• Title/Summary/Keyword: Magnetic Resonance(MR) spectroscopy

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Proton Magnetic Resonance Spectroscopic Changes of the Primary Motor Cortex and Supplementary Motor Area in Hemiparetic Patients with Corticospinal Tract Injury due to Deep Intracerebral Hematoma

  • Yang, Dong-Joon;Son, Byung-Chul;Baik, Hyun-Man;Lee, Sang-Won;Sung, Jae-Hoon;Choe, Bo-Young
    • Proceedings of the Korean Society of Medical Physics Conference
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    • 2005.04a
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    • pp.32-34
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    • 2005
  • Purpose: To investigate the metabolic changes in the motor and motor association cortices following axonal injury in the internal capsule that was caused by deep intracerebral hematoma. Materials and Methods: Using proton magnetic resonance spectroscopy (1H MRS), the authors studied the primary motor cortices (M-1) and supplementary motor areas (SMA) of 9 hemiparetic patients with documentable hemiparesis of varying severity, and we studied 10 normal volunteers as controls. To measure the M-1 and SMA biochemical changes, 4 separate single volumes of interest (VOIs) were located bilaterally in the affected and unaffected hemisphere (AH and UH). Results: 1H MRS provided a neuronal and axonal viability index by measuring levels of N-acetylaspartate (NAA) and creatine/phosphocreatine (Cr). The M-1/SMA NAA/Cr ratios of the AH and UH in patients, and the AH and normal volunteers were compared. The NAA/Cr ratios of the M-1 and SMA in AH, and the SMA in UH were significantly lower than those of normal volunteers. Conclusion: These 1H MRS findings indicate that axonal injury in the descending motor pathway at the level of internal capsule could induce metabolic changes in the higher centers of the motor pathway.

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A Study on the Metabolite Changes in Brain Diseases: 3 Teslar 1H Magnetic Resonance Spectroscopy (뇌질환 대사물질 변화의 고찰; 3 Teslar 수소 자기공명분광법)

  • Eun, Sungjong;Kim, Jeongjae;Yoo, Seungcheol
    • Journal of the Korean Society of Radiology
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    • v.8 no.1
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    • pp.35-42
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    • 2014
  • The purpose of this study is to know the differences of metabolism in abnormal brain disease using a single-voxel proton MR spectroscopy(1H MRS) Together with five normal volunteers and each five patients with brain diseases, pathologically proved, underwent MRI and 1H MRS. The quantitative results of 1H MRS in adrenoleukodystrophy(ALD), hepatic encephalopathy(HE), and infarction gave unique information on the metabolite changes related with the white matter: the concentration of NAA decreased in all diseases; Cho, mI and Lac increased in ALD; Cho decreased in HE; and ${\beta}{\cdot}{\gamma}$-Glx and Lac increased in infarction. It is concluded that 1H MRS is capable of diagnosing brain diseases by monitoring metabolite changes in vivo that subsequently develope into abnormalities. 1H MRS may be a useful clinical tool for in both diagnosis and prognosis of brain diseases.

Proton MR Spectroscopic Changes in Parkinson's Disease

  • 백현만;최보영;손병철;정성택;이형구;서태석
    • Proceedings of the Korean Society of Medical Physics Conference
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    • 2003.09a
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    • pp.74-74
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    • 2003
  • Purpose: To investigate whether there are significant changes in regional brain metabolism in patients with Parkinson's disease after thalamotomy using proton magnetic resonance spectroscopy (lH MRS). Methods: Fifteen patients with Parkinson's disease of mean age 56.5 years (7 males and 8 females; mean age, 56.5 years) that have treated with levodopa were included. All patients with tremor experienced amelioration of their symptoms on the side contralateral to the thalamotomy. As a single-voxel technique, 1H MR spectra were obtained from the volume of interested regions in thalamus and primary motor cortex. Spectral parameters were: 20 ms TE, 2000 ms TR, 128 averages, 2500 Hz spectral width, and 2048 data points. Results: We found that NAA/Cho ratios showed generally low levels in thalamus in Parkinson's disease patients with clinical improvement following thalamotomy. Conclusions: 1H MRS may be a useful utility for the aid in better understanding the pathophy-siologic process in Parkinson's disease patients on the basis of the variation of NAA/Cho ratio. Acknowledgement: This study was supported by a grant of the Center for Functional and Metabolic Imaging Technology, Ministry of Health & Welfare, Republic of Korea (02-PJ3-PG6-EV07-0002).

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Multimodal neuroimaging in presurgical evaluation of childhood epilepsy

  • Jung, Da-Eun;Lee, Joon-Soo
    • Clinical and Experimental Pediatrics
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    • v.53 no.8
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    • pp.779-785
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    • 2010
  • In pre-surgical evaluation of pediatric epilepsy, the combined use of multiple imaging modalities for precise localization of the epileptogenic focus is a worthwhile endeavor. Advanced neuroimaging by high field Magnetic resonance imaging (MRI), diffusion tensor images, and MR spectroscopy have the potential to identify subtle lesions. $^{18}F$-FDG positron emission tomography and single photon emission tomography provide visualization of metabolic alterations of the brain in the ictal and interictal states. These techniques may have localizing value for patients which exhibit normal MRI scans. Functional MRI is helpful for non-invasively identifying areas of eloquent cortex. These advances are improving our ability to noninvasively detect epileptogenic foci which have gone undetected in the past and whose accurate localization is crucial for a favorable outcome following surgical resection.

Polycarprolacton으로 표면 수식된 나노 산화철 조영제의 합성에 관한 연구

  • 박동규;박지애;장용민;강덕식
    • Proceedings of the KSMRM Conference
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    • 2003.10a
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    • pp.35-35
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    • 2003
  • 목적: 나노 산화철 입자 및 생고분자인 PCL(Polycarprolacton)로 표면 코팅한 T2 MR 조영제를 합성하고 동물 종양 모델을 이용하여 In vivo 특성을 조사하고자 하였다. 대상 및 방법: $FeC1_2$.$4H_2$O와 $FeC1_3$.$6H_2$O을 무게비를 1:2로 정량하여 첨가하고 NaOH 혹은 TMAOH로 pH를 조절한후 PCL를 첨가하여 magnetite가 생성되는 동시에 고분자로서 코팅을 한후 증류수로 여러번 씻어준다. TEM, SEM, DLS 및 IR spectroscopy와 SQUID등을 측정하여 최종 반응물의 입자크기, 자성, 코팅 상태등을 평가하였다. 최소의 입자크기를 형성하는데 필요한 실험 조건을 찾기 위해 반응온도, 코팅할 고분자의 함량, 교반속도별로 실험하여서 최적의 조건을 찾으려 하였다. 토끼의 간에 VX2 암종을 이식한 동물 모델을 이용하여 PCL로 표면 코팅된 나노자성체의 in vivo 영상 특성을 알아보았다.

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3.0T 1H MR Spectroscopy를 위한 기존 STEAM 펄스시퀀스의 최적화

  • 백현만;정성택;현정호;류완석;류택현;최환준;김시승;최보영
    • Proceedings of the KSMRM Conference
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    • 2002.11a
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    • pp.82-82
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    • 2002
  • 목적: Phase cycling과 fat suppression을 기존 STEAM 펄스시퀀스에 추가 및 최적화함으로써 3.0T 1H MRS 스펙트럼의 quality를 향상시키는 데 그 목적이 있다. 대상 및 방법: 가톨릭의대에 설치된 3.0T MRI를 이용하여 STEAM 펄스시퀀스를 최적화하였다. 우선 CHESS 펄스시퀀스를 이용하여 물 신호를 억제하고, 대사물질의 신호에 영향을 주는 fat 신호를 제거하도록 펄스시퀀스 최적화를 시험하였다. 또한 Phase cycling을 이용하여 Noise 신호를 제거하였다. 스펙트럼을 분석하기 위하여 본 사에서 개발한 MaqSpec 프로그램을 이용하였고, Post-processing을 한 후 펄스시퀀스 변경 전후의 MRS 스펙트럼을 비교하였다.

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Alteration Analysis of Normal Human Brain Metabolites with Variation of SENSE and NEX in 3T Multi Voxel Spectroscopy (3T Multi Voxel Spectroscopy에서 SENSE와 NEX 변화에 따른 정상인 뇌 대사물질 변화 분석)

  • Seong, Yeol-Hun;Rhim, Jae-Dong;Lee, Jae-Hyun;Cho, Sung-Bong;Woo, Dong-Chul;Choe, Bo-Young
    • Progress in Medical Physics
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    • v.19 no.4
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    • pp.256-262
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    • 2008
  • To evaluate the metabolic changes in normal adult brains due to alterations SENSE and NEX (number of excitation) by multi voxel MR Spectroscopy at 3.0 Tesla. The study group was composed of normal volunteers (5 men and 8 women) with a mean ($\pm$ standard deviation) age of 41 (${\pm}11.65$). Their ages ranged from 28 to 61 years. MR Spectroscopy was performed with a 3.0T Achieva Release Version 2.0 (Philips Medical System-Netherlands). The 8 channel head coil was employed for MRS acquisition. The 13 volunteers underwent multi voxel spectroscopy (MVS) and single voxel spectroscopy (SVS) on the thalamus area with normally gray matter. Spectral parameters were as follows: 15 mm of thickness; 230 mm of FOV (field of view); 2000 msecs of repetition time (TR); 288 msecs of echo time (TE); $110{\times}110$ mm of VOI (view of interest); $15{\times}15{\times}15$ mm of voxel size. Multi voxel spectral parameters were made using specially in alteration of SENSE factor (1~3) and 1~2 of NEX. All MRS data were processed by the jMRUI 3.0 Version. There was no significant difference in NAA/Cr and Cho/Cr ratio between MVS and SVS likewise the previous results by Ross and coworkers in 1994. In addition, despite the alterations of SENSE factor and NEX in MVS, the metabolite ratios were not changed (F-value : 1.37, D.F : 3, P-value : 0.262). However, line-width of NAA peak in MVS was 3 times bigger than that in SVS. In the present study, we demonstrated that the alterations of SENSE factor and NEX were not critically affective to the result of metabolic ratios in the normal brain tissue.

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Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model

  • Gokhan Gurkan;Ozum Atasoy;Nilsu Cini;Ibrahim Halil Sever;Bahattin Ozkul;Gokhan Yaprak;Cansin Sirin;Yigit Uyanikgil;Ceren Kizmazoglu;Mumin Alper Erdogan;Oytun Erbas
    • Journal of Korean Neurosurgical Society
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    • v.66 no.5
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    • pp.511-524
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    • 2023
  • Objective : This animal model aimed to compare the rat group that received brain irradiation and did not receive additional treatment (only saline) and the rat group that underwent brain irradiation and received Granulocyte colony stimulating factor (G-CSF) treatment. In addition, the effects of G-CSF on brain functions were examined by magnetic resonance (MR) imaging and histopathologically. Methods : This study used 24 female Wistar albino rats. Drug administration (saline or G-CSF) was started at the beginning of the study and continued for 15 days after whole-brain radiotherapy (WBRT). WBRT was given on day 7 of the start of the study. At the end of 15 days, the behavioral tests, including the three-chamber sociability test, open field test, and passive avoidance learning test, were done. After the behavioral test, the animals performed the MR spectroscopy procedure. At the end of the study, cervical dislocation was applied to all animals. Results : G-CSF treatment positively affected the results of the three-chamber sociability test, open-space test and passive avoidance learning test, cornu Ammonis (CA) 1, CA3, and Purkinje neuron counts, and the brain levels of brain-derived neurotrophic factor and postsynaptic density protein-95. However, G-CSF treatment reduced the glial fibrillary acidic protein immunostaining index and brain levels of malondialdehyde, tumor necrosis factor-alpha, nuclear factor kappa-B, and lactate. In addition, on MR spectroscopy, G-CSF had a reversible effect on brain lactate levels. Conclusion : In this first designed brain irradiation animal model, which evaluated G-CSF effects, we observed that G-CSF had reparative, neuroprotective and anti-neurodegenerative effects and had increased neurotrophic factor expression, neuronal counts, and morphology changes. In addition, G-CSF had a proven lactate-lowering effect in MR spectroscopy and brain materials.