• 제목/요약/키워드: The map of MTR

검색결과 4건 처리시간 0.019초

슬관절 부위에서 자화전이 위상감도법에 의한 자화전이율 영상 평가 (Evaluation of Magnetization Transfer Ratio Imaging by Phase Sensitive Method in Knee Joint)

  • 윤문현;성미숙;최보영
    • 한국의학물리학회지:의학물리
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    • 제19권4호
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    • pp.269-275
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    • 2008
  • 슬관절 퇴행성 질환을 진단하기 위하여 자기공명영상(magnetic resonance imaging: MRI)이 많이 사용되지만 간혹 슬관절 병후 및 예후를 잘못 진단하는 경우가 종종 발생한다. 본 연구에서는 슬관절 질환의 진단에 도움을 주기 위하여 자화전이(magnetization transfer: MT) 영상법을 소개하고자 한다. 슬관절 환자 7명으로부터 스핀 에코(SE) T2 강조 영상(3,400-3,500/90-100 ms)과 슬관절 환자 7명으로부터 FSE T2 강조 영상(4,500-5,000/100-108 ms)과 또한 슬관절 환자 3명으로부터 gradient echo (GRE) T2 강조 영상들(9/4.56 ms, 50 flip angle, NEX 1)을 획득하였다. 6명의 슬관절 환자에서 지방 억제가능 T2 강조 STIR 펄스시퀀스(TR/TE=2894-3215 ms/70 ms, NEX 3, ETL 9)를 사용하였다. 지방 포화도에 있어서 위상감도 방법은 Larmor frequency 차이에 따른 위상 차이를 이용하므로, 각각의 픽셀에 대한 자화전이율(magnetization transfer ratio: MTR)의 측정은 포화된 영상과 포화되지 않은 영상의 비율에 따라 산출하였다. 따라서 각 입력된 영상들은 동차원성을 가지고, 시각적으로 신호강도 정도가 회색의 명암도만으로 평가될 수 있기 때문에 생리학적, 정량적 진단을 위하여 3차원 등방성 체적영상과 자기공명 삼원색을 매핑하였고 정량적 특정은 자화전이율 지도로서 표현하였다. 자화전이율 영상은 병변 부위에서 높은 대조도를 나타내어 환자의 병태를 추적하는데 도움을 주었고 정량화하였다. 자화전이율 영상들과 기존의 MRI 사이에 명암도 차이는 회색상으로 표현되며, 자화전이율 영상화의 효과에 대해 프로파일 그래프는 자화전이 펄스로 인하여 신호강도에 있어서 정량적 측정값이 상대적으로 감소하였다. 슬관절의 정확한 병리상태를 진단하기 위해 프로파일 그래프의 측정값을 영상과 함께 표현하였다. 본 연구에서 수행한 예비적 데이터들을 통하여 슬관절의 자화전이율 영상들이 매우 임상학적으로 유용함을 확인하였다. 자화전이율 영상에 대한 물리적 변화를 관찰함으로써 자화전이율 영상에 대한 물리적, 기술적 기반에 대한 더 많은 통찰력을 제공할 수 있다. 무릎 질환 환자의 자화전이율 영상들을 이용하여 매우 높은 대조도를 확보할 수 있으므로 슬관절 질환의 정밀 진단에 매우 도움을 줄 수 있다.

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Assessment of the Cerebrospinal Fluid Effect on the Chemical Exchange Saturation Transfer Map Obtained from the Full Z-Spectrum in the Elderly Human Brain

  • Park, Soonchan;Jang, Joon;Oh, Jang-Hoon;Ryu, Chang-Woo;Jahng, Geon-Ho
    • 한국의학물리학회지:의학물리
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    • 제30권4호
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    • pp.139-149
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    • 2019
  • Purpose: With neurodegeneration, the signal intensity of the cerebrospinal fluid (CSF) in the brain increases. The objective of this study was to evaluate chemical exchange saturation transfer (CEST) signals with and without the contribution of CSF signals in elderly human brains using two different 3T magnetic resonance imaging (MRI) sequences Methods: Full CEST signals were acquired in ten subjects (Group I) with a three-dimensional (3D)-segmented gradient-echo echo-planar imaging (EPI) sequence and in ten other subjects (Group II) with a 3D gradient and spin-echo (GRASE) sequence using two different 3T MRI systems. The segmented tissue compartments of gray and white matter were used to mask the CSF signals in the full CEST images. Two sets of magnetization transfer ratio asymmetry (MTRasym) maps were obtained for each offset frequency in each subject with and without masking the CSF signals (masked and unmasked conditions, respectively) and later compared using paired t-tests. Results: The region-of-interest (ROI)-based analyses showed that the MTRasym values for both the 3D-segmented gradient-echo EPI and 3D GRASE sequences were altered under the masked condition compared with the unmasked condition at several ROIs and offset frequencies. Conclusions: Depending on the imaging sequence, the MTRasym values can be overestimated for some areas of the elderly human brain when CSF signals are unmasked. Therefore, it is necessary to develop a method to minimize this overestimation in the case of elderly patients.

Added Value of Chemical Exchange-Dependent Saturation Transfer MRI for the Diagnosis of Dementia

  • Jang-Hoon Oh;Bo Guem Choi;Hak Young Rhee;Jin San Lee;Kyung Mi Lee;Soonchan Park;Ah Rang Cho;Chang-Woo Ryu;Key Chung Park;Eui Jong Kim;Geon-Ho Jahng
    • Korean Journal of Radiology
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    • 제22권5호
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    • pp.770-781
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    • 2021
  • Objective: Chemical exchange-dependent saturation transfer (CEST) MRI is sensitive for detecting solid-like proteins and may detect changes in the levels of mobile proteins and peptides in tissues. The objective of this study was to evaluate the characteristics of chemical exchange proton pools using the CEST MRI technique in patients with dementia. Materials and Methods: Our institutional review board approved this cross-sectional prospective study and informed consent was obtained from all participants. This study included 41 subjects (19 with dementia and 22 without dementia). Complete CEST data of the brain were obtained using a three-dimensional gradient and spin-echo sequence to map CEST indices, such as amide, amine, hydroxyl, and magnetization transfer ratio asymmetry (MTRasym) values, using six-pool Lorentzian fitting. Statistical analyses of CEST indices were performed to evaluate group comparisons, their correlations with gray matter volume (GMV) and Mini-Mental State Examination (MMSE) scores, and receiver operating characteristic (ROC) curves. Results: Amine signals (0.029 for non-dementia, 0.046 for dementia, p = 0.011 at hippocampus) and MTRasym values at 3 ppm (0.748 for non-dementia, 1.138 for dementia, p = 0.022 at hippocampus), and 3.5 ppm (0.463 for non-dementia, 0.875 for dementia, p = 0.029 at hippocampus) were significantly higher in the dementia group than in the non-dementia group. Most CEST indices were not significantly correlated with GMV; however, except amide, most indices were significantly correlated with the MMSE scores. The classification power of most CEST indices was lower than that of GMV but adding one of the CEST indices in GMV improved the classification between the subject groups. The largest improvement was seen in the MTRasym values at 2 ppm in the anterior cingulate (area under the ROC curve = 0.981), with a sensitivity of 100 and a specificity of 90.91. Conclusion: CEST MRI potentially allows noninvasive image alterations in the Alzheimer's disease brain without injecting isotopes for monitoring different disease states and may provide a new imaging biomarker in the future.

APPLICATION OF WIFI-BASED INDOOR LOCATION MONITORING SYSTEM FOR LABOR TRACKING IN CONSTRUCTION SITE - A CASE STUDY in Guangzhou MTR

  • Sunkyu Woo;Seongsu Jeong;Esmond Mok;Linyuan Xia;Muwook Pyeon;Joon Heo
    • 국제학술발표논문집
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    • The 3th International Conference on Construction Engineering and Project Management
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    • pp.869-875
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    • 2009
  • Safety is a big issue in the construction sites. For safe and secure management, tracking locations of construction resources such as labors, materials, machineries, vehicles and so on is important. The materials, machineries and vehicles could be controlled by computer, whereas the movement of labors does not have fixed pattern. So, the location and movement of labors need to be monitored continuously for safety. In general, Global Positioning System(GPS) is an opt solution to obtain the location information in outside environments. But it cannot be used for indoor locations as it requires a clear Line-Of-Sight(LOS) to satellites Therefore, indoor location monitoring system could be a convenient alternative for environments such as tunnel and indoor building construction sites. This paper presents a case study to investigate feasibility of Wi-Fi based indoor location monitoring system in construction site. The system is developed by using fingerprint map of gathering Received Signal Strength Indication(RSSI) from each Access Point(AP). The signal information is gathered by Radio Frequency Identification (RFID) tags, which are attached on a helmet of labors to track their locations, and is sent to server computer. Experiments were conducted in a shield tunnel construction site at Guangzhou, China. This study consists of three phases as follows: First, we have a tracking test in entrance area of tunnel construction site. This experiment was performed to find the effective geometry of APs installation. The geometry of APs installation was changed for finding effective locations, and the experiment was performed using one and more tags. Second, APs were separated into two groups, and they were connected with LAN cable in tunnel construction site. The purpose of this experiment was to check the validity of group separating strategy. One group was installed around the entrance and the other one was installed inside the tunnel. Finally, we installed the system inner area of tunnel, boring machine area, and checked the performance with varying conditions (the presence of obstacles such as train, worker, and so on). Accuracy of this study was calculated from the data, which was collected at some known points. Experimental results showed that WiFi-based indoor location system has a level of accuracy of a few meters in tunnel construction site. From the results, it is inferred that the location tracking system can track the approximate location of labors in the construction site. It is able to alert the labors when they are closer to dangerous zones like poisonous region or cave-in..

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