• 제목/요약/키워드: volume.

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혀의 재건을 위한 부피 및 표면적의 측정 (Estimation of Volume and Surface Area for Reconstruction of Tongue)

  • 박하나로;김희진;정우진;안순현
    • 대한두경부종양학회지
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    • 제27권1호
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    • pp.27-31
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    • 2011
  • Purpose : Anterolateral thigh and radial forearm flap is the most important fasciocutaneous flap widely used for reconstruction of tongue. One important purpose of flap is replacing the volume of tongue but still there is no data about the surface area and volume to be reconstructed after glossectomy. In this paper, surface area and volume is estimated from the 3-dimensionally reconstructed MRI images to see which flap is more ideal and to give the reference value for reconstruction. Materials and Methods : With coronal MRI image, tongue including only the intrinsic muscle is delineated in every section and reconstructed 3-dimensionally and calculated the volume and surface area to be reconstructed according to the degree of glossectomy. This volume and surface area was compared with the volume of anterolateral thigh and radial forearm flap. Results : The volume and surface area to be reconstructed in hemiglossectomy was $39.0{\pm}4.0cm^3$ and $31.8{\pm}2.7cm^2$ respectively. The average thickness of anterolateral thigh flap is $9.4{\pm}2.8mm$ and that of radial forearm is $3.8{\pm}1.0mm$. Comparing the curve of tongue surface area and volume with the volume of flap, the anterolateral thigh flap has more ideal volume to replace the defect. Conclusions : The surface area and volume requested for reconstruction could be suggested and the anterolateral thigh flap has more ideal volume for reconstruction of glossectomy defect.

쉬어-왑 분해를 이용한 블록 기반의 볼륨 렌더링 기법 (A Block-Based Volume Rendering Algorithm Using Shear-Warp factorization)

  • 권성민;김진국;박현욱;나종범
    • 대한의용생체공학회:의공학회지
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    • 제21권4호
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    • pp.433-439
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    • 2000
  • 볼륨 렌더링은 기하학적인 기본 도형으로 모델링하지 않고, 3차원 데이터를 직접 가시화하는 방법이다. 이런 볼륨 렌더링의 특성으로 말미암아 3차원 영상을 도시할 때에, 복잡한 물체의 경우에도 물체의 표면을 상세하게 표현하는데 유리하여 의료 영상을 가시화하는 쪽으로의 적용이 많이 이루어져 왔다. 일반적으로 볼륨 데이터의 크기가 커서 실시간으로 처리하기 쉽지 않기 때문에, 근래에는 이 렌더링 시간을 줄이기 위해서 많은 여러 가지 렌더링 알고리즘이 제안되었다. 본 논문에서는 부호화 되어 있지 않은 볼륨 데이터를 빠르게 렌더링 하기 위해서, 쉬어-왑 분해를 이용하는 블록 기반의 볼륨 렌더링 기법을 제안한다. 이 방법에서는 블록 기반의 데이터와 함께 장기의 영역 분할 데이터를 동시에 이용하여 볼륨 렌더링을 수행하므로써, 부호화되어 있지 않은 데이터에 대해 렌더링 속도를 증가시킨다. 본 논문에서는 3차원 X-ray CT 흉부 영상과 MR 3차원 두부 영상을 렌더링 함으로써 제안한 방법의 성능을 검증하였다.

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MR-based Partial Volume Correction for $^{18}$F-PET Data Using Hoffman Brain Phantom

  • Kim, D. H.;Kim, H. J.;H. K. Jeong;H. K. Son;W. S. Kang;H. Jung;S. I. Hong;M. Yun;Lee, J. D.
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2002년도 Proceedings
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    • pp.322-323
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    • 2002
  • Partial volume averaging effect of PET data influences on the accuracy of quantitative measurements of regional brain metabolism because spatial resolution of PET is limited. The purpose of this study was to evaluate the accuracy of partial volume correction carried out on $^{18}$ F-PET images using Hoffman brain phantom. $^{18}$ F-PET Hoffman phantom images were co-registered to MR slices of the same phantom. All the MR slices of the phantom were then segmented to be binary images. Each of these binary images was convolved in 2 dimensions with the spatial resolution of the PET. The original PET images were then divided by the smoothed binary images in slice-by-slice, voxel-by-voxel basis resulting in larger PET image volume in size. This enlarged partial volume corrected PET image volume was multiplied by original binary image volume to exclude extracortical region. The evaluation of partial volume corrected PET image volume was performed by region of interests (ROI) analysis applying ROIs, which were drawn on cortical regions of the original MR image slices, to corrected and original PET image volume. From the ROI analysis, range of regional mean values increases of partial volume corrected PET images was 4 to 14%, and average increase for all the ROIs was about 10% in this phantom study. Hoffman brain phantom study was useful for the objective evaluation of the partial volume correction method. This MR-based correction method would be applicable to patients in the. quantitative analysis of FDG-PET studies.

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Prostate Volume Measurement by TRUS Using Heights Obtained by Transaxial and Midsagittal Scanning: Comparison with Specimen Volume Following Radical Prostatectomy

  • Sung Bin Park;Jae Kyun Kim;Sung Hoon Choi;Han Na Noh;Eun Kyung Ji;Kyoung Sik Cho
    • Korean Journal of Radiology
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    • 제1권2호
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    • pp.110-113
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    • 2000
  • Objective: The purpose of this study was to determine, when measuring prostate volume by TRUS, whether height is more accurately determined by transaxial or midsagittal scanning. Materials and Methods: Sixteen patients who between March 1995 and March 1998 underwent both preoperative TRUS and radical prostatectomy for prostate cancer were included in this study. Using prolate ellipse volume calculation (height × length × width × 𝜋/6), TRUS prostate volume was determined, and was compared with the measured volume of the specimen. Results: Prostate volume measured by TRUS, regardless of whether height was determined transaxially or midsagittally, correlated closely with real specimen volume. When height was measured in one of these planes, a paired t test revealed no significant difference between TRUS prostate volume and real specimen volume (p = .411 and p = .740, respectively), nor were there significant differences between the findings of transaxial and midsagittal scanning (p = .570). A paired sample test, however, indicated that TRUS prostate volumes determined transaxially showed a higher correlation coefficient (0.833) and a lower standard deviation (9.04) than those determined midsagittally (0.714 and 11.48, respectively). Conclusion: Prostate volume measured by TRUS closely correlates with real prostate volume. Furthermore, we suggest that when measuring prostate volume in this way, height is more accurately determined by transaxial than by midsagittal scanning.

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TiMn2계 수소저장합금의 수소화에 따른 부피팽창 (Volume Expansion of TiMn2-type Hydrogen Storage Alloy with Hydrogenation)

  • 박충년
    • 한국수소및신에너지학회논문집
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    • 제28권5호
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    • pp.459-464
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    • 2017
  • The volume expansions of $Ti_{0.95}Zr_{0.05}V_{0.4}Mn_{1.45}Fe_{0.1}Cr_{0.05}$ alloy during hydrogenation with various conditions have been investigated. The theoretical volume expansion measured with XRD for this alloy with hydrogenation was 21%. The apparent volume expansion of this alloy ingot with hydrogenation was composed of two effects. One is a hydrogenation and the other is a pulverization. The apparent volume of free alloy powder was 1.8 times greater than that of an ingot, implying the pulverization effect on the apparent volume expansion is 80%. The apparent volume expansion of the alloy ingot with hydrogenation under a unconstrained condition was about 80 (${\pm}15$)%, much smaller than that of free alloy powder which expected as 118%. In addition, The apparent volume expansion of the alloy ingot with hydrogenation under a constrained condition(Al container) was about 50%, much smaller than that of the unconsrained. This reduced apparent volume expansion of the alloy ingot could be attributed to an arrangement of alloy powder keeping its original shape of the ingot even after hydrogenation.

Implementation of Audio Equalization in Video-on-Demand Broadcast Content

  • Kwon, Myung-Kyu
    • 한국컴퓨터정보학회논문지
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    • 제22권10호
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    • pp.63-71
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    • 2017
  • In this paper, we develop the system for audio volume equalization of video on demand(VoD) content and propose the solution for it. In recent years, there has been a steady increase in the number of VoD users in addition to linear channels. However, viewers ought to sit in an uncomfortable way, adjusting the volume intermittently while they are broadcasted. Sudden changes of volume occur between the broadcasting channels, the programs from the co-channel, or the linear channels and the VoDs. Especially, upsurged dissatisfaction from the televiewers has been found due to the unequalized volume when shifting between the linear channel and the VoD. In order to solve this problem, multilateral efforts were put forth, such as a system for keeping the volume at a certain level in digital broadcasting program has been legislated domestically. It leads success in equalizing linear channel volume. On contrary, too little notice has been taken for distorted volume problem of video on demand(VoD) content. In this paper, we developed and applied the volume equalization system into VoD content to achieve uniformization, a similar condition with linear channel(-24LKFS). This suggestion helped uneven current of volume which was in the stage -16 ~ -20LKFS to stable condition by lowering into the stage of -24LKFS. It also brought 20% increase in perspective of volume quality satisfaction level.

Volume Rendering using Grid Computing for Large-Scale Volume Data

  • Nishihashi, Kunihiko;Higaki, Toru;Okabe, Kenji;Raytchev, Bisser;Tamaki, Toru;Kaneda, Kazufumi
    • International Journal of CAD/CAM
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    • 제9권1호
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    • pp.111-120
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    • 2010
  • In this paper, we propose a volume rendering method using grid computing for large-scale volume data. Grid computing is attractive because medical institutions and research facilities often have a large number of idle computers. A large-scale volume data is divided into sub-volumes and the sub-volumes are rendered using grid computing. When using grid computing, different computers rarely have the same processor speeds. Thus the return order of results rarely matches the sending order. However order is vital when combining results to create a final image. Job-Scheduling is important in grid computing for volume rendering, so we use an obstacle-flag which changes priorities dynamically to manage sub-volume results. Obstacle-Flags manage visibility of each sub-volume when line of sight from the view point is obscured by other subvolumes. The proposed Dynamic Job-Scheduling based on visibility substantially increases efficiency. Our Dynamic Job-Scheduling method was implemented on our university's campus grid and we conducted comparative experiments, which showed that the proposed method provides significant improvements in efficiency for large-scale volume rendering.

활성탄소섬유의 미세기공 특성화 (Characterization of the Microporosity of Activated Carbon Fiber)

  • 진항교;이정민;유승곤
    • 한국진공학회지
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    • 제2권4호
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    • pp.491-500
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    • 1993
  • The adsorption of nitrogen (77K) and carbon dioxide(273K) was performed on a series of activated carbon fiber. Theadsorption iotherm of nitrogen was typical type 1 and that of carbon dioxide was convex. As the specific surface area increases, there are linear increases in BET constant C mean pore diameter, the width of pore size distribution, wide micropore volume, total micropore volume, total pore volume and external surface area, however, narrow micropore volume was nealy constant . The total micorpore volume fraction in total pore volume is above 97%.

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유한요소해석을 위한 하이브리드용접 입열모델 선정에 관한 기초적 연구 (Fundamental Study on The Heat Input Model of Hybrid Welding for The Finite Element Analysis)

  • 방한서;김영표
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2003년도 추계학술발표대회 개요집
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    • pp.36-38
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    • 2003
  • In order to understand the basic knowledge on the model of heat source in hybrid welding, authors have conducted finite element analysis to calculate heat distribution using three heat source models of non-split type and split type(Volume, Volume-Volume, Volume-Surface). From the research result, we can confirm that Volume-Volume heat source of split type is suitable for the analysis of heat distribution.

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3D 초음파 영상에서 방광 내 잔뇨량 추정을 위한 새로운 알고리즘 (A New Algorithm to Estimate Urine Volume from 3D Ultrasound Bladder Images)

  • 조태식;이수열;조민형
    • 대한의용생체공학회:의공학회지
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    • 제37권1호
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    • pp.31-38
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    • 2016
  • For the patients with bladder dysfunction, measurement of urine volume inside the bladder is very critical to avoid bladder failure. In measuring urine volume inside a bladder, low-resolution 3D ultrasound images are widely used. However, urine volume estimation from 3D ultrasound images is prone to big errors and inconsistency because of low spatial resolution and low signal-to-noise ratio of ultrasound images. We developed a new robust volume estimation algorithm which is not computationally expensive. We tested the algorithm on a lab-built ultrasound bladder phantom and volunteers. The average error rate of the human bladder volume estimation was 5.9% which was better than the commercial machine.