• 제목/요약/키워드: imaging techniques

검색결과 1,053건 처리시간 0.026초

Study of the Key Technology of Ghost Imaging Based on Rosette Scanning

  • Zhang, Leihong;Kang, Yi;Pan, Zilan;Liang, Dong;Li, Bei;Zhang, Dawei;Ma, Xiuhua
    • Current Optics and Photonics
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    • 제1권5호
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    • pp.491-499
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    • 2017
  • Ghost imaging offers great potential, with respect to standard imaging, for imaging objects in optically harsh or noisy environments. It can solve the problems that are difficult to solve by conventional imaging techniques. Recently, it has become a hot topic in quantum optics. In this paper, we propose a scheme for ghost imaging based on rosette scanning, named rosette ghost imaging. Sampling a small area sampling instead of the whole object, the instantaneous field of view of rosette scanning is used as the modulation light field in ghost imaging. This scheme reduces energy loss, the number of samples, and the sampling time, while improving the quality of the reconstructed image.

위장관암 발견에 있어 Linked Color Imaging와 Blue Light Imaging의 유용성 (Detection of Gastrointestinal Cancer using Linked Color Imaging and Blue Light Imaging)

  • 유인경;조주영
    • Journal of Digestive Cancer Research
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    • 제7권2호
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    • pp.31-39
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    • 2019
  • The early detection of early gastric cancer (EGC) is important. However, the sensitivity of conventional white light imaging (WLI) in detecting EGC had been reported to range only from 77% to 84%. Although the resolution of endoscopes has been remarkably developed, precancerous lesions such as adenomas and microscopic early cancers are difficult to diagnose with general endoscopy. Linked Color Imaging (LCI) magnifies the differences in color for easy detection. Therefore, it produces a bright image from a distance and is performed for screening endoscopy. The 410 nm wavelength of BLI (Blue Light Imaging) helps to detect cancer by showing microstructure and microvessels in the mucosal superficial layer. This review will focus on the utility of Image enhanced endoscopy (IEE) techniques in diagnosis of gastrointestinal cancer.

의료용 광음향 단층촬영 원리와 의학적 응용 (Principles and Medical Applications of Biomedical Photoacoustic Tomography)

  • 송철규;유상훈;김도훈
    • 전기학회논문지
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    • 제60권6호
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    • pp.1209-1214
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    • 2011
  • Photoacoustics has been broadly studied in biomedicine, for both human and small animal tissues. Photoacoustics uniquely combines the absorption contrast of light or radio frequency waves with ultrasound resolution. Moreover, it is non-ionizing and non-invasive, and is the fastest growing new biomedical method, with clinical applications on the way. This paper provides a brief recap of recent developments in photoacoustics in biomedicine, from basic principles to applications. The emphasized areas include the new imaging modalities as well as translational research topics. A primary PA application in biomedicine is photoacoustic tomography (PAT). The past decade has seen fast developments in both theoretical reconstruction algorithms and innovative imaging techniques, and PAT has been implemented in imaging different tissues, from centimeter-large breast tumors to several micrometer-large single red blood cels (RBC). PAT now provides structural, functional and molecular imaging. Overall, PA techniques for biomedicine are maturing. They have been widely used to study both animal and human tissues. Recently, more and more research focuses on clinical applications. Commercialized PA systems are expected to be available in the near future, and wide clinical PA applications are foreseen.

SPECTROSCOPIC ADMITTIVITY IMAGING OF BIOLOGICAL TISSUES: CHALLENGES AND FUTURE DIRECTIONS

  • Zhang, Tingting;Bera, Tushar Kanti;Woo, Eung Je;Seo, Jin Keun
    • Journal of the Korean Society for Industrial and Applied Mathematics
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    • 제18권2호
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    • pp.77-105
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    • 2014
  • Medical imaging techniques have evolved to expand our ability to visualize new contrast information of electrical, optical, and mechanical properties of tissues in the human body using noninvasive measurement methods. In particular, electrical tissue property imaging techniques have received considerable attention for the last few decades since electrical properties of biological tissues and organs change with their physiological functions and pathological states. We can express the electrical tissue properties as the frequency-dependent admittivity, which can be measured in a macroscopic scale by assessing the relation between the time-harmonic electric field and current density. The main issue is to reconstruct spectroscopic admittivity images from 10 Hz to 1 MHz, for example, with reasonably high spatial and temporal resolutions. It requires a solution of a nonlinear inverse problem involving Maxwell's equations. To solve the inverse problem with practical significance, we need deep knowledge on its mathematical formulation of underlying physical phenomena, implementation of image reconstruction algorithms, and practical limitations associated with the measurement sensitivity, specificity, noise, and data acquisition time. This paper discusses a number of issues in electrical tissue property imaging modalities and their future directions.

Neutron imaging for metallurgical characteristics of iron products manufactured with ancient Korean iron making techniques

  • Cho, Sungmo;Kim, Jongyul;Kim, TaeJoo;Sato, Hirotaka;Huh, Ilkwon;Cho, Namchul
    • Nuclear Engineering and Technology
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    • 제53권5호
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    • pp.1619-1625
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    • 2021
  • This paper demonstrates the possible nondestructive analysis of iron artifacts' metallurgical characteristics using neutron imaging. Ancient kingdoms of the Korean Peninsula used a direct smelting process for ore smelting and iron bloom production; however, the use of iron blooms was difficult because of their low strength and purity. For reinforcement, iron ingots were produced through refining and forge welding, which then underwent various processes to create different iron goods. To demonstrate the potential analysis using neutron imaging, while ensuring artifacts' safety, a sand iron ingot (SI-I) produced using ancient traditional iron making techniques and a sand iron knife (SI-K) made of SI-I were selected. SI-I was cut into 9 cm2, whereas the entirety of SI-K was preserved for analysis. SI-I was found to have an average grain size of 3 ㎛, with observed α-Fe (ferrite) and pearlite with a body-centered cubic (BCC) lattice structure. SI-K had a grain size of 1-3 ㎛, α-Ferrite on its backside, and martensite with a body-centered tetragonal (BCT) structure on its blade. Results show that the sample's metallurgical characteristics can be identified through neutron imaging only, without losing any part of the valuable artifacts, indicating applicability to cultural artifacts requiring complete preservation.

삼차원 자기공명영상법의 뇌 구조 영상을 위한 최적화 연구: 센스인자 변화에 따른 신호변화 평가 (Optimizations of 3D MRI Techniques in Brain by Evaluating SENSE Factors)

  • 박명환;이진완;이강원;류창우;장건호
    • Investigative Magnetic Resonance Imaging
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    • 제13권2호
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    • pp.161-170
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    • 2009
  • 목적 : 평행영상(Parallel imaging)기법의 개발로 긴 촬영시간 때문에 종종 사용되지 못하던 삼차원 영상기법이 최근 들어 환자 병을 진단하는데 새로이 사용되고 있다. 이 연구의 목적은 최근에 뇌 영상에서 개발되어 이용되고 있는 삼차원 자기공명영상을 사람의 뇌에서 짧은 시간 내에 얻을 수 있도록 2차원 평행영상 기법을 사용한 최적화 방법을 연구하는데 있다. 대상 및 방법 : 검사 장비는 3.0T 자기공명영상장치를 이용하였으며 8-채널 SENSE(sensitivity encoding) 머리 코일을 이용하였다. 팬텀 및 3명의 사람 머리에서 영상을 얻었다. 세 가지의 삼차원 영상법인 3D T1WI, 3D T2WI 및 3D FLAIR 영상 방법에 대하여 평행인자(SENSE factor)의 변화에 따른 팬텀 영상을 얻었다. 각각의 영상법에서 영상획득에 적당한 SENSE 인자를 찾기 위해 Phase encoding 방향과 Slice encoding 방향을 조합한 SENSE 인자를 변화시키면서 영상을 얻었다. 영상분석을 위하여 특정영역(ROI)를 설정한 후에 신호대 잡음비 (Signal-to-noise ratio, SNR), 감소분율(Percent Signal Reduction Rate, %R), 대조도(contrast-to-noise ratio, CNR)를 계산하였다. 결과 : 팬텀을 이용한 SENSE 인자 변화에 따른 SNR 및 %R 값의 변화 결과 3D T1WI 방법에서 SENSE 인자를 사용한 것들 중에서 SENSE 인자를 총 3인 경우 약 0.2%의 신호 감소가 나타났고 영상시간은 5분 이내였다. 3D T2WI 방법의 경우 SENSE 인자를 사용한 것들 중에서 SENSE 인자를 총 3인 경우에 약 1.0% 신호 감소가 나타났고 영상 시간은 약 5분 이내였다. 3D FLAIR 방법의 경우 SENSE 인자를 사용한 것들 중에서 SENSE 인자를 4를 사용한 경우에 약 0.2% 신호 감소가 나타났고 영상시간은 약 6분이었다. 사람을 대상으로 할 경우 3D T1W 및 3D T2W영상에서 SNR 및 CNR은 SENSE 인자를 3으로 한 경우에서 SENSE 인자를 4로 한 경우 보다 높게 나타났다. 3D FALIR 영상의 경우 CNR은 SENSE 4에서는 SENSE 3에 비하여 낮았다. 결론 : 본 연구에서는 3가지 3차원 영상법을 실제 임상적용이 가능한 시간 영역에서 SENSE 인자를 변화 시키면서 치적의 영상을 얻도록 하는 연구를 실시한 결과 SNR 감소를 최소화 하면서 영상획득 시간을 약 5분에서 6분 정도 소요되는 2차원 SENSE 인자를 찾았다. 이를 뇌 영상에 적용하였을 경우 SENSE 인자를 적용하지 않은 경우와 비교하면 신호 감소는 최소화 하면서 영상의 질은 큰 영향을 주지 않은 것으로 나타났다. 3D T1W및 3D T2W는 SENSE 인자를 3으로 3D FLAIR인자는 SENSE 인자를 4로 하는 것이 환자를 대상으로 한 뇌 영상에 적합하다고 생각된다. 앞으로는 이들 영상법이 뇌 영상뿐만 아니라 다른 영역의 영상에 적용을 위한 최적화가 필요하다고 생각된다.

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3차원 시선 추출 및 상호작용 기법 (3D Gaze Estimation and Interaction Technique)

  • 기정석;전경원;김성규;손광훈;권용무
    • 방송공학회논문지
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    • 제11권4호
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    • pp.431-440
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    • 2006
  • 2D 영상에 대한 시선 기반 상호작용 기법으로서 시선추적 기술이 연구되고 있다. 하지만 입체영상 또는 콘텐츠에 대한 시선기반 상호작용 연구는 아직 연구된 바가 없다. 현재 3D 디스플레이 기술은 현실감 있는 서비스를 제공하고 있으며, 이러한 3D 콘텐츠를 제공하는 환경에서는 더욱 3D 상호작용 기법이 필요하다. 본 논문은 패럴랙스 배리어나 렌티큘라 방식과 같은 무안경식 3차원 입체 디스플레이 환경에서 시선기반 3차원 입체 영상 상호작용 기술에 대해 기술한다.

LDH 나노입자 기반의 바이오 이미징 소재 (Layered Double Hydroxide Nanoparticles for Bio-Imaging Applications)

  • 김문희;하성진;이동기;박대환
    • Korean Chemical Engineering Research
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    • 제57권4호
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    • pp.445-454
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    • 2019
  • Layered double hydroxides (LDHs) 나노입자는 특유의 층상형 결정구조에서 기인된 물리화학적 물성 및 생체친화성을 바탕으로 나노-바이오 분야에서 주목을 받고 있다. 바이오 이미징은 질병의 진단과 치료(테라노스틱스, theranostics=therapy+diagnosis)에 다양하게 활용될 수 있는 핵심적인 분야로 차세대 맞춤의학으로의 새로운 패러다임 실현을 위해서 보다 정확하고 빠른 진단기술이 절실히 요구되고 있다. 이를 실현하기 위한 대안으로 나노기술이 접목된 고감도 분자영상 관련 연구들이 활발히 진행되고 있다. 본 총설에서는 LDH 나노입자를 기반으로 하는 바이오 이미징 시스템의 개발동향에 관하여 소개하고 바이오 이미징에 적합한 나노소재의 구조 및 합성 방법에 대하여 설명하였다. 또한 임상 의학에서 현재 많이 사용되고 있는 형광을 이용한 광학영상, 자기공명영상(MRI), 핵의학영상(PET), 컴퓨터 단층 촬영(CT) 등 다양한 분야에서 어떻게 LDH 나노입자를 이용하여 나노 프로브 개발을 할 수 있는지 연구사례를 기술하면서 나노기술과 첨단영상기술이 융합된 획기적인 고감도 나노 바이오 이미징 시스템 개발 및 그 잠재력에 대하여 전망해 보았다.

정상근과 근막 유발점이 활성화된 근육의 초음파 영상의 비교 (Comparison of Ultrasonography Images on Normal Muscle and Myofascial Trigger Points Activated Muscle)

  • 김명훈;김수현;김현진
    • The Journal of Korean Physical Therapy
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    • 제25권2호
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    • pp.76-80
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    • 2013
  • Purpose: The objective of this study was to offer primary clinical data examining whether change of imaging structure and quantitative evaluation of muscle activity on myofascial trigger points can lead to implementation of an analytical technique for evaluation of myofascial pain diagnoses. In addition, we examined the effect of a variety of mediation techniques, in order to examine neuromuscular physiological characteristics of myofascial trigger points muscle by comparing differences in pressure pain threshold and ultrasound imaging. Methods: Participants in the study included 30 adults in their twenties. The subjects were divided into the normal and myofascial trigger points groups. Clinical outcomes were evaluated by pressure pain threshold for pain and ultrasound imaging was performed for evaluation of the structural characteristics of muscle. Independent t-test was used for statistical analysis. Results: The two groups showed statistical significance in the change in pressure pain threshold (p<0.05). Findings of ultrasound imaging analysis showed no significant differences, increased muscle thickness was observed (p>0.05). Findings of ultrasound imaging analysis showed significant differences, increased muscle echodensity was observed (p<0.05). Findings on ultrasound imaging analysis showed significant differences, increased muscle white area index was observed (p<0.05). Conclusion: From these results, active myofascial trigger points muscle showed quality deterioration on ultrasound imaging. Thorough evaluation of imaging structure and physiological characteristics can be useful quantitative analytical techniques for diagnosis of myofascial pain syndrome and a primary factor reflected in physical therapy intervention.

3D 가상 이미지의 텍스타일 소재로의 적용을 통한 삼차원 변형가능한 'Living Textil'과 환경변화에 관한 연구 (2) (An Investigation into Three Dimensional Mutable 'Living' Textile Materials and Environments (2))

  • 김기훈;서지성
    • 복식문화연구
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    • 제19권2호
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    • pp.316-323
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    • 2011
  • This research aim concerns questioning how we can generate environments suggestive of nature fused with built environments through textiles. Through literature reviews and experiments with available the 3D imaging techniques of Holography, Lenticular and other new technologies. We also have researched towards finding the most effective method for 3D imaging techniques for textile applications. The advantage of the combining technique is to create the possibility of seeing a number of different floating 3D illusory images, depending on the viewing angle. This objective is to produce intriguing textile patterns and images in which the objects and colours change as viewpoints change. Experimental work was carried out in collaboration with professional textile researchers, scientists, artists and designers conducting research in this field.