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mathematical computing software version 2014b  (MathWorks Inc)


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    MathWorks Inc mathematical computing software version 2014b
    Mathematical Computing Software Version 2014b, 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/product/software+version+2014b/pm33030276-101-7-13
    Average 90 stars, based on 1 article reviews
    mathematical computing software version 2014b - by Bioz Stars, 2026-09
    90/100 stars

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    other:

    Article Title: Contralesional grey matter volume as an index of macrostructural plasticity in patients with brain tumors
    Article Snippet: To measure GMV for healthy controls and patients at each time point, we performed a VBM analysis using SPM12 in MATLAB 2014b.

    Article Title: Phase of firing does not reflect temporal order in sequence memory of humans and recurrent neural networks.
    Article Snippet: Statistical analyses were conducted in MATLAB 2014b and 2022b, including the Statistics and Machine Learning Toolbox (The MathWorks, Natick, MA) and Python (tensorflow2015, Scipy 1.2), Matlab toolboxes for circular statistics (CircStatsToolbox, Philipp Berens (2024).

    Article Title: Investigating retrieval strategies in an associative recognition test in working memory: Evidence from eye movements.
    Article Snippet: Stimuli were presented with MATLAB 2014b with a Psychophysics Toolbox 3 extension.

    Article Title: Pretreatment CT-Based Machine Learning Radiomics Model Predicts Response in Inoperable Stage III NSCLC Treated with Concurrent Radiochemotherapy Plus PD-1 Inhibitors
    Article Snippet: To standardize the collected contrast-enhanced chest CT images, three-dimensional reconstruction was performed using MATLAB 2014b ( https://ww2.mathworks.cn/ ), with the slice thickness adjusted to 1 mm.

    Article Title: Inter-rater disagreement in manual scoring of intensive care unit sleep data
    Article Snippet: Significance in differences in demographics between groups was established after evaluating all 15 repeated comparisons with a Benjamini–Hochberg procedure [ ], using a maximum acceptable false discovery rate of 10%: the comparison i with the largest P value still below the critical P(i) was considered significant, as were all comparisons with lower P Sleep-related parameters were calculated using Matlab (Matlab 2014b, Natick, MA, USA).

    Article Title: Predicting Treatment Response to Transcatheter Arterial Chemoembolization in Hepatocellular Carcinoma Patients using a Deep Learning-Based Approach.
    Article Snippet: Department of Radiology, Beijing Friendship Hospital, Capital Medical University, 95 YongAn Road, Xicheng District, Beijing, 100050, P.R.. China Department of Radiology, Beijing Jianjia Rehabilitation Hospital, Building 3, Yard 6, Kangxin Road, Fengtai District, Beijing, 100071, P.R.. China Center of Interventional Oncology and Liver Diseases, Beijing Youan Hospital, Capital Medical University; No.8 Xitoutiao, Youwai St, Fengtai District, Beijing, 100069, P.R.

    Article Title: Inter-rater disagreement in manual scoring of intensive care unit sleep data.
    Article Snippet: Significance in differences in demographics between groups was established after evaluating all 15 repeated comparisons with a Benjamini–Hochberg procedure [38], using a maximum acceptable false discovery rate of 10%: the comparison i with the largest P value still below the critical P(i) was considered significant, as were all comparisons with lower P Sleep-related parameters were calculated using Matlab (Matlab 2014b, Natick, MA, USA).

    Sequencing:

    Article Title: Expanding the cultivable human archaeome: Methanobrevibacter intestini sp. nov. and strain Methanobrevibacter smithii 'GRAZ-2' from human faeces.
    Article Snippet: Viktoria Weinberger, Rokhsareh Mohammadzadeh, Marcus Blohs, Kerstin Kalt, Alexander Mahnert, Sarah Moser, Marina Cecovini, Polona Mertelj, Tamara Zurabishvili, Bhawna Arora, Jacqueline Wolf, Tejus Shinde, Tobias Madl, Hansjörg Habisch, Dagmar Kolb, Dominique Pernitsch, Kerstin Hingerl, William Metcalf and Christine MoisslEichinger* RESEARCH ARTICLE Weinberger et al., Int.. J. Syst.. Evol.



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    Method. Panel A shows an example of paired points with a prolonged transmural activation interval (TAI) and normal maximal activation interval (MAI) duration. The first sharp bipolar peak deflection (SBP) (MAP 1–2 endo) coincides with the maximal downstroke of the <t>endocardial</t> unipolar signal (MAP 1 endo). Panel B illustrates an example of a prolonged TAI and MAI duration due a transmural and inlayer conduction delay. The first epicardial EGM component coincides exactly with the corresponding endocardial local activation time, and may be considered as farfield signal from the endocardium. The second component is a late and fragmented EGM.
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    Method. Panel A shows an example of paired points with a prolonged transmural activation interval (TAI) and normal maximal activation interval (MAI) duration. The first sharp bipolar peak deflection (SBP) (MAP 1–2 endo) coincides with the maximal downstroke of the <t>endocardial</t> unipolar signal (MAP 1 endo). Panel B illustrates an example of a prolonged TAI and MAI duration due a transmural and inlayer conduction delay. The first epicardial EGM component coincides exactly with the corresponding endocardial local activation time, and may be considered as farfield signal from the endocardium. The second component is a late and fragmented EGM.
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    Method. Panel A shows an example of paired points with a prolonged transmural activation interval (TAI) and normal maximal activation interval (MAI) duration. The first sharp bipolar peak deflection (SBP) (MAP 1–2 endo) coincides with the maximal downstroke of the <t>endocardial</t> unipolar signal (MAP 1 endo). Panel B illustrates an example of a prolonged TAI and MAI duration due a transmural and inlayer conduction delay. The first epicardial EGM component coincides exactly with the corresponding endocardial local activation time, and may be considered as farfield signal from the endocardium. The second component is a late and fragmented EGM.
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    MathWorks Inc mathematical computing software version 2014b
    Method. Panel A shows an example of paired points with a prolonged transmural activation interval (TAI) and normal maximal activation interval (MAI) duration. The first sharp bipolar peak deflection (SBP) (MAP 1–2 endo) coincides with the maximal downstroke of the <t>endocardial</t> unipolar signal (MAP 1 endo). Panel B illustrates an example of a prolonged TAI and MAI duration due a transmural and inlayer conduction delay. The first epicardial EGM component coincides exactly with the corresponding endocardial local activation time, and may be considered as farfield signal from the endocardium. The second component is a late and fragmented EGM.
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      Buy from Supplier

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    Method. Panel A shows an example of paired points with a prolonged transmural activation interval (TAI) and normal maximal activation interval (MAI) duration. The first sharp bipolar peak deflection (SBP) (MAP 1–2 endo) coincides with the maximal downstroke of the endocardial unipolar signal (MAP 1 endo). Panel B illustrates an example of a prolonged TAI and MAI duration due a transmural and inlayer conduction delay. The first epicardial EGM component coincides exactly with the corresponding endocardial local activation time, and may be considered as farfield signal from the endocardium. The second component is a late and fragmented EGM.

    Journal: Europace

    Article Title: The transmural activation interval: a new mapping tool to identify ventricular tachycardia substrates in right ventricular cardiomyopathy

    doi: 10.1093/europace/euac220

    Figure Lengend Snippet: Method. Panel A shows an example of paired points with a prolonged transmural activation interval (TAI) and normal maximal activation interval (MAI) duration. The first sharp bipolar peak deflection (SBP) (MAP 1–2 endo) coincides with the maximal downstroke of the endocardial unipolar signal (MAP 1 endo). Panel B illustrates an example of a prolonged TAI and MAI duration due a transmural and inlayer conduction delay. The first epicardial EGM component coincides exactly with the corresponding endocardial local activation time, and may be considered as farfield signal from the endocardium. The second component is a late and fragmented EGM.

    Article Snippet: In Matlab (software-version 2014b) each endocardial point was linked to the closest epicardial mapping point based on shortest Euclidean distance between the three-dimensional coordinates.

    Techniques: Activation Assay