8467d24e7f212c920b700937bf82050cafcdea7e
[master-thesis.git] / Parasitemia / Parasitemia / Classifier.fs
1 module Classifier
2
3 open System
4 open System.Collections.Generic
5 open System.Drawing
6
7 open Emgu.CV
8 open Emgu.CV.Structure
9
10 open Types
11 open Utils
12
13
14 type private EllipseFlaggedKd (e: Ellipse) =
15 inherit Ellipse (e.Cx, e.Cy, e.A, e.B, e.Alpha)
16
17 member val Removed = false with get, set
18
19 interface KdTree.I2DCoords with
20 member this.X = this.Cx
21 member this.Y = this.Cy
22
23
24 let findCells (ellipses: Ellipse list) (parasites: ParasitesMarker.Result) (fg: Image<Gray, byte>) (config: Config.Config) : Cell list =
25 if ellipses.IsEmpty
26 then
27 []
28 else
29 let infection = parasites.infection.Copy() // To avoid to modify the parameter.
30
31 // This is the minimum window size to check if other ellipses touch 'e'.
32 let searchRegion (e: Ellipse) = { KdTree.minX = e.Cx - (e.A + config.maxRBCSize) * config.scale
33 KdTree.maxX = e.Cx + (e.A + config.maxRBCSize) * config.scale
34 KdTree.minY = e.Cy - (e.A + config.maxRBCSize) * config.scale
35 KdTree.maxY = e.Cy + (e.A + config.maxRBCSize) * config.scale }
36
37 // The minimum window to contain a given ellipse.
38 let ellipseWindow (e: Ellipse) =
39 let cx, cy = roundInt e.Cx, roundInt e.Cy
40 let a = int (e.A + 0.5)
41 cx - a, cy - a, cx + a, cy + a
42
43 // 1) Remove ellipses touching the edges.
44 let w = float fg.Width
45 let h = float fg.Height
46 let ellipsesInside = ellipses |> List.map (fun e -> EllipseFlaggedKd (e, Removed = e.isOutside w h))
47
48 // 2) Associate touching ellipses with each ellipses.
49 let tree = KdTree.Tree.BuildTree ellipsesInside
50 let neighbors (e: Ellipse) : (EllipseFlaggedKd * PointD * PointD) list =
51 tree.Search (searchRegion e)
52 // We only keep the ellipses touching 'e'.
53 |> List.choose (fun otherE ->
54 match EEOver.EEOverlapArea e otherE with
55 | Some (area, px, py) when area > 0.0 && px.Length >= 2 && py.Length >= 2 ->
56 Some (otherE, PointD(px.[0], py.[0]), PointD(px.[1], py.[1]))
57 | _ ->
58 None )
59
60 let ellipsesWithNeigbors = ellipsesInside |> List.choose (fun e -> if e.Removed then None else Some (e, neighbors e))
61
62 // 3) Remove ellipses with a lower percentage of foreground.
63 for e, neighbors in ellipsesWithNeigbors do
64 let minX, minY, maxX, maxY = ellipseWindow e
65
66 let mutable totalElement = 0
67 let mutable fgElement = 0
68 for y in (if minY < 0 then 0 else minY) .. (if maxY >= fg.Height then fg.Height - 1 else maxY) do
69 for x in (if minX < 0 then 0 else minX) .. (if maxX >= fg.Width then fg.Width - 1 else maxX) do
70 let yf, xf = float y, float x
71 if e.Contains xf yf && neighbors |> List.forall (fun (otherE, _, _) -> not <| otherE.Contains xf yf)
72 then
73 totalElement <- totalElement + 1
74 if fg.Data.[y, x, 0] > 0uy
75 then
76 fgElement <- fgElement + 1
77
78 if (float fgElement) / (float totalElement) < config.percentageOfFgValidCell
79 then
80 e.Removed <- true
81
82 // 4) Remove ellipses with little area.
83 for e, neighbors in ellipsesWithNeigbors do
84 if not e.Removed
85 then
86 let minX, minY, maxX, maxY = ellipseWindow e
87
88 let mutable area = 0
89 for y in (if minY < 0 then 0 else minY) .. (if maxY >= fg.Height then fg.Height - 1 else maxY) do
90 for x in (if minX < 0 then 0 else minX) .. (if maxX >= fg.Width then fg.Width - 1 else maxX) do
91 let yf, xf = float y, float x
92 if fg.Data.[y, x, 0] > 0uy &&
93 e.Contains xf yf &&
94 neighbors |> List.forall (fun (otherE, _, _) -> otherE.Removed || not <| otherE.Contains xf yf)
95 then
96 area <- area + 1
97
98 if area < config.minimumCellArea
99 then
100 e.Removed <- true
101
102 // 5) Define pixels associated to each ellipse and create the cells.
103
104 // Return 'true' if the point 'p' is owned by e.
105 // The lines represents all intersections with other ellipses.
106 let pixelOwnedByE (p: PointD) (e: Ellipse) (lines: Line list) =
107 e.Contains p.X p.Y &&
108 seq {
109 let c = PointD(e.Cx, e.Cy)
110 for d1 in lines do
111 let d2 = Utils.lineFromTwoPoints c p
112 let p' = Utils.pointFromTwoLines d1 d2
113 yield sign (c.X - p.X) <> sign (c.X - p'.X) || Utils.squaredDistanceTwoPoints c p' > Utils.squaredDistanceTwoPoints c p // 'false' -> the point is owned by another ellipse.
114 } |> Seq.forall id
115
116 ellipsesWithNeigbors
117 |> List.choose (fun (e, neighbors) ->
118 if e.Removed
119 then
120 None
121 else
122 let minX, minY, maxX, maxY = ellipseWindow e
123
124 let infectedPixels = List<Point>()
125 let mutable stainPixels = 0
126 let mutable darkStainPixels = 0
127 let mutable nbElement = 0
128
129 let mutable stain_x = 0.0
130 let mutable stain_x2 = 0.0
131 let mutable stain_y = 0.0
132 let mutable stain_y2 = 0.0
133
134 let mutable sumCoords_y = 0
135 let mutable sumCoords_x = 0
136
137 let elements = new Matrix<byte>(maxY - minY + 1, maxX - minX + 1)
138 for y in minY .. maxY do
139 for x in minX .. maxX do
140 let p = PointD(float x, float y)
141 if pixelOwnedByE p e (neighbors |> List.choose (fun (otherE, p1, p2) -> if otherE.Removed then None else Some (Utils.lineFromTwoPoints p1 p2))) &&
142 fg.Data.[y, x, 0] > 0uy
143 then
144 elements.[y-minY, x-minX] <- 1uy
145 nbElement <- nbElement + 1
146 sumCoords_y <- sumCoords_y + y
147 sumCoords_x <- sumCoords_x + x
148
149 if infection.Data.[y, x, 0] > 0uy
150 then
151 infectedPixels.Add(Point(x, y))
152
153 if parasites.stain.Data.[y, x, 0] > 0uy
154 then
155 stainPixels <- stainPixels + 1
156 stain_x <- stain_x + (float x)
157 stain_x2 <- stain_x2 + (float x) ** 2.0
158 stain_y <- stain_y + (float y)
159 stain_y2 <- stain_y2 + (float y) ** 2.0
160
161 if parasites.darkStain.Data.[y, x, 0] > 0uy
162 then
163 darkStainPixels <- darkStainPixels + 1
164
165 let cellClass =
166 if float darkStainPixels > config.MaxDarkStainRatio * (float nbElement) (* ||
167 sqrt (((float sumCoords_x) / (float nbElement) - e.Cx) ** 2.0 + ((float sumCoords_y) / (float nbElement) - e.Cy) ** 2.0) > e.A * config.maxOffcenter *)
168 then
169 Peculiar
170 elif infectedPixels.Count > config.infectionPixelsRequired
171 then
172 let infectionToRemove = ImgTools.connectedComponents parasites.stain infectedPixels
173 for p in infectionToRemove do
174 infection.Data.[p.Y, p.X, 0] <- 0uy
175 InfectedRBC
176 else
177 HealthyRBC
178
179 Some { cellClass = cellClass
180 center = Point(roundInt e.Cx, roundInt e.Cy)
181 elements = elements })