• Title/Summary/Keyword: 뇌영상화

Search Result 173, Processing Time 0.024 seconds

Expert Opinions and Recommendations for the Clinical Use of Quantitative Analysis Software for MRI-Based Brain Volumetry (뇌 자기공명영상 뇌용적 분석 소프트웨어의 임상적 적용에 대한 전문가 의견과 권고안)

  • Ji Young Lee;Ji Eun Park;Mi Sun Chung;Se Won Oh;Won-Jin Moon;Aging and Neurodegeneration Imaging (ANDI) Study Group, Korean Society of Neuroradiology (KSNR)
    • Journal of the Korean Society of Radiology
    • /
    • v.82 no.5
    • /
    • pp.1124-1139
    • /
    • 2021
  • The objective assessment of atrophy and the measurement of brain volume is important in the early diagnosis of dementia and neurodegenerative diseases. Recently, several MR-based volumetry software have been developed. For their clinical application, several issues arise, including the standardization of image acquisition and their validation of software. Additionally, it is important to highlight the diagnostic performance of the volumetry software based on expert opinions. We instituted a task force within the Korean Society of Neuroradiology to develop guidelines for the clinical use of MR-based brain volumetry software. In this review, we introduce the commercially available software and compare their diagnostic performances. We suggest the need for a standard protocol for image acquisition, the validation of the software, and evaluations of the limitations of the software related to clinical practice. We present recommendations for the clinical applications of commercially available software for volumetry based on the expert opinions of the Korean Society of Neuroradiology.

기능적 자기공명영상에 나타난 숫자연산의 대뇌 활성화 연구

  • 유재욱;이홍재;이동훈;문찬홍;이은정;나동규
    • Proceedings of the KSMRM Conference
    • /
    • 2001.11a
    • /
    • pp.103-103
    • /
    • 2001
  • 목적: 기능적 자기공명영상을 이용하여 숫자 연산과 연관된 뇌영역을 알아보고자 하였다. 대상 및 방법: 정상 성인 자원자 6명을 대상으로 연산과제를 이용하여 연산과제와 관계된 대뇌영역 꼭 활성화를 유도하였다. 실험은 실험 I과 실험II로 나누어 진행하였다. 실험 I에서 연산과제는 스크린을 통해 보여주고 계산식이 맞는지를 판단하여 신호하도록 하였고[예:(4+5)$\times$8=72], 대조과제는 십자모양을 집중하여 보도록 하였다. 실험II에서 연산과제는 실험 I과 동일하였고, 대조과제는 화면에 제시되는 세 개의 수가 모두 홀수 또는 짝수일 때 신호하도록 하였다. 기능적 자기공명영상은 1.5T 초전도 자기공명영상장치에서 EPI BOLD 기법을 이용하여 얻었으며 6명에서 얻은 영상을 정상화(normalize)한 후 SPM 프로그램을 이용하여 통계분석을 하였다. 활성화된 뇌 영역은 모형뇌에 지도화하여 두 과제에서 활성화된 뇌 영역을 비교 분석하였다.

  • PDF

Detection of Tumor in Abnormal Region of Brain MR Images (뇌 MR영상에서 비정상 영역내의 종양 검출)

  • 송미영;조경은;조형제
    • Proceedings of the Korea Multimedia Society Conference
    • /
    • 2002.05c
    • /
    • pp.160-163
    • /
    • 2002
  • 본 연구는 의료영상 중에 가장 많이 사용하는 의료 영상인 MR영상 중에서 머리 부위의 질병인 뇌종양에 대한 진단을 돕기 위한 연구이다. 뇌 MR영상의 T2강조 영상을 살펴보면, 종양 영역은 명암이 밝게 나타나고 종양 영역의 주변은 어둡게 나타나는 특성을 볼 수 있다. 따라서 제안된 방법은 뇌종양 특성인 명암의 밝기 정보를 기반으로 비정상 영역 내에서 명암 정보가 유사한 영역끼리 그룹화하고 그 중에 가장 밝은 영역을 종양 후보 영역으로 추출한 후 각 후보 영역들 중에서 MBR이 가장 큰 것을 종양으로 검출한다.

  • PDF

The Feasibility for Whole-Night Sleep Brain Network Research Using Synchronous EEG-fMRI (수면 뇌파-기능자기공명영상 동기화 측정과 신호처리 기법을 통한 수면 단계별 뇌연결망 연구)

  • Kim, Joong Il;Park, Bumhee;Youn, Tak;Park, Hae-Jeong
    • Sleep Medicine and Psychophysiology
    • /
    • v.25 no.2
    • /
    • pp.82-91
    • /
    • 2018
  • Objectives: Synchronous electroencephalogram (EEG) and functional magnetic resonance imaging (fMRI) has been used to explore sleep stage dependent functional brain networks. Despite a growing number of sleep studies using EEG-fMRI, few studies have conducted network analysis on whole night sleep due to difficulty in data acquisition, artifacts, and sleep management within the MRI scanner. Methods: In order to perform network analysis for whole night sleep, we proposed experimental procedures and data processing techniques for EEG-fMRI. We acquired 6-7 hours of EEG-fMRI data per participant and conducted signal processing to reduce artifacts in both EEG and fMRI. We then generated a functional brain atlas with 68 brain regions using independent component analysis of sleep fMRI data. Using this functional atlas, we constructed sleep level dependent functional brain networks. Results: When we evaluated functional connectivity distribution, sleep showed significantly reduced functional connectivity for the whole brain compared to that during wakefulness. REM sleep showed statistically different connectivity patterns compared to non-REM sleep in sleep-related subcortical brain circuits. Conclusion: This study suggests the feasibility of exploring functional brain networks using sleep EEG-fMRI for whole night sleep via appropriate experimental procedures and signal processing techniques for fMRI and EEG.

Comparisons of functional brain mappings in sensory and affective aspects following taste stimulation (미각자극에 따른 감각 및 감성적 미각정보 처리과정의 기능적 매핑 비교)

  • Lee, Kyung Hee
    • Science of Emotion and Sensibility
    • /
    • v.15 no.4
    • /
    • pp.585-592
    • /
    • 2012
  • Food is crucial for the nutrition and survival of humans. Taste system is one of the fundamental senses. Taste cells detect and respond to five basic taste modalities (sweet, bitter, salty, sour, and umami). However, the cortical processing of taste sensation is much less understood. Recently, there were many efforts to observe the brain activation in response to taste stimulation using functional magnetic resonance imaging (fMRI), magnetoencephalography (MEG), and optical imaging. These different techniques do not provide directly comparable data each other, but the complementary investigations with those techniques allowed the description and understanding of the sequence of events with the dynamics of the spatiotemporal pattern of activation in the brain in response to taste stimulation. The purpose of this study is the understanding of the brain activities to taste stimuli in sensory and affective aspects and the reviewing of the recent research of the gustotopic map by functional brain mapping.

  • PDF

Medical Image Processing and Managing System for Automatic Knowledge-based Diagnosis (지식기반 진단 자동화를 위한 의료영상 처리 및 관리 시스템)

  • 송미영;조경은;채정숙;김준태;엄기현;조형제;차순주
    • Proceedings of the Korea Multimedia Society Conference
    • /
    • 2001.06a
    • /
    • pp.29-32
    • /
    • 2001
  • 현재 뇌 질환의 진단은 전문의의 주관극인 판단에 의하기 때문에 보다 정량화되고 객관화된 근거를 제시할 수 있는 의료 영상 정보 분석 시스템이 필요하다. 본 시스템은 MR 영상에 대해 영상 처리 및 정보 관리를 통한 뇌 질만의 진단 및 계획이나 방법의 결정을 하는데 도움을 주기 위한 지식기반 의료 영상 처리 및 관리 시스템으로 의료 영상의 처리와 진단, 영상처리시스템 이용의 극대화, 시스템간의 유기적 연결 및 운용상의 문제점 등 의학영상에 관한 제반 연구를 수행함으로써 국내의 의료영상 기술을 선도하며, 의학영상분야 및 의과학 발전에 기여할 수 있을 것으로 생각된다.

  • PDF

Structural Segmentation for 3-D Brain Image by Intensity Coherence Enhancement and Classification (명암도 응집성 강화 및 분류를 통한 3차원 뇌 영상 구조적 분할)

  • Kim, Min-Jeong;Lee, Joung-Min;Kim, Myoung-Hee
    • The KIPS Transactions:PartA
    • /
    • v.13A no.5 s.102
    • /
    • pp.465-472
    • /
    • 2006
  • Recently, many suggestions have been made in image segmentation methods for extracting human organs or disease affected area from huge amounts of medical image datasets. However, images from some areas, such as brain, which have multiple structures with ambiruous structural borders, have limitations in their structural segmentation. To address this problem, clustering technique which classifies voxels into finite number of clusters is often employed. This, however, has its drawback, the influence from noise, which is caused from voxel by voxel operations. Therefore, applying image enhancing method to minimize the influence from noise and to make clearer image borders would allow more robust structural segmentation. This research proposes an efficient structural segmentation method by filtering based clustering to extract detail structures such as white matter, gray matter and cerebrospinal fluid from brain MR. First, coherence enhancing diffusion filtering is adopted to make clearer borders between structures and to reduce the noises in them. To the enhanced images from this process, fuzzy c-means clustering method was applied, conducting structural segmentation by assigning corresponding cluster index to the structure containing each voxel. The suggested structural segmentation method, in comparison with existing ones with clustering using Gaussian or general anisotropic diffusion filtering, showed enhanced accuracy which was determined by how much it agreed with the manual segmentation results. Moreover, by suggesting fine segmentation method on the border area with reproducible results and minimized manual task, it provides efficient diagnostic support for morphological abnormalities in brain.

Quantification of Cerebrovascular Reserve Using Tc-99m HMPAO Brain SPECT and Lassen's Algorithm (Tc-99m HMPAO 뇌 SPECT와 Lassen 알고리즘을 이용한 뇌혈관 예비능의 정량화)

  • Kim, Kyeong-Min;Lee, Dong-Soo;Kim, Seok-Ki;Lee, Jae-Sung;Kang, Keon-Wook;Yeo, Jeong-Seok;Chung, June-Key;Lee, Myung-Chul
    • The Korean Journal of Nuclear Medicine
    • /
    • v.34 no.4
    • /
    • pp.322-335
    • /
    • 2000
  • Purpose: For quantitative estimation of cerebrovascular reserve (CVR), we estimated the cerebral blood flow (CBF) using Lassen's nonlinearity correction algorithm and Tc-99m HMPAO brain SPECT images acquired with consecutive acquisition protocol. Using the values of CBF in basal and acetaBolamide (ACZ) stress states, CBF increase was calculated. Materials and Methods: In 9 normal subjects (age; $72{\pm}4$ years), brain SPECT was performed at basal and ACZ stress states consecutively after injection of 555 MBq and 1,110 MBq of Tc-99m HMPAO, respectively. Cerebellum was automatically extracted as reference region on basal SPECT image using threshold method. Assuming basal CBF of cerebellum as 55 ml/100g/min, CBF was calculated lot every pixel at basal states using Lassen's algorithm. Cerebellar blood flow at stress was estimated comparing counts of cerebellum at rest and ACZ stress and Lassen's algorithm. CBF of every pixel at ACZ stress state was calculated using Lassen's algorithm and ACZ cerebellar count. CVR was calculated by subtracting basal CBF from ACZ stress CBF for every pixel. The percent CVR was calculated by dividing CVR by basal CBF. The CBF and percentage CVR parametric images were generated. Results: The CBF and percentage CVR parametric images were obtained successfully in all the subjects. Global mean CBF were $49.6{\pm}5.5ml/100g/min\;and\;64.4{\pm}10.2ml/100g/min$ at basal and ACZ stress states, respectively. The increase of CBF at ACZ stress state was $14.7{\pm}9.6ml/100g/min$. The global mean percent CVR was 30.7% and was higher than the 13.8% calculated using count images. Conclusion: The blood flow at basal and ACZ stress states and cerebrovascular reserve were estimated using basal/ACZ Tc-99m-HMPAO SPECT images and Lassen's algorithm. Using these values, parametric images for blood flow and cerebrovascular reserve were generated.

  • PDF

Visualization based on brain MRI using CUDA (뇌 MR 영상 기반 CUDA를 사용한 3차원 가시화)

  • Son, Ji-Heon;Jeon, Woong-Gi;Lee, Young-Seung;Seo, Won-Ho;Choi, Heung-Kook
    • Proceedings of the Korea Multimedia Society Conference
    • /
    • 2012.05a
    • /
    • pp.201-204
    • /
    • 2012
  • 최근 우리나라 사회가 고령화로 진행함에 따라 노인성 질환인 치매 환자가 증가하고 있는 추세이다. 치매를 진단하기 위한 방법으로는 뇌 MR 영상을 사용하여 치매에 의해 영향을 받는 특정 뇌 영역인 해마의 위축률을 기반으로 진단 할 수 있다는 보고가 있다. 본 연구에서는 치매 환자 위한 보조적 판별 시스템 개발의 예비 연구로써 뇌 MR 영상 데이터를 3차원으로 가시화하는 것이 목적이며, 최근 대용량으로 획득되는 MR 영상을 고속으로 처리하기 위하여 CUDA를 사용한 병렬 컴퓨팅 구축을 하고 FPS(Frame Per Second)를 측정하여 유용성을 평가하고자 한다.

  • PDF

Analysis of Inflow and Susceptibility Effects in fMRI Obtained by CGE and TRFGE Techniques (CGE와 TRFGE 기법으로 얻은 뇌기능 영상에서 혈류효과와 자화율 효과의 해석)

  • No, Yong-Man;Jeong, Sun-Cheol;Jo, Jang-Hui
    • Journal of Biomedical Engineering Research
    • /
    • v.16 no.4
    • /
    • pp.431-438
    • /
    • 1995
  • Functional imaging based on the susceptibility only is achieved by separation of the susceptibility effect from the mixture of flow effect by use of a tailored RF pulse in conjunction with gradient echo sequence. Using the tailored RF pulse the susceptibility enhanced functional imaging appears to be explicitly related to the deoxygenation processes, while in the conventional gradient echo technique functional contrast on $T2^{*}$ effect images appear to be mixed with a significant fraction of blood flow (in- flow) signals of both arterial as well as venous bloods due to the nature of the fast sequence employed with the gradient echo technique. In this paper, using the tailored RF pulses, one can unambiguously separate the susceptibility and flow effects in functional imaging. Since the signal obtained can be made sufficiently high and represents oxygenation process more accurately, it seems possible to study quantitative oxygen metabolisms in brain function hitherto difficult to do with other gradient echo techniques.

  • PDF