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LVQ acrosome integrity assessment of boar sperm cells Nicolai Petkov 1, Enrique Alegre 2 Michael Biehl 1, Lidia Sánchez 2 1 University of Groningen, The Netherlands 2 University of León, Spain University of Groningen University of León
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2 Contents 2. Vectorization 3. Analysis by LVQ 4. Results 5. Conclusions 1. Introduction
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4 Quality assessment of semen, e.g. by measuring concentration, motility, morphology, intracellular pattern
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5 Acrosome
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6 Acrosome reaction and fertilization
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7 Acrosome state Acrosome reacted Acrosome intact Veterinary experts: High fraction of acrosome- reacted cells means low fertilizing capacity
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8 Approach Fertilization potential estimation by Automatic image analysis for Estimation of the fraction of acrosome-intact sperm cells
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2. Vectorization
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10 Image acquisition
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11 cropping Cell head segmentation histogram stretching thresholding Opening & closing
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12 Gradient computation
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13 Gradient magnitude Acrosome intact Acrosome reacted
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14 Gradient magnitude along head boundary
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15 Gradient magnitude along head boundary Acrosome intact Acrosome reacted
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3. Learning Vector Quantization
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17 Labeled data Vectors of gradient magnitudes along the contour Class membership Labeled dataP = 152
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18 Select randomly example from D Find nearest prototype vector (winner) Update winner according to LVQ1 training moves prototype towards/away from the actual example
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4. Results
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20 Prototype profiles intact reacted m = 1 n = 1 m = 2 n = 1
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21 Errors (8-fold cross validation) m and n prototypes of class 1 and 2, resp.
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22 5. Conclusions Gradient magnitude along the cell head contour is a useful feature vector LVQ1 with 3 prototypes (2 for class 1) produces (training and test) errors of 0.165 Veterinary experts call this sufficient for semen quality control in an artificial insemination center
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