• 제목/요약/키워드: MRI System

검색결과 725건 처리시간 0.024초

초음파 영상진단장치 (A Diagnostic Ultrasound Imaging System)

  • 이승우
    • 비파괴검사학회지
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    • 제19권3호
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    • pp.217-232
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    • 1999
  • The ability to see the internal organs of the human body in a noninvasive way is a powerful diagnostic tool of modern medicine. Among these imaging modalities such as X-ray, MRI, and ultrasound. MRI and ultrasound are presenting much less risk of undesirable damage of both patient and examiner. In fact, no deleterious effects have been reported as a result of clinical examination by using MRI and ultrasound diagnostic equipment. As a result. their market volume has been rapidly increased. MRI has a good resolution. but there are a few disadvantages such as high price. non-real-time imaging capability. and expensive diagnostic cost. On the other hand, the ultrasound imaging system has inherently poor resolution as compared with X-ray and MRI. In spite of its poor resolution, the ultrasound diagnostic equipment is lower in price and has an ability of real-time imaging as compared with the others. As a result. the ultrasound imaging system has become general and essential modality for imaging the internal organs of human body. In this review various researches and developments to enhance the resolution of the ultrasound images are explained and future trends of the ultrasound imaging technology are described.

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MRI용 심전도/혈류 게이팅 시스템 설계 (Design of ECG/PPG Gating System in MRI Environment)

  • 장봉렬;박호동;이경중
    • 대한의용생체공학회:의공학회지
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    • 제28권1호
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    • pp.132-138
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    • 2007
  • MR(magnetic resonance) image of moving organ such as heart shows serious distortion of MR image due to motion itself. To eliminate motion artifacts, MRI(magnetic resonance imaging) scan sequences requires a trigger pulse like ECG(electro-cardiography) R-wave. ECG-gating using cardiac cycle synchronizes the MRI sequence acquisition to the R-wave in order to eliminate image motion artifacts. In this paper, we designed ECG/PPG(photo-plethysmography) gating system which is for eliminating motion artifacts due to moving organ. This system uses nonmagnetic carbon electrodes, lead wire and shield case for minimizing RF(radio-frequency) pulse and gradient effect. Also, we developed a ECG circuit for preventing saturation by magnetic field and a finger plethysmography sensor using optic fiber. And then, gating pulse is generated by adaptive filtering based on NLMS(normalized least mean square) algorithm. To evaluate the developed system, we measured and compared MR imaging of heart and neck with and without ECG/PPG gating system. As a result, we could get a clean image to be used in clinically. In conclusion, the designed ECG/PPG gating system could be useful method when we get MR imaging of moving organ like a heart.

Localized MRI/MRS를 위한 차폐된 두뇌촬영용 $R^{2}$-경사자계코일 (Actively-Shielded Brain-Only $R^{2}$-Gradient Coil for Localized MRI/MRS)

  • 오창현;양윤정;김선경;이윤;이흥규;안창범
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1996년도 추계학술대회
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    • pp.161-164
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    • 1996
  • An actively-shielded $r^{2}$-gradient coil has been developed for brain localized MRI or MRS. Spatial localization is very useful for spatial volume selection in MRI or MR Spectroscopy(MRS). The radial(or $R^{2}-$) gradient coil is useful in reducing the artifact or in improving the SNR by selecting the volume with less number of RF pulses. It is, however, difficult to implement the coil with a gradient intensity strong enough to use it for practical whole-body MRI system. For example, the smallest volume size for selection is just 6 cm in diameter with a 250 Ampere of current driving for a whole-body system (in case of 70-cm-diameter). In this study, an asymetric $r^{2}$-coil with a small diameter of 35 cm has been designed and implemented for brain localized MRI or MRS. An 8-rod high-pass-type birdcage RF coil has also been implemented. The coil set has been developed for 1.0 Tesla Medison MRI system and its performance has been verified experimentally.

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MRI 보어 구경에 따른 검사 시 실효 단면적 분석 (Analysis of Actual Cross-Sectional Area During Scanning According to MRI Bore Size)

  • 정현근;정현도;김성호;전민철;유세종;고현철;조용현
    • 대한의용생체공학회:의공학회지
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    • 제41권6호
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    • pp.219-227
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    • 2020
  • In this study, we tried to quantify the actual cross-sectional area inside the bore when scanning by the MRI system with various bore sizes. To this end, a comparative analysis was conducted by both of blueprint of each MRI equipment and actual measurement in the field. As a result of analysis, ACSA(Actual Cross-Sectional Area) in Ingenia CX, Elition X, uMR 780, Omega, Vida, Lumina, Architect, Premier is recorded as 171230, 232150, 242100, 309332, 230760, 230760, 229380 and 235990 ㎟, respectively ACSA% was 60.6, 60.3, 73.0, 70.0, 60.0, 60.0, 59.6, and 61,3%. In addition, DTB (Distance from Table top to Bore top) recorded 400, 407, 445, 495, 405, 405, 405, 403, and 412 mm. Through this study, it was confirmed that there is a difference between the bore size according to each MRI system and the actual cross-sectional area during MRI scanning. Accordingly, if we consider the internal actual area just not bore size at the clinical site, useful diagnostic images can be obtained in the end with better convenience.

자기공명영상(MRI) 검사 시 방사선사의 소음노출 (Noise Exposure of Radiographer Caused by Magnetic Resonance Imaging(MRI))

  • 길종원
    • 한국콘텐츠학회논문지
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    • 제16권11호
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    • pp.699-706
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    • 2016
  • 본 연구는 MRI 검사로 인하여 방사선사가 노출되는 소음의 양을 평가하여 소음저감 시설의 필요성과 제도 마련을 제안하고자 하였다. 소음측정은 대전광역시 S 종합병원의 1.5 Tesla MRI 장비(7개 검사)와 3.0 Tesla MRI 장비(16개 검사)를 대상으로 하였고, 소음측정기는 SC-804를 사용하였다. 소음측정 거리는 MRI 검사실 방음문에서 검사자의 업무 위치까지 100cm 이며, 측정 높이는 업무 시 검사자의 귀 높이 100cm 이다. 검사별 소음측정은 각 검사의 시퀀스(Sequence)마다 발생되는 소음 수치를 관측하여 20초마다 기록하였고 검사별 3회씩 측정하여 평균값을 제시하였다. 연구결과 방사선사가 노출되는 소음의 최댓값은 73.3 dB(A)로 3.0 Tesla 장비에서 시행한 MRCP 검사, 검사별 평균소음의 최댓값은 66.9(3.1) dB(A)로 역시 3.0 Tesla 장비에서 시행한 Myelogram 검사이다. 장비별 평균소음은 3.0 Tesla 장비가 61.9(4.1) dB(A), 1.5 Tesla 장비가 52.0(3.1) dB(A)로 3.0 Tesla MRI 장비가 약 10 dB(A) 정도 높았다(p<0.001). 방사선사가 노출되는 소음의 양은 청력에 영향을 미치는 수준은 아니지만 비청력적영향이 발생할 수 있는 수준이다. 소음을 저감하기 위해 MRI 조정실 후면에 커튼을 설치하여 반사음을 제거할 수 있지만, 제도 마련이 선행되어야 할 것이다.

Fundamental Background for 3T MRI/MRS

  • Choe, Bo-Young
    • 대한자기공명의과학회:학술대회논문집
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    • 대한자기공명의과학회 2002년도 제7차 학술대회 초록집
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    • pp.47-49
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    • 2002
  • At present, the trend of magnetic field strength in MRI system is dramatically changing. In early 70, the only low field (<0.5T) was developed. It was technically difficult to develop the high field system. At that time, people believed that the fine MR imaging could not be obtained in the high field MR system due to the magnetic susceptibility effect. However, 1.5T system was evolved at the end of 80, and used for clinical usage. Thus, it was proved that the signal to noise ratio (SNR) could be greatly contribute to enhance the image quality. And, the results of functional MRI and MR spectroscopy could be improved in the higher field MR system. So, 8T system was eventually developed in Ohio State University Hospital at the end of 90. Therefore, there is no doubt that the system with the ultra high magnetic field strength will be developed near future in 21 century.

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MRI 외부병원 판독 수가 인상의 효과 분석: 뇌 관련 자기공명영상을 중심으로 (An Analysis on the Effect of the Increase in the Fee of Magnetic Resonance Imaging Deciphering of the External Hospital: Focusing on the Brain Magnetic Resonance Imaging)

  • 김록영;사공진;조민호;위세아;이진용;김용규
    • 보건행정학회지
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    • 제31권3호
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    • pp.261-271
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    • 2021
  • Background: In 2018, the government increased the fee for the magnetic resonance imaging (MRI) image deciphering services of the external hospital to discourage the redundant MRI scan and to induce appropriate use of the MRI services. It is important to evaluate the effect of the policy to provide the basis for establishing other MRI-related policies. Methods: The healthcare data of the patients who had brain MRI scans were organized by episode and analyzed using the panel study in order to find out the effect of the MRI-related policy on the substitution effect and the medical expenses. Results: As a result of the increase in the fee of deciphering the MRI image, there has been an uplift in deciphering the MRI scan of the external hospital. It implies that more hospitals chose to use the MRI scan taken by other clinics or hospitals, rather than the MRI scan taken at their own facilities. Conclusion: The research results imply that a policy that facilitates the exchange of the medical image data between the hospitals is needed in order to establish an efficient management system of the healthcare resources. Such improvement is expected to reduce the social cost and contribute to the stability in the finance of national health insurance.

Magnetic Resonance Imaging Meets Fiber Optics: a Brief Investigation of Multimodal Studies on Fiber Optics-Based Diagnostic / Therapeutic Techniques and Magnetic Resonance Imaging

  • Choi, Jong-ryul;Oh, Sung Suk
    • Investigative Magnetic Resonance Imaging
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    • 제25권4호
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    • pp.218-228
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    • 2021
  • Due to their high degree of freedom to transfer and acquire light, fiber optics can be used in the presence of strong magnetic fields. Hence, optical sensing and imaging based on fiber optics can be integrated with magnetic resonance imaging (MRI) diagnostic systems to acquire valuable information on biological tissues and organs based on a magnetic field. In this article, we explored the combination of MRI and optical sensing/imaging techniques by classifying them into the following topics: 1) functional near-infrared spectroscopy with functional MRI for brain studies and brain disease diagnoses, 2) integration of fiber-optic molecular imaging and optogenetic stimulation with MRI, and 3) optical therapeutic applications with an MRI guidance system. Through these investigations, we believe that a combination of MRI and optical sensing/imaging techniques can be employed as both research methods for multidisciplinary studies and clinical diagnostic/therapeutic devices.

Paradigm Shift in Prostate Cancer Diagnosis: Pre-Biopsy Prostate Magnetic Resonance Imaging and Targeted Biopsy

  • Jung Jae Park;Chan Kyo Kim
    • Korean Journal of Radiology
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    • 제23권6호
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    • pp.625-637
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    • 2022
  • With regard to the indolent clinical characteristics of prostate cancer (PCa), the more selective detection of clinically significant PCa (CSC) has been emphasized in its diagnosis and management. Magnetic resonance imaging (MRI) has advanced technically, and recent international cooperation has provided a standardized imaging and reporting system for prostate MRI. Accordingly, prostate MRI has recently been investigated and utilized as a triage tool before biopsy to guide tissue sampling to increase the detection rate of CSC beyond the staging tool for patients in whom PCa was already confirmed on conventional systematic biopsy. Radiologists must understand the current paradigm shift for better PCa diagnosis and management. This article reviewed the recent literature, demonstrating the diagnostic value of pre-biopsy prostate MRI with targeted biopsy and discussed unsolved issues regarding the paradigm shift in the diagnosis of PCa.

자기공명전단을 위한 영상화 시스템 구현에 관한 연구 (A study on the implementation of Imaging System for Magnetic Resonance Imaging)

  • 진승오;원진임;박양하;허영;김관호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 추계학술대회 논문집 학회본부 B
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    • pp.597-599
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    • 1998
  • The clinical acceptance of magnetic resonance imaging(MRI) system has been more rapid than that of the other medical image diagnosis system(X-ray, CT, etc) with the advantage of nonhazardous nature, high resolution capability, potential for chemically specified imaging. MRI system is composed of super conducting magnet, gradient fields, rf transceiver, system controller and imaging software technology. In this paper, introducing the principle of magnetic resonance imaging, it proposes the implementation of PC-based MRI system.

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