• Title/Summary/Keyword: Scan technique

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A Study on The Radar QPE Improvement Technique Using Rapid RHI Volume Scan (RHI 볼륨자료를 이용한 레이더 QPE 정확도 향상 기법 연구)

  • Hwang, Seok Hwan;Oh, Byung Hwa;Cho, Hyo Seob;Lee, Dong Ryul
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.18-18
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    • 2016
  • 최근 지구온난화의 영향으로 수 십분 만에 위험상황에 도달하는 돌발성 도시 집중호우가 빈발하고 이로 인한 피해가 급증하면서 기존 지상우량계 및 대형레이더 기반 도시홍수 관측체계에 대한 보완이 필요하게 되었다. 빠르고 정확한 도시홍수의 예측 및 예보를 위해서는 대형레이더 관측범위 이하의 빠른 저고도 관측이 필수이다. 이의 일환으로 우리나라에서도 소형 이중편파 X밴드 레이더를 도입하기 시작하였고 활용에 대한 연구가 시작단계에 있다. 일반적으로 소형레이더의 경우 빠른 운용이 가능하고 집중호우 관측과 같은 특정 목적에서 운영하기 때문에 도시 돌발홍수 예보를 위한 충분한 시간해상도의 자료 생산이 가능하다. 그러나 소형레이더를 이용하여 관측하더라도 고층 아파트나 빌딩이 밀집되어 있는 우리나라 도심 환경에서 관측반경내 전반에 대한 1km 이하 저고도 관측은 물리적으로 매우 어려운 현실이다. 따라서 본 연구에서는 한국건설기술연구원의 X밴드 이중편파 레이더로 관측된 다수의 연직 관측자료를 활용하여 호우의 연직 분포를 3차원으로 재생성한 후 이의 평균 단면 추세를 이용하여 관측고도 이하의 관측치를 추정하는 기법을 개발하였다. 기법의 적합성 평가를 위해 2013년, 2014년 주요 호우 사상에 대해 적용하였고, 검토결과 본 방법을 적용한 경우의 QPE가 기존 관측고도각을 이용한 QPE에 비해 정확도가 향상되는 것으로 나타났다.

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Development of SD-OCT for Imaging the in vivo Human Tympanic Membrane

  • Cho, Nam-Hyun;Jung, Un-Sang;Kwon, Hyeong-Il;Jeong, Hyo-Sang;Kim, Jee-Hyun
    • Journal of the Optical Society of Korea
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    • v.15 no.1
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    • pp.74-77
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    • 2011
  • We report a novel extension of 840 nm wavelength- based spectral domain optical tomography to in vivo/real-time human middle ear diagnosis. The system was designed to access the middle ear region with a specifically dedicated handheld probe. The real-time displaying feature was mandatory for in vivo imaging human subject with the handheld probe, and the system could provide about 20 frames per second for 2048 pixels by 1000 A-scans without using any graphics process units under the Labview platform. The inner ear structure of a healthy male volunteer was imaged with the developed system with the axial and lateral resolutions of $15\;{\mu}m$ and $30\;{\mu}m$, respectively. The application of the OCT technology to early diagnose otitis media(OM) is very promising and could be another extensive branch in the OCT field because it provides the depth resolved image including tympanic membrane (TM) and structures below TM whereas the conventional otoscope technique only gives asurface image of the TM.

GMTI Two Channel Raw Data Processing and Analysis (GMTI 2채널 원시데이터 처리 및 분석)

  • Kim, So-Yeon;Yoon, Sang-Ho;Shin, Hyun-Ik;Youn, Jae-Hyuk;Kim, Jin-Woo;You, Eung-Noh
    • Korean Journal of Remote Sensing
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    • v.34 no.6_1
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    • pp.847-855
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    • 2018
  • GMTI (Ground Moving Target Indicator) is a kind of airborne radar function that is used widely in military applications to detect the moving targets on the ground. In this paper, GMTI signal processing technique was presented and its performance was verified using sum and difference channels raw data obtained by the captive flight test.

Accidental intracerebral injection and seizure during scalp nerve blocks for awake craniotomy in a previously craniotomized patient -a case report-

  • Lee, Woo Kyung;Kim, Hyunzu;Bae, Myung-Il;Choi, Seung Ho;Min, Kyeong Tae
    • Korean Journal of Anesthesiology
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    • v.71 no.6
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    • pp.483-485
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    • 2018
  • A 34-year-old man who previously underwent a craniotomy due to oligodendroglioma was admitted with a diagnosis of recurrent brain tumor. An awake craniotomy was planned. Approximately 15 minutes after completing the scalp nerve block, his upper torso suddenly moved and trembled for 10 seconds, suggesting a generalized clonic seizure. He recovered gradually and fully in 55 minutes without any neurological sequelae. The emergency computed tomography scan revealed a localized fluid collection and small intracerebral hemorrhage nearby in the temporoparietal cortex beneath the skull defect. He underwent surgery under general anesthesia at 8 hours after the seizure and was discharged from the hospital after 10 days. This report documents the first case of generalized seizure that was caused by the accidental intracerebral injection of local anesthetics. Although the patient recovered completely, the clinical implications regarding the scalp infiltration technique in a patient with skull defects are discussed.

MRI Image Super Resolution through Filter Learning Based on Surrounding Gradient Information in 3D Space (3D 공간상에서의 주변 기울기 정보를 기반에 둔 필터 학습을 통한 MRI 영상 초해상화)

  • Park, Seongsu;Kim, Yunsoo;Gahm, Jin Kyu
    • Journal of Korea Multimedia Society
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    • v.24 no.2
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    • pp.178-185
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    • 2021
  • Three-dimensional high-resolution magnetic resonance imaging (MRI) provides fine-level anatomical information for disease diagnosis. However, there is a limitation in obtaining high resolution due to the long scan time for wide spatial coverage. Therefore, in order to obtain a clear high-resolution(HR) image in a wide spatial coverage, a super-resolution technology that converts a low-resolution(LR) MRI image into a high-resolution is required. In this paper, we propose a super-resolution technique through filter learning based on information on the surrounding gradient information in 3D space from 3D MRI images. In the learning step, the gradient features of each voxel are computed through eigen-decomposition from 3D patch. Based on these features, we get the learned filters that minimize the difference of intensity between pairs of LR and HR images for similar features. In test step, the gradient feature of the patch is obtained for each voxel, and the filter is applied by selecting a filter corresponding to the feature closest to it. As a result of learning 100 T1 brain MRI images of HCP which is publicly opened, we showed that the performance improved by up to about 11% compared to the traditional interpolation method.

Linear and Nonlinear Optical Properties of Vanadium Pentoxide Films Prepared by Pulsed-Laser Deposition

  • Cui, Liqi;Wang, Ruiteng;Wang, Weitian
    • Korean Journal of Materials Research
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    • v.31 no.7
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    • pp.382-385
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    • 2021
  • Well-crystallized vanadium pentoxide V2O5 thin films are fabricated on MgO single crystal substrates by using pulsed-laser deposition technique. The linear optical transmission spectra are measured and found to be in a wavelength range from 300 to 800 nm; the data are used to determine the linear refractive index of the V2O5 films. The value of linear refractive index decreases with increasing wavelength, and the relationship can be well explained by Wemple's theory. The third-order nonlinear optical properties of the films are determined by a single beam z-scan method at a wavelength of 532 nm. The results show that the prepared V2O5 films exhibit a fast third-order nonlinear optical response with nonlinear absorption coefficient and nonlinear refractive index of 2.13 × 10-10 m/W and 2.07 × 10-15 cm2/kW, respectively. The real and imaginary parts of the nonlinear susceptibility are determined to be 3.03 × 10-11 esu and 1.12 × 10-11 esu, respectively. The enhancement of the nonlinear optical properties is discussed.

Per-Endoscopic Trans-Tympanic Traction Treatment of an Aural Inflammatory Polyp in a Cat

  • Park, Won-Keun;Song, Doo-Won;Shin, Dong-Hoon;Kim, So-Yeon;Lee, Ga-Won;Kang, Dong-Jae;Ro, Woong-Bin;Cho, Jong-Mun;Park, Hee-Myung
    • Journal of Veterinary Clinics
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    • v.38 no.3
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    • pp.147-151
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    • 2021
  • A 5-year-old castrated male Maine Coon cat presented with chronic otitis on the right ear. The clinical signs, scratching and head shaking, were recurrent despite symptomatic treatment, including antibiotics and antifungal agents. Video otoscopic examination and computed tomography (CT) examination revealed a polyp in the right ear canal. The polyp was removed via per-endoscopic trans-tympanic traction (PTT) with a grasping forceps. After treatment, Horner's syndrome occurred in the right eye but spontaneously resolved a week later. The mass was diagnosed as inflammatory polyp with a fibrovascular stroma containing plasma cells, lymphocytes, and neutrophils. All clinical signs were improved, and no recurrence was observed after 3 weeks of follow-up. This case report demonstrates that CT scan is effective in identifying the margin of polyp and PTT technique is non-invasive method for treating inflammatory polyp in cats without severe complications.

Surface removal of stainless steel using a single-mode continuous wave fiber laser to decontaminate primary circuits

  • Song, Ki-Hee;Shin, Jae Sung
    • Nuclear Engineering and Technology
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    • v.54 no.9
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    • pp.3293-3298
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    • 2022
  • Removing radioactive contaminated metal materials is a vital task during the decommissioning of nuclear power plants to reduce the cost of the post-dismantling process. The laser decontamination technique has been recognized as a key tool for a successful dismantling process as it enables a remote operation in radioactive facilities. It also minimizes exposure of workers to hazardous materials and reduces secondary waste, increasing the environmental friendless of the post-dismantling processing. In this work, we present a thorough and efficient laser decontamination approach using a single-mode continuous-wave (CW) laser. We subjected stainless steels to a surface-removal process that repetitively exposes the laser to a confined region of ~75 ㎛ at a high scanning rate of 10 m/s. We evaluate the decontamination performance by measuring the removal depth with a 3D scanning microscope and further investigate optimal removal conditions given practical parameters such as the laser power and scan properties. We successfully removed the metal surface to a depth of more than 40 ㎛ with laser power of 300 W and ten scans, showing the potential to achieve an extremely high DF more than 1000 by simply increasing the number of scans and the laser power for the decontamination of primary circuits.

Evaluation of minimally invasive surgical reduction of sacroiliac luxation in toy breed dogs: a cadaver study

  • Ahn, Seoung-Yob;Jeong, Soon-Wuk
    • Journal of Veterinary Science
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    • v.23 no.2
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    • pp.38.1-38.13
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    • 2022
  • Background: Minimally invasive surgery (MIS) technique of sacroiliac luxation in toy breed dogs using cannulated screws has not been described. Objectives: The purpose of this study was to evaluate the effectiveness of pelvic canal recovery, the reproducibility of successful surgery outcomes, and the acceptable difficulty of the procedure in MIS of sacroiliac luxation in toy breed dogs. Methods: MIS using 2.3-mm cannulated screws was demonstrated in 12 toy breed dog cadavers with sacroiliac luxation artificially induced. Pre and postoperative radiographs were used to evaluate the pelvic canal diameter ratio (PCDR), hemipelvic canal width ratio (HCWR), and reduction rate. Dorsoventral angle (DVA) and craniocaudal angle (CCA) of the inserted screw were obtained postoperative computed tomographic scan. Results: The statistically significant difference between the mean pre and postoperative PCDR was found (1.10 ± 0.12 and 1.26 ± 0.11, respectively; p = 0.002), and the mean HCWR close to 1.0 meaning symmetric pelvis also was obtained (0.97 ± 0.07). The mean DVA and CCA were 2.26° ± 1.33° and 2.60° ± 1.86°, respectively. Conclusions: MIS of sacroiliac luxation using 2.3-mm cannulated screws is applicable to toy breed dogs with acceptable difficulty.

Optimizing Laser Scanner Selection and Installation through 3D Simulation-Based Planning - Focusing on Displacement Measurements of Retaining Wall Structures in Small-scale Buildings -

  • Lee, Gil-yong;Kim, Jun-Sang;Yoou, Geon hee;Kim, Young Suk
    • Korean Journal of Construction Engineering and Management
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    • v.25 no.3
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    • pp.68-82
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    • 2024
  • The planning stage of laser scanning is crucial for acquiring high-quality 3D source data. It involves assessing the target space's environment and formulating an effective measurement strategy. However, existing practices often overlook on-site conditions, with decisions on scanner deployment and scanning locations relying heavily on the operators' experience. This approach has resulted in frequent modifications to scanning locations and diminished 3D data quality. Previous research has explored the selection of optimal scanner locations and conducted preliminary reviews through simulation, but these methods have significant drawbacks. They fail to consider scanner inaccuracies, do not support the use of multiple scanners, rely on less accurate 2D drawings, and require specialized knowledge in 3D modeling and programming. This study introduces an optimization technique for laser scanning planning using 3D simulation to address these issues. By evaluating the accuracy of scan data from various laser scanners and their positioning for scanning a retaining wall structure in a small-scale building, this method aids in refining the laser scanning plan. It enhances the decision-making process for end-users by ensuring data quality and reducing the need for plan adjustments during the planning phase.