants before and after insertion into bone (* p < 0.05, ** p < 0.01, *** p < 0.001). OS = OsseoSpeed TX; S k = core roughness height of the surface with the predominant peaks and valleys removed; SL = SLA Active Bone Level; S pk = peak height above the core roughness; S vk = valley depth below the core roughness; TU = TiUnite MkIII.

Article Snippet: Cylindrical threaded dental implants of similar dimensions but with different surface topographies were selected ( n = 6 per group): 4.0 × 10 mm TiUnite MkIII (TU) (Nobel Biocare AB, Göteborg, Sweden), 4.0 × 11 mm OsseoSpeed TX (OS) (Astra Tech AB, Mölndal, Sweden), and 4.1 × 10 mm SLActive Bone Level (SL) (Straumann AG, Waldenburg, Switzerland).

Techniques: Functional Assay

Surface roughness S a and S dr , and material volume ( V m ) proportional difference ((Final value/Initial value)/Initial value) of the implants before and after insertion comparing normal and high torque protocols. Data reported from measurements at the crest of the thread. OS = OsseoSpeed TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; TU = TiUnite MkIII.

Journal: Clinical Implant Dentistry and Related Research

Article Title: Impact of High Insertion Torque on Implant Surface Integrity

doi: 10.1111/cid.70030

Figure Lengend Snippet: Surface roughness S a and S dr , and material volume ( V m ) proportional difference ((Final value/Initial value)/Initial value) of the implants before and after insertion comparing normal and high torque protocols. Data reported from measurements at the crest of the thread. OS = OsseoSpeed TX; S a = average height deviation; S dr = developed interfacial area ratio; SL = SLA Active Bone Level; TU = TiUnite MkIII.

Article Snippet: Cylindrical threaded dental implants of similar dimensions but with different surface topographies were selected ( n = 6 per group): 4.0 × 10 mm TiUnite MkIII (TU) (Nobel Biocare AB, Göteborg, Sweden), 4.0 × 11 mm OsseoSpeed TX (OS) (Astra Tech AB, Mölndal, Sweden), and 4.1 × 10 mm SLActive Bone Level (SL) (Straumann AG, Waldenburg, Switzerland).

Techniques: