• 제목/요약/키워드: The 3D image

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회귀 매니폴드 3-D PCA 기반 새로운 이미지 분석 방법 (A New Image Analysis Method based on Regression Manifold 3-D PCA)

  • 이경민;인치호
    • 한국인터넷방송통신학회논문지
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    • 제22권2호
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    • pp.103-108
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    • 2022
  • 본 논문에서는 회귀 매니폴드 3-D PCA 기반 새로운 이미지 분석 방법을 제안한다. 제안된 방법은 대용량 이미지 데이터 입력 시 효율적인 차원 축소를 위해 개선된 매니폴드 3-D PCA와 PCA의 비선형 확장이 가능한 오토인코더를 기반으로 설계된 구조로 회귀분석 알고리즘으로 구성된 새로운 이미지 분석 방법이다. 오토인코더의 구성으로는 이미지 픽셀 값을 3차원 회전을 통한 최전의 초평면을 도출하는 회귀 매니폴드 3-D PCA와 딥러닝 구조와 유사한 Bayesian Rule 구조를 적용한다. 성능 검증을 위해 실험을 수행한다. 미세먼지 이미지를 활용하여 이미지를 향상되며, 이를 분류 모델을 통한 정확도 성능 평가를 수행한다. 그 결과 딥러닝 성능에 유효함을 확인할 수 있다.

초음파 영상에서 LoG 연산자를 이용한 진단 객체의 3차원 분할 (3D Segmentation of a Diagnostic Object in Ultrasound Images Using LoG Operator)

  • 정말남;곽종인;김상현;김남철
    • 대한의용생체공학회:의공학회지
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    • 제24권4호
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    • pp.247-257
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    • 2003
  • This paper proposes a three-dimensional (3D) segmentation algorithm for extracting a diagnostic object from ultrasound images by using a LoG operator In the proposed algorithm, 2D cutting planes are first obtained by the equiangular revolution of a cross sectional Plane on a reference axis for a 3D volume data. In each 2D ultrasound image. a region of interest (ROI) box that is included tightly in a diagnostic object of interest is set. Inside the ROI box, a LoG operator, where the value of $\sigma$ is adaptively selected by the distance between reference points and the variance of the 2D image, extracts edges in the 2D image. In Post processing. regions of the edge image are found out by region filling, small regions in the region filled image are removed. and the contour image of the object is obtained by morphological opening finally. a 3D volume of the diagnostic object is rendered from the set of contour images obtained by post-processing. Experimental results for a tumor and gall bladder volume data show that the proposed method yields on average two times reduction in error rate over Krivanek's method when the results obtained manually are used as a reference data.

패치 영상의 효율적 압축을 위한 전처리 방법 (Preprocessing Method for Efficient Compression of Patch-based Image)

  • 이신욱;이선영;장은영;허남호;장의선
    • 방송공학회논문지
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    • 제13권1호
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    • pp.109-118
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    • 2008
  • 텍스처 영상 압축은 JPEG과 같은 영상 압축 표준을 사용한다. 일반 텍스처 영상에는 JPEG으로도 좋은 압축 성능을 내지만 패치 텍스처 영상은 이러한 영상 압축 기술로 압축했을 때 좋은 압축 성능을 보이지 못하였다. 이를 보완하고 압축 성능을 높이기 위해 기존의 패치 텍스처 영상에 주변 화소간에 색차를 줄이기 위한 전처리 기술을 소개하고, 제안된 기술과 JPEG 압축을 순서대로 적용하였을 때 압축 성능이 23%에서 45%까지 향상됨을 보이고자 한다.

3차원 가중최소제곱을 이용한 SFF에서의 초점 측도 개선 (Enhancing Focus Measurements in Shape From Focus Through 3D Weighted Least Square)

  • 무하마드 타릭 마흐무드;우스만 알리;최영규
    • 반도체디스플레이기술학회지
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    • 제18권3호
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    • pp.66-71
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    • 2019
  • In shape from focus (SFF) methods, the quality of image focus volume plays a vital role in the quality of 3D shape reconstruction. Traditionally, a linear 2D filter is applied to each slice of the image focus volume to rectify the noisy focus measurements. However, this approach is problematic because it also modifies the accurate focus measurements that should ideally remain intact. Therefore, in this paper, we propose to enhance the focus volume adaptively by applying 3-dimensional weighted least squares (3D-WLS) based regularization. We estimate regularization weights from the guidance volume extracted from the image sequences. To solve 3D-WLS optimization problem efficiently, we apply a technique to solve a series of 1D linear sub-problems. Experiments conducted on synthetic and real image sequences demonstrate that the proposed method effectively enhances the image focus volume, ultimately improving the quality of reconstructed shape.

단일 정면 얼굴 영상을 이용한 게임 사용자의 3차원 얼굴 생성 방법 (A 3D Face Generation Method using Single Frontal Face Image for Game Users)

  • 정민이;이성주;박강령;김재희
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2008년도 하계종합학술대회
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    • pp.1013-1014
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    • 2008
  • In this paper, we propose a new method of generating 3D face by using single frontal face image and 3D generic face model. By using active appearance model (AAM), the control points among facial feature points were localized in the 2D input face image. Then, the transform parameters of 3D generic face model were found to minimize the error between the 2D control points and the corresponding 2D points projected from 3D facial model. Finally, by using the obtained model parameters, 3D face was generated. We applied this 3D face to 3D game framework and found that the proposed method could make a realistic 3D face of game user.

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모바일 카메라를 이용한 경량 3D 모델링 (Light 3D Modeling with mobile equipment)

  • 주승환;서희석;한성휴
    • 디지털산업정보학회논문지
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    • 제12권4호
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    • pp.107-114
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    • 2016
  • Recently, 3D related technology has become a hot topic for IT. 3D technologies such as 3DTV, Kinect and 3D printers are becoming more and more popular. According to the flow of the times, the goal of this study is that the general public is exposed to 3D technology easily. we have developed a web-based application program that enables 3D modeling of facial front and side photographs using a mobile phone. In order to realize 3D modeling, two photographs (front and side) are photographed with a mobile camera, and ASM (Active Shape Model) and skin binarization technique are used to extract facial height such as nose from facial and side photographs. Three-dimensional coordinates are generated using the face extracted from the front photograph and the face height obtained from the side photograph. Using the 3-D coordinates generated for the standard face model modeled with the standard face as a control point, the face becomes the face of the subject when the RBF (Radial Basis Function) interpolation method is used. Also, in order to cover the face with the modified face model, the control point found in the front photograph is mapped to the texture map coordinate to generate the texture image. Finally, the deformed face model is covered with a texture image, and the 3D modeled image is displayed to the user.

다량의 내장 사진에 의한 화상 구성 (Composite Endoscope Image Construction based on Massive Inner Intestine Photos)

  • 김은정;유관희;유영갑
    • 전자공학회논문지SC
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    • 제44권1호
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    • pp.108-114
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    • 2007
  • 본 논문은 캡슐 내시경 검사시 진단시간을 줄이기 위해 내시경에서 촬영된 다량의 사진들을 한 장의 이미지로 재구성하는 방법을 제안하였다. 모델링을 단순화하기 위해, 내장을 연속적인 3-D 원통들의 합으로 가정하였다. 제안된 방법은 캡슐 내시경으로부터 촬영된 다량의 사진들을 이용하여 한 장의 2-D 평면 이미지로 재구성한다. 재구성된 이미지를 이용하여 3-D 원통형 모델을 구현하였다. 제안된 이미지 복원 방법은 그래픽 라이브러리인 OpenGL을 사용하여 시뮬레이션 하였다. 재구성된 이미지는 2-D 평면에 전체 내장이 펼쳐진 것과 같은 영상으로 의사들이 넒은 부위의 내장을 한 번에 검사할 수 있어서 빠르게 발병 위치를 확인할 수 있다.

이미지 분할(image segmentation) 관련 연구 동향 파악을 위한 과학계량학 기반 연구개발지형도 분석 (Scientometrics-based R&D Topography Analysis to Identify Research Trends Related to Image Segmentation)

  • 김영찬;진병삼;배영철
    • 한국산업융합학회 논문집
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    • 제27권3호
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    • pp.563-572
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    • 2024
  • Image processing and computer vision technologies are becoming increasingly important in a variety of application fields that require techniques and tools for sophisticated image analysis. In particular, image segmentation is a technology that plays an important role in image analysis. In this study, in order to identify recent research trends on image segmentation techniques, we used the Web of Science(WoS) database to analyze the R&D topography based on the network structure of the author's keyword co-occurrence matrix. As a result, from 2015 to 2023, as a result of the analysis of the R&D map of research articles on image segmentation, R&D in this field is largely focused on four areas of research and development: (1) researches on collecting and preprocessing image data to build higher-performance image segmentation models, (2) the researches on image segmentation using statistics-based models or machine learning algorithms, (3) the researches on image segmentation for medical image analysis, and (4) deep learning-based image segmentation-related R&D. The scientometrics-based analysis performed in this study can not only map the trajectory of R&D related to image segmentation, but can also serve as a marker for future exploration in this dynamic field.

자기 일치성을 이용한 다중 영상 스테레오 기법 (Multi-Image Stereo Technique Using Self-Consistency)

  • 김민석;우동민
    • 대한전기학회논문지:시스템및제어부문D
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    • 제50권5호
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    • pp.226-232
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    • 2001
  • The ability to efficiently and robustly recover accurate 3D terrain models from sets of stereoscopic images is important to many civilian and military applications. To develop an effective and practical terrain modeling system, we propose a new multi-image stereo method which detect unreliable elevations in DEM(Digital Elevation Map), and fuse several DEMs from multiple sources into an accurate and reliable results. This paper focuses on two key factors for generating robust 3D terrain models: the ability to detect unreliable elevation estimates and the ability to fuse the reliable elevations into a single optimal terrain model. We apply the self-consistency methodology to reconstruct accurate DEM from multi-image and show the method is more effective than the conventional stereo image 3D reconstruction method. Using photo-realistic simulator, four synthetic image are generated from ground truth DEM and orthoimage to evaluate the accuracy of the proposed method quantitatively.

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3D CT Image Processing for 3D Printed Auricular Reconstruction of Unilateral Microtia Patient

  • Roh, Tae Suk;Yun, In Sik
    • Journal of International Society for Simulation Surgery
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    • 제1권2호
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    • pp.80-82
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    • 2014
  • Purpose Microtia is congenital anomaly of external ear and the reconstruction method for the external ear of microtia patient was based on autogenous costal cartilage framework. The application of 3D printing technique in medical science has made more possibility of human tissue restoration, and we tried to apply this technique in auricular reconstruction field. Materials and Methods As for unilateral microtia patient, the contralateral side ear is normal and reconstructive surgeon tried to mimic it for reconstruction of affected ear. So, we obtained facial CT scan of microtia patient and made mirror image of normal side ear. Moreover, to make the 3D scaffold based on the mirror image of normal ear and to apply this scaffold for the auricular reconstruction surgery, we included auriculocephalic sulcus and anterior fixation part. Results We could successfully obtain mirror image of normal ear, auriculocephalic sulcus and anterior fixation part for 3D scaffold printing. Conclusions Using this CT image processing and 3D printing technique, we will be able to make the scaffold for auricular reconstruction of unilateral microtia patient, and perform auricular reconstruction in near future.