• 제목/요약/키워드: Brain deposition

검색결과 82건 처리시간 0.029초

Gadolinium Deposition in the Brain: Current Updates

  • Jin Woo Choi;Won-Jin Moon
    • Korean Journal of Radiology
    • /
    • 제20권1호
    • /
    • pp.134-147
    • /
    • 2019
  • Gadolinium-based contrast agents (GBCAs) are commonly used for enhancement in MR imaging and have long been considered safe when administered at recommended doses. However, since the report that nephrogenic systemic fibrosis is linked to the use of GBCAs in subjects with severe renal diseases, accumulating evidence has suggested that GBCAs are not cleared entirely from our bodies; some GBCAs are deposited in our tissues, including the brain. GBCA deposition in the brain is mostly linked to the specific chelate structure of the GBCA: linear GBCAs were responsible for brain deposition in almost all reported studies. This review aimed to summarize the current knowledge about GBCA brain deposition and discuss its clinical implications.

Effects of indium tin oxide top electrode formation conditions on the characteristics of the top emission inverted organic light emitting diodes

  • Kho, Sam-Il;Cho, Dae-Yong;Jung, Dong-Geun
    • 한국정보디스플레이학회:학술대회논문집
    • /
    • 한국정보디스플레이학회 2002년도 International Meeting on Information Display
    • /
    • pp.714-716
    • /
    • 2002
  • Indium tin oxide (ITO) was used as the top anode of top emission inverted organic light emitting diodes (TEIOLEDs). TEIOLEDs were fabricated by deposition of an aluminum bottom cathode, an N,N'-diphenyl-N,N'-bis(3-methylphenyl)-1, 1'-diphenyl-4, 4 1'-diamine (TPD) hole transport layer, a tris-8-hydroxyquinoline aluminum ($Alq_3$) emission layer, and an ITO top anode sequentially. ITO was deposited by r.f. magnetron sputtering without $O_2$ flow during the deposition. After the deposition, the deposited ITO layer was kept under oxygen atmosphere for the oxidation. The characteristics of the TEOILED were affected significantly by the post-deposition oxidation condition.

  • PDF

Culturing of Rat Intestinal Epithelial Cells-18 on Plasma Polymerized Ethylenediamine Films Deposited by Plasma Enhanced Chemical Vapor Deposition

  • Choi, Chang-Rok;Kim, Kyung-Seop;Kim, Hong-Ja;Park, Heon-Yong;Jung, Dong-Geun;Boo, Jin-Hyo
    • Bulletin of the Korean Chemical Society
    • /
    • 제30권6호
    • /
    • pp.1357-1359
    • /
    • 2009
  • Many researchers studied cell culturing on surfaces with chemical functional groups. Previously, we reported surface properties of plasma polymerized ethylenediamine (PPEDA) films deposited by plasma enhanced chemical vapor deposition with various plasma conditions. Surface properties of PPEDA films can be controlled by plasma power during deposition. In this work, to analyze correlation of cell adherence/proliferation with surface property, we cultured rat intestinal epithelial cells-18 on the PPEDA films deposited with various plasma powers. It was shown that as plasma power was decreased, density of cells cultured on the PPEDA film surface was increased. Our findings indicate that plasma power changed the amine density of the PPEDA film surface, resulting in density change of cells cultured on the PPEDA film surface.

Transfusional Iron Overload and Choroid Plexus Hemosiderosis in a Pediatric Patient: Brain Magnetic Resonance Imaging Findings

  • Kim, Min Seon;Lee, Ha Young;Lim, Myung Kwan;Kang, Young Hye;Kim, Jun Ho;Lee, Kyung Hee
    • Investigative Magnetic Resonance Imaging
    • /
    • 제23권4호
    • /
    • pp.390-394
    • /
    • 2019
  • Hemosiderosis is characterized by the deposition of excess iron in body tissues. The choroid plexus is an important part of the central nervous system that can be the primary site of iron overload. T2*-weighted gradient echo (GRE) sequence provides high sensitivity for demonstrating cerebral microhemorrhagic foci and iron deposition. In the present study, we describe the case of a 15-year-old boy with acute lymphoblastic leukemia, in whom repeated transfusion led to iron accumulation in the brain. GRE sequence effectively demonstrated hemosiderin deposition in the choroid plexus.

Effects of $HfO_x$ treated indium tin oxide on organic emitting diodes

  • Sohn, Sun-Young;Park, Keun-Hee;Jung, Dong-Geun;Kim, Hyoung-Sub
    • 한국정보디스플레이학회:학술대회논문집
    • /
    • 한국정보디스플레이학회 2006년도 6th International Meeting on Information Display
    • /
    • pp.970-972
    • /
    • 2006
  • The surface of ITO in OLEDs was treated with $HfO_x$ deposition process using an atomic layer chemical vapor deposition system. The treatment at room temperature for 5 cycles exhibited significantly improved electroluminescent characteristics compared to the OLEDs without any treatment, which is believed to be caused by the increased holes injection efficiency.

  • PDF

정량적 자화율 맵핑을 통한 뇌 철분 침착과 파킨슨병의 연관성 분석 (The Analysis of relation to brain iron deposition of Parkinson's Disease using Quantitative Susceptibility Mapping)

  • 전규리;이한결;권승원;조승연;정우상;문상관;박정미;고창남;박성욱
    • 대한한의학회지
    • /
    • 제45권1호
    • /
    • pp.150-164
    • /
    • 2024
  • Objectives: This study aimed to investigate the levels of brain iron deposition in Parkinson's disease (PD) patients using Quantitative Susceptibility Mapping (QSM) and to determine whether distinctions compared to the general population exist. Furthermore, we examined potential variations in iron deposition among different PD subtypes. Methods: Structural brain imaging was conducted on 75 participants at Gangdong Kyung Hee University Hospital between August 2017 and May 2020. PD patients were categorized into Tremor Dominant (TD) and Postural Instability and Gait Difficulty (PIGD) subtypes. Voxel-based morphometry and QSM were employed to compare voxel-wise magnetic susceptibility across the entire brain between Normal Controls (NC) and PD groups. Subsequently, QSM values were compared between TD and PIGD groups. Results: QSM values were compared among 46 PD patients and 23 normal controls, as well as between TD (n=22) and PIGD (n=24) groups. Voxel-based QSM analysis revealed no significant differences between groups. Similarly, ROI-based QSM analysis showed no significant distinctions. Conclusions: No significant variations were observed between the PD patient group, NC group, or PD subtypes. This study systematically compared QSM values across a broad range of brain regions potentially linked to PD pathology. Additionally, the subdivision of the PD group into TD and PIGD subtypes for QSM-based iron deposition analysis represents a meaningful and innovative approach.

Lifetime characteristics of flexible organic light emitting diodes on PET substrate with plasma polymer barrier layers

  • Kim, Kyu-Hyung;Kho, Sam-Il;Jung, Dong-Geun;Boo, Jin-Hyo
    • 한국정보디스플레이학회:학술대회논문집
    • /
    • 한국정보디스플레이학회 2004년도 Asia Display / IMID 04
    • /
    • pp.41-43
    • /
    • 2004
  • Plasma polymerized para-xylene ($PP_PX$) deposited by plasma-enhanced chemical vapor deposition (PECVD) was used as the barrier layer on the polyethylene terephthalate (PET) substrate to improve lifetime of the flexible organic light-emitting diodes (FOLEDs). The $PP_PX$ barrier layer deposited on top of the PET substrate with plasma power of 30 W at deposition pressure of 0.2 torr showed transmittance spectra good enough to be applied in FOLED on PET substrates. FOLEDs with the $PP_PX$ barrier layer (barrier-FOLEDs) showed similar I-V and B-V characteristics to FOLEDs without the $PP_PX$ layer (control-FOLEDs). The lifetime of barrier-FOLED was two times longer than that of the control-FOLED. With $PP_PX$ passivation layers, lifetimes of both control and barrier-FOLEDs were improved by more than 4 times. These results show that PECVD deposited $PP_PX$ layers can be used as barrier layers for FOLEDs on plastic substrates as well as passivation layers for general OLEDs.

  • PDF

Neurodegeneration with Brain Iron Accumulation

  • Lee, Jae-Hyeok
    • Journal of Interdisciplinary Genomics
    • /
    • 제2권1호
    • /
    • pp.1-4
    • /
    • 2020
  • Recent advances in magnetic resonance imaging and identification of causative genes led to the recognition of a new group of disorders named neurodegeneration with brain iron accumulation (NBIA). NBIA is a group of inherited disorders characterized by abnormal iron deposition in the brain, usually in the basal ganglia. The disorder shares the clinical features of movement disorders and is accompanied by varying degrees of neuropsychiatric abnormalities. In this review, the causative genes, clinical presentations, neuroimaging features, and pathological findings are summarized.

직업적 망간 폭로에 있어서 뇌자기공명영상의 의의 (Significance of brain magnetic resonance imaging(MRI) in the assessment of occupational manganese exposure)

  • 정해관
    • Investigative Magnetic Resonance Imaging
    • /
    • 제2권1호
    • /
    • pp.14-30
    • /
    • 1998
  • 망간은 체내 필수원소의 하나이며 주로 간과 뇌의 기저핵게 축적되며 간을 통하여 배설된다. 망간은 체내 대사가 매우 빠르기 때문에 직업적 망간 폭로를 측정하는데 어려움이 있다. 특히 용접공과 같이 망간 폭로가 간헐적이거나 불규칙한 경우에는 혈중 및 요중 망간과 같은 기존 생체폭로지표로는 장기간에 걸친 폭로량을 정확하게 반영하기 힘들다. 뇌자기공명영상이 대두됨에 따랄 뇌내에 축적된 망간을 영상으로 확인하는 것이 가능하게 되었다. 초기에는 만성간부전 및 장기간에 걸친 정맥영양주입환자 등에서 뇌기저부의 고신호간도 소견이 보고되었다. 망간은 상자성 물질로 뇌자기공명영상에서 T1 이완시간을 단축시켜 T1 강조영상에서 고신호강도를 나타난다. 망간축적에 따른 고신호강도는 주로 담창구, 흑질, 피간 및 뇌하수체 등에서 나타난다. 저자들은 최근까지 국내 및 국외에서 직업적 및 비직업적으로 망간에 폭로된 사람에서 보고된 뇌자기공명영상소견을 수집하여 분석하였다. 우선 T1강조영상에서 관찰되는 고신호 강도와 연령, 성별, 직업적 망간 폭로 및 신경학적 이상 유무간의 관계를 분석하였다. 생물학적 폭로지표와 고신호강도간의 관계도 분석하였다. 고신호강도와 뇌내 망간축적, 신경세포손상 및 신경학적 이상간의 관계에 대한 문헌들을 분석하였다. T1강조영상에서 나타나는 고신호강도는 뇌내 망간축적 정도를 반영한다. 이러한 관계를 이용하여 신호강도를 분석하므로써 뇌내 망간축적 정도를 추정할수 있다. 뇌내 망간축적은 기저핵의 신경세포손상을 초래한다. 그러나 신경학적 이상은 비교적 단기간에 걸친 망간 축적과는 무관하게 보인다. 이는 신경학적 이상소견은 마간의 누적축적량과 관련되어 있기 때문인것으로 추정된다. 뇌자기 공명영사에서 관찰되는 고신호강도 소견은 표적 장기의 망간적 축적량을 반영하는데는 충분하지 못한 것으로 보인다. 따라서이러한 놔자기공명영상의 특성 및 비용-효과적인 측면을 고려할 대 망간폭로집안에서의 망간폭로정도를 추정하기 위하여 놔자기공명영상을 사용하는 것은 바람직하지 않다고 보인다. 그러나 망간과 관련된 건강장해가 의심되는 파킨슨증 환자에서 망간폭로를 확인 및 추정하는 데에는 매우 유용하게 활용할 수 있다.

  • PDF

신경계 질환에서 철 관련 자기공명영상 기법의 활용 (Application of Iron Related Magnetic Resonance Imaging in the Neurological Disorders)

  • 김태형;이재혁
    • Annals of Clinical Neurophysiology
    • /
    • 제16권1호
    • /
    • pp.1-7
    • /
    • 2014
  • Iron is an important element for brain oxygen transport, myelination, DNA synthesis and neurotransmission. However, excessive iron can generate reactive oxygen species and contribute neurotoxicity. Although brain iron deposition is the natural process with normal aging, excessive iron accumulation is also observed in various neurological disorders such as neurodegeneration with brain iron accumulation, Parkinson's disease, Alzheimer's disease, multiple sclerosis, Friedreich ataxia, and others. Magnetic resonance image (MRI) is a useful method for detecting iron deposits in the brain. It can be a powerful tool for diagnosis and monitoring, while furthering our understanding of the role of iron in the pathophysiology of a disease. In this review, we will introduce the mechanism of iron toxicity and the basics of several iron-related MRI techniques. Also, we will summarize the previous results concerning the clinical application of such MR imagings in various neurological disorders.