• Title/Summary/Keyword: 뇌 자기공명영상

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A study on the reproducibility of hippocampal volumes measured using magnetic resonance images of different magnetic field strengths and slice orientations (자장 세기와 스캔 방향이 다른 자기공명영상에서 측정된 해마 체적의 재현성 연구)

  • Choi, Yu Yong;Lee, Dong Hee;Lee, Sang Woong;Lee, Kun Ho;Kwon, Goo Rak
    • Smart Media Journal
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    • v.5 no.1
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    • pp.44-48
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    • 2016
  • In a longitudinal neuroimaging study, the upgrades of a magnetic resonance imaging (MRI) scanner due to outdated hardwares and softwares make it difficult to maintain the same MRI conditions in the long-term research period. Particularly, high field MRI systems such 3T scanners become popular in recent years. However, it is still unclear whether an integrated analysis of 3T and 1.5T images is possible without consideration of the field strength. In this study, we evaluated the reproducibility of hippocampal volumes between brain images with different field strengths and slice orientations. 296 participants underwent both 3T and 1.5T MRI and both sagittal and axial scans for high resolution brain images, and their hippocampal volumes were measured using Freesurfer, a well-known software for neuroimaging analysis. Paired t-tests showed that the hippocampal volumes were significantly different between the image types. These results suggest that it is necessary to develop data analysis techniques for integrating diverse types of MRI images.

Classification of Brain MR Images Using Spatial Information (공간정보를 이용한 뇌 자기공명영상 분류)

  • Kim, Hyung-Il;Kim, Yong-Uk;Kim, Jun-Tae
    • Journal of the Korea Society for Simulation
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    • v.18 no.4
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    • pp.197-206
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    • 2009
  • The medical information system is an effective medical diagnosis assistance system which offers an environment in which medial images and diagnosis information can be shared. However, this system can only stored and transmitted information without other functions. To resolve this problem and to enhance the efficiency of diagnostic activities, a medical image classification and retrieval system is necessary. The medical image classification and retrieval system can improve efficiency in a medical diagnosis by providing disease-related images and can be useful in various medical practices by checking diverse cases. However, it is difficult to understand the meanings contained in images because the existing image classification and retrieval system has handled superficial information only. Therefore, a medical image classification system which can classify medical images by analyzing the relation among the elements of the image as well as the superficial information has been required. In this paper, we propose the method for learning and classification of brain MRI, in which the superficial information as well as the spatial information extracted from images are used. The superficial information of images, which is color, shape, etc., is called low-level image information and the logical information of the image is called high-level image information. In extracting both low-level and high-level image information in this paper, the anatomical names and structure of the brain have been used. The low-level information is used to give an anatomical name in brain images and the high-level image information is extracted by analyzing the relation among the anatomical parts. Each information is used in learning and classification. In an experiment, the MRI of the brain including disease have been used.

Assessment of Imaging Distortion in Magnetic Resonance Imaging for Stereotactic Radiosurgery: Through Phantom Study (뇌정위 방사선수술 시스템을 위한 자기공명영상의 공간적 왜곡의 측정 : 모형실험을 통한 연구)

  • 박선원;한문희;김동규;정현태;송인찬
    • Investigative Magnetic Resonance Imaging
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    • v.4 no.1
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    • pp.7-13
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    • 2000
  • Purpose : To assess the distortion of MRI with the Leksell stereotactic radiosurgery system in variable pulse sequence and imaging plane through phantom study, to find most adequate imaging plane and pulse sequence for stereotactic radiosurgery system. Materials and methods : We made the phantoms for MRI and get images in variable conditions and analyzed the image distortion using image analysis program, and statistically using paired student t-test. Results : The transeverse plane images had acceptable error ranges bless than 1.5mm) in all pulse sequence in both the analysis of fiducial marker in stereotactic G-frame and the phantom study. The coronal plane images had unacceptable large errors (more than 1.7mm) in the analysis of fiducial marker in the stereotactic G-frame, but had corrected small errors (less than 1.5mm) in the phantom study. Conclusion : We find from the phantom study that the present MR machines are adequate for stereotactic surgery system in frequently used pulse sequences, and imaging planes.

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뇌의 수소 분광선 연구를 위한 다중 체적 화학적 이동 영상기법의 개발

  • Choe, Jeong-Hwan;Park, Seung-Hun;Kim, Si-Seung;Jeong, Seong-Taek;Lee, Yun
    • Proceedings of the KSMRM Conference
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    • 2002.11a
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    • pp.105-105
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    • 2002
  • 목적: 수소 자기 공명 분광기법은 자기공명 영상으로는 얻을 수 없는 화학적 성분에 대한 정보를 제공하여 암을 포함한 여러 질환의 진단과 예측에 사용된다. 이 기법으로는 어떤 특정한 작은 체적을 선택하여 그 부위에만 자기공명 분광신호를 획득하는 단일 체적기법과 체적 전체를 위상변화를 주면서 여기시킨 후, 데이터 후처리 과정에서 체적별로 분리해내는 다중체적기법이 있다. 다중체적기법은 더 긴 영상 획득시간에도 불구하고 단일 체적기법에 비하여 분광상을 대조군과 비교할 수 있는 잇점이 있다. 뇌를 진단하는데 사용하기 위한 수소분광선을 얻기 위하여 다중체적 화학적 영상기법을 개발하여 모형과 자원자에 대하여 적용하여 그 유용성 확인하였다.

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뇌의 수소 분광선 연구를 위한 다중 체적 화학적 이동 영상기법의 개발

  • Choi, Jung-Hwan;Park, Seung-Hoon;Kim, Si-Seung;Jung, Sung-Taek;Lee, Yoon
    • Proceedings of the KSMRM Conference
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    • 2002.11a
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    • pp.81-81
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    • 2002
  • 목적: 수소 핵 자기 공명 분광기법은 자기공명 영상으로는 얻을 수 없는 화학적 성분에 대한 정보를 제공하여 암을 포함한 여러 질환의 진단과 예측에 사용된다. 이 기법으로는 어떤 특정한 작은 체적을 선택하여 그 부위에만 자기공명 분광신호를 획득하는 단일 체적기법과 체적 전체를 위상변화를 주면서 여기 시킨 후, 데이터 후처리 과정에서 체적별로 분리해내는 다중체적기법이 있다. 다중체적기법은 더 긴 영상 획득시간에도 불구하고 단일 체적기법에 비하여 분광상을 대조군과 비교할 수 있는 잇점이 있다. 뇌를 진단하는데 사용하기 위한 수소분광선을 얻기 위하여 다중체적 화학적 영상기법을 개발하여 모형과 자원자에 대하여 적용하여 그 유용성 확인하였다.

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기능적 자기공명영상 및 확산텐서영상을 이용한 전음성 난청과 감각신경성 난청군의 비교 연구: 예비 결과

  • 이재준;황문정;이영주;김인성;배성진;장용민;이상흔;우성구;강덕식
    • Proceedings of the KSMRM Conference
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    • 2003.10a
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    • pp.94-94
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    • 2003
  • 목적: 기능적 자기공명영상과 확산텐서영상기법을 이용하여 전음성 난청과 감각신경성 난청에서의 뇌활성화 양상 그리고 청신경경로상의 차이점을 비교 연구하고자 하였다. 대상 및 방법: 전음성 난청군 (n=4)과 감각신경성 난청군(n=5) 그리고 정상군(n=5)에서의 기능적 자기 공명영상과 확산텐서영상을 획득하였다. 기능적 자기공명영상의 경우 1.5T Siemens MR scanner에서 BOLD 기법을 이용하여 500 Hz 순음 청각자극에 대한 뇌활성화 영역을 검출하였고 영상촬영시 발생하는 기계적 소음을 차폐하기 위한 청각자극기를 특별히 제작하여 사용하였다. 뇌백질신경로를 영상화하는 확산텐서영상은 3.0T GE whole body MR scanner를 사용하였으며 미세한 확산운동을 검출하기 위해 초고속 영상기법인 EPI 기법을 사용하였다. 영상의 화질을 높이기 위해 공간적으로 25개의 다른 방향으로 확산경사자장을 가하였다. 청신경로의 비등방성 영상, 신경로 방향 영상등을 구현하기 위해 획득한 확산영상들에 대한 영상 후처리과정을 시행하였다.

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Brain MRI Template-Driven Medical Images Mapping Method Based on Semantic Features for Ischemic Stroke (허혈성 뇌졸중을 위한 뇌 자기공명영상의 의미적 특징 기반 템플릿 중심 의료 영상 매핑 기법)

  • Park, Ye-Seul;Lee, Meeyeon;Lee, Jung-Won
    • KIPS Transactions on Software and Data Engineering
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    • v.5 no.2
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    • pp.69-78
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    • 2016
  • Ischemic stroke is a disease that the brain tissues cannot function by reducing blood flow due to thrombosis or embolisms. Due to the nature of the disease, it is most important to identify the status of cerebral vessel and the medical images are necessarily used for its diagnosis. Among many indicators, brain MRI is most widely utilized because experts can effectively obtain the semantic information such as cerebral anatomy aiding the diagnosis with it. However, in case of emergency diseases like ischemic stroke, even though a intelligent system is required for supporting the prompt diagnosis and treatment, the current systems have some difficulties to provide the information of medical images intuitively. In other words, as the current systems have managed the medical images based on the basic meta-data such as image name, ID and so on, they cannot consider semantic information inherent in medical images. Therefore, in this paper, to provide core information like cerebral anatomy contained in brain MRI, we suggest a template-driven medical images mapping method. The key idea of the method is defining the mapping characteristics between anatomic feature and representative images by using template images that can be representative of the whole brain MRI image set and revealing the semantic relations that only medical experts can check between images. With our method, it will be possible to manage the medical images based on semantic.

Microbleeds in the Corpus Callosum in Anoxic Brain Injury (저산소 뇌 손상에서의 뇌량 미세출혈)

  • Chang Su Kim;Dong Woo Park;Tae Yoon Kim;Young-Jun Lee;Ji Young Lee
    • Journal of the Korean Society of Radiology
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    • v.81 no.5
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    • pp.1184-1193
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    • 2020
  • Purpose This study was performed to evaluate the relationship between callosal microbleeds and anoxic brain injury. Materials and Methods Twenty-seven patients with anoxic brain injuries were analyzed and retrospectively compared to the control group of patients without a history of anoxic brain injury using Fisher's exact test regarding comorbidities and cerebral microbleeds. The patient group was subdivided according to the presence of callosal microbleeds. Fisher's exact test was used to compare the presence of typical MRI findings of anoxic brain injury, use of cardiopulmonary resuscitation, and prognosis. The Mann-Whitney U test was used to compare the interval between the occurrence of anoxic brain injury to MRI acquisition. Results The prevalence of cerebral microbleeds in the patient group was 29.6%, which was significantly higher than that in the control group at 3.7% (p = 0.012). All cerebral microbleeds in the patient group were in the corpus callosum. Compared with the callosal microbleed-absent group, the callosal microbleed-present group showed a tendency of good prognosis (6/8 vs. 11/19), fewer typical MRI findings of anoxic brain injury (2/8 vs. 10/19), and more cardiopulmonary resuscitation (6/8 vs. 12/19), although these differences did not reach statistical significance (p = 0.35, p = 0.19, and p = 0.45, respectively). Conclusion Callosal microbleeds may be an adjunctive MRI marker for anoxic brain injury.

Usefulness of Magnetic Resonance Imaging after Serial Cranial Ultrasound in the Neonates Graduating Neonatal Intensive Care Unit (신생아 중환자실을 퇴원하는 고위험 환아에서 순차적인 뇌초음파 검사 후 시행한 자기 공명 영상의 유용성)

  • Kim, Ji-Hye
    • Investigative Magnetic Resonance Imaging
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    • v.12 no.2
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    • pp.170-177
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    • 2008
  • Purpose : To evaluate usefulness of MR imaging after serial brain US in the high-risk neonates before discharge of the neonatal intensive care unit. Materials and Methods : Retrospective comparison of 412 US and 121 MR scans in 121 neonates and young infants were performed. Grading of germinal matrix/intraventricular hemorrhage (GMH/IVH) was performed and presence of intracranial hemorrhage other than GMH/IVH and parencyma lesions was also analyzed. Results : Among the 242 lateral ventricles, Seven GMH and 46 IVH were additionally detected by MRI. On the other hand, 30 GMH were only detected by US. US demonstrated Grade 1/2/3/4 GMH/IVH in 24/8/13/0 ventricles each, while each grades were identified in 3, 49, 10, 2 ventricles on MR images. Other intracranial lesions additionally detected on MR images were cerebral hemorrhage (n=4), cerebellar hemorrhage (n=4), extraaxial hemorrhage (n=8), diffuse excessive signal change of the white matter (n=72), non-cavitary lesion (n=4), encephalomalacia (n=2), and ventriculomegaly (n=5). Conclusion : MR imaging could be an excellent complimentary study after serial brain US for additional detection of the intracranial pathology, particularly IVH and white matter lesions, though US would be better in follow-up of GMH in some neonates.

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Semi-Automatic Registration of Brain M Images Based On Talairach Reference System (Talairach 좌표계를 이용한 뇌자기공명영상의 반자동 정합법)

  • Han Yeji;Park Hyun Wook
    • Journal of the Institute of Electronics Engineers of Korea SC
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    • v.41 no.1
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    • pp.55-62
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    • 2004
  • A semi-automatic registration process of determining specified points is presented, which is required to register brain MR images based on Talairach atlas. Generally, ten specified points that define Talairach coordinates are anterior commissure(AC), posterior commissure (PC), anterior feint (AP), posterior point (PP), superior point (SP), inferior point (IP), left point (LP), right point (RP) and two points for the midline of the brain. The suggested method reduces user interaction for S points, and finds the necessary points for registration in a more stable manner by finding AC and PC using two-level shape matching of the corpus callosum (CC) in an edge-enhanced brain M image. Remaining points are found using the intensity information of cutview.