• 제목/요약/키워드: Ion beam methods

검색결과 141건 처리시간 0.025초

Development of a Wide Dose-Rate Range Electron Beam Irradiation System for Pre-Clinical Studies and Multi-Purpose Applications Using a Research Linear Accelerator

  • Jang, Kyoung Won;Lee, Manwoo;Lim, Heuijin;Kang, Sang Koo;Lee, Sang Jin;Kim, Jung Kee;Moon, Young Min;Kim, Jin Young;Jeong, Dong Hyeok
    • 한국의학물리학회지:의학물리
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    • 제31권2호
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    • pp.9-19
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    • 2020
  • Purpose: This study aims to develop a multi-purpose electron beam irradiation device for preclinical research and material testing using the research electron linear accelerator installed at the Dongnam Institute of Radiological and Medical Sciences. Methods: The fabricated irradiation device comprises a dual scattering foil and collimator. The correct scattering foil thickness, in terms of the energy loss and beam profile uniformity, was determined using Monte Carlo calculations. The ion-chamber and radiochromic films were used to determine the reference dose-rate (Gy/s) and beam profiles as functions of the source to surface distance (SSD) and pulse frequency. Results: The dose-rates for the electron beams were evaluated for the range from 59.16 Gy/s to 5.22 cGy/s at SSDs of 40-120 cm, by controlling the pulse frequency. Furthermore, uniform dose distributions in the electron fields were achieved up to approximately 10 cm in diameter. An empirical formula for the systematic dose-rate calculation for the irradiation system was established using the measured data. Conclusions: A wide dose-rate range electron beam irradiation device was successfully developed in this study. The pre-clinical studies relating to FLASH radiotherapy to the conventional level were made available. Additionally, material studies were made available using a quantified irradiation system. Future studies are required to improve the energy, dose-rate, and field uniformity of the irradiation system.

Monte Carlo Investigation of Dose Enhancement due to Gold Nanoparticle in Carbon-12, Helium-4, and Proton Beam Therapy

  • Sang Hee Ahn
    • 한국의학물리학회지:의학물리
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    • 제33권4호
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    • pp.114-120
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    • 2022
  • Purpose: Particle beam therapy is advantageous over photon therapy. However, adequately delivering therapeutic doses to tumors near critical organs is difficult. Nanoparticle-aided radiation therapy can be used to alleviate this problem, wherein nanoparticles can passively accumulate at higher concentrations in the tumor tissue compared to the surrounding normal tissue. In this study, we investigate the dose enhancement effect due to gold nanoparticle (GNP) when Carbon-12, He-4, and proton beams are irradiated on GNP. Methods: First, monoenergetic Carbon-12 and He-4 ion beams of energy of 283.33 MeV/u and 150 MeV/u, respectively, and a proton beam of energy of 150 MeV were irradiated on a water phantom of dimensions 30 cm×30 cm×30 cm. Subsequently, the secondary-particle information generated near the Bragg peak was recorded in a phase-space (phsp) file. Second, the obtained phsp file was scaled down to a nanometer scale to irradiate GNP of diameter 50 nm located at the center of a 4 ㎛×4 ㎛×4 ㎛ water phantom. The dose enhancement ratio (DER) was calculated in intervals of 1 nm from the GNP surface. Results: The DER of GNP computed at 1 nm from the GNP surface was 4.70, 4.86, and 4.89 for Carbon-12, He-4, and proton beams, respectively; the DER decreased rapidly with increasing distance from the GNP surface. Conclusions: The results indicated that GNP can be used as radiosensitizers in particle beam therapy. Furthermore, the dose enhancement effect of the GNP absorbed by tumor cells can aid in delivering higher therapeutic doses.

Fabrication and Characterization of Immiscible Fe-Cu Alloys using Electrical Explosion of Wire in Liquid

  • Phuc, Chu Dac;Thuyet, Nguyen Minh;Kim, Jin-Chun
    • 한국분말재료학회지
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    • 제27권6호
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    • pp.449-457
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    • 2020
  • Iron and copper are practically immiscible in the equilibrium state, even though their atomic radii are similar. As non-equilibrium solid solutions, the metastable Fe-Cu alloys can be synthesized using special methods, such as rapid quenching, vapor deposition, sputtering, ion-beam mixing, and mechanical alloying. The complexity of these methods (multiple steps, low productivity, high cost, and non-eco-friendliness) is a hinderance for their industrial applications. Electrical explosion of wire (EEW) is a well-known and effective method for the synthesis of metallic and alloy nanoparticles, and fabrication using the EEW is a simple and economic process. Therefore, it can be potentially employed to circumvent this problem. In this work, we propose the synthesis of Fe-Cu nanoparticles using EEW in a suitable solution. The powder shape, size distribution, and alloying state are analyzed and discussed according to the conditions of the EEW.

활성화 이온빔 처리된 Sapphire기판 위에 성장시킨 MOCVD-GaN 박막의 격자변형량 측정 (Measurements of Lattice Strain in MOCVD-GaN Thin Film Grown on a Sapphire Substrate Treated by Reactive Ion Beam)

  • 김현정;김긍호
    • Applied Microscopy
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    • 제30권4호
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    • pp.337-345
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    • 2000
  • 사파이어 기판을 이용한 GaN 박막성장에서 완충층의 사용과 기판의 질화처리는 GaN 박막 내의 격자결함을 줄이는 가장 보편적인 방법이다. GaN박막의 초기 핵생성과 성장 거동을 향상시키기 위한 새로운 방법으로 사파이어 표면을 질소 활성화 이온빔으로 처리하는 방법이 시도되었다. 활성화 이온빔 처리의 결과 약 10nm두께의 비정질 $AlO_xN_y$ 층이 형성되었으며 GaN의 성장온도에서 부분적으로 결정화되어 계면 부위에 고립된 비정질 영역으로 존재하였다. 계면에 존재하는 비정질 층은 기판과 박막사이에서 발생하는 열응력을 효과적으로 감소시키는 역할이 가능하며 이를 확인하기 위하여 활성화 이온빔 처리에 의한 GaN박막 내의 격자변형량 차이를 비교하였다. GaN박막에서 얻어진 $[\bar{2}201]$ 정대축고차 Laue도형을 전산모사 도형과 비교하여 격자변형량을 측정하였다. 본 연구의 결과 활성화 이온빔 처리를 하지 않은 기판 위에 성장시킨 GaN박막의 격자변형량은 처리한 경우에 비해 6배 이상 높은 값을 가졌으며 따라서 활성화 이온빔 처리에 의해 GaN박막의 열응력은 크게 감소함을 확인하였다.

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The histometric analysis of osseointegration in hydroxyapatite surface dental implants by ion beam-assisted deposition

  • Kim, Min-Kyung;Choi, Jung-Yoo;Chae, Gyung-Joon;Jung, Ui-Won;Kim, Sung-Tae;Lee, In-Seop;Cho, Kyoo-Sung;Kim, Chong-Kwan;Choi, Seong-Ho
    • Journal of Periodontal and Implant Science
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    • 제38권sup2호
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    • pp.363-372
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    • 2008
  • Purpose: This study compared the effects of coating implants with hydroxyapatite (HA) using an ion beam-assisted deposition (IBAD) method prepared with machined, anodized, sandblasted and large-grit acid etched (SLA) surfaces in minipigs, and verified the excellency of coating method with HA using IBAD. Material and Methods: 4 male Minipigs(Prestige World Genetics, Korea), 18 to 24 months old and weighing approximately 35 to 40 kg, were chosen. All premolars and first molars of the maxilla were carefully extracted on each side. The implants were placed on the right side after an 8 week healing period. The implant stability was assessed by resonance frequency analysis (RFA) at the time of placement. 40 implants were divided into 5 groups; machined, anodized, anodized plus IBAD, SLA, and SLA plus IBAD surface implants. 4 weeks after implantation on the right side, the same surface implants were placed on the left side. After 4 weeks of healing, the minipigs were sacrificed and the implants were analyzed by RFA, histology and histometric. Results: RFA showed a mean implant stability quotient (ISQ) of $75.625{\pm}5.021$, $76.125{\pm}3.739$ ISQ and $77.941{\pm}2.947$ at placement, after 4 weeks healing and after 8 weeks, respectively. Histological analysis of the implants demonstrated newly formed, compact, mature cortical bone with a nearby marrow spaces. HA coating was not separated from the HA coated implant surfaces using IBAD. In particular, the SLA implants coated with HA using IBAD showed better contact osteogenesis. Statistical and histometric analysis showed no significant differences in the bone to implant contact and bone density among 5 tested surfaces. Conclusion: We can conclude that rough surface implants coated with HA by IBAD are more biocompatible, and clinical, histological, and histometric analysis showed no differences when compared with the other established implant surfaces in normal bone.

BONE RESPONSE OF THREE DIFFERENT SURFACE IMPLANTS : HISTOMORPHOMETRIC, PERIO TEST VALUE AND RESONANCE FREQUENCY ANALYSIS IN BEAGLE DOGS

  • Choi, Joon-Eon;Suh, Kyu-Won;Lee, In-Ku;Ryu, Jae-Jun;Shin, Sang-Wan
    • 대한치과보철학회지
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    • 제45권3호
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    • pp.362-374
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    • 2007
  • Statement of problem. The intial stability for osseointegration of implant has been an interesting factor. Especially, in the case of poor bone quality or immediately loaded implant, various strategies have been developed focusing on the surface of materials to improve implant fixation to bone. The microscopic properties of implant surfaces play a major role in the osseous healing of dental implants. Purpose. The aims of this study are to perform a histologic and histomorphometric comparison of the healing characteristics of three different surfaces and the comparison of resonance frequency analysis (RFA) values measured by $Osstell^{TM}$ and perio-test values (PTV) measured by Periotest. Material and methods. A total of 24 screw titanium implants (Dentium Co., Seoul, Korea) with 6mm in length and 3.4mm in diameter, were placed in the mandible of 4 beagle dogs. Implants were divided into three groups following the surface treatment methods: Group I is machined(control group). Group II is anodically oxidized. Group III is coated 500nm in thickness with hydroxyapatite(HA) by ion beam assisted deposition(IBAD) on the anodized oxidization. Bone blocks from 2 dogs were caught after 3 weeks of covered healing and another blocks from 2 dogs after 6 weeks. RFA values and PTV were measured right after insertion and at 3 and 6weeks. Histomorphometric analysis was made with Kappa Image Base System to calculate bone-to-implant contact (BIC) and bone area inside the threads. Pearson's correlation analyses were performed to evaluate the correlation between RFA and PTV, BIC and bone area ratio of three different surfaces at 3 and 6 weeks. Results. 1) In all surface treatment methods, the RFA values decreased and the PTV values increased until 6 weeks in comparison to initial values. 2) At 3 weeks, no significant difference was found from bone-to-implant contact ratio and bone area ratio of three different surface treatment methods(P>0.05). However, at 6 weeks, different surface treatment methods showed significantly different bone-toimplant contact ratio and bone area ratio(P<0.05). 3) In the implants with the IBAD on the anodic oxidization, significant difference was found between the 3 weeks and the 6 weeks bone area ratio(P<0.05). 4) Correlation was found between the RFA values and the bone area ratio at 3 and 6 weeks with significant difference(P<0.05). Conclusions. These results indicate that the implants with the IBAD on the anodic oxidization may have a high influence on the initial stability of implant.

고에너지 선형가속기의 Independent Collimator를 이용한 비대칭 방사선 조사시 방사선량 결정에 미치는 요인에 관한 연구 (Dosimetric Characteristics of Dual Photon Energy Using Independent Collimator Jaws)

  • 김정기;최영민;이형힉;허원주
    • Radiation Oncology Journal
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    • 제14권3호
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    • pp.237-244
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    • 1996
  • 목적 : 의료용 선형가속기의 Independent Collimator는 현재 광범위하게 사용되고 있다. 그러나 방사선량의 계산과 MU(Monitor Unit)의 계산에 사용되는 모든 기본 자료는 대칭 조사면를 기준으로 작성되었기 때문에 independent collimator를 사용한 비대칭적인 조사면의 경우 현재 사용하고 있는 계산 방식을 그대로 적용함에 무리가 있을 것으로 생각된다. 따라서 이러한 의문에 대한 체계적이고 과학적인 검토가 필요할 것으로 사료되어 본 연구를 진행하였다. 대상 및 방법 :본 연구는 Dual Photon Beam(6MV와 15MV)을 산출(産出)하는 선형가속기(Linac 1800, Varian Co)에서 collimator 사용시 산란 방사선의 총채로 표현되어지는 field size factor, beam qualify에 영향을 미치는 HVL와 PDD를 조사하였다. 먼저 field size factor는 water phantom(WP 600C Wellhofer, Germany)내의 Dmax에서 field size $3{\times}3cm$에서 $35{\times}35cm$까지의 방사선량의 변화를 square field로 $1cm^2$씩 증가시켜 가며 0.6cc ion chamber(NE 2571)로 측정하였다. Beam quality는 100cm SSD(source-surface distance)에서 $5{\times}5$, $10{\times}10$, $15{\times}15$$20{\times}20cm$ field size로 0, 3 및 10cm off-axis distance와 dmax 4, 10, 15 및 20cm의 깊이에서 측정하였다. Dose distribution을 분석하기 위하여 film densitometer와 water phantom(IC 10 ion chamber)을 사용, $10{\times}10cm$ field size에서 5, 10 및 15cm의 off-axis distance까지의 방사선량의 분포를 관찰하고 대칭 방사선 조사면와 비교 분석하여 실제 isodose 분포에 미치는 영향을 관찰하였다. 결과: 1) Relative field size factor는 중심 축에서 off-axis lateral distance에 따라 다양하게 변화하였는데 6MV X-선의 경우 최대 $3.1\%$, 15MV X-선의 경우 최대 $5\%$까지의 변화를 보였다. 이때 off-axis factor를 구하여 교정을 하였을 경우 중심 축의 field size factor와 거의 유사한 값에 도달할 수 있었다. 2) Beam qualify의 변화를 관찰하기 위한 실험에서 HVL는 off-axis distance가 멀어질수록 감소하였고 PDD도 off-axis distance가 멀어지고 측정 깊이가 깊어질수록 감소되는 현상을 보였다. 통상적인 방사선 치료시에 이용되는 $5{\times}5cm$ 이상의 field size와 15cm 이내의 깊이에서는 3cm 와 l0cm의 off-axis에서 6MV X-선은 평균 $0.5\%$$2\%$, 15MV X선은 $0.4\%$$1.4\%$의 감소 현상을 보여 큰 편차를 관찰할 수 없었다. 3) Isodose distribution은 off-axis distance가 멀어질수록 depth dose의 증가치가 감소되었으며 특히 central axis의 가장자리 부위에서는 isodose curve의 위축이 확연하였다. 결론 : Independent collimator를 사용하여 비대칭 방사선 치료를 할 경우 MU의 계산은 off-axis factor와 PDD 보정이 필수적이며 임상적으로는 중심 축에서의 과소조사에 대한 정밀한 주의가 필요할 것으로 사료된다.

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Bone apposition on implants coated with calcium phosphate by ion beam assisted deposition in oversized drilled sockets: a histologic and histometric analysis in dogs

  • Kim, Min-Soo;Jung, Ui-Won;Kim, Sungtae;Lee, Jung-Seok;Lee, In-Seop;Choi, Seong-Ho
    • Journal of Periodontal and Implant Science
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    • 제43권1호
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    • pp.18-23
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    • 2013
  • Purpose: The purpose of this study was to evaluate the osseointegration of calcium phosphate (CaP)-coated implants by ion beam assisted deposition with a lack of primary stability. Methods: A total of 20 CaP-coated implants were bilaterally placed in the mandible of five dogs. In the rotational implant group, the implants were inserted in oversized drilled sockets without mechanical engagement, while the conventional surgical protocol was followed in the control group. Each group was allowed to heal for 4 and 8 weeks. The bone-to-implant contact (BIC, %) was measured by a histometric analysis. Results: All of the implants were well-maintained and healing was uneventful. In the histologic observation, all of the implants tested were successfully osseointegrated with a high level of BIC at both observation intervals. There was no significant difference in BIC among any of the groups. Conclusions: Within the limitation of this study, successful osseointegration of CaP-coated implants could be achieved in unfavorable conditions without primary stability.

Hydrogen Behaviors with different introduction methods in SiC-C Films

  • Huang, N.K.;Zou, P.;Liu, J.R.;Zhang, L.
    • 한국진공학회지
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    • 제12권S1호
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    • pp.1-6
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    • 2003
  • SiC-C films were deposited with r. f. magnetron sputtering on substrates followed by argon ion bombardment. These films were then permeated by hydrogen gas under the pressure of $3.23\times10^{7}$ Pa for 3 hours at temperature of 500K or bombarded with hydrogen ion beam at 5 keV and a dose of $1\times10^{18}$ ions/$\textrm{cm}^2$. SIMS, AES and XPS were used to analyze hydrogen related species, chemical bonding states of C, Si as well as contamination oxygen due to hydrogen participation in the SiC-C films in order to study the different behaviors of hydrogen in carbon-carbide films due to different hydrogen introduction. Related mechanism about the effects of hydrogen on the element of the SiC-C films was discussed in this paper.

THIN FILM TECHNOLOGIES RELATED TO THE HIGH T$_{c}$ SUPERCONDUCTORS

  • Ri, Eui-Jae
    • 한국표면공학회지
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    • 제29권5호
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    • pp.415-423
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    • 1996
  • Thin film technologies for fabricating SQUIDs involve etching and deposition procedures with the proper substrate materials and $YBa_2Cu_3O_{7-d}$ (YBCO) as the high $T_c$ superconductor. YBCO were prepared on various substrates of MgO, $SrTiO_3$, and $LaAlO_3$ by using off-axis magnetron sputtering methods and annealing in-situ. The parameters of film fabrication processes had been optimized to yield good quality films in terms of the critical temperature $T_c$ and the critical current density $J_c$. The optimized processes yielded $T_C$>90K along with $J_c$>$10_6A$$extrm{cm}^2$ at 77K and>$2\times10_7A/Cm^2$ at 5K. We fabricated step-edge type dc-SQUIDs and directly coupled magnetometers, producing step edges on MgO(100) substrates by etching with Ar-ion beam, depositing YBCO material on them, then patterning them by using ion-milling technique. Circuitizing washer-shape SQUIDs to possess a pair of step-edge junctions of 2-5$\mu$ line width with a high angle>$50^{\circ}C$ , we examined their I-V characteristics thoroughly and Shapiro steps clearly as we irradiate microwaves of 8-20 GHz frequency.

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