• 제목/요약/키워드: Brain PET

검색결과 197건 처리시간 0.029초

인공신경회로망을 이용한 F-18-FDG 뇌 PET의 간질원인병소 자동해석 (Automatic Interpretation of Epileptogenic Zones in F-18-FDG Brain PET using Artificial Neural Network)

  • 이재성;김석기;이명철;박광석;이동수
    • 대한의용생체공학회:의공학회지
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    • 제19권5호
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    • pp.455-468
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    • 1998
  • 이 연구에서는 간질 환자의 F-18-FDG 뇌 PET 영상을 공간정규화 기법으로 표준지도 위에 정규화한 후 표준지도의 해부학적 위치 정보를 이용하여 뇌기능영상의 영역을 자동적으로 분할하고 각 해부학적 위치의 F-18-FDG 섭취율을 추출하였다. 뇌 각 영역의 F-18-FDG 섭취율을 데이터베이스화한 것을 입력으로 하는 인공신경회로망을 구성하고 학습시켜 핵의학 전문의가 판독한 결과와 얼마나 일치되는지를 분석하였다. 핵의학 전문의 2명이 좌측측두엽간질(112명), 우측측두엽간질(81명) 혹은 정상(64명)으로 판독한 F-18-FDG 뇌 PET 영상을 대상으로, 학습의 치우침을 줄이기 위해 각 질환 군에서 동일한 수(40명)를 선택하여 학습군을 구성하고 학습군을 제외한 정상 24명, 좌측측두엽간질 72명, 우측 측두엽간질 41명의 F-18-FDG PET을 시험군으로 하였다. 모든 영상을 SPM76을 이용하여 MNI 표준지도 위에 공간정규화하고 전체 뇌영역의 평균 계수를 100으로 정규화하였다. 영역 분할 프로그램을 개발하여 표준지도를 34개 영역으로 분할하고 모든 영상에서 각 뇌영역엔 대한 평균 계수를 추출하였다. 비선형 패턴분류에 효과적인 다층퍼셉트론 신경회로망 모델을 써서 오류역전파 알고리즘으로 학습시켰다. 한 층의 은닉층을 부여하고 은닉층의 뉴런 수를 5개부터 차츰 늘려가며 최적의 개수를 선택하였다. 초기 가중치와 바이어스 값은 무작위 값을 갖게 하였다. 출력단은 세 개의 뉴런을 갖고 각 뉴런은 입력이 정상이면 [1 0 0], 좌측측두엽간질이면 [0 1 0], 우측측두엽간질이면 [0 1 0]의 값을 탐 값으로 하였다. 뉴런의 활성화 함수는 시그모이드 함수를 사용하였다. 입력단은 17개의 뉴런으로 구성하고 서로 마주보는 뇌영역의 계수 타이(오른쪽-왼쪽)를 입력으로 하였다 회로망의 학습 횟수를 10,000번으로 제한하여 오타의 허용치를 1로 설정하고 학습 횟수가 넘거나 오차가 허용치보다 작을 때 학습을 중단하게 하였다. 모멘텀과 적응형 학습율을 사용하여 신경회로망의 성능을 향상시키고 학습 속도를 빠르게 하였다. 모든 PET 영상에서 성공적으로 공간정규화 파라메터를 추출하여 표준지도에 정규화할 수 있었다 다층퍼셉트론 모델을 기반으로 한 인공신경회로망으로 27개의 은닉층 뉴런을 사용했을 때 최적의 결과를 얻을 수 있었다. 학습군에 대해서 1508번의 반복 학습을 시킨 결과 오차율 0%인 신경 회로망을 얻었으며 시험군에 대해 적용한 결과 전문가의 판독결과와 80.3%의 일치율을 보였다. 은닉층의 뉴런 수가 10개나 30개인 경우에도 학습군에 대해 오타율 0%인 신경회로망을 얻을 수 있었으며 이때의 시험군에 대한 일치율 역시 75∼80%의 값을 보였다.

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Synthesis of O-(3-[18F]Fluoropropyl)-L-tyrosine (L-[18F]FPT) and Its Biological Evaluation in 9L Tumor Bearing Rat

  • Moon, Byung-Seok;Kim, Sang-Wook;Lee, Tae-Sup;Ahn, Soon-Hyuk;Lee, Kyo-Chul;An, Gwang-Il;Yang, Seung-Dae;Chi, Dae-Yoon;Choi, Chang-Woon;Lim, Sang-Moo;Chun, Kwon-Soo
    • Bulletin of the Korean Chemical Society
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    • 제26권1호
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    • pp.91-96
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    • 2005
  • O-(3-[$^{18}$F]Fluoropropyl)-L-tyrosine (L-[$^{18}$F]FPT) was synthesized by nucleophilic radiofluorination followed by acidic hydrolysis of protective groups and evaluated with 9 L tumor bearing rat. L-[$^{18}$F]FPT is an homologue of O-(2-[$^{18}$F]fluoroethyl)-L-tyrosine (L-[$^{18}$F]FET) which recently is studied as a tracer for tumor imaging using positron emission tomography (PET). [$^{18}$F]FPT was directly prepared from the precursor of O-(3-ptoluenesulfonyloxypropyl)- N-(tert-butoxycarbonyl)-L-tyrosine methyl ester. FPT-PET image was obtained at 60 min in 9 L tumor bearing rats. The radiochemical yield of [$^{18}$F]FPT was 0-45% (decay corrected) and the radiochemical purity was more than 95% after HPLC purification. The total time elapsed for the synthesis of [$^{18}$F]FPT was 100 min from EOB (End-of-bombardment). A comparison of uptake studies between [$^{18}$F]FPT and [$^{18}$F]FET was performed. In biodistribution, [$^{18}$F]FPT showed similar pattern with [$^{18}$F]FET in various tissues, but [$^{18}$F]FPT showed low uptake in brain. Furthermore, [$^{18}$F]FPT showed higher tumor-to-brain ratio than [$^{18}$F]FET. In conclusion, [$^{18}$F]FPT seems to be more useful amino acid tracer than [$^{18}$F]FET for brain tumors imaging with PET.

신경 베체트병 1례: 신경학적 증상과 뇌 PET, SPECT, MRI 소견의 비교 (A Case of Neuro-Behest's Disease: Comparison of Neurological Symptoms with PET, SPECT, and MRI Findings)

  • 김진욱;안민;김소연;김영중;조민구;이권전;임상무;홍성운;최창운
    • 대한핵의학회지
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    • 제32권6호
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    • pp.534-541
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    • 1998
  • We describe a 27-year-old man who developed gait disturbance and dysarthria 2 years after the onset of cardinal symptoms of Behcet's disease. Positron emission tomography with $^{18}F$-fluorodeoxyglucose revealed severe hypometabolisrn in the cerebellum, in accordance with cerebellar symptoms and signs of the patient. However, single-photon emission tomography with $^{99m}Tc$-HMPAO and $^{99m}Tc$-ECD did not disclose significant perfusion abnormalities in the brain. Routine brain magnetic resonance imaging did not show signal abnormalities. The findings of imaging studies compared with neurological manifestations of the patient are discussed.

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Toxoplasmosis in a Pet Peach-Faced Lovebird (Agapornis roseicollis)

  • Cooper, Madalyn K.;Slapeta, Jan;Donahoe, Shannon L.;Phalen, David N.
    • Parasites, Hosts and Diseases
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    • 제53권6호
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    • pp.749-753
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    • 2015
  • Toxoplasma gondii atypical type II genotype was diagnosed in a pet peach-faced lovebird (Agapornis roseicollis) based on histopathology, immunohistochemistry, and multilocus DNA typing. The bird presented with severe neurological signs, and hematology was suggestive of chronic granulomatous disease. Gross post-mortem examination revealed cerebral hemorrhage, splenomegaly, hepatitis, and thickening of the right ventricular free wall. Histologic sections of the most significant lesions in the brain revealed intralesional protozoan organisms associated with malacia, spongiform changes, and a mild histiocytic response, indicative of diffuse, non-suppurative encephalitis. Immunohistochemistry confirmed the causative organisms to be T. gondii. DNA isolated from the brain was used to confirm the presence of T. gondii DNA. Multilocus genotyping based on SAG1, altSAG2, SAG3, BTUB, GRA6, c22-8, c29-2, L358, PK1, and Apico markers demonstrated the presence of ToxoDB PCR-RFLP genotype #3 and B1 gene as atypical T. gondii type II. The atypical type II strain has been previously documented in Australian wildlife, indicating an environmental transmission route.

68Ga-DOTATOC PET/CT에서 Prompt Gamma Correction을 적용한 SUV의 평가 (Evaluation of Standardized Uptake Value applying Prompt Gamma Correction on 68Ga-DOTATOC PET/CT Image)

  • 윤석환
    • 한국방사선학회논문지
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    • 제12권1호
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    • pp.1-7
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    • 2018
  • $^{68}Ga$ 방사성 핵종은 $^{68}Ge/^{68}Ga$ 제너레이터에서 생산되는 양전자 방출핵종으로서 PET 검사에 이용되는 방사성 핵종이다. $^{68}Ga$은 67.8분의 반감기를 가지고 88.9 %의 ${\beta}$+ 붕괴와 11.1 %의 전자포획으로 $^{68}Zn$으로 붕괴된다. ${\beta}$+ 붕괴 과정에서 87.7 %는 기저상태의 $^{68}Zn$로 붕괴되며, 1.2 %는 여기상태의 $^{68}Zn$로 붕괴된다. 여기상태의 $^{68}Zn$은 1.077 Mev의 ${\gamma}$선을 방출하며 기저상태의 $^{68}Zn$가 된다. 이때 방출되는 1.077 Mev의 ${\gamma}$선을 Prompt Gamma라 하며, Prompt Gamma-ray가 환자와 상호작용하게 되면 저에너지 ${\gamma}$선의 산란선이 발생되게 되는데 이 산란선이 PET의 동시계수 회로에 검출되어 질 수 있다. 이 연구의 목적은 $^{68}Ga$을 이용하는 PET검사 중 신경내분비 종양진단에 사용되는 $^{68}Ga$-DOTATOC PET/CT영상에 Prompt Gamma-ray 보정 전 후의 표준섭취계수(SUV)를 평가해 보고자 하였다. $^{68}Ga$-DOTATOC PET/CT를 시행한 15명의 환자에 대해서 병변부위(Pancreas, Liver, Thoracic Spine, Brain)와 정상으로 섭취되는 조직(Pituitary, Lung, Liver, Spleen, Kidney, Intestine)의 SUVmax와 SUVmean을 비교하였으며, 임상영상의 정량적 평가를 위해 Target to Background Ratio(TBR)을 산출하여 비교하였다. Prompt Gamma-ray 보정 후 Thoracic Spine을 제외한 병변부위와 Pituitary를 제외한 정상조직에서 SUVmax, SUVmean은 높은 값을 나타내었으며, TBR은 Prompt Gamma-ray 보정 전 후 각각 $51.51{\pm}49.28$, $55.50{\pm}53.12$로 보정 후 높은 값을 나타냈다. (p<0.0001)

The Human Brain and Information Science: Lessons from Popular Neuroscience

  • Sturges, Paul
    • International Journal of Knowledge Content Development & Technology
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    • 제3권1호
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    • pp.19-29
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    • 2013
  • Insights from the recent wealth of popular books on neuroscience are offered to suggest a strengthening of theory in information science. Information theory has traditionally neglected the human dimension in favour of 'scientific' theory often derived from the Shannon-Weaver model. Neuroscientists argue in excitingly fresh ways from the evidence of case studies, non-intrusive experimentation and the measurements that can be obtained from technologies that include electroencephalography, positron emission tomography (PET), functional magnetic resonance imaging (fMRI), and magnetoencephalography (MEG). The way in which the findings of neuroscience intersect with ideas such as those of Kahneman on fast and slow thinking and Csikszentmihalyi on flow, is tentatively explored as lines of connection with information science. It is argued that the beginnings of a theoretical underpinning for current web-based information searching in relation to established information retrieval methods can be drawn from this.

Paraneoplastic demyelination in the brain presenting as a clinically occult non-Hodgkin's lymphoma

  • Son, Hyoshin;Choi, Jongsuk;Kim, Sung Un;Park, Kyung Seok
    • Annals of Clinical Neurophysiology
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    • 제21권2호
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    • pp.108-112
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    • 2019
  • Non-Hodgkin's lymphoma (NHL) may initially present with atypical neurological manifestations, including paraneoplastic neurological syndromes. Herein, we report the case showing an initial manifestation of systemic NHL with paraneoplastic demyelination in the brain that initially mimicked the symptoms of stroke, seizure, and brain tumor. A high index of suspicion and timely diagnostic workup is required to prevent diagnostic delay and commence proper management of the condition. In this situation, a whole-body FDG PET/CT could be useful to screen for occult malignancy.

Enhanced Efficacy of Human Brain-Derived Neural Stem Cells by Transplantation of Cell Aggregates in a Rat Model of Parkinson's Disease

  • Shin, Eun Sil;Hwang, Onyou;Hwang, Yu-Shik;Suh, Jun-Kyo Francis;Chun, Young Il;Jeon, Sang Ryong
    • Journal of Korean Neurosurgical Society
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    • 제56권5호
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    • pp.383-389
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    • 2014
  • Objective : Neural tissue transplantation has been a promising strategy for the treatment of Parkinson's disease (PD). However, transplantation has the disadvantages of low-cell survival and/or development of dyskinesia. Transplantation of cell aggregates has the potential to overcome these problems, because the cells can extend their axons into the host brain and establish synaptic connections with host neurons. In this present study, aggregates of human brain-derived neural stem cells (HB-NSC) were transplanted into a PD animal model and compared to previous report on transplantation of single-cell suspensions. Methods : Rats received an injection of 6-OHDA into the right medial forebrain bundle to generate the PD model and followed by injections of PBS only, or HB-NSC aggregates in PBS into the ipsilateral striatum. Behavioral tests, multitracer (2-deoxy-2-[$^{18}F$]-fluoro-D-glucose ([$^{18}F$]-FDG) and [$^{18}F$]-N-(3-fluoropropyl)-2-carbomethoxy-3-(4-iodophenyl)nortropane ([$^{18}F$]-FP-CIT) microPET scans, as well as immunohistochemical (IHC) and immunofluorescent (IF) staining were conducted to evaluate the results. Results : The stepping test showed significant improvement of contralateral forelimb control in the HB-NSC group from 6-10 weeks compared to the control group (p<0.05). [$^{18}F$]-FP-CIT microPET at 10 weeks posttransplantation demonstrated a significant increase in uptake in the HB-NSC group compared to pretransplantation (p<0.05). In IHC and IF staining, tyrosine hydroxylase and human ${\beta}2$ microglobulin (a human cell marker) positive cells were visualized at the transplant site. Conclusion : These results suggest that the HB-NSC aggregates can survive in the striatum and exert therapeutic effects in a PD model by secreting dopamine.

MEG 영상진단 검사에 관한 연구 (A Study on the MEG Imaging)

  • 김종규
    • 대한임상검사과학회지
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    • 제37권2호
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    • pp.123-128
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    • 2005
  • Magnetoencephalography (MEG) is the measurement of the magnetic fields produced by electrical activity in the brain, usually conducted externally, using extremely sensitive devices such as Superconducting Quantum Interference Device (SQUID). MEG needs complex and expensive measurement settings. Because the magnetic signals emitted by the brain are on the order of a few femtoteslas (1 fT = 10-15T), shielding from external magnetic signals, including the Earth's magnetic field, is necessary. An appropriate magnetically shielded room is very expensive, and constitutes the bulk of the expense of an MEG system. MEG is a relatively new technique that promises good spatial resolution and extremely high temporal resolution, thus complementing other brain activity measurement techniques such as electroencephalography (EEG), positron emission tomography (PET), single-photon emission computed tomography (SPECT) and functional magnetic resonance imaging (fMRI). MEG combines functional information from magnetic field recordings with structural information from MRI. The clinical uses of MEG are in detecting and localizing epileptic form spiking activity in patients with epilepsy, and in localizing eloquent cortex for surgical planning in patients with brain tumors. Magnetoencephalography may be used alone or together with electroencephalography, for the measurement of spontaneous or evoked activity, and for research or clinical purposes.

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약물 중독 환자의 뇌신경계 핵의학 영상 (Neuroimaging in Nuclear Medicine: Drug Addicted Brain)

  • 정용안;김대진
    • Nuclear Medicine and Molecular Imaging
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    • 제40권1호
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    • pp.1-8
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    • 2006
  • Addiction to illicit drugs is one of today's most important social issues. Most addictive drugs lead to irreversible parenchymal changes in the human brain. Neuroimaging data bring to light the pharmacodynamics and pharmacokinetics of the abused drugs, and demonstrate that addiction is a disease of the brain. Continuous researches better illustrate the neurochemical alterations in brain function, and attempt to discover the links to consequent behavioral changes. Newer hypotheses and theories follow the numerous results, and more rational methods of approaching therapy are being developed. Substance abuse is on the rise in Korea, and social interest in the matter as well. On the other hand, diagnosis and treatment of drug addiction is still very difficult, because how the abused substance acts in the brain, or how it leads to behavioral problems is not widely known. Therefore, understanding the mechanism of drug addiction can improve the process of diagnosing addict patients, planning therapy, and predicting the prognosis. Neuroimaging approaches by nuclear medicine methods are expected to objectively judge behavioral and neurochemical changes, and response to treatment. In audition, as genes associated with addictive behavior are discovered, functional nuclear medicine images will aid in the assessment of individuals. Reviewing published literature on neuroimaging regarding nuclear medicine is expected to be of assistance to the management of drug addict patients. What's more, means of applying nuclear medicine to the care of drug addict patients should be investigated further.