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Biomedical subjects

Whoi-Yul Kim

Publications and source records attributed to Whoi-Yul Kim.

2 recordsLinked to original sources

Fast and efficient method for computing ART.

Angular radial transform (ART), which is the region-based shape descriptor of MPEG-7, has desirable properties for representing shape information in a small number of features with no redundancy. However, in order for ART to be useful, especially in limited computing environments, the computational cost of ART must be greatly reduced. In this paper, we derive symmetric/antisymmetric properties from the basis functions of ART and present a fast and efficient method to compute the ART coefficients using these properties. The proposed method significantly reduces the number of sinusoidal operations and multiplications in computing the coefficients of ART. Moreover, the memory requirements needed to store the ART basis functions in lookup tables are only 25% of the conventional method. The experimental results are presented to show the effectiveness of the proposed method.

Algorithms↗

Defining a new annotation object for DICOM image: a practical approach.

In this article, we present a new way of creating annotation objects for DICOM images, using the redundant data channel. Various types of annotations, including types containing color information, are possible and annotation objects can overlap the original DICOM image on a screen. Annotation objects can be created easily using a digital pen. Scanned images used in an electronic patient record can be added to objects. Although there are various ways of manipulating annotation objects, such as insertion, addition and modification of annotation objects in the DICOM image, the original clinical image is not affected because a redundant data channel is used for the annotation. The proposed method is expected to be very useful to medium and small clinics that cannot afford picture archiving and communication systems, as the DICOM standard makes provision for the annotation of clinical images in various ways.

Humans↗