• Title/Summary/Keyword: MRI 영상

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Imaging of Scrotal Tumors (음낭 종양의 영상 소견)

  • Seungsoo Lee;Young Taik Oh;Dae Chul Jung
    • Journal of the Korean Society of Radiology
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    • v.82 no.5
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    • pp.1053-1065
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    • 2021
  • Ultrasonography is effective for imaging superficial organs, such as the scrotum. Using a highfrequency transducer, ultrasonography can identify the location and characteristics of scrotal lesions with high accuracy. The primary role of ultrasound (US) in the evaluation of a scrotal mass is to determine if it is intratesticular or extratesticular. Additional clinical information and other imaging options may be needed to diagnose benign tumors and pseudo-tumors. MRI is an effective problem-solving tool in cases with nondiagnostic US findings. CT is helpful for staging testicular cancer and localizing undescended testis. This review covers the imaging features of testicular and extratesticular tumors.

Solitary Necrotic Nodule of the Liver Mimicking Metastasis in Patient with Early Gastric Cancer : 3T MRI and PET/CT Findings (조기 위암 환자에서 전이암과 감별이 필요했던 간내 단발성 궤사성 결절: 3T MRI 및 PET/CT 소견)

  • Cho, Woo-Sun;Kim, Gi-Hyeon;Lee, Hwa-Yeon;Lee, Jong-Beum;Kwon, Gui-Young
    • Investigative Magnetic Resonance Imaging
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    • v.13 no.2
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    • pp.213-217
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    • 2009
  • Solitary necrotic nodule (SNN) of the liver is a very uncommon benign lesion, and it is detected incidentally as a rule. It is important to differentiate SNN radiologically from various single hepatic nodules because SNN mimics hepatic metastasis, especially in staging work up of known primary malignancy. The reported imaging findings of SNN are well-defined nodule without enhancement or with subtle peripheral enhancement. There has been no report about the target-like SNN of the liver and about the imaging finding of 3T magnetic resonance imaging and positron emission tomography. We report a case of targetlike SNN of the liver, mimicking hepatic metastasis, with findings of various imaging modalities and try to find a cause of this nodule according to the pathologic and literature review.

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Neural correlates of visual mean representation (시각적 평균 표상의 신경기제)

  • Chong, Sang-Chul;Shin, Kil-Ho;Cho, Shin-Ho
    • Korean Journal of Cognitive Science
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    • v.19 no.1
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    • pp.75-88
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    • 2008
  • Visual scene contains lots of redundant information. To process this redundant information without increasing brain's volume, human visual system may summarize incoming information. If similar but different information are given to visual system, visual system extracts statistical properties of the information. One example of the statistical representation is representation of mean size. The mean representation is accurate and durable. The process of mean representation is suggested to be parallel. However, previous studies on the mean representation mostly used behavioral methods. The purpose of this study was to investigate which neural regions extracted the mean size of a set of circles using fMRI method. According to previous studies, BOLD signal of certain areas that were in charge of cousin stimuli decreased when the same stimuli presented repetitively. We used this paradigm and found that BOLD signal of right occipital area was decreased when same mean site was presented repeatedly. This results suggest that right occipital area is the locus of mean representation of visual stimuli.

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Analysis of Distances for MRI Scan to Maintain Pptimal Signal Intensity in a Surface Coil (MRI 검사 시 코일내 최적의 신호강도를 유지할 수 있는 거리의 기준 분석)

  • Son, Soon-Yong
    • The Journal of the Korea Contents Association
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    • v.18 no.10
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    • pp.158-164
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    • 2018
  • The purpose of this study is to statistically analyze the signal intensity pattern according distance from the surface coil center and to maintain optimal signal intensity under clinical circumstances where the surface coil centers are not correctly positioned due to various causes. The cylindrical fluid phantom was placed and moved from the coil center in vertical direction with 1 cm increments. The signal intensities were measured and compared. As a result, the signal intensity showed no significant difference within 4 cm and 1 cm from in T1 weighted images while in T2 weighted images the signal intensity was maintained up to 5 cm and lower 3 cm in the upper and lower direction from the coil center. In conclusion, to maintain the optimal signal intensity the target region should be located within the reference distances proposed in this study.

An Average Shape Model for Segmenting Prostate Boundary of TRUS Prostate Image (초음파 전립선 영상에서 전립선 경계 분할을 위한 평균 형상 모델)

  • Kim, Sang Bog;Chung, Joo Young;Seo, Yeong Geon
    • KIPS Transactions on Software and Data Engineering
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    • v.3 no.5
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    • pp.187-194
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    • 2014
  • Prostate cancer is a malignant tumor occurring in the prostate. Recently, the repetition rate is increasing. Image inspection method which we can check the prostate structure the most correctly is MRI(Magnetic Resonance Imaging), but it is hard to apply it to all the patients because of the cost. So, they use mostly TRUS(Transrectal Ultrasound) images acquired from prostate ultrasound inspection and which are cheap and easy to inspect the prostate in the process of treating and diagnosing the prostate cancer. Traditionally, in the hospital the doctors saw the TRUS images by their eyes and manually segmented the boundary between the prostate and nonprostate. But the manually segmenting process not only needed too much time but also had different boundaries according to the doctor. To cope the problems, some automatic segmentations of the prostate have been studied to generate the constant segmentation results and get the belief from patients. In this study, we propose an average shape model to segment the prostate boundary in TRUS prostate image. The method has 3 steps. First, it finds the probe using edge distribution. Next, it finds two straight lines connected with the probe. Finally it puts the shape model to the image using the position of the probe and straight lines.

MR Imaging Findings of Parosteal Lipoma: Case Report (뼈주위 지방종의 자기공명영상 소견: 증례 보고)

  • Bae, Hyoung-Ju;Hong, Suk-Joo;Kim, Ye-Lim;Kang, Eun-Young;Kim, Hak-Jun;Ryu, Young-Jun;Jung, Woon-Yong
    • Investigative Magnetic Resonance Imaging
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    • v.14 no.2
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    • pp.134-138
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    • 2010
  • Parosteal lipoma is a rare benign tumor containing mature adipose tissue having an intimate relationship to the periosteum. Characteristically, this tumor presents as a lipomatous mass adjacent to bone, eliciting variable reactive changes in the underlying cortex. We report a case of parosteal lipoma of the foot. The MR findings consisted of juxtacortical lipomatous mass abutting to bony protuberance, with internal fibrous striations, and osseous reaction in the adjacent bone. By the aid of multiplanar imaging capability, high spatial and contrast resolution of MRI, characteristic features of parosteal lipoma can lead to diagnosis on imaging.

A Case Report of Vestibular Schwannoma Misdiagnosed as Idiopathic Sudden Sensorineural Hearing Loss (특발성 돌발성 난청으로 오인된 청신경 종양 1례)

  • Ko, Hye-Yeon;Kim, Jae-Ho;Lee, Ma-Eum;Kim, Min-Hee
    • The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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    • v.34 no.3
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    • pp.80-91
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    • 2021
  • Objective : The purpose of this study is to discriminate the vestibular schwannoma misdiagnosed as Idiopathic Sudden Sensorineural Hearing Loss. Methods : A 46-year-old female patient who was suffering left sudden sensorineural hearing loss(SSNHL), visited after diagnosed as Idiopathic SSNHL by previous hospital. For diagnosing the vestibular schwannoma, we conducted the Puretone audiometry, auditory brainstem response threshold test and magnetic resonance imaging(MRI) for temporal bone with enhancement. Result : Auditory Brainstem Response threshold test was abnormal and in enhanced MRI, the vestibular schwannoma in left side was detected. The patient was discharged from the hospital for tertiary hospital care. Conclusions : When the patient with SSNHL visits a hospital even if after diagnosed as Idiopathic SSNHL by previous hospital, a doctor should keep in mind the possibility of vestibular schwannoma.

Generation Method of 3D Human Body Level-of-Detail Model for Virtual Reality Device using Tomographic Image (가상현실 장비를 위한 단층 촬영 영상 기반 3차원 인체 상세단계 모델 생성 기법)

  • Wi, Woochan;Heo, Yeonjin;Lee, Seongjun;Kim, Jion;Shin, Byeong-Seok;Kwon, Koojoo
    • The Journal of Korean Institute of Next Generation Computing
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    • v.15 no.4
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    • pp.40-50
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    • 2019
  • In recent years, it is important to visualize an accurate human body model for the low-end system in the medical imaging field where augmented reality technology and virtual reality technology are used. Decreasing the geometry of a model causes a difference from the original shape and considers the difference as an error. So, the error should be minimized while reducing geometry. In this study, the organ areas of a human body in the tomographic images such as CT or MRI is segmented and 3D geometric model is generated, thereby implementing the reconstruction method of multiple resolution level-of-detail model. In the experiment, a virtual reality platform was constructed to verify the shape of the reconstructed model, targeting the spine area. The 3D human body model and patient information can be verified using the virtual reality platform.

A Study on the Qualty Evaluation of the Turbo Factor of the SPACE(Sampling Perfection with Application optimized Contrast using different flip-angle Evolutions) 3D T2 Technique during Olfactory Bulb MRI Examination (Olfactory bulb MRI 검사 시 SPACE 3D T2 기법의 Turbo factor 변화에 따른 화질 평가에 관한 연구)

  • Lee, Jun-Kyu;Roh, Tae-Kwan;Jo, Yong-Keun
    • Journal of the Korean Society of Radiology
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    • v.16 no.2
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    • pp.115-122
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    • 2022
  • This study aims to find out the change in diagnostic capability and image quality compared to 2D TSE T2 after examination the Turbo Factor value of the SPACE 3D T2 technique during Olfactory Bulb examination. As a result of the study, qualitative and quantitative analysis, it was found that there was a statistically significant difference in the SPACE 3D T2 technique compared to the 2D TSE T2 technique, and the conclusion

Segmentation and Visualization of Human Anatomy using Medical Imagery (의료영상을 이용한 인체장기의 분할 및 시각화)

  • Lee, Joon-Ku;Kim, Yang-Mo;Kim, Do-Yeon
    • The Journal of the Korea institute of electronic communication sciences
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    • v.8 no.1
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    • pp.191-197
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    • 2013
  • Conventional CT and MRI scans produce cross-section slices of body that are viewed sequentially by radiologists who must imagine or extrapolate from these views what the 3 dimensional anatomy should be. By using sophisticated algorithm and high performance computing, these cross-sections may be rendered as direct 3D representations of human anatomy. The 2D medical image analysis forced to use time-consuming, subjective, error-prone manual techniques, such as slice tracing and region painting, for extracting regions of interest. To overcome the drawbacks of 2D medical image analysis, combining with medical image processing, 3D visualization is essential for extracting anatomical structures and making measurements. We used the gray-level thresholding, region growing, contour following, deformable model to segment human organ and used the feature vectors from texture analysis to detect harmful cancer. We used the perspective projection and marching cube algorithm to render the surface from volumetric MR and CT image data. The 3D visualization of human anatomy and segmented human organ provides valuable benefits for radiation treatment planning, surgical planning, surgery simulation, image guided surgery and interventional imaging applications.