• 제목/요약/키워드: Magnetic Resonance Thermometry

검색결과 5건 처리시간 0.023초

T1-Based MR Temperature Monitoring with RF Field Change Correction at 7.0T

  • Kim, Jong-Min;Lee, Chulhyun;Hong, Seong-Dae;Kim, Jeong-Hee;Sun, Kyung;Oh, Chang-Hyun
    • Investigative Magnetic Resonance Imaging
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    • 제22권4호
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    • pp.218-228
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    • 2018
  • Purpose: The objective of this study is to determine the effect of physical changes on MR temperature imaging at 7.0T and to examine proton-resonance-frequency related changes of MR phase images and T1 related changes of MR magnitude images, which are obtained for MR thermometry at various magnetic field strengths. Materials and Methods: An MR-compatible capacitive-coupled radio-frequency hyperthermia system was implemented for heating a phantom and swine muscle tissue, which can be used for both 7.0T and 3.0T MRI. To determine the effect of flip angle correction on T1-based MR thermometry, proton resonance frequency, apparent T1, actual flip angle, and T1 images were obtained. For this purpose, three types of imaging sequences are used, namely, T1-weighted fast field echo with variable flip angle method, dual repetition time method, and variable flip angle method with radio-frequency field nonuniformity correction. Results: Signal-to-noise ratio of the proton resonance frequency shift-based temperature images obtained at 7.0T was five-fold higher than that at 3.0T. The T1 value increases with increasing temperature at both 3.0T and 7.0T. However, temperature measurement using apparent T1-based MR thermometry results in bias and error because B1 varies with temperature. After correcting for the effect of B1 changes, our experimental results confirmed that the calculated T1 increases with increasing temperature both at 3.0T and 7.0T. Conclusion: This study suggests that the temperature-induced flip angle variations need to be considered for accurate temperature measurements in T1-based MR thermometry.

완전발달 난류 원관 유동에서의 3T 및 7T MRI를 이용한 자기공명온도계의 적용 (Application of Magnetic Resonance Thermometry (MRT) on Fully Developed Turbulent Pipe Flow using 3T and 7T MRI)

  • 류형우;백승찬;김동현;이활;오석훈;황원태
    • 한국가시화정보학회지
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    • 제18권1호
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    • pp.26-37
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    • 2020
  • Magnetic resonance thermometry (MRT) is a technique capable of measuring three-dimensional mean temperature fields by utilizing temperature-dependent shifts in proton resonance frequency. In this study, experimental verification of the technique is obtained by measuring 3D temperature fields within fully developed turbulent pipe flow, using 3T and 7T MRI scanners. The effect of the proton resonance frequency (PRF) thermal constant is examined in detail.

온도범위에 따른 비침습적 자기공명 온도측정방법의 최적화 (Temperature-Range-Dependent Optimization of Noninvasive MR Thermometry Methods)

  • 김종민;;조영승;;김정희;이철현;오창현
    • 대한의용생체공학회:의공학회지
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    • 제36권6호
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    • pp.241-250
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    • 2015
  • Noninvasive temperature monitoring is feasible with Magnetic Resonance Imaging (MRI) based on temperature sensitive MR parameters such as $T_1$ and $T_2$ relaxation times, Proton Resonance Frequency shift (PRFs), diffusion, exchange process, magnetization transfer contrast, chemical exchange saturation transfer, etc. While the temperature monitoring is very useful to guide the thermal treatment such as RF hyperthermia or thermal ablation, the optimization of the MR thermometry method is essential because the range of temperature measurement depends on the choice of the measurement methods. Useful temperature range depends on the purpose of treatment methods, for example, $42^{\circ}C$ to $45^{\circ}C$ for RF hyperthermia and over $50^{\circ}C$ for thermal ablation. In this paper, MR thermometry methods using $T_1$ and $T_2$ relaxation times and PRFs-based MR thermometry are tried on a 3.0 T MRI system and their results are reported and compared. In addition, the scanning protocol and temperature calculation algorithms from $T_1$ and $T_2$ relaxation times and PRFs are optimized for the different temperature ranges for the purpose of RF hyperthermia and/or thermal ablation.

Magnetic Resonance-Guided Focused Ultrasound in Neurosurgery: Taking Lessons from the Past to Inform the Future

  • Jung, Na Young;Chang, Jin Woo
    • Journal of Korean Medical Science
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    • 제33권44호
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    • pp.279.1-279.16
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    • 2018
  • Magnetic resonance-guided focused ultrasound (MRgFUS) is a new emerging neurosurgical procedure applied in a wide range of clinical fields. It can generate high-intensity energy at the focal zone in deep body areas without requiring incision of soft tissues. Although the effectiveness of the focused ultrasound technique had not been recognized because of the skull being a main barrier in the transmission of acoustic energy, the development of hemispheric distribution of ultrasound transducer phased arrays has solved this issue and enabled the performance of true transcranial procedures. Advanced imaging technologies such as magnetic resonance thermometry could enhance the safety of MRgFUS. The current clinical applications of MRgFUS in neurosurgery involve stereotactic ablative treatments for patients with essential tremor, Parkinson's disease, obsessive-compulsive disorder, major depressive disorder, or neuropathic pain. Other potential treatment candidates being examined in ongoing clinical trials include brain tumors, Alzheimer's disease, and epilepsy, based on MRgFUS abilities of thermal ablation and opening the blood-brain barrier. With the development of ultrasound technology to overcome the limitations, MRgFUS is gradually expanding the therapeutic field for intractable neurological disorders and serving as a trail for a promising future in noninvasive and safe neurosurgical care.

Center Array-Sequencing 위상펼침 기법의 MR 온도영상 적용에 관한 기초연구 (Preliminary Study on the MR Temperature Mapping using Center Array-Sequencing Phase Unwrapping Algorithm)

  • ;김태형;천송이;한용희;최기승;이광식;전재량;은충기;문치웅
    • Investigative Magnetic Resonance Imaging
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    • 제12권2호
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    • pp.131-141
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    • 2008
  • 목적: 물체 내부의 온도를 비침습적으로 측정할 수 있는 양성자 공명 주파수 이동에 의한 MR 온도영상의 재구성에 center array-sequencing 위상펼침(PU) 기법을 적용시켜 그 성능 및 유용성을 평가하고자 하였다. 대상 및 방법: MR 온도 영상에 앞서 잡음 수준이 다른 타원형 팬텀들을 컴퓨터 모의 실험으로 제작하고 제안된 PU방 법을 적용시켜 잡음에 대한 성능을 평가하였다. MR 실험은 PU 실험과 이를 이용한 온도분포영상획득 실험으로 구분하여 수행되었다. 1.5T MR 영상장치에서 무릎코일과 $T2^*$ 경사자장에코 펄스열을 이용하여 MR 영상을 얻었다. 물통, 오렌지, 아가젤 등의 팬텀을 실험 대상으로 하였고 자체 제작된 온수펌프 장치로 팬텀의 온도를 조절하였다. T 형 열전쌍 온도측정장치로 팬텀 온도를 측정하고 MR 온도영상 결과와 비교하였다. 획득된 MR영상의 위상분포는 제안된 PU방법으로 위상을 편 후 온도분포 영상을 재구성하였다. 가열 전 후의 온도변화와 MR 영상의 위상변화 관계를 이용하여 아가젤 팬텀 내의 MR온도분포 영상을 구하였다. 결과: 제안된 center array-sequencing PU 알고리즘을 이용하여 여러 팬텀에 대한 MR 위상영상의 접힘 현상을 기존 방법보다 간편하고 빠르게 제거할 수 있었고 이를 이용하여 MR 온도영상을 획득할 수 있었다. 결론: 본 연구는 제안된 center array-sequencing 위상펼침 방법이 잡음에 강하고 처리 속도가 빠를 뿐만 아니라 양성자 공명 주파수 이동의 성질을 이용한 MR 온도 영상 획득에 성공적으로 적용될 수 있음을 보였다.

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