| | function [p, table] = anova_rm(X, displayopt)
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| |
|
| | if nargin < 2
|
| | displayopt = 'on';
|
| | end
|
| |
|
| | if ~iscell(X)
|
| | X = {X};
|
| | end
|
| |
|
| |
|
| | s = size(X,2);
|
| |
|
| |
|
| | n_h = zeros(s, 1);
|
| | for h=1:s
|
| | n_h(h) = size(X{h}, 1);
|
| | end
|
| | n = sum(n_h);
|
| |
|
| |
|
| | t = size(X{1},2);
|
| |
|
| |
|
| | y = 0;
|
| | for h=1:s
|
| | y = y + sum(sum(X{h}));
|
| | end
|
| | y = y / (n * t);
|
| |
|
| |
|
| | y_h = zeros(s,1);
|
| | y_j = zeros(t,1);
|
| | y_hj = zeros(s,t);
|
| | y_hi = cell(s,1);
|
| | for h=1:s
|
| | y_hi{h} = zeros(n_h(h),1);
|
| | end
|
| |
|
| |
|
| | for h=1:s
|
| | y_h(h) = sum(sum(X{h})) / (n_h(h) * t);
|
| | end
|
| |
|
| |
|
| | for j=1:t
|
| | y_j(j) = 0;
|
| | for h=1:s
|
| | y_j(j) = y_j(j) + sum(X{h}(:,j));
|
| | end
|
| | y_j(j) = y_j(j) / n;
|
| | end
|
| |
|
| |
|
| | for h=1:s
|
| | for j=1:t
|
| | y_hj(h,j) = sum(X{h}(:,j) / n_h(h));
|
| | end
|
| | end
|
| |
|
| |
|
| | for h=1:s
|
| | for i=1:n_h(h)
|
| | y_hi{h}(i) = sum(X{h}(i,:)) / t;
|
| | end
|
| | end
|
| |
|
| |
|
| | ssG = 0;
|
| | ssSG = 0;
|
| | ssT = 0;
|
| | ssGT = 0;
|
| | ssR = 0;
|
| |
|
| | for h=1:s
|
| | for i=1:n_h(h)
|
| | for j=1:t
|
| | ssG = ssG + (y_h(h) - y)^2;
|
| | ssSG = ssSG + (y_hi{h}(i) - y_h(h))^2;
|
| | ssT = ssT + (y_j(j) - y)^2;
|
| | ssGT = ssGT + (y_hj(h,j) - y_h(h) - y_j(j) + y)^2;
|
| | ssR = ssR + (X{h}(i,j) - y_hj(h,j) - y_hi{h}(i) + y_h(h))^2;
|
| | end
|
| | end
|
| | end
|
| |
|
| |
|
| | if s > 1
|
| | msG = ssG / (s-1);
|
| | msGT = ssGT / ((s-1)*(t-1));
|
| | end
|
| | msSG = ssSG / (n-s);
|
| | msT = ssT / (t-1);
|
| | msR = ssR / ((n-s)*(t-1));
|
| |
|
| |
|
| |
|
| | if s > 1
|
| | FG = msG / msSG;
|
| | FGT = msGT / msR;
|
| | end
|
| | FT = msT / msR;
|
| | FSG = msSG / msR;
|
| |
|
| |
|
| |
|
| | if s > 1
|
| |
|
| | pG = 1 - fcdf(FG, s-1, n-s);
|
| | pT = 1 - fcdf(FT, t-1, (n-s)*(t-1));
|
| | pGT = 1 - fcdf(FGT, (s-1)*(t-1), (n-s)*(t-1));
|
| | pSG = 1 - fcdf(FSG, n-s, (n-s)*(t-1));
|
| |
|
| | p = [pT, pG, pSG, pGT];
|
| |
|
| | table = { 'Source' 'SS' 'df' 'MS' 'F' 'Prob>F'
|
| | 'Time' ssT t-1 msT FT pT
|
| | 'Group' ssG s-1 msG FG pG
|
| | 'Ineratcion' ssGT (s-1)*(t-1) msGT FGT pGT
|
| | 'Subjects (matching)' ssSG n-s msSG FSG pSG
|
| | 'Error' ssR (n-s)*(t-1) msR [] []
|
| | 'Total' [] [] [] [] []
|
| | };
|
| | table{end, 2} = sum([table{2:end-1,2}]);
|
| | table{end, 3} = sum([table{2:end-1,3}]);
|
| |
|
| | if (isequal(displayopt, 'on'))
|
| | digits = [-1 -1 0 -1 2 4];
|
| | statdisptable(table, 'multi-sample repeated measures ANOVA', 'ANOVA Table', '', digits);
|
| | end
|
| | else
|
| |
|
| | pT = 1 - fcdf(FT, t-1, (n-s)*(t-1));
|
| | pSG = 1 - fcdf(FSG, n-s, (n-s)*(t-1));
|
| |
|
| | p = [pT, pSG];
|
| |
|
| | table = { 'Source' 'SS' 'df' 'MS' 'F' 'Prob>F'
|
| | 'Time' ssT t-1 msT FT pT
|
| | 'Subjects (matching)' ssSG n-s msSG FSG pSG
|
| | 'Error' ssR (n-s)*(t-1) msR [] []
|
| | 'Total' [] [] [] [] []
|
| | };
|
| | table{end, 2} = sum([table{2:end-1,2}]);
|
| | table{end, 3} = sum([table{2:end-1,3}]);
|
| |
|
| | if (isequal(displayopt, 'on'))
|
| | digits = [-1 -1 0 -1 2 4];
|
| | statdisptable(table, 'repeated measures ANOVA', 'ANOVA Table', '', digits);
|
| | end
|
| | end |