<p>In addition, regression equations and R<sup>2</sup> values for each dependent variable are depicted.</p><p>Values are means. Between-participant standard deviations are presented in parentheses.</p
<p>(a) Reaction times grouped by trial difficulty and type. (b) Each subject's mean reaction times a...
The height of each bar represents the group-mean movement time based on an across-participant averag...
<p>All parameters were calculated by subtracting the parameter of the first trial from that of the s...
<p>In addition, the top left hand corner of the figure presents regression equations and R<sup>2</su...
<p>Mean Reaction Times (RT) in ms and Error Rates in Percentage (Standard Deviations in Parentheses)...
<p>Mean numbers of the target's movements, median task-solving time, and median first-response laten...
1<p>including errors of the opposite force and errors of the not-opposite force;</p><p><sup>2</sup>i...
<p>(A) Movement time; (B) deceleration time; and (C) acceleration time. Each dot represents mean val...
<p>(A) movement time; (B) deceleration time; and (C) acceleration time. Each dot represents mean val...
<p>Mean accuracy (in percentages) and reaction times (in ms) per condition (standard deviations in p...
A strong linear relationship (R2>0.98) was found between the movement time and index of difficulty.<...
Significance at the α = 0.05, α = 0.01 and α = 0.001 level are indicated by *, ** and ***, respectiv...
<p>Linear regression fittings for reaction time (RT) and movement time (MT) as a function of the ang...
<p>Mean reaction times (in ms) and mean error rates (in %; SDs in parentheses) for low and high sali...
<p>Mean reaction times (in ms) and mean error rates (in %; SDs in Parentheses) for low and high sali...
<p>(a) Reaction times grouped by trial difficulty and type. (b) Each subject's mean reaction times a...
The height of each bar represents the group-mean movement time based on an across-participant averag...
<p>All parameters were calculated by subtracting the parameter of the first trial from that of the s...
<p>In addition, the top left hand corner of the figure presents regression equations and R<sup>2</su...
<p>Mean Reaction Times (RT) in ms and Error Rates in Percentage (Standard Deviations in Parentheses)...
<p>Mean numbers of the target's movements, median task-solving time, and median first-response laten...
1<p>including errors of the opposite force and errors of the not-opposite force;</p><p><sup>2</sup>i...
<p>(A) Movement time; (B) deceleration time; and (C) acceleration time. Each dot represents mean val...
<p>(A) movement time; (B) deceleration time; and (C) acceleration time. Each dot represents mean val...
<p>Mean accuracy (in percentages) and reaction times (in ms) per condition (standard deviations in p...
A strong linear relationship (R2>0.98) was found between the movement time and index of difficulty.<...
Significance at the α = 0.05, α = 0.01 and α = 0.001 level are indicated by *, ** and ***, respectiv...
<p>Linear regression fittings for reaction time (RT) and movement time (MT) as a function of the ang...
<p>Mean reaction times (in ms) and mean error rates (in %; SDs in parentheses) for low and high sali...
<p>Mean reaction times (in ms) and mean error rates (in %; SDs in Parentheses) for low and high sali...
<p>(a) Reaction times grouped by trial difficulty and type. (b) Each subject's mean reaction times a...
The height of each bar represents the group-mean movement time based on an across-participant averag...
<p>All parameters were calculated by subtracting the parameter of the first trial from that of the s...