custom-designed routines in matlab 2018b (MathWorks Inc)
Structured Review

Custom Designed Routines In Matlab 2018b, 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/custom-designed+routine+in/pmc08480973-349-8-11
Average 90 stars, based on 1 article reviews
Images
1) Product Images from "Learning to stand with unexpected sensorimotor delays"
Article Title: Learning to stand with unexpected sensorimotor delays
Journal: eLife
doi: 10.7554/eLife.65085
Figure Legend Snippet: Data are presented across transition periods where time zero represents the transition point from baseline (20 ms) to 200 ms delayed balance control, which lasted for 8 s (between grayed out areas) and returned to baseline. Data are presented for a representative participant (left) and the group data (right; n = 7) using only data from transitions that were perceived as unexpected and the button was pressed after the delay was introduced (single participant: 77, group: 489). ( A ) Average (black line) 2 s sliding window of velocity variance over transitions with ±s.e.m. (gray lines). Time-varying variance was calculated using the movvar MATLAB function, which calculated variance over 2 s segments using a sliding window. The velocity variance trace begins to decline prior to the end of the delay period because the sliding window starts estimating variances from data points both during and after the delay. ( B ) Time-frequency plots of EVS-EMG coherence and gain (i.e., vestibular-evoked muscle responses) during the delay transition. For illustrative purposes, and because gain values are not reliable when coherence is below the significance threshold, we set coherence and gain data points where coherence was non-significant (i.e., below 99% confidence limit) to zero (dark blue). ( C ) Mean time-dependent EVS-EMG coherence and gain across the 0.5–25 Hz frequency range. For each participant and group data, an exponential decay function: f x = a * exp - x b + c was fit to the average coherence over the 8 s period during which the 200 ms delay was present. For gain, we removed values corresponding to non-significant coherence (see single participant trace) and only fit an exponential function to the group mean gain estimate. The average perceptual detection times for the representative participant (3.2 s) and group data (3.4 s) are indicated by the dashed magenta lines, and at these times, vestibulomuscular coherence had attenuated by 83% and 90%, respectively. Group mean gain attenuated by 73% at the group average perceptual detection time.
Techniques Used: Control
Related Articles
other:Article Title: Multidimensional single-cell analysis based on fluorescence microscopy and automated image analysis. Article Snippet: A single-cell analytical technology was developed for evaluating fast-growing cultures of green algae.. The main part of the single-cell analysis is an epifluorescence microscopy-based cytometric approach combined with an automated image analysis algorithm and a single-threshold discrimination procedure.. The reliability of the technique in terms of object recognition, evaluating particle size, and determining chlorophyll was successfully proven via reference analyses. Article Title: Prognostic Utility of Morning Blood Pressure Surge for 20‐Year All‐Cause and Cardiovascular Mortalities: Results of a Community‐Based Study Article Snippet: To avoid interobserver and intraobserver variations, we performed a fully automated batch analysis for the calculation of 24‐hour BP readings from ABPM using a |
