• 제목/요약/키워드: X-ray Micro CT

검색결과 87건 처리시간 0.026초

Spiral scanning imaging and quantitative calculation of the 3-dimensional screw-shaped bone-implant interface on micro-computed tomography

  • Choi, Jung-Yoo Chesaria;Choi, Cham Albert;Yeo, In-Sung Luke
    • Journal of Periodontal and Implant Science
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    • 제48권4호
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    • pp.202-212
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    • 2018
  • Purpose: Bone-to-implant contact (BIC) is difficult to measure on micro-computed tomography (CT) because of artifacts that hinder accurate differentiation of the bone and implant. This study presents an advanced algorithm for measuring BIC in micro-CT acquisitions using a spiral scanning technique, with improved differentiation of bone and implant materials. Methods: Five sandblasted, large-grit, acid-etched implants were used. Three implants were subjected to surface analysis, and 2 were inserted into a New Zealand white rabbit, with each tibia receiving 1 implant. The rabbit was sacrificed after 28 days. The en bloc specimens were subjected to spiral (SkyScan 1275, Bruker) and round (SkyScan 1172, SkyScan 1275) micro-CT scanning to evaluate differences in the images resulting from the different scanning techniques. The partial volume effect (PVE) was optimized as much as possible. BIC was measured with both round and spiral scanning on the SkyScan 1275, and the results were compared. Results: Compared with the round micro-CT scanning, the spiral scanning showed much clearer images. In addition, the PVE was optimized, which allowed accurate BIC measurements to be made. Round scanning on the SkyScan 1275 resulted in higher BIC measurements than spiral scanning on the same machine; however, the higher measurements on round scanning were confirmed to be false, and were found to be the result of artifacts in the void, rather than bone. Conclusions: The results of this study indicate that spiral scanning can reduce metal artifacts, thereby allowing clear differentiation of bone and implant. Moreover, the PVE, which is a factor that inevitably hinders accurate BIC measurements, was optimized through an advanced algorithm.

Comparison of micro-computerized tomography and cone-beam computerized tomography in the detection of accessory canals in primary molars

  • Acar, Buket;Kamburoglu, Kivanc;Tatar, Ilkan;Arikan, Volkan;Celik, Hakan Hamdi;Yuksel, Selcen;Ozen, Tuncer
    • Imaging Science in Dentistry
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    • 제45권4호
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    • pp.205-211
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    • 2015
  • Purpose: This study was performed to compare the accuracy of micro-computed tomography (CT) and cone-beam computed tomography (CBCT) in detecting accessory canals in primary molars. Materials and Methods: Forty-one extracted human primary first and second molars were embedded in wax blocks and scanned using micro-CT and CBCT. After the images were taken, the samples were processed using a clearing technique and examined under a stereomicroscope in order to establish the gold standard for this study. The specimens were classified into three groups: maxillary molars, mandibular molars with three canals, and mandibular molars with four canals. Differences between the gold standard and the observations made using the imaging methods were calculated using Spearman's rho correlation coefficient test. Results: The presence of accessory canals in micro-CT images of maxillary and mandibular root canals showed a statistically significant correlation with the stereomicroscopic images used as a gold standard. No statistically significant correlation was found between the CBCT findings and the stereomicroscopic images. Conclusion: Although micro-CT is not suitable for clinical use, it provides more detailed information about minor anatomical structures. However, CBCT is convenient for clinical use but may not be capable of adequately analyzing the internal anatomy of primary teeth.

Three-dimensional microstructure of human alveolar trabecular bone: a micro-computed tomography study

  • Lee, Ji-Hyun;Kim, Hee-Jin;Yun, Jeong-Ho
    • Journal of Periodontal and Implant Science
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    • 제47권1호
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    • pp.20-29
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    • 2017
  • Purpose: The microstructural characteristics of trabecular bone were identified using micro-computed tomography (micro-CT), in order to develop a potential strategy for implant surface improvement to facilitate osseointegration. Methods: Alveolar bone specimens from the cadavers of 30 humans were scanned by high-resolution micro-CT and reconstructed. Volumes of interest chosen within the jaw were classified according to Hounsfield units into 4 bone quality categories. Several structural parameters were measured and statistically analyzed. Results: Alveolar bone specimens with D1 bone quality had significantly higher values for all structural parameters than the other bone quality categories, except for trabecular thickness (Tb.Th). The percentage of bone volume, trabecular separation (Tb.Sp), and trabecular number (Tb.N) varied significantly among bone quality categories. Tb.Sp varied markedly across the bone quality categories (D1: $0.59{\pm}0.22mm$, D4: $1.20{\pm}0.48mm$), whereas Tb.Th had similar values (D1: $0.30{\pm}0.08mm$, D4: $0.22{\pm}0.05mm$). Conclusions: Bone quality depended on Tb.Sp and number-that is, endosteal space architecture-rather than bone surface and Tb.Th. Regardless of bone quality, Tb.Th showed little variation. These factors should be taken into account when developing individualized implant surface topographies.

미세단층촬영기법을 이용한 관상동맥 스텐트의 동물 모델 분석 (Ex vivo Morphometric Analysis of Coronary Stent using Micro-Computed Tomography)

  • 배인호;고정태;임경섭;박대성;김종민;정명호
    • 한국방사선학회논문지
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    • 제6권2호
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    • pp.93-98
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    • 2012
  • 미세단층촬영기법은 전임상 동물실험 분석시 고해상도의 혈관 영상화를 위한 중요한 수단이다. 이는 조직 분석과 같이 샘플 훼손이 예상되는 분석 작업 이전에 비파괴적인 방법으로 2차원 또는 3차원 이미지 재구성할 수 있는 장점이 있다. 본 연구에서는 생체 이식용 의료기기인 스텐트를 동물모델에서 전임상 분석을 하는데 있어 미세단층촬영기법의 활용방법을 제시하고 금속 스텐트(BMS)와 약물(paclitaxel)이 코팅된 스텐트(DES)의 스텐트 내 재협착정도(ISR)를 토끼 모델을 이용하여 평가하고자 하였다. BMS와 DES를 무작위적으로 토끼의 장골동맥에 식립하고 4주 후에 스텐트가 식립된 주위 혈관을 적출한 다음 스텐트 내강에 조영제를 투여하였다. 미세단층촬영기를 이용하여 50kV/200${\mu}A$의 X-ray 조사량으로 샘플을 스캔하였다. 정량적 분석을 위해 CTAN 소프트웨어를 이용하여 관심영역을 지정하여 정량적 분석을 수행하였다. 피폭 대상에 따라 각기 다른 CT값(Hounsfied Unit)을 획득할 수 있었으며(스텐트 영역; 약 1.2, 조영제 영역; 0.12~0.17, X-ray 비흡수 영역; 0~0.06), 이를 이용하여 2차원, 3차원적 영상을 획득하고 스텐트내 재협착 면적을 산출하였다. 조직병리학적 분석의 염증지수에 해당할 수 있는 확장된 스텐트의 크기를 측정하였을 때 BMS와 DES간의 유의한 차이가 나타나지 않았다. 또한 BMS 그룹의 ISR($1.52{\pm}0.48mm2$)이 DES의 ISR($0.94{\pm}0.42mm2$)에 비해 약 1.6배 높은 것으로 확인되었다. 이는 DES에 코팅된 paclitaxel이 세포 증식을 억제하여 스텐트 내강으로 증식하는 것을 저해하였기 때문으로 판단된다. 2차원적 분석 결과 BMS의 재협착 분포는 스텐트 중간 영역에서 전면부와 후면부에 비해 비교적 높은 것으로 확인되었다. 이러한 연구 결과로 볼 때 미세단층촬영기법은 비파괴적인 방법으로 분석이 가능하며 정량적 분석을 위한 기존의 복잡한 조직병리학적 분석법의 보조적인 수단으로 활용될 수 있을 것이다.

반복적 연산으로 얻은 Sparse-view CT 영상에 대한 정량적 평가 (Quantitative Evaluation of Sparse-view CT Images Obtained with Iterative Image Reconstruction Methods)

  • 김혜선;;조민형;이수열
    • 대한의용생체공학회:의공학회지
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    • 제32권3호
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    • pp.257-263
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    • 2011
  • Sparse-view CT imaging is considered to be a solution to reduce x-ray dose of CT. Sparse-view CT imaging may have severe streak artifacts that could compromise the image qualities. We have compared quality of sparseview images reconstructed with two representative iterative reconstruction techniques, SIRT and TV-minimization, in terms of image error and edge preservation. In the comparison study, we have used the Shepp-Logan phantom image and real CT images obtained with a micro-CT. In both phantom image and real CT image tests, TV-minimization technique shows the best performance in error reduction and preserving edges. However, the excessive computation time of TV-minimization is a technical challenge for the practical use.

소동물영상을 위한 마이크로 컴퓨터단층촬영장치 (Micro-CT System for Small Animal Imaging)

  • 남기용;김경우;김재희;손현화;유종현;강성훈;천권수;박성훈;윤권하
    • 한국의학물리학회지:의학물리
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    • 제19권2호
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    • pp.102-112
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    • 2008
  • 살아있는 마우스 영상화를 목적으로 겐트리 회전형과 평판영상검출기를 기반으로 한 고분해능 마이크로 컴퓨터단층촬영 장치를 개발하였다. 이 장치는 주로, 마이크로 크기 광원사이즈를 갖는 X-선 광원, Csl (TI)과 결합된 평판형 상보성 금속산화 반도체 영상검출기(CMOS), 선형이송 카우치, 위치정보 엔코더와 결합된 겐트리, 그리고 영상데이터 처리를 위한 병렬처리 시스템으로 구성되었다. 본 장치는 겐트리 회전형으로 설계되었는데, 이는 살아있는 마우스를 CT 영상을 얻는데 있어서 마우스 움직임에 기인한 영상결점의 최소화에 유리하고 촬영하는 동안 쥐의 호흡마취시행에 여러 가지 장점을 갖기 때문이다. CT팬텀을 이용하여 개발한 CT장치의 공간해상도, 영상대비도 그리고 영상균일도를 평가하였다. 결과로써, 본 장치의 공간해상도는 MTF 곡선으로부터 10%에 해당하는 약 11.3 cycles/mm을 얻었으며, 마우스에 대한 방사선 피폭선량은 81.5 mGy의 결과를 얻었다. 저대비 영상팬텀을 이용한 영상실험에서 분해가능 최소영상대비차는 약 46 CT였다. $55{\times}55{\times}X100\;{\mu}^3$의 복셀(voxel) 크기에서 영상의 불균일도는 약 70 CT 임을 얻었다. 또한 본 연구에서는 살아있는 마우스의 몸체, 뼈, 그리고 간에 대한 영상 테스트 결과를 제시하였다.

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Influence of reconstruction parameters of micro-computed tomography on the analysis of bone mineral density

  • Gaeta-Araujo, Hugo;Nascimento, Eduarda Helena Leandro;Brasil, Danieli Moura;Madlum, Daniela Verardi;Haiter-Neto, Francisco;Oliveira-Santos, Christiano
    • Imaging Science in Dentistry
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    • 제50권2호
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    • pp.153-159
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    • 2020
  • Purpose: This study was conducted evaluate the influence of reconstruction parameters of micro-computed tomography (micro-CT) images on bone mineral density (BMD) analyses. Materials and Methods: The sample consisted of micro-CT images of the maxillae of 5 Wistar rats, acquired using a SkyScan 1174 unit (Bruker, Kontich, Belgium). Each acquisition was reconstructed following the manufacturer's recommendations(standard protocol; SP) for the application of artifact correction tools(beam hardening correction [BHC], 45%; smoothing filter, degree 2; and ring artifact correction [RAC], level 5). Additionally, images were reconstructed with 36 protocols combining different settings of artifact correction tools (P0 to P35). BMD analysis was performed for each reconstructed image. The BMD values obtained for each protocol were compared to those obtained using the SP through repeated-measures analysis of variance with the Dunnett post hoc test(α=0.05). Results: The BMD values obtained from all protocols that used a BHC of 45% did not significantly differ from those obtained using the SP (P>0.05). The other protocols all yielded significantly different BMD values from the SP(P<0.05). The smoothing and RAC tools did not affect BMD values. Conclusion: BMD values measured on micro-CT images were influenced by the BHC level. Higher levels of BHC induced higher values of BMD.

A micro-computed tomographic study using a novel test model to assess the filling ability and volumetric changes of bioceramic root repair materials

  • Fernanda Ferrari Esteves Torres;Jader Camilo Pinto;Gabriella Oliveira Figueira;Juliane Maria Guerreiro-Tanomaru;Mario Tanomaru-Filho
    • Restorative Dentistry and Endodontics
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    • 제46권1호
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    • pp.2.1-2.8
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    • 2021
  • Objectives: New premixed bioceramic root repair materials require moisture for setting. Using micro-computed tomography (micro-CT), this study evaluated the filling ability and volumetric changes of calcium silicate-based repair materials (mineral trioxide aggregate repair high-plasticity [MTA HP] and Bio-C Repair, Angelus), in comparison with a zinc oxide and eugenol-based material (intermediate restorative material [IRM]; Dentsply DeTrey). Materials and Methods: Gypsum models with cavities 3 mm deep and 1 mm in diameter were manufactured and scanned using micro-CT (SkyScan 1272. Bruker). The cavities were filled with the cements and scanned again to evaluate their filling capacity. Another scan was performed after immersing the samples in distilled water for 7 days to assess the volumetric changes of the cements. The statistical significance of differences in the data was evaluated using analysis of variance and the Tukey test with a 5% significance level. Results: Bio-C Repair had a greater filling ability than MTA HP (p < 0.05). IRM was similar to Bio-C and MTA HP (p > 0.05). MTA HP presented the largest volumetric change (p < 0.05), showing more volume loss than Bio-C and IRM, which were similar (p > 0.05). Conclusions: Bio-C Repair is a new endodontic material with excellent filling capacity and low volumetric change. The gypsum model proposed for evaluating filling ability and volumetric changes by micro-CT had appropriate and reproducible results. This model may enhance the physicochemical evaluation of premixed bioceramic materials, which need moisture for setting.

Quantitative Analysis of Tooth Mineral Content by High Resolution Micro-computed Tomography

  • Song, Dae-Sung;Kim, Jung-Woo;Hwang, Hee-Su;Oh, Sin-Hye;Song, Ju Han;Kim, Il-Shin;Hwang, Yun-Chan;Koh, Jeong-Tae
    • International Journal of Oral Biology
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    • 제42권4호
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    • pp.155-161
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    • 2017
  • Teeth and bones are highly mineralized tissues containing inorganic minerals such as calcium phosphate, and a growing number of evidences show that their mineral content is associated with many diseases. Although the quantification of mineral contents by micro-computed tomography(micro- CT) has been used in diagnosis and evaluation for treating bone diseases, its application for teeth diseases has not been well established. In this study, we attempted to estimate a usefulness of a high-resolution micro-CT in analysis of human teeth. The teeth were scanned by using the Skyscan 1172 micro-CT. In order to measure tooth mineral content, beam hardening effect of the machine was corrected with a radiopaque iodine-containing substance, iodoacetamide. Under the maximum resolution of $6.6{\mu}m$, X-ray densities in teeth and hydroxyapatite standards were obtained with Hounsfield unit (HU), and they were then converted to an absolute mineral concentration by a CT Analyzer software. In enamel layer of cusp area, the mean mineral concentration was about $2.14mg/mm^3$ and there was a constant mineral concentration gradient from the enamel surface to the dentinoenamel junction. In the dentin of middle 1/3 of tooth, the mean mineral concentration was approximately $1.27mg/mm^3$ and there was a constant mineral concentration gradient from the outer of root to the pulp side, ranging from 1.3 to $1.06mg/mm^3$. In decay region of dentin, the mineral content was gradually decreased from the intact inner side to the decayed surface. These results suggest that high-resolution micro-CT can be as a useful tool for non-invasive measurement of mineral concentration in teeth.

이산화탄소 지중저장을 위한 포항분지 시추코어의 공극구조 분석 (An Analysis of Pore Network of Drilling Core from Pohang Basin for Geological Storage of CO2)

  • 박지환;박형동
    • 터널과지하공간
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    • 제26권3호
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    • pp.181-191
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    • 2016
  • 이산화탄소 지중저장 시 암석 내부의 공극구조는 지층 내 이산화탄소의 거동에 큰 영향을 미친다. 본 연구에서는 포항분지 영일만 지역에서 채취한 시추코어를 대상으로 X선 단층촬영 기법을 이용해 3차원 영상을 취득하고, 그 내부에 대한 정량적인 분석을 실시하였다. 세 가지 목표지층인 심도 740 m, 780 m, 810 m 부근에서 채취한 사암 시료(T1, T2, T3)의 공극률은 각각 25.22%, 23.97%, 6.28%로 분석되었다. 등가직경, 공극 부피, 공극 표면적, 국부두께 분석을 수행하였으며, 그 결과 T1, T2 시료가 T3 시료에 비해 이산화탄소 지중저장에 더 적합한 것으로 나타났다. 본 연구의 분석 결과는 이산화탄소 주입 조건 결정, 지층 내 이산화탄소 유동 해석 등에 기초자료로 이용될 수 있을 것으로 기대된다.