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Ȩ Ȩ > ¿¬±¸¹®Çå > ¿µ¹® ³í¹®Áö > JICCE (Çѱ¹Á¤º¸Åë½ÅÇÐȸ)

JICCE (Çѱ¹Á¤º¸Åë½ÅÇÐȸ)

Current Result Document : 8 / 12 ÀÌÀü°Ç ÀÌÀü°Ç   ´ÙÀ½°Ç ´ÙÀ½°Ç

ÇѱÛÁ¦¸ñ(Korean Title) Information Processing in Primate Retinal Ganglion
¿µ¹®Á¦¸ñ(English Title) Information Processing in Primate Retinal Ganglion
ÀúÀÚ(Author) Sung-Kwan Je   Jae-Hyun Cho   Gwang-Baek Kim  
¿ø¹®¼ö·Ïó(Citation) VOL 02 NO. 02 PP. 0132 ~ 0137 (2004. 06)
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(Korean Abstract)
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(English Abstract)
Most of the current computer vision theories are based on hypotheses that are difficult to apply to the real world, and they simply imitate a coarse form of the human visual system. As a result, they have not been showing satisfying results. In the human visual system, there is a mechanism that processes information due to memory degradation with time and limited storage space. Starting from research on the human visual system, this study analyzes a mechanism that processes input information when information is transferred from the retina to ganglion cells. In this study, a model for the characteristics of ganglion cells in the retina is proposed after considering the structure of the retina and the efficiency of storage space. The MNIST database of handwritten letters is used as data for this research, and ART2 and SOM as recognizers. The results of this study show that the proposed recognition model is not much different from the general recognition model in terms of recognition rate, but the efficiency of storage space can be improved by constructing a mechanism that processes input information.
Å°¿öµå(Keyword) Artificial vision   Compression   Image recognition   artificial neural network   Retinal Ganglion  
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