找回密码
 注册
关于网站域名变更的通知
查看: 309|回复: 2
打印 上一主题 下一主题

基于matlab FCM和改进的FCM脑部CT图像聚类

[复制链接]
  • TA的每日心情

    2019-11-20 15:22
  • 签到天数: 2 天

    [LV.1]初来乍到

    跳转到指定楼层
    1#
    发表于 2021-4-22 13:24 | 只看该作者 |只看大图 回帖奖励 |倒序浏览 |阅读模式

    EDA365欢迎您登录!

    您需要 登录 才可以下载或查看,没有帐号?注册

    x

    1 q* @. c/ y8 p" L4 F. \, Z4 T一、源代码) s' o0 l4 `4 ^" \. r( m
    • function varargout = CT_image_FCM(varargin)
    • % CT_IMAGE_FCM MATLAB code for CT_image_FCM.fig
    • %      CT_IMAGE_FCM, by itself, creates a new CT_IMAGE_FCM or raises the existing
    • %      singleton*.
    • %
    • %      H = CT_IMAGE_FCM returns the handle to a new CT_IMAGE_FCM or the handle to
    • %      the existing singleton*.
    • %
    • %      CT_IMAGE_FCM('CALLBACK',hObject,eventData,handles,...) calls the local
    • %      function named CALLBACK in CT_IMAGE_FCM.M with the given input arguments.
    • %
    • %      CT_IMAGE_FCM('Property','Value',...) creates a new CT_IMAGE_FCM or raises the
    • %      existing singleton*.  Starting from the left, property value pairs are
    • %      applied to the GUI before CT_image_FCM_OpeningFcn gets called.  An
    • %      unrecognized property name or invalid value makes property application
    • %      stop.  All inputs are passed to CT_image_FCM_OpeningFcn via varargin.
    • %
    • %      *See GUI Options on GUIDE's Tools menu.  Choose "GUI allows only one
    • %      instance to run (singleton)".
    • %
    • % See also: GUIDE, GUIDATA, GUIHANDLES

    • 6 z! D; V: e5 i9 l6 U6 ?3 U$ ^
    • % Edit the above text to modify the response to help CT_image_FCM

    • . Z  T- ?4 h) r) c( W
    • % Last Modified by GUIDE v2.5 17-Apr-2020 00:06:23

    • & ?0 d2 u! \9 ~) g- x- W! a
    • % Begin initialization code - DO NOT EDIT
    • gui_Singleton = 1;
    • gui_State = struct('gui_Name',       mfilename, ...
    •                    'gui_Singleton',  gui_Singleton, ...
    •                    'gui_OpeningFcn', @CT_image_FCM_OpeningFcn, ...
    •                    'gui_OutputFcn',  @CT_image_FCM_OutputFcn, ...
    •                    'gui_LayoutFcn',  [] , ...
    •                    'gui_Callback',   []);
    • if nargin && ischar(varargin{1})
    •     gui_State.gui_Callback = str2func(varargin{1});
    • end

    • ! O" \: h3 F+ ~0 d5 y! P  N
    • if nargout
    •     [varargout{1:nargout}] = gui_maiNFCn(gui_State, varargin{:});
    • else
    •     gui_mainfcn(gui_State, varargin{:});
    • end
    • % End initialization code - DO NOT EDIT

    • , V/ i. ]" ]7 v% t. m0 N
    • 6 T  C7 T2 h, L' ^, I7 k
    • % --- Executes just before CT_image_FCM is made visible.
    • function CT_image_FCM_OpeningFcn(hObject, eventdata, handles, varargin)
    • % This function has no output args, see OutputFcn.
    • % hObject    handle to figure
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • % varargin   command line arguments to CT_image_FCM (see VARARGIN)
    • 6 x: W9 M1 Q( z/ J( b1 X
    • % Choose default command line output for CT_image_FCM
    • handles.output = hObject;

    • . q- x$ f6 \( ~' r6 g5 `7 s9 y, H2 N
    • % Update handles structure
    • guidata(hObject, handles);

    • ( T; I  e3 G3 r0 j
    • % UIWAIT makes CT_image_FCM wait for user response (see UIRESUME)
    • % uiwait(handles.figure1);
    • 5 n: H( z$ s, F& a1 I

    • + d9 w+ E; {' s* _& `
    • % --- Outputs from this function are returned to the command line.
    • function varargout = CT_image_FCM_OutputFcn(hObject, eventdata, handles)
    • % varargout  cell array for returning output args (see VARARGOUT);
    • % hObject    handle to figure
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)

    • 0 J$ p" Z1 `1 I: W
    • % Get default command line output from handles structure
    • varargout{1} = handles.output;

    • 1 Y1 m$ J; g4 ^, R2 E

    • ' f- ], W+ x5 a& b
    • % --- Executes on button press in pushbutton1.
    • function pushbutton1_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton1 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I
    • [filename, pathname]= ...
    •     uigetfile({'*.*';'*.bmp';'*.tif';'*.png';'*.jpg'},'select picture');
    • str= [pathname filename];
    • I= imread(str);
    • axes(handles.axes1);
    • imshow(I);
    • title('原图');

    •   n, \2 X* }, l: k( ~
    • % --- Executes on button press in pushbutton2.
    • function pushbutton2_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton2 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)

    • $ x$ c  W/ T# q3 i

    • 7 c; p! Q. x  ~' p; h- s
    • % --- Executes on button press in pushbutton3.
    • function pushbutton3_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton3 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I I0 A
    • [I2,clusterResult] = FCM1(I, 4,[0 80 160 255],2,150,1e-5);
    • axes(handles.axes3);
    • imshow(I2)
    • I0=I2;
    • A=unique(I0);

    • ) b1 h+ D4 u) Y, d
    • 4 Y  Z" E1 \, K9 O
    • % --- Executes on button press in pushbutton4.
    • function pushbutton4_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton4 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I0 A
    • I0_2=zeros(size(I0,1),size(I0,2));
    • for i=1:size(I0,1)
    •      for j=1:size(I0,2)
    •          if I0(i,j)==A(2)
    •              I0_2(i,j)=255;
    •          else I0_2(i,j)=0;
    •          end
    •      end
    • end
    • I0_2=uint8(I0_2);
    • axes(handles.axes4);
    • imshow(I0_2);
    • 8 r+ ]3 \$ f8 i
    • , l0 F. P/ Y3 s( W8 \  d* U7 h' Z
    • % --- Executes on button press in pushbutton5.
    • function pushbutton5_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton5 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I0 A
    • I0_3=zeros(size(I0,1),size(I0,2));
    • for i=1:size(I0,1)
    •      for j=1:size(I0,2)
    •          if I0(i,j)==A(3)
    •              I0_3(i,j)=255;
    •          else I0_3(i,j)=0;
    •          end
    •      end
    • end
    • I0_3=uint8(I0_3);
    • axes(handles.axes5);
    • imshow(I0_3);
    • % E% v$ X" Q/ ?8 s8 D0 ?

    • 3 n1 }, ^" t" f! P6 e
    • % --- Executes on button press in pushbutton6.
    • function pushbutton6_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton6 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I0 A
    • I0_4=zeros(size(I0,1),size(I0,2));
    • for i=1:size(I0,1)
    •      for j=1:size(I0,2)
    •          if I0(i,j)==A(4)
    •              I0_4(i,j)=255;
    •          else I0_4(i,j)=0;
    •          end
    •      end
    • end
    • I0_4=uint8(I0_4);
    • axes(handles.axes6);
    • imshow(I0_4);/ a% v! S' s" ]/ A
                           
    5 k4 `" P% ~" y  m$ T
    ; k  H4 l+ I! X  m1 L+ _- o( g* m
    5 C+ S# ^, h4 e3 F
    • function varargout = CT_image_GFCM(varargin)
    • % CT_IMAGE_GFCM MATLAB code for CT_image_GFCM.fig
    • %      CT_IMAGE_GFCM, by itself, creates a new CT_IMAGE_GFCM or raises the existing
    • %      singleton*.
    • %
    • %      H = CT_IMAGE_GFCM returns the handle to a new CT_IMAGE_GFCM or the handle to
    • %      the existing singleton*.
    • %
    • %      CT_IMAGE_GFCM('CALLBACK',hObject,eventData,handles,...) calls the local
    • %      function named CALLBACK in CT_IMAGE_GFCM.M with the given input arguments.
    • %
    • %      CT_IMAGE_GFCM('Property','Value',...) creates a new CT_IMAGE_GFCM or raises the
    • %      existing singleton*.  Starting from the left, property value pairs are
    • %      applied to the GUI before CT_image_GFCM_OpeningFcn gets called.  An
    • %      unrecognized property name or invalid value makes property application
    • %      stop.  All inputs are passed to CT_image_GFCM_OpeningFcn via varargin.
    • %
    • %      *See GUI Options on GUIDE's Tools menu.  Choose "GUI allows only one
    • %      instance to run (singleton)".
    • %
    • % See also: GUIDE, GUIDATA, GUIHANDLES
    • / v! o- F' u% c4 r/ G# S
    • % Edit the above text to modify the response to help CT_image_GFCM

    •   `8 `* T$ k+ s" P% B7 a1 r
    • % Last Modified by GUIDE v2.5 13-Apr-2020 21:47:11

    • - i* X( Y6 Z( u6 l& Y6 @
    • % Begin initialization code - DO NOT EDIT
    • gui_Singleton = 1;
    • gui_State = struct('gui_Name',       mfilename, ...
    •                    'gui_Singleton',  gui_Singleton, ...
    •                    'gui_OpeningFcn', @CT_image_GFCM_OpeningFcn, ...
    •                    'gui_OutputFcn',  @CT_image_GFCM_OutputFcn, ...
    •                    'gui_LayoutFcn',  [] , ...
    •                    'gui_Callback',   []);
    • if nargin && ischar(varargin{1})
    •     gui_State.gui_Callback = str2func(varargin{1});
    • end

    • & r) T  t1 }, c/ q, g
    • if nargout
    •     [varargout{1:nargout}] = gui_mainfcn(gui_State, varargin{:});
    • else
    •     gui_mainfcn(gui_State, varargin{:});
    • end
    • % End initialization code - DO NOT EDIT
    • ! R. @7 q& \$ t5 t& u$ \) @

    • ! P& w0 x) t, L$ S
    • % --- Executes just before CT_image_GFCM is made visible.
    • function CT_image_GFCM_OpeningFcn(hObject, eventdata, handles, varargin)
    • % This function has no output args, see OutputFcn.
    • % hObject    handle to figure
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • % varargin   command line arguments to CT_image_GFCM (see VARARGIN)

    • " {0 f. p' D, P# a$ l0 `# O1 W' E
    • % Choose default command line output for CT_image_GFCM
    • handles.output = hObject;

    • 4 \% g& A8 X# g) {
    • % Update handles structure
    • guidata(hObject, handles);
    • ( f! r+ u( d  j- l5 Z0 Q( Y% C
    • % UIWAIT makes CT_image_GFCM wait for user response (see UIRESUME)
    • % uiwait(handles.figure1);
    • 8 q, o6 ~) S3 P6 k4 a5 \
    • " I$ ^8 C& t' j) s) \, y! L
    • % --- Outputs from this function are returned to the command line.
    • function varargout = CT_image_GFCM_OutputFcn(hObject, eventdata, handles)
    • % varargout  cell array for returning output args (see VARARGOUT);
    • % hObject    handle to figure
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • ( x  J! {; K. h+ A4 D
    • % Get default command line output from handles structure
    • varargout{1} = handles.output;

    • 7 H" Q& M. \; K/ A: `, U9 O
    • , F6 K2 A% C0 g' v: G
    • % --- Executes on button press in pushbutton1.
    • function pushbutton1_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton1 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I
    • [filename, pathname]= ...
    •     uigetfile({'*.*';'*.bmp';'*.tif';'*.png';'*.jpg'},'select picture');
    • str= [pathname filename];
    • I= imread(str);
    • axes(handles.axes1);
    • imshow(I);
    • title('原图');

    •   X6 n. f1 t3 q) d! l0 J$ @; l
    • % --- Executes on button press in pushbutton2.
    • function pushbutton2_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton2 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I
    • I=medfilt2(I,[3,3]);
    • axes(handles.axes2);
    • imshow(I)

    • 9 l1 \- n0 R3 V5 f- I/ u4 I4 I6 b. A
    • , ^, J$ D! E9 J
    • % --- Executes on button press in pushbutton3.
    • function pushbutton3_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton3 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I r c U
    • [r,c] = size(I);
    • data = zeros(r*c,1);
    • for i = 1:r
    •     for j = 1:c
    •         data((i-1)*c+j,1) = double(I(i,j));
    •     end
    • end
    • [center, U, obj_fcn] = GFCM(data,4,0.9);

    • 2 w6 O3 i8 O  j$ F) z
    • for i = 1 : r
    •     for j = 1 : c
    •         temp = (double(I(i, j)) - center) .^ 2;
    •         [fmin pos] = min(temp);
    •         I(i, j) = uint8(pos * 255 / 4);
    •     end
    • end
    • axes(handles.axes3);
    • imshow(I)
    • 1 n7 c; e* W. Y) G( X4 D; |0 _
    • % --- Executes on button press in pushbutton4.
    • function pushbutton4_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton4 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I r c U
    • I_seg2 = I*0;
    • for i = 1:r
    •     for j = 1:c
    •         if U(1,(i-1)*c+j)<U(2,(i-1)*c+j)
    •             I_seg2(i,j) =0 ;
    •         else
    •             I_seg2(i,j) =255;
    •         end
    •     end
    • end
    • axes(handles.axes4);
    • imshow(I_seg2)
    • & K8 S9 i, c8 j7 _# H
    • % --- Executes on button press in pushbutton5.
    • function pushbutton5_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton5 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I r c U
    • I_seg3 = I*0;
    • for i = 1:r
    •     for j = 1:c
    •         if U(1,(i-1)*c+j)<U(3,(i-1)*c+j)
    •             I_seg3(i,j) =0 ;
    •         else
    •             I_seg3(i,j) =255;
    •         end
    •     end
    • end
    • axes(handles.axes5);
    • imshow(I_seg3)
    • & J! H3 z: x' @
    • % --- Executes on button press in pushbutton6.
    • function pushbutton6_Callback(hObject, eventdata, handles)
    • % hObject    handle to pushbutton6 (see GCBO)
    • % eventdata  reserved - to be defined in a future version of MATLAB
    • % handles    structure with handles and user data (see GUIDATA)
    • global I r c U
    • I_seg4 = I*0;
    • for i = 1:r
    •     for j = 1:c
    •         if U(1,(i-1)*c+j)<U(4,(i-1)*c+j)
    •             I_seg4(i,j) =0 ;
    •         else
    •             I_seg4(i,j) =255;
    •         end
    •     end
    • end
    • axes(handles.axes6);
    • imshow(I_seg4)
      4 Z5 H2 m2 ^' n8 L% g; q
                         
    ! N2 U+ T. t0 E. j& V) _3 x5 Q4 j4 K* J1 \6 C4 e+ p
    * D% E2 r9 ?& E8 |9 z4 Z( p
    二、运行结果/ X. o/ a  x* T- o7 z' q

    " `5 l  r+ `+ f 7 \& J5 y9 Z9 z7 G. L. k
    $ Y/ d! ]& `& V; V% E$ [, f

    3 A& |, k2 C0 r2 u4 B( [

    该用户从未签到

    2#
    发表于 2021-4-22 14:50 | 只看该作者
    基于matlab FCM和改进的FCM脑部CT图像聚类

    该用户从未签到

    3#
    发表于 2021-4-25 17:05 | 只看该作者
    收藏到源代码库
    ( E. }+ r6 W+ ~: d: Y
    您需要登录后才可以回帖 登录 | 注册

    本版积分规则

    关闭

    推荐内容上一条 /1 下一条

    EDA365公众号

    关于我们|手机版|EDA365电子论坛网 ( 粤ICP备18020198号-1 )

    GMT+8, 2025-11-23 20:26 , Processed in 0.156250 second(s), 26 queries , Gzip On.

    深圳市墨知创新科技有限公司

    地址:深圳市南山区科技生态园2栋A座805 电话:19926409050

    快速回复 返回顶部 返回列表