1.Intracystic Hemorrhage of an Arachnoid Cyst: a Case with Prediagnostic Imaging of an Intact Cyst
Investigative Magnetic Resonance Imaging 2021;25(1):43-46
Arachnoid cysts are benign lesions that are formed between the inner and outer layers of the arachnoid, accounting for 1% of all intracranial space occupying lesions. Usually, arachnoid cysts are asymptomatic. It can be symptomatic in case of complication such as intracystic hemorrhage or acute cyst expansion. We present a case of incidentally prediagnosed arachnoid cyst which undergone intracystic hemorrhage combined with ipsilateral SDH in a young male.
2.Intracystic Hemorrhage of an Arachnoid Cyst: a Case with Prediagnostic Imaging of an Intact Cyst
Investigative Magnetic Resonance Imaging 2021;25(1):43-46
Arachnoid cysts are benign lesions that are formed between the inner and outer layers of the arachnoid, accounting for 1% of all intracranial space occupying lesions. Usually, arachnoid cysts are asymptomatic. It can be symptomatic in case of complication such as intracystic hemorrhage or acute cyst expansion. We present a case of incidentally prediagnosed arachnoid cyst which undergone intracystic hemorrhage combined with ipsilateral SDH in a young male.
3.A Case of Pulmonary Artery Intimal Sarcoma Diagnosed with Multislice CT Scan with 3D Reconstruction.
Eui Young CHOI ; Young Won YOON ; Hyuck Moon KWON ; Dongsoo KIM ; Byung Eun PARK ; Yoo Sun HONG ; Ja Seung KOO ; Tae Hoon KIM ; Hyun Seung KIM
Yonsei Medical Journal 2004;45(3):547-551
Pulmonary artery intimal sarcoma is a rare highly lethal disease, with additional retrograde extension to pulmonic valve and right ventricle being an extremely rare condition. It is frequently mistaken for pulmonary thromboembolism. We report a case of 64-year-old woman with progressive dyspnea initially suspected and treated for pulmonary thromboembolism. Her helical chest CT scan with 3 dimensional (3D) reconstruction combined with echocardiography revealed a compacting main pulmonary artery mass extending to the right ventricular outflow tract and the right pulmonary artery. After excision of the mass, the patient's condition improved dramatically, and the pathologic findings revealed pulmonary intimal sarcoma. This report emphasizes that helical chest CT with 3D reconstruction can be an important tool to differentiate the characteristics of pulmonary artery lesions, such as intimal sarcoma and thromboembolism.
Diagnosis, Differential
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Echocardiography
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Female
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Human
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Imaging, Three-Dimensional
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Middle Aged
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Pulmonary Artery/pathology/*radiography
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Sarcoma/pathology/*radiography/ultrasonography
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Tomography, X-Ray Computed/*methods
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Tunica Intima/pathology/radiography
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Vascular Neoplasms/pathology/*radiography/ultrasonography
4.Computed numerical analysis of the biomechanical effects on coronary atherogenesis using human hemodynamic and dimensional variables.
Byoung Kwon LEE ; Hyuck Moon KWON ; Dongsoo KIM ; Young Won YOON ; Jeong Kee SEO ; In Jai KIM ; Hyung Woon ROH ; Sang Ho SUH ; Sang Sin YOO ; Hyun Seung KIM
Yonsei Medical Journal 1998;39(2):166-174
The objectives of this investigation were to evaluate biomechanical factors in the atherosclerotic process using human in vivo hemodynamic parameters and computed numerical simulation qualitatively and quantitatively. The three-dimensional spatial patterns of steady and pulsatile flows in the left coronary artery were simulated, using a finite volume method. Coronary angiogram and Doppler ultrasound measurement of the proximal left coronary flow velocity were performed in humans. Inlet wave velocity distribution obtained from in vivo data of the intravascular Doppler study allowed for input of in vitro numerical simulation. Hemodynamic variables, such as flow velocity, pressure and shear stress of the left anterior descending coronary bifurcation site were calculated. We found that there were spatial fluctuation of flow-velocity and recirculation areas at the curved outer wall of the left anterior descending coronary artery, which were due to the differences of flow-velocity and shear stress, especially during the declaration phase of pulsatile flow. This study suggests that rheologic properties may be a part of the atherogenic process in the coronary bifurcated and curved areas.
Biomechanics
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Blood Flow Velocity/physiology
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Blood Pressure/physiology
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Coronary Arteriosclerosis/physiopathology*
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Coronary Arteriosclerosis/etiology*
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Coronary Vessels/physiopathology*
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Hemodynamics/physiology*
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Homeostasis/physiology
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Human
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Models, Cardiovascular*
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Pulsatile Flow
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Stress, Mechanical
5.A portrait drawing of the 17th century Korean scholar based on craniofacial reconstruction
Joon Yeol RYU ; A Young YOON ; Yeon Kyung PARK ; Won Joon LEE ; Mi Kyung SONG ; Jong Ha HONG ; Eun Jin PARK ; Soon Chul CHA ; Dongsoo YOO ; Myeung Ju KIM ; Dong Hoon SHIN
Anatomy & Cell Biology 2022;55(4):512-519
As a technique mainly hiring in forensic investigation field to identify the descents, craniofacial reconstruction (CFR) is also used in archaeology to create the faces from ancient or medieval human remains, when there is little information about his/her appearance. Eung-Cheok Ko (1531–1605) was a writer and scholar in the mid Joseon period. In January of 2019, His mummified body was found at Gumi, Kyeonsangbuk-do, Korea. The remains were anthropologically examined, and archaeological CFR was also requested for this case. This report reveals the case’s facial reconstruction process and his portrait that is drawn based on the 3-dimensional CFR result.
6.Revisiting diaphragmatic hernia of Joseon period Korean mummy by three-dimensional liver and heart segmentation and model reconstruction
Ensung KOH ; Da Yeong LEE ; Dongsoo YOO ; Myeung Ju KIM ; In Sun LEE ; Jong Ha HONG ; Sang Joon PARK ; Jieun KIM ; Soon Chul CHA ; Hyejin LEE ; Chang Seok OH ; Dong Hoon SHIN
Anatomy & Cell Biology 2022;55(4):507-511
A three-dimensional (3D) segmentation and model reconstruction is a specialized tool to reveal spatial interrelationship between multiple internal organs by generating images without overlapping structures. This technique can also be applicable to mummy studies, but related reports have so far been very rare. In this study, we applied 3D segmentation and model reconstruction to computed tomography images of a Korean mummy with congenital diaphragmatic hernia. As originally revealed by the autopsy in 2013, the current 3D reconstruction reveals that the mummy’s heart is shifted to the left due to the liver pushing up to thoracic cavity thorough diaphragmatic hernial defect. We can generate 3D images by calling up the data exclusively from mummy’s target organs, thus minimizing the confusion of diagnosis that could be caused by overlapping organs.