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Tekscan Inc laptop running tekscan walkway 7 66 software
Laptop Running Tekscan Walkway 7 66 Software, supplied by Tekscan Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/tekscan+software/66+7+laptop+running+software+tekscan+walkway/pm42107629-71-1-3
Average 86 stars, based on 1 article reviews
laptop running tekscan walkway 7 66 software - by Bioz Stars, 2026-10
86/100 stars

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Related Articles

Plasmid Preparation:

Article Title: Finite element modeling of fracture compression by compression plates.
Article Snippet: Experimental total force, contact area, and center of force location were obtained using the Tekscan software and Matlab code.

Article Title: A Lateral Expandable Cage with Independently Adjustable Anterior and Posterior Heights Can Improve the Pressure Distribution at the Cage-Endplate Interface: A Biomechanics Study.
Article Snippet: -METHODS: Three unique vertical height expansion trajectories used by clinically relevant lateral expandable cages were evaluated: craniocaudal, fixed-arc, and independently adjustable anterior and posterior height expansion.. Two biomechanical loading scenarios were performed.. The first scenario used custom bone foam test blocks to assess resultant pressure distribution at varying test block lordotic angles and expansion heights.

Article Title: Do Dynamic Plantar Pressures Differ Based on Sonographic Evidence of Metatarsophalangeal Joint Synovitis in People With Rheumatoid Arthritis?
Article Snippet: The TekScan software was used to mask each foot into seven regions of interest (ROI) representing the hallux (ROI1), lesser toes (ROI2), metatarsal one (ROI3), metatarsal two (ROI4), metatarsals three to five (ROI5), the midfoot (ROI6), and the heel (ROI7).

Article Title: Bite force evaluation at maximal intercuspal position: An in vivo comparative study between stainless steel and zirconia crowns on primary molar teeth.
Article Snippet: The distribution of occlusal force was presented in two‐dimensional and three‐dimensional graphics by the Tekscan software.

Article Title: Simulated Biomechanical Analysis of Optimal Knee Alignment for Treating Medial Meniscus Posterior Root Tears
Article Snippet: After selecting an alignment, a joint load of 700 N, simulating a single-leg stance of a 70-kg person, was applied along the vector for 30 seconds., Medial and lateral compartment pressures were recorded using Tekscan software at 6 frames/s during this time.

Article Title: An ex vivo sequential ligament transection model of flatfoot.
Article Snippet: Background: The ligaments implicated in the earliest stages of developing a progressive collapsing foot deformity are poorly understood.. Commonly employed cadaveric flatfoot models are created from simultaneous transection of multiple ligaments, making it difficult to assess early changes in pressure distribution from ligaments critical for maintaining load distribution.. A serial transection of ligaments may provide insight into changes in pressure distribution under the foot to identify a potential combination of ligaments that may be involved in early

Article Title: Evaluation of Tibiofemoral Contact Mechanics After a Novel Hybrid Procedure for Femoral Osteochondral Defect Repairs With a Subchondral Implant and Dermal Matrix
Article Snippet: Calibration was performed using a 2-point calibration curve for each specimen with a compressive force of 50 and 150 N along with a sensitivity of 35 out of the 40 levels of settings in the Tekscan software.

Article Title: Evaluation of Tibiofemoral Contact Mechanics After a Novel Hybrid Procedure for Femoral Osteochondral Defect Repairs With a Subchondral Implant and Dermal Matrix
Article Snippet: To create the osteochondral defect near the center of the contact area, the middle of the defect was first measured from the Tekscan software relative to the corner of the Tekscan pad aligned with the specimen.

Comparison:

Article Title: Finite element modeling of fracture compression by compression plates.
Article Snippet: Experimental total force, contact area, and center of force location were obtained using the Tekscan software and Matlab code.

Article Title: A Lateral Expandable Cage with Independently Adjustable Anterior and Posterior Heights Can Improve the Pressure Distribution at the Cage-Endplate Interface: A Biomechanics Study.
Article Snippet: -METHODS: Three unique vertical height expansion trajectories used by clinically relevant lateral expandable cages were evaluated: craniocaudal, fixed-arc, and independently adjustable anterior and posterior height expansion.. Two biomechanical loading scenarios were performed.. The first scenario used custom bone foam test blocks to assess resultant pressure distribution at varying test block lordotic angles and expansion heights.

Article Title: Do Dynamic Plantar Pressures Differ Based on Sonographic Evidence of Metatarsophalangeal Joint Synovitis in People With Rheumatoid Arthritis?
Article Snippet: The TekScan software was used to mask each foot into seven regions of interest (ROI) representing the hallux (ROI1), lesser toes (ROI2), metatarsal one (ROI3), metatarsal two (ROI4), metatarsals three to five (ROI5), the midfoot (ROI6), and the heel (ROI7).

Article Title: Bite force evaluation at maximal intercuspal position: An in vivo comparative study between stainless steel and zirconia crowns on primary molar teeth.
Article Snippet: The distribution of occlusal force was presented in two‐dimensional and three‐dimensional graphics by the Tekscan software.

Article Title: Simulated Biomechanical Analysis of Optimal Knee Alignment for Treating Medial Meniscus Posterior Root Tears
Article Snippet: After selecting an alignment, a joint load of 700 N, simulating a single-leg stance of a 70-kg person, was applied along the vector for 30 seconds., Medial and lateral compartment pressures were recorded using Tekscan software at 6 frames/s during this time.

Article Title: An ex vivo sequential ligament transection model of flatfoot.
Article Snippet: Background: The ligaments implicated in the earliest stages of developing a progressive collapsing foot deformity are poorly understood.. Commonly employed cadaveric flatfoot models are created from simultaneous transection of multiple ligaments, making it difficult to assess early changes in pressure distribution from ligaments critical for maintaining load distribution.. A serial transection of ligaments may provide insight into changes in pressure distribution under the foot to identify a potential combination of ligaments that may be involved in early

Article Title: Evaluation of Tibiofemoral Contact Mechanics After a Novel Hybrid Procedure for Femoral Osteochondral Defect Repairs With a Subchondral Implant and Dermal Matrix
Article Snippet: Calibration was performed using a 2-point calibration curve for each specimen with a compressive force of 50 and 150 N along with a sensitivity of 35 out of the 40 levels of settings in the Tekscan software.

Article Title: Evaluation of Tibiofemoral Contact Mechanics After a Novel Hybrid Procedure for Femoral Osteochondral Defect Repairs With a Subchondral Implant and Dermal Matrix
Article Snippet: To create the osteochondral defect near the center of the contact area, the middle of the defect was first measured from the Tekscan software relative to the corner of the Tekscan pad aligned with the specimen.



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Comparison of contact pressure and contact area between the intact (light gray line), medial meniscus posterior root tear (MMPRT; black line), and repair (dark gray line) conditions at various alignments from 30% to 70% weightbearing line (WBL) in the medial <t>compartment.</t> (A) Peak contact pressure (PCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. (B) Mean contact pressure (MCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. The horizontal dashed lines represent (A) PCP or (B) MCP in the intact condition at 50% WBL. The light gray shaded areas indicate the range of alignments, where the dashed lines intersect with the dark gray lines (repair condition). The dark gray shaded areas represent the range of alignments, where the dashed lines intersect with the black lines (MMPRT condition). (C) An MMPRT significantly decreased the contact area compared with the intact condition, whereas MMPRT repair significantly increased the contact area compared with the MMPRT condition, particularly at 30% to 55% WBL. a Statistical significance ( P < .05) for intact versus MMPRT condition. b Statistical significance ( P < .05) for MMPRT versus repair condition.
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Comparison of contact pressure and contact area between the intact (light gray line), medial meniscus posterior root tear (MMPRT; black line), and repair (dark gray line) conditions at various alignments from 30% to 70% weightbearing line (WBL) in the medial <t>compartment.</t> (A) Peak contact pressure (PCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. (B) Mean contact pressure (MCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. The horizontal dashed lines represent (A) PCP or (B) MCP in the intact condition at 50% WBL. The light gray shaded areas indicate the range of alignments, where the dashed lines intersect with the dark gray lines (repair condition). The dark gray shaded areas represent the range of alignments, where the dashed lines intersect with the black lines (MMPRT condition). (C) An MMPRT significantly decreased the contact area compared with the intact condition, whereas MMPRT repair significantly increased the contact area compared with the MMPRT condition, particularly at 30% to 55% WBL. a Statistical significance ( P < .05) for intact versus MMPRT condition. b Statistical significance ( P < .05) for MMPRT versus repair condition.
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Comparison of contact pressure and contact area between the intact (light gray line), medial meniscus posterior root tear (MMPRT; black line), and repair (dark gray line) conditions at various alignments from 30% to 70% weightbearing line (WBL) in the medial <t>compartment.</t> (A) Peak contact pressure (PCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. (B) Mean contact pressure (MCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. The horizontal dashed lines represent (A) PCP or (B) MCP in the intact condition at 50% WBL. The light gray shaded areas indicate the range of alignments, where the dashed lines intersect with the dark gray lines (repair condition). The dark gray shaded areas represent the range of alignments, where the dashed lines intersect with the black lines (MMPRT condition). (C) An MMPRT significantly decreased the contact area compared with the intact condition, whereas MMPRT repair significantly increased the contact area compared with the MMPRT condition, particularly at 30% to 55% WBL. a Statistical significance ( P < .05) for intact versus MMPRT condition. b Statistical significance ( P < .05) for MMPRT versus repair condition.
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Comparison of contact pressure and contact area between the intact (light gray line), medial meniscus posterior root tear (MMPRT; black line), and repair (dark gray line) conditions at various alignments from 30% to 70% weightbearing line (WBL) in the medial <t>compartment.</t> (A) Peak contact pressure (PCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. (B) Mean contact pressure (MCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. The horizontal dashed lines represent (A) PCP or (B) MCP in the intact condition at 50% WBL. The light gray shaded areas indicate the range of alignments, where the dashed lines intersect with the dark gray lines (repair condition). The dark gray shaded areas represent the range of alignments, where the dashed lines intersect with the black lines (MMPRT condition). (C) An MMPRT significantly decreased the contact area compared with the intact condition, whereas MMPRT repair significantly increased the contact area compared with the MMPRT condition, particularly at 30% to 55% WBL. a Statistical significance ( P < .05) for intact versus MMPRT condition. b Statistical significance ( P < .05) for MMPRT versus repair condition.
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Image Search Results


Comparison of contact pressure and contact area between the intact (light gray line), medial meniscus posterior root tear (MMPRT; black line), and repair (dark gray line) conditions at various alignments from 30% to 70% weightbearing line (WBL) in the medial compartment. (A) Peak contact pressure (PCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. (B) Mean contact pressure (MCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. The horizontal dashed lines represent (A) PCP or (B) MCP in the intact condition at 50% WBL. The light gray shaded areas indicate the range of alignments, where the dashed lines intersect with the dark gray lines (repair condition). The dark gray shaded areas represent the range of alignments, where the dashed lines intersect with the black lines (MMPRT condition). (C) An MMPRT significantly decreased the contact area compared with the intact condition, whereas MMPRT repair significantly increased the contact area compared with the MMPRT condition, particularly at 30% to 55% WBL. a Statistical significance ( P < .05) for intact versus MMPRT condition. b Statistical significance ( P < .05) for MMPRT versus repair condition.

Journal: Orthopaedic Journal of Sports Medicine

Article Title: Simulated Biomechanical Analysis of Optimal Knee Alignment for Treating Medial Meniscus Posterior Root Tears

doi: 10.1177/23259671251344944

Figure Lengend Snippet: Comparison of contact pressure and contact area between the intact (light gray line), medial meniscus posterior root tear (MMPRT; black line), and repair (dark gray line) conditions at various alignments from 30% to 70% weightbearing line (WBL) in the medial compartment. (A) Peak contact pressure (PCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. (B) Mean contact pressure (MCP) at neutral alignment in the intact condition equaled that at 60% to 65% WBL and at 50% to 55% WBL in the MMPRT and repair conditions, respectively. The horizontal dashed lines represent (A) PCP or (B) MCP in the intact condition at 50% WBL. The light gray shaded areas indicate the range of alignments, where the dashed lines intersect with the dark gray lines (repair condition). The dark gray shaded areas represent the range of alignments, where the dashed lines intersect with the black lines (MMPRT condition). (C) An MMPRT significantly decreased the contact area compared with the intact condition, whereas MMPRT repair significantly increased the contact area compared with the MMPRT condition, particularly at 30% to 55% WBL. a Statistical significance ( P < .05) for intact versus MMPRT condition. b Statistical significance ( P < .05) for MMPRT versus repair condition.

Article Snippet: After selecting an alignment, a joint load of 700 N, simulating a single-leg stance of a 70-kg person, was applied along the vector for 30 seconds., Medial and lateral compartment pressures were recorded using Tekscan software at 6 frames/s during this time.

Techniques: Comparison

Comparison of contact pressure and contact area between the intact (light gray line), medial meniscus posterior root tear (MMPRT; black line), and repair (dark gray line) conditions at various alignments from 30% to 70% weightbearing line (WBL) in the lateral compartment. (A) Peak contact pressure, (B) mean contact pressure, and (C) contact area.

Journal: Orthopaedic Journal of Sports Medicine

Article Title: Simulated Biomechanical Analysis of Optimal Knee Alignment for Treating Medial Meniscus Posterior Root Tears

doi: 10.1177/23259671251344944

Figure Lengend Snippet: Comparison of contact pressure and contact area between the intact (light gray line), medial meniscus posterior root tear (MMPRT; black line), and repair (dark gray line) conditions at various alignments from 30% to 70% weightbearing line (WBL) in the lateral compartment. (A) Peak contact pressure, (B) mean contact pressure, and (C) contact area.

Article Snippet: After selecting an alignment, a joint load of 700 N, simulating a single-leg stance of a 70-kg person, was applied along the vector for 30 seconds., Medial and lateral compartment pressures were recorded using Tekscan software at 6 frames/s during this time.

Techniques: Comparison