custom-built application matlab Search Results


90
MathWorks Inc presentmate software
Presentmate Software, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MathWorks Inc custom-built matlab software code
An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built <t>MATLAB</t> code.
Custom Built Matlab Software Code, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MathWorks Inc polarized order detection software (pods) v1.0 for
An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built <t>MATLAB</t> code.
Polarized Order Detection Software (Pods) V1.0 For, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MathWorks Inc software hdsemg analysis tool
An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built <t>MATLAB</t> code.
Software Hdsemg Analysis Tool, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MathWorks Inc custombuilt software
An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built <t>MATLAB</t> code.
Custombuilt Software, supplied by MathWorks 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/custombuilt software/product/MathWorks Inc
Average 90 stars, based on 1 article reviews
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MathWorks Inc custom-built matlab software r2018b
An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built <t>MATLAB</t> code.
Custom Built Matlab Software R2018b, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MathWorks Inc custom-built matlab application
An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built <t>MATLAB</t> code.
Custom Built Matlab Application, supplied by MathWorks 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/custom-built matlab application/product/MathWorks Inc
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MathWorks Inc custom-built pattern recognition matlab software
An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built <t>MATLAB</t> code.
Custom Built Pattern Recognition Matlab Software, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MathWorks Inc texture analysis software
An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built <t>MATLAB</t> code.
Texture Analysis Software, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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MathWorks Inc neuronavigation software matlab 2020a
( a ) TMS was applied to the left motor cortex to elicit MEPs in the right tibialis anterior. ( b ) <t>NeuroNavigation</t> setup for hotspot targeting. A custom-built Neuronavigation software, using infrared camera-based motion capture markers, tracked the position and orientation of a double-cone coil to consistently target the tibialis anterior hotspot before and after each training session. ( c ) Average MEP responses at rest before and after training for a representative participant (MS004) illustrate increases in response amplitude following motor skill training. ( d ) Corresponding recruitment curve of ( c ). MEP amplitudes increased across multiple TMS intensities (100%, 150%, 180%, 200%) after training. ( e ) Percent change in MEP amplitude during pre-activation and rest conditions. The left panel shows percent changes in MEP amplitude during the pre-activation condition (15% dorsiflexion), and the right panel shows percent changes during rest. Both plots represent group-level responses across all participants following motor skill and isometric resistance training. ( f ) Training-induced changes across evaluation conditions. MEP amplitude increases following both training protocols during specific conditions. Asterisks above the bars denote post-hoc paired Bonferroni-corrected significance values for interactions between training types and evaluation conditions: *p < 0.05, **p < 0.01, *** p < 0.001, ‘n.s.’ p > 0.05. (Significant) ‘X’ markers below the plot in ( f ) indicate Bonferroni-corrected significant training effects within each condition of MEP percent change based on one-sample tests against µ = 0 (‘X’ p < 0.05, ‘XX’ p < 0.01, ‘n.s.’ p > 0.05).
Neuronavigation Software Matlab 2020a, supplied by MathWorks 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/neuronavigation software matlab 2020a/product/MathWorks Inc
Average 90 stars, based on 1 article reviews
neuronavigation software matlab 2020a - by Bioz Stars, 2026-03
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MathWorks Inc matlab built-in functions
( a ) TMS was applied to the left motor cortex to elicit MEPs in the right tibialis anterior. ( b ) <t>NeuroNavigation</t> setup for hotspot targeting. A custom-built Neuronavigation software, using infrared camera-based motion capture markers, tracked the position and orientation of a double-cone coil to consistently target the tibialis anterior hotspot before and after each training session. ( c ) Average MEP responses at rest before and after training for a representative participant (MS004) illustrate increases in response amplitude following motor skill training. ( d ) Corresponding recruitment curve of ( c ). MEP amplitudes increased across multiple TMS intensities (100%, 150%, 180%, 200%) after training. ( e ) Percent change in MEP amplitude during pre-activation and rest conditions. The left panel shows percent changes in MEP amplitude during the pre-activation condition (15% dorsiflexion), and the right panel shows percent changes during rest. Both plots represent group-level responses across all participants following motor skill and isometric resistance training. ( f ) Training-induced changes across evaluation conditions. MEP amplitude increases following both training protocols during specific conditions. Asterisks above the bars denote post-hoc paired Bonferroni-corrected significance values for interactions between training types and evaluation conditions: *p < 0.05, **p < 0.01, *** p < 0.001, ‘n.s.’ p > 0.05. (Significant) ‘X’ markers below the plot in ( f ) indicate Bonferroni-corrected significant training effects within each condition of MEP percent change based on one-sample tests against µ = 0 (‘X’ p < 0.05, ‘XX’ p < 0.01, ‘n.s.’ p > 0.05).
Matlab Built In Functions, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
matlab built-in functions - by Bioz Stars, 2026-03
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Image Search Results


An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built MATLAB code.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: An example of a right eye of a 21-year-old male subject where the corneal pre (a) and post (b) Ortho-K wear tangential refractive power maps were determined by a custom-built MATLAB code.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques:

Tangential power map of left eye of a 30-year-old male subject (a) as measured by Medmont, (b) as calculated then smoothed by a custom-built MATLAB software code.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: Tangential power map of left eye of a 30-year-old male subject (a) as measured by Medmont, (b) as calculated then smoothed by a custom-built MATLAB software code.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques: Software

Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 0 to S = 1.1.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 0 to S = 1.1.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques: Software

Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques: Software

Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 2.4 to S = 3.5.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 2.4 to S = 3.5.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques: Software

Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 3.6 to S = 4.7.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 3.6 to S = 4.7.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques: Software

Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 4.8 to S = 5.9.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 4.8 to S = 5.9.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques: Software

Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 6 to S = 28.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 6 to S = 28.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques: Software

Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 30 to S = 140.

Journal: Heliyon

Article Title: Investigation of the relationship between contact lens design parameters and refractive changes in Ortho-K

doi: 10.1016/j.heliyon.2022.e11699

Figure Lengend Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 30 to S = 140.

Article Snippet: Tangential refractive power map of a 30 years male subject as calculated then smoothed by a custom-built MATLAB software code with smoothing factor S = 1.2 to S = 2.3.

Techniques: Software

( a ) TMS was applied to the left motor cortex to elicit MEPs in the right tibialis anterior. ( b ) NeuroNavigation setup for hotspot targeting. A custom-built Neuronavigation software, using infrared camera-based motion capture markers, tracked the position and orientation of a double-cone coil to consistently target the tibialis anterior hotspot before and after each training session. ( c ) Average MEP responses at rest before and after training for a representative participant (MS004) illustrate increases in response amplitude following motor skill training. ( d ) Corresponding recruitment curve of ( c ). MEP amplitudes increased across multiple TMS intensities (100%, 150%, 180%, 200%) after training. ( e ) Percent change in MEP amplitude during pre-activation and rest conditions. The left panel shows percent changes in MEP amplitude during the pre-activation condition (15% dorsiflexion), and the right panel shows percent changes during rest. Both plots represent group-level responses across all participants following motor skill and isometric resistance training. ( f ) Training-induced changes across evaluation conditions. MEP amplitude increases following both training protocols during specific conditions. Asterisks above the bars denote post-hoc paired Bonferroni-corrected significance values for interactions between training types and evaluation conditions: *p < 0.05, **p < 0.01, *** p < 0.001, ‘n.s.’ p > 0.05. (Significant) ‘X’ markers below the plot in ( f ) indicate Bonferroni-corrected significant training effects within each condition of MEP percent change based on one-sample tests against µ = 0 (‘X’ p < 0.05, ‘XX’ p < 0.01, ‘n.s.’ p > 0.05).

Journal: bioRxiv

Article Title: Transient effects in corticospinal and reticulospinal tract excitability induced by motor skill and isometric resistance training

doi: 10.1101/2025.05.21.655351

Figure Lengend Snippet: ( a ) TMS was applied to the left motor cortex to elicit MEPs in the right tibialis anterior. ( b ) NeuroNavigation setup for hotspot targeting. A custom-built Neuronavigation software, using infrared camera-based motion capture markers, tracked the position and orientation of a double-cone coil to consistently target the tibialis anterior hotspot before and after each training session. ( c ) Average MEP responses at rest before and after training for a representative participant (MS004) illustrate increases in response amplitude following motor skill training. ( d ) Corresponding recruitment curve of ( c ). MEP amplitudes increased across multiple TMS intensities (100%, 150%, 180%, 200%) after training. ( e ) Percent change in MEP amplitude during pre-activation and rest conditions. The left panel shows percent changes in MEP amplitude during the pre-activation condition (15% dorsiflexion), and the right panel shows percent changes during rest. Both plots represent group-level responses across all participants following motor skill and isometric resistance training. ( f ) Training-induced changes across evaluation conditions. MEP amplitude increases following both training protocols during specific conditions. Asterisks above the bars denote post-hoc paired Bonferroni-corrected significance values for interactions between training types and evaluation conditions: *p < 0.05, **p < 0.01, *** p < 0.001, ‘n.s.’ p > 0.05. (Significant) ‘X’ markers below the plot in ( f ) indicate Bonferroni-corrected significant training effects within each condition of MEP percent change based on one-sample tests against µ = 0 (‘X’ p < 0.05, ‘XX’ p < 0.01, ‘n.s.’ p > 0.05).

Article Snippet: A custom-built NeuroNavigation software (Matlab 2020a, USA) integrated with Qualisys Track Manager (v2021.1, build 6350, Sweden) was used to identify and recall the right tibialis anterior activation hotspot at baseline and after training ( ).

Techniques: Software, Activation Assay