• 제목/요약/키워드: Functional MRI (fMRI)

검색결과 231건 처리시간 0.024초

Data Treatment in Functional MRI(fMRI)

  • 김태;이재희;최보영;서태석;이흥규;신경섭
    • 대한자기공명의과학회:학술대회논문집
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    • 대한자기공명의과학회 1997년도 제2차 추계학술대회 초록집
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    • pp.48-48
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    • 1997
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Investigation of light stimulated mouse brain activation in high magnetic field fMRI using image segmentation methods

  • Kim, Wook;Woo, Sang-Keun;Kang, Joo Hyun;Lim, Sang Moo
    • 한국컴퓨터정보학회논문지
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    • 제21권12호
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    • pp.11-18
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    • 2016
  • Magnetic resonance image (MRI) is widely used in brain research field and medical image. Especially, non-invasive brain activation acquired image technique, which is functional magnetic resonance image (fMRI) is used in brain study. In this study, we investigate brain activation occurred by LED light stimulation. For investigate of brain activation in experimental small animal, we used high magnetic field 9.4T MRI. Experimental small animal is Balb/c mouse, method of fMRI is using echo planar image (EPI). EPI method spend more less time than any other MRI method. For this reason, however, EPI data has low contrast. Due to the low contrast, image pre-processing is very hard and inaccuracy. In this study, we planned the study protocol, which is called block design in fMRI research field. The block designed has 8 LED light stimulation session and 8 rest session. All block is consist of 6 EPI images and acquired 1 slice of EPI image is 16 second. During the light session, we occurred LED light stimulation for 1 minutes 36 seconds. During the rest session, we do not occurred light stimulation and remain the light off state for 1 minutes 36 seconds. This session repeat the all over the EPI scan time, so the total spend time of EPI scan has almost 26 minutes. After acquired EPI data, we performed the analysis of this image data. In this study, we analysis of EPI data using statistical parametric map (SPM) software and performed image pre-processing such as realignment, co-registration, normalization, smoothing of EPI data. The pre-processing of fMRI data have to segmented using this software. However this method has 3 different method which is Gaussian nonparametric, warped modulate, and tissue probability map. In this study we performed the this 3 different method and compared how they can change the result of fMRI analysis results. The result of this study show that LED light stimulation was activate superior colliculus region in mouse brain. And the most higher activated value of segmentation method was using tissue probability map. this study may help to improve brain activation study using EPI and SPM analysis.

EEG, fMRI, EAV 및 SQUID장치(裝置)를 이용(利用)한 기공현상(氣功現狀) 측정(測定) (The Studies on Qigong state Using EEG, fMRI, EAV and SQUID Measurments)

  • 정찬원;최찬헌;윤유식;소철호;나창수;장경선
    • Korean Journal of Acupuncture
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    • 제21권2호
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    • pp.1-28
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    • 2004
  • Objectives : Human physiological changes in the state of qigong has been measured using EEG(Electroencephalography), functional MRI(functional Magnetic Resonance Image), EAV(Electro-Acupuncture according to Voll) and SQUID(Superconducting Quantum Interference Device) measurements. Methods & Results : EEGs were measured to study the differences between Qigong masters and Qi receiver on the changes of EEG. During Qigong, an alpha waves were increased. The power spectra indicate that the peak frequency of alpha waves increased during Qigong. Qi receiver's EEG signals seemed to affected by the state of himself. Brain activation did not observed when qigong master concentrates the Qi at Laogong(P8). But a localization of fMRI signal in the sensory cortex was observed by electric acupuncture stimulation at Laogong(P8). Five phase deviation of EAV were clearly changed in the both cases of Qigong master and Qi receiver. When a Qigong master concentrates the Qi at Yintang, Laogong(P8), Qihai(CV6) meridian points during Qigong state, the change of magnetic field around acupoints Yintang, Laogong points has been measured using 40-Channel DROS-SQUID apparatus. After smoothing process of the continuously measured magnetic signal around acupoints for a few minutes, we could observe that a series of peaks, magnitude of -1.0~2.5pT appeared. But there was no significant difference in changes of magnetic signal around acupoints. Physical signals of magnetocardiogram has been measured by using 2-Channel DROS SQUID(Magnetocardiogram). Physical signals of magnetocardiogram were clealy changed at the ST segments after S-wave when qigong master concentrates the Qi.

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생명 현상에 대한 과학적 가설 생성과 수리 연산에서 나타나는 두뇌 활성: fMRI 연구 (Brain Activation in Generating Hypothesis about Biological Phenomena and the Processing of Mental Arithmetic: An fMRI Study)

  • 권용주;신동훈;이준기;양일호
    • 한국과학교육학회지
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    • 제27권1호
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    • pp.93-104
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    • 2007
  • 이 연구의 목적은 과학적 가설 생성 과정의 두뇌 활성화 특성을 수리 연산 과정과 비교하여 3.0T fMRI를 이용하여 규명하는 것이다. 이를 위하여 16명의 건강한 남자 피험자가 실험에 자발적으로 참여하였으며, 과학적 가설 생성 과제와 수리 연산 과제를 684초 동안 수행하여 fMRI 영상을 측정하였다. 측정한 후 언어적 보고 자료를 수집하여 fMRI 영상 자료의 신뢰도를 확보하였다. 언어적 보고의 분석 결과 수집한 fMRI 영상 자료 전부를 통계적 분석 대상 자료에 포함시켰다. SPM2 프로그램을 이용하여 통계적으로 분석한 결과, 과학적 가설 생성 과정은 수리 연산 과정과 다른 독립적인 두뇌 네트 을 가지고 있는 것으로 나타났다. 과학적 가설 생성 과정에서는 측두엽의 방추이랑(fusiform gyrus)에서 의문 상황 분석으로 이끌어내진 의미가 전두엽에서 부호화하는 과정이 일어난다고 할 수 있다. 수리 연산 과정은 전두엽과 두정엽의 연합된 영역이 중요한 역할을 하며 기능적 숙련도는 두정엽 영역이 관여하는 것으로 생각된다. 또한 과학적 가설 생성 과정에서는 과학적 감성의 생성도 동반하는 것으로 밝혀졌다. 이러한 연구 결과는 과학적 가설 생성 과정을 두뇌 과학적 측면에서 고찰 할 수 있도록 하였으며, 과학적 가설 생성 학습 프로그램 개발을 위한 기초 자료로 활용될 수 있을 것이다. 또한 과학적 가설 생성 학습 프로그램은 두뇌-기반 학습의 한 전형으로 제안할 수 있다.

Estimation of Reward Probability in the Fronto-parietal Functional Network: An fMRI Study

  • Shin, Yeonsoon;Kim, Hye-young;Min, Seokyoung;Han, Sanghoon
    • 감성과학
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    • 제20권4호
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    • pp.101-112
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    • 2017
  • We investigated the neural representation of reward probability recognition and its neural connectivity with other regions of the brain. Using functional magnetic resonance imaging (fMRI), we used a simple guessing task with different probabilities of obtaining rewards across trials to assay local and global regions processing reward probability. The results of whole brain analysis demonstrated that lateral prefrontal cortex, inferior parietal lobe, and postcentral gyrus were activated during probability-based decision making. Specifically, the higher the expected value was, the more these regions were activated. Fronto-parietal connectivity, comprising inferior parietal regions and right lateral prefrontal cortex, conjointly engaged during high reward probability recognition compared to low reward condition, regardless of whether the reward information was extrinsically presented. Finally, the result of a regression analysis identified that cortico-subcortical connectivity was strengthened during the high reward anticipation for the subjects with higher cognitive impulsivity. Our findings demonstrate that interregional functional involvement is involved in valuation based on reward probability and that personality trait such as cognitive impulsivity plays a role in modulating the connectivity among different brain regions.

Brain Activation Pattern and Functional Connectivity Network during Experimental Design on the Biological Phenomena

  • Lee, Il-Sun;Lee, Jun-Ki;Kwon, Yong-Ju
    • 한국과학교육학회지
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    • 제29권3호
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    • pp.348-358
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    • 2009
  • The purpose of this study was to investigate brain activation pattern and functional connectivity network during experimental design on the biological phenomena. Twenty six right-handed healthy science teachers volunteered to be in the present study. To investigate participants' brain activities during the tasks, 3.0T fMRI system with the block experimental-design was used to measure BOLD signals of their brain and SPM2 software package was applied to analyze the acquired initial image data from the fMRI system. According to the analyzed data, superior, middle and inferior frontal gyrus, superior and inferior parietal lobule, fusiform gyrus, lingual gyrus, and bilateral cerebellum were significantly activated during participants' carrying-out experimental design. The network model was consisting of six nodes (ROIs) and its six connections. These results suggested the notion that the activation and connections of these regions mean that experimental design process couldn't succeed just a memory retrieval process. These results enable the scientific experimental design process to be examined from the cognitive neuroscience perspective, and may be used as a basis for developing a teaching-learning program for scientific experimental design such as brain-based science education curriculum.

외상성 뇌손상 환자에서 대뇌피질의 재조직화: 사례보고 (Medial Reorganization of Primary Motor Cortex in Patient with Traumatic Brain Injury: a fMRI Case Study)

  • 최진호;권용현
    • The Journal of Korean Physical Therapy
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    • 제17권3호
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    • pp.421-428
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    • 2005
  • The tenn 'Brain plasticity' has been identified that our central nervous system is continuously being adapted and modulated according to environmental needs and demands, and has been used to encompass the multifarious mechanisms related to learning, development, and recovery from damage to the nervous system. The purpose of this study was to demonstrate cortical reorganization in a 26-year-old right-handed hemiparetic patient with traumatic primary motor cortex (M1) injury, using functional MRI (fMRI). The unaffected (left) primary sensori-motor cortex centered on the precentral knob was activated during unaffected (right) hand movements. However, the medial area of the injured M1 was activated during affected (left) hand movements. It seems that the motor function of the affected hand in this patient was reorganized into the medial area of the injured precentral knob. These investigations provide a great useful information and clinical evidences with the specialized clinician in stroke physical therapy about patient's prognosis and therapeutic guidelines.

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운동과제에 대한 클로피도그렐의 약리적 뇌자기공명영상 (Pharmacological Functional Magnetic Resonance Imaging of Cloropidol on Motor Task)

  • 장용민
    • Investigative Magnetic Resonance Imaging
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    • 제16권2호
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    • pp.136-141
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    • 2012
  • 목적: 정상인에서 항혈소판제제인 클로피도그렐이 손운동기능 과제를 수행하는 동안 운동기능의 생리학적 반응에 대한 약리적 조절효과를 알아보고자 하였다. 대상과 방법: 10명의 오른손잡이 정상인을 대상으로 클로피도그렐 사용전, 최대 복용량 복용후, 정상상태 유지시로 세번에 걸쳐 뇌기능 자기공명영상 데이터를 획득하였다. 운동과제로는 주먹을 쥐었다 폈다하는 운동을 시행하였고 3.0 테슬라 자기공명영상기기에서 혈액산소의존성(BOLD) 대조도를 획득하였으며 이를 위하여 $T2^*$ 강조 EPI 영상기법을 사용하였다. 뇌기능 자기공명영상 데이터의 영상전처리 및 통계분석은 SPM2를 사용하였다. 결과: 이차수준 분석에서 주운동영역을 포함하는 편측 감각운동중추의 활성화가 나타났다. 클로피도그렐 사용전의 활성화 화소수는 173, 최대 복용량 복용후 활성화 화소수는 1049, 정상상태 유지시 활성화 화소수는 673 이었다. 최대 T값을 기준으로 측정한 BOLD 신호의 강도변화는 관찰되지 않았다. 결론: 본 연구결과는 클로피도그렐에 의해 대뇌 운동 활성이 조절된다는 사실과 또한 뇌기능 자기공명영상이 이러한 변화를 감지할수 있을만큼 높은 민감성을 가진다는 사실을 제안하고 있다.

족삼리(足三里)(St36)의 전침자극(電鍼刺戟)이 fMRI상 뇌활성(腦活性) 변화(變化)에 미치는 영향(影響) (A fMRI study on the cerebral activity induced by Electro-acupuncture on Zusanli(St36))

  • 김영일;김영화;임윤경;이현;이병렬;김연진
    • Journal of Acupuncture Research
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    • 제20권5호
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    • pp.133-150
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    • 2003
  • Objective: Recently. many studies have showed the evidences of the effect of the Electro-acupuncture treatment through scientific. Methods : One of these methods is functional MRI. We performed electro-acupuncture on Zusanli(St36) and observed the change of brain activation using fMRI. Zusanli(St36) is located on the lateral side of the lower leg. 3 cun(寸) inferior to the Patella of the lower border. Theoretically and clinically. this point has been considered very important for gynecological disorders. spleen and stomach disorders. and psychological disorders. To see the effects of electro-acupuncture stimulation on Zusanli(St36). the experiment was carried out on twelve healthy volunteers. using the gradient echo sequence with the 3.0T whole-body fMRI system(ISOL). After the needle insertion on right Zusanli(St36). 2 Hz of electric stimulation was given for 30 seconds. repeated five times. with 30 seconds' intervals. The Image analysis including motion correction. talairach transformation, and smoothing was done with SPM99. Results ad conclusion : The electro-acupuncture stimulation on Zusanli(St36) activates Brodmann Area 6, 13, 2, 19, 21, 22, 39, 40, 38, 3which indicates the pathways of the electro-acupuncture stimulation on Zusanli(St36) and the possibility of the relationship of the electro-acupuncture stimulation on Zusanli(St36) with autonomic nervous system, internal organic system.

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