• 제목/요약/키워드: Immobilization Device

검색결과 61건 처리시간 0.026초

맞물린 나노전극을 가지는 마이크로 캔틸레버의 제작 및 순환전압전류방법을 이용한 DNA의 선택적인 고정화 (DNA Selective Immobilization on a Microcantilever with Nano-Interdigitated Electrodes (Nano-IDEs) Using Cyclic Voltammetry)

  • 이정아;이광철
    • 대한기계학회논문집A
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    • 제32권6호
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    • pp.459-464
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    • 2008
  • We present a novel microcantilever device with nano-interdigitated electrodes (nano-IDEs) and DNA selective immobilization on the nano-IDEs for biosensing applications. Using the nano-IDEs and cyclic voltammetric methods, we have achieved selective immobilization of DNA with submicrometer spatial resolution on a freestanding microcantilever. $70{\sim}500\;nm$-wide gold (Au) nano-IDEs are fabricated on a low-stress SiNx microcantilever with dimensions of $100{\sim}600\;{\mu}m$ in length, and $15{\sim}60\;{\mu}m$ in width, with a $0.5\;{\mu}m$ thickness using electron beam lithography and bulk micromachining. Streptavidin is selectively deposited on one side of the nano-IDEs using cyclic voltammetry at a scan rate of 0.1 V/s with a range of $-0.2{\sim}0.7\;V$ during $1{\sim}5$ cycles. The selective deposition of dsDNA is confirmed by fluorescence microscopy after labeling with YOYO-1 dye.

두 경부 암 환자의 방사선치료 시 자체 제작한 고정 기구 유용성의 고찰 (Implementation of Man-made Tongue Immobilization Devices in Treating Head and Neck Cancer Patients)

  • 백종걸;김주호;이상규;이원주;윤종원;조정희
    • 대한방사선치료학회지
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    • 제20권1호
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    • pp.1-9
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    • 2008
  • 목 적: 두 경부 암 방사선치료 시 구강 구조물 내에 정확한 자세 재현성을 유지하는 것은 환자에게 편안함을 주는 동시에 최적화된 선량분포를 얻는데 매우 중요하다. 이 연구의 목적은 방사선치료 시 재현성을 유지하고 구강 내부의 공기와 조직계면 사이의 선량을 보정하기 위해 각 환자의 고정 기구를 자체 제작하였으며, 이를 기존의 고정 기구와 비교 분석하는데 그 목적이 있다. 대상 및 방법: 치과 환자의 구강 조형물 제작 시 사용되는 알지네이트(alginate; AROMA FINE DF III normal set, japan)와 퍼티 (putty; aquasil soft putty/regular set, germany)를 이용하여 각 환자의 구강 구조와 동일한 고정 기구를 제작 하였다. 방사선 치료 시 재현성을 평가를 위해 자체 제작한 고정 기구를 이용하여 컴퓨터 단층 촬영 시와 동일한 자세로 5회 Linac-gram을 촬영하고 분석하였다. 자체 제작한 고정 기구의 선량 안정성을 검증하기 위하여 공기, 물, 알지네이트 그리고 퍼티를 삽입할 수 있는 아크릴 팬텀을 제작하였다. 실험은 두 가지 조사면적(3$\times$3 cm, 5$\times$5 cm)에 대해 단일 조사를 통해 이루어졌고 방사선 치료 계획 장비(Pinnacle ver.7.6c, Philips, USA)에 의해 계산된 선량과 EBT 필름을 사용한 측정된 선량을 비교 분석하였다. 결 과: 자체 제작한 고정 기구의 재현성 검증을 위한 조사야 확인 영상 확인 결과 기존의 고정 기구를 사용한 경우에 비해 알지네이트와 퍼티를 이용한 고정 기구는 4배 이상의 우수한 재현성을 보였고, 방사선 치료 시 환자의 불편함을 해소 할 수 있었다. 방사선 치료 계획 장비를 이용한 계산된 계면선량은 공기일 때 3$\times$3 cm, 5$\times$5 cm에서 각각 7.87%, 0.56%로 나타났으며 EBT (international specialty products, USA)필름을 사용한 측정된 계면선량은 36.5%, 11.8%로 EBT 필름을 사용한 측정된 계면선량이 크게 나타났다. 결 론: 두 경부 암 환자의 방사선 치료 시 구강 내 구조물의 자세 재현성을 유지하기 위하여 알지네이트와 퍼티를 이용하여 자체 제작한 고정 기구는 기존의 고정 기구 보다 매우 우수한 재현성을 유지 할 수 있었으며, 소 조사면에 대한 방사선 치료 계획 시 치료 계획 장비의 선량 계산 알고리즘의 한계로 인한 구강 내 계면선량의 감소를 보정해 최적의 선량분포를 얻을 수 있었다.

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Nanoscale Fabrication of Biomolecular Layer and Its Application to Biodevices

  • Park, Jeong-Woo;Nam, Yun-Suk;Masamichi Fujihira
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제9권2호
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    • pp.76-85
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    • 2004
  • Biodevices composed of biomolecular layer have been developed in various fields such as medical diagnosis, pharmaceutical screening, electronic device, photonic device, environmental pollution detection device, and etc. The biomolecules such as protein, DNA and pigment, and cells have been used to construct the biodevices such as biomolecular diode, biostorage device, bioelectroluminescence device, protein chip, DNA chip, and cell chip. Substantial interest has focused upon thin film fabrication or the formation of biomaterials mono- or multi-layers on the solid surfaces to construct the biodevices. Based on the development of nanotechnology, nanoscale fabrication technology for biofilm has been emerged and applied to biodevices due to the various advantages such as high density immobilization and orientation control of immoblized biomolecules. This review described the nanoscale fabrication of biomolecular film and its application to bioelectronic devices and biochips.

3DCA제작을 통한 Vac-Lock 사용시 효율성향상에 대한 연구 (The evaluation of effectiveness of 3DCA using vacuum bag(Vac-Lock) for patient immobilization device)

  • 이영철;이철빈;강노현;김동욱;이중용;정인표
    • 대한방사선치료학회지
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    • 제16권1호
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    • pp.67-72
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    • 2004
  • 목 적 : 본원에서는 Whole body용 Vac-Lock을 이용하여 환자의 전신체형을 뜨고 있다. 그러나 몇 가지 애로사항이 발생하여 본 연구에서는 이러한 문제점을 찾아 보고, 애로사항을 해결하고자 자체 제작한 3DCA에 대해 알아보고자 한다. 대상 및 방법 : 본원에서 사용중인 Whole body용 Vac-Lock의 크기는 2종류가 있는데, 그에 따라 제작한 3DCA를 제작하는데 재질은 목재를 이용하였는데, 그것은 비용절감과 직접 제작을 하기 위해서는 쉽게 재질을 다룰 수 있고, 모양을 내기 위해서는 목재가 적정하였다고 사료되었다. 결 과 : Vac-Lock을 사용하면서 애로사항을 4가지로 분석하였고, 이러한 문제점을 해결하기 위해 3DCA를 제작 사용하게 되었다. 첫 번째 문제는 많은 제작 인원으로, 3DCA를 사용하여 전에는 환자의 전신체형을 뜨는데 5명 내지 6명이 동원 되었는데, 이제는 한사람이 할 수 있게 되었다. 두 번째는 제작 시간으로 3DCA를 사용하기 전에는 많은 인원이 동원되어도 1시간 이상이 소요되었으나, 이제는 한사람이 10분 이내로 단축할 수 있었다. 세 번째는 Vac-Lock이 큰 관계로 체형을 뜬 후 치료기기와 충돌하는 경우가 있었으나, 지금은 그러한 현상을 방지할 수 있었다. 네 번째로 3DCA를 사용하기 전에는 Vac-Lock의 외형이 깔끔하지 못했는데, 이제는 매끄럽게 체형을 뜰 수가 있었다. 결 론 : 환자가 치료받은 자세를 치료시 마다 동일하게 유지하기 위해 Vac-Lock을 사용하였는데, Vac-Lock 제품의 특성상 사용시 조금한 불편함이 근무자에게 애로사항으로 다가왔다. 이번 연구도 그러한 불편함을 조금이나마 줄여 보고자 하였고, 실제 문제점을 찾아 보고, 그 문제점을 해결하고자 3DCA를 제작 사용하였는데 많은 효과를 보고 있다.

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Microfluidic Immunoassay Platform Using Antibody-immobilized Glass Beads and Its Application for Detection of Escherichia coli O157:H7

  • Lee, Nae-Yoon;Yang, Yoon-sun;Kim, Youn-Sang;Park, Sung-su
    • Bulletin of the Korean Chemical Society
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    • 제27권4호
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    • pp.479-483
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    • 2006
  • We developed a microfluidic immunoassay platform for the detection of various analytes such as bacterial pathogen by packing antibody-immobilized glass beads in spatially-isolated microchambers on a microfluidic device. Primary amines of antibody were covalently conjugated to carboxyl-terminated glass beads previously treated with aminosilane followed by glutaraldehyde. Through this covalent binding, up to 905 $\mu$g immunoglobulin G (IgG) per gram of glass beads was immobilized. For application, glass beads attaching antibody specific to Escherichia coli O157:H7, a foodborne pathogen, were packed into a microfluidic device and used for the detection of the serotype. This prototype immunoassay device can be used for the simultaneous detection of multiple analytes by sequentially packing different-sized glass beads attaching different antibody in discrete microchambers on a single microfluidic device.

Development of Hepatocyte Spheroids Immobilization Technique Using Alternative Encapsulation Method

  • Kim, Sungd-Po;Lee, Doo-Hoon;Park, Jung-Keug
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제3권2호
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    • pp.96-102
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    • 1998
  • Primary hepatocytes of small animals such as rat and rabbit were often used for the study of extracorporeal liver support systems. Freshly isolated rat hepatocytes form spheroids within tow days when cultivated as suspension in spinner vessels. These spheroids showed enhanced liver specific functions and more differentiated morphology compared to hepatocytes cultured as monolayers However, shear stress caused by continuous agitation deteriorated spheroids gradually. In this work we immobilized spheroids to prolong liver specific activities. First, hepatocyte spheroids were suspended in collagen solution containing calcium chloride and then dropped into alginate solution. A thin layer of calcium alginate was formed around the droplet and then was removed after the inner collagen was gelled by treatment of sodium citrate buffer. Spheroids embedded in collagen-gel bead maintained liver specific functions such as albumin secretion rate longer than hepatocyte spheroids exposed to shear stress. Therefore, we suggest that this immobilization technique may offer an effective long-term hepatocyte cultivation and facilitase the development of a bioartificial liver support device.

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Passive and Active Detection of Conducting Nanoparticles by Nanogaps

  • Lee, Cho Yeon;Park, Jimin;Park, Jong Mo;Kang, Aeyeon;Yun, Wan Soo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.268.1-268.1
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    • 2013
  • Immobilization of conducting nanoparticles on a nanogap comprising two electrodes spaced at a distance comparable to the particle size can be used as a simple and sensitive method of detecting the particles. In this work, we have examined the performance of the nanogap devices in the measurement of metallic nanoparticles, particularly gold nanoparticles (Au NPs). Detection of pM-level Au NPs in an aqueous suspension was quite straightforward irrespective of the existence of non-conducting materials. Speed of detection or the time necessary for the completion of the measurement, however, was strongly dependent upon the immobilization process. Active trapping process was found to be much more efficient and also effective in the detection of nanoparticles than its passive counterpart.

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Synthesis and Characterization of Magnetic Nanoparticles and Its Application in Lipase Immobilization

  • Xu, Jiakun;Ju, Caixia;Sheng, Jun;Wang, Fang;Zhang, Quan;Sun, Guolong;Sun, Mi
    • Bulletin of the Korean Chemical Society
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    • 제34권8호
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    • pp.2408-2412
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    • 2013
  • We demonstrate herein the synthesis and modification of magnetic nanoparticles and its use in the immobilization of the lipase. Magnetic $Fe_3O_4$ nanoparticles (MNPs) were prepared by simple co-precipitation method in aqueous medium and then subsequently modified with tetraethyl orthosilicate (TEOS) and 3-aminopropyl triethylenesilane (APTES). Silanization magnetic nanoparticles (SMNP) and amino magnetic nanomicrosphere (AMNP) were synthesized successfully. The morphology, structure, magnetic property and chemical composition of the synthetic MNP and its derivatives were characterized using transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FT-IR) analysis, X-ray diffraction, superconducting quantum interference device (SQUID) and thermogravimetric analyses (TGA). All of these three nanoparticles exhibited good crystallization performance, apparent superparamagnetism, and the saturation magnetization of MNP, SMNP, AMNP were 47.9 emu/g, 33.0 emu/g and 19.5 emu/g, respectively. The amino content was 5.66%. The AMNP was used to immobilize lipase, and the maximum adsorption capacity of the protein was 26.3 mg/g. The maximum maintained activity (88 percent) was achieved while the amount of immobilized lipase was 23.7 mg $g^{-1}$. Immobilization of enzyme on the magnetic nanoparticles can facilitate the isolation of reaction products from reaction mixture and thus lowers the cost of enzyme application.

Development of RMRD and Moving Phantom for Radiotherapy in Moving Tumors

  • Lee, S.;Seong, Jin-Sil;Chu, Sung-Sil;Yoon, Won-Sup;Yang, Dae-Sik;Choi, Myung-Sun;Kim, Chul-Yong
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2003년도 제27회 추계학술대회
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    • pp.63-63
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    • 2003
  • Purpose: Planning target volume (PTV) for tumors in abdomen or thorax includes enough margin for breathing-related movement of tumor volumes during treatment. We developed a simple and handy method, which can reduce PTV margins in patients with moving tumors, respiratory motion reduction device system (RMRDs). Materials and Methods: The patients clinical database was structured for moving tumor patients and patient setup error measurement and immobilization device effects were investigated. The system is composed of the respiratory motion reduction device utilized in prone position and abdominal presser (strip device) utilized in the supine position, moving phantom and the analysis program, which enables the analysis on patients setup reproducibility. It was tested for analyzing the diaphragm movement and CT volume differences from patients with RMRDs, the magnitude of PTV margin was determined and dose volume histogram (DVH) was computed using a treatment planning software. Dose to normal tissue between patients with RMRDs and without RMRDs was analyzed by comparing the fraction of the normal liver receiving to 50% of the isocenter dose(TD50). Results: In case of utilizing RMRDs, which was personally developed in our hospital, the value was reduced to $5pm1.4 mm$, and in case of which the belt immobilization device was utilized, the value was reduced to 3$pm$0.9 mm. Also in case of which the strip device was utilized, the value was proven to reduce to $4pm.3 mm$0. As a result of analyzing the TD50 is irradiated in DVH according to the radiation treatment planning, the usage of the respiratory motion reduction device can create the reduce of 30% to the maximum. Also by obtaining the digital image, the function of comparison between the standard image, automated external contour subtraction, and etc were utilized to develop patients setup reproducibility analysis program that can evaluate the change in the patients setup. Conclusion: Internal organ motion due to breathing can be reduced using RMRDs, which is simple and easy to use in clinical setting. It can reduce the organ motion-related PTV margin, thereby decrease volume of the irradiated normal tissue.

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Comparison of Two Different Immobilization Devices for Pelvic Region Radiotherapy in Tomotherapy

  • Kim, Dae Gun;Jung, James J;Cho, Kwang Hwan;Ryu, Mi Ryeong;Moon, Seong Kwon;Bae, Sun Hyun;Ahn, Jae Ouk;Jung, Jae Hong
    • 한국의학물리학회지:의학물리
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    • 제27권4호
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    • pp.250-257
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    • 2016
  • The purpose of this study was to compare the patient setup errors of two different immobilization devices (Feet Fix: FF and Leg Fix: LF) for pelvic region radiotherapy in Tomotherapy. Thirty six-patients previously treated with IMRT technique were selected, and divided into two groups based on applied immobilization devices (FF versus LF). We performed a retrospective clinical analysis including the mean, systematic, random variation, 3D-error, and calculated the planning target volume (PTV) margin. In addition, a rotational error (angles, $^{\circ}$) for each patient was analyzed using the automatic image registration. The 3D-errors for the FF and the LF groups were 3.70 mm and 4.26 mm, respectively; the LF group value was 15.1% higher than in the FF group. The treatment margin in the ML, SI, and AP directions were 5.23 mm (6.08 mm), 4.64 mm (6.29 mm), 5.83 mm (8.69 mm) in the FF group (and the LF group), respectively, that the FF group was lower than in the LF group. The percentage in treatment fractions for the FF group (ant the LF group) in greater than 5 mm at ML, SI, and AP direction was 1.7% (3.6%), 3.3% (10.7%), and 5.0% (16.1%), respectively. Two different immobilization devices were affected the patient setup errors due to different fixed location in low extremity. The radiotherapy for the pelvic region by Tomotherapy should be considering variation for the rotational angles including Yaw and Pitch direction that incorrect setup error during the treatment. In addition the choice of an appropriate immobilization device is important because an unalterable rotation angle affects the setup error.