• Title/Summary/Keyword: Metal artifacts

Search Result 140, Processing Time 0.034 seconds

A Study on Usefulness of Clinical Application of Metal Artifact Reduction Algorithm in Radiotherapy (방사선치료 시 Metal artifact reduction Algorithm의 임상적용 유용성평가)

  • Park, Ja Ram;Kim, Min Su;Kim, Jeong Mi;Chung, Hyeon Suk;Lee, Chung Hwan;Back, Geum Mun
    • The Journal of Korean Society for Radiation Therapy
    • /
    • v.29 no.2
    • /
    • pp.9-17
    • /
    • 2017
  • Purpose: The tissue description and electron density indicated by the Computed Tomography(CT) number (also known as Hounsfield Unit) in radiotherapy are important in ensuring the accuracy of CT-based computerized radiotherapy planning. The internal metal implants, however, not only reduce the accuracy of CT number but also introduce uncertainty into tissue description, leading to development of many clinical algorithms for reducing metal artifacts. The purpose of this study was, therefore, to investigate the accuracy and the clinical applicability by analyzing date from SMART MAR (GE) used in our institution. Methode: and material: For assessment of images, the original images were obtained after forming ROIs with identical volumes by using CIRS ED phantom and inserting rods of six tissues and then non-SMART MAR and SMART MAR images were obtained and compared in terms of CT number and SD value. For determination of the difference in dose by the changes in CT number due to metal artifacts, the original images were obtained by forming PTV at two sites of CIRS ED phantom CT images with Computerized Treatment Planning (CTP system), the identical treatment plans were established for non-SMART MAR and SMART MAR images by obtaining unilateral and bilateral titanium insertion images, and mean doses, Homogeneity Index(HI), and Conformity Index(CI) for both PTVs were compared. The absorbed doses at both sites were measured by calculating the dose conversion constant (cCy/nC) from ylinder acrylic phantom, 0.125cc ionchamber, and electrometer and obtaining non-SMART MAR and SMART MAR images from images resulting from insertions of unilateral and bilateral titanium rods, and compared with point doses from CTP. Result: The results of image assessment showed that the CT number of SMART MAR images compared to those of non-SMART MAR images were more close to those of original images, and the SD decreased more in SMART compared to non-SMART ones. The results of dose determinations showed that the mean doses, HI and CI of non-SMART MAR images compared to those of SMART MAR images were more close to those of original images, however the differences did not reach statistical significance. The results of absorbed dose measurement showed that the difference between actual absorbed dose and point dose on CTP in absorbed dose were 2.69 and 3.63 % in non-SMRT MAR images, however decreased to 0.56 and 0.68 %, respectively in SMART MAR images. Conclusion: The application of SMART MAR in CT images from patients with metal implants improved quality of images, being demonstrated by improvement in accuracy of CT number and decrease in SD, therefore it is considered that this method is useful in dose calculation and forming contour between tumor and normal tissues.

  • PDF

Sanskrit Inscriptions in Northeastern Indian Scripts in Premodern Java and the Maritime Asian Networks of Mahāyāna Buddhist Tantra

  • Andrea ACRI
    • Acta Via Serica
    • /
    • v.9 no.1
    • /
    • pp.91-138
    • /
    • 2024
  • This survey explores artifacts like steles, metal or stone statues, metal foils, and coins, bearing inscriptions in the Sanskrit language and Siddhamātṛkā (or "Siddham"), Nāgarī, and Proto-Bengali/Gauḍī scripts produced in Java between the 8th and 13th century CE, contextualizing them against the background of the pan-Asian networks of Tantric Buddhism or Mahāyāna Buddhist Tantra and especially its circulation along the maritime "Silk Routes." Discussing the interrelationship between languages, scripts, religions, and politics in Java and relevant regions of the wider Buddhist world, it tries to answer questions concerning foreign or local agency and audience as well as transregional connectivity. In particular, it argues that the quick spread of varieties of Mahāyāna/Mantrayāna Buddhism from the Subcontinent to Java and East Asia during a "first wave" from the 8th to the 9th century appears to have occurred in parallel with the diffusion of Siddhamātṛkā script in those locales, whereas a "second wave" of Tantric Buddhism linking the Indo-Tibetan and East Asian Buddhist world is associated with Nāgarī and Proto-Bengali/Gauḍī script in East Java.

Material Characteristics of Gold Artifacts of Sarira Reliquary inside Stone Pagoda of Mireuksa Temple Site (미륵사지 석탑 출토 사리장엄 금제유물의 재료학적 특성)

  • Kwon, Hyuk-nam;Yoo, Dong-wan;Lee, Jang-jon;Han, Min-su
    • Korean Journal of Heritage: History & Science
    • /
    • v.47 no.4
    • /
    • pp.210-223
    • /
    • 2014
  • When sarira reliquary was found in stone pagoda of Mireuksa Temple, there were 494 gold artifacts, including inner gold pot, gold plate with inscription for Sarira enshrinement, etc. Most of gold artifacts were crafted, but there were 22 gold plates and 4 gold ingots, which did not have any specific shape. It was considered that they had not been crafted. Since gold exists as a metal rather than a metallic oxide in nature, in general, it can be crafted by melting and shaping. However, gold in nature has impurities so it has to be refined to have malleability. The characteristic features were identified through the analysis of gold artifacts from sarira reliquary found in stone pagoda of Mireuksa Temple. The analysis result showed that there were 3 types of gold; pure gold artifacts, artifacts produced with silver containing gold and natural gold ingots. Inner gold pot, gold earrings and gold small beads were produced with pure gold and they contained less than 1wt.% of copper. It seemed like they were produced as pure gold to be shaped by hammering. Gold plate with inscription, tweezers, gold earrings, ingots, etc. were produced with silver containing gold as they had to be more solid. Gold ingots seemed to be natural gold considering the distribution of silver and copper in them, but it cannot be concluded as there are not enough information on gold ingots in Korea. The comprehensive research on gold ingots from various regions in Korea has to be carried out to confirm the above. Sarira Reliquary showed the very sophisticated gold craftsmanship. Gold ingots with the inscriptions, which say 1 nyang, were approximately 14g. Considering the weight of these ingots as standard, weights of other ingots were half nyang(7g), 2 nyang(28g), etc.

Metal artifact SUV estimation by using attenuation correction image and non attenuation correction image in PET-CT (PET-CT에서 감쇠보정 영상과 비감쇠보정 영상을 통한 Metal Artifact 보정에 대한 고찰)

  • Kim, June;Kim, Jae-II;Lee, Hong-Jae;Kim, Jin-Eui
    • The Korean Journal of Nuclear Medicine Technology
    • /
    • v.20 no.2
    • /
    • pp.21-26
    • /
    • 2016
  • Purpose Because of many advantages, PET-CT Scanners generally use CT Data for attenuation correction. By using CT based attenuation correction, we can get anatomical information, reduce scan time and make more accurate correction of attenuation. However in case metal artifact occurred during CT scan, CT-based attenuation correction can induce artifacts and quantitative errors that can affect the PET images. Therefore this study infers true SUV of metal artifact region from attenuation corrected image count -to- non attenuation corrected image count ratio. Materials and Methods Micro phantom inserted $^{18}F-FDG$ 4mCi was used for phantom test and Biograph mCT S(40) is used for medical test equipment. We generated metal artifact in micro phantom by using metal. Then we acquired both metal artifact region of correction factor and non metal artifact region of correction factor by using attenuation correction image count -to- non attenuation correction image count ratio. In case of clinical image, we reconstructed both attenuation corrected images and non attenuation corrected images of 10 normal patient($66{\pm}15age$) who examined PET-CT scan in SNUH. After that, we standardize several organs of correction factor by using attenuation corrected image count -to- non attenuation corrected count ratio. Then we figured out metal artifact region of correction factor by using metal artifact region of attenuation corrected image count -to- non attenuation corrected count ratio And we compared standard organs correction factor with metal artifact region correction factor. Results according to phantom test results, metal artifact induce overestimation of correction factor so metal artifact region of correction factors are 12% bigger than the non metal artifact region of correction factors. in case of clinical test, correction factor of organs with high CT number(>1000) is $8{\pm}0.5%$, correction factor of organs with CT number similar to soft tissue is $6{\pm}2%$ and correction factor of organs with low CT number(-100>) is $3{\pm}1%$. Also metal artifact correction factors are 20% bigger than soft tissue correction factors which didn't happened metal artifact. Conclusion metal artifact lead to overestimation of attenuation coefficient. because of that, SUV of metal artifact region is overestimated. Thus for more accurate quantitative evaluation, using attenuation correction image count -to-non attenuation correction image count ratio is one of the methods to reduce metal artifact affect.

  • PDF

A Study of the Metal Artifact Reduction using Dual Energy CT : Clinical Applications of Dual Energy and MAR Algorithm (Dual Energy CT를 이용한 금속물질 인공물 감소방법 : Dual Energy와 MAR알고리즘의 임상적 응용)

  • Park, Ki Seok;Choi, Woo Jeon;Kim, Dong Hyun
    • Journal of the Korean Society of Radiology
    • /
    • v.15 no.3
    • /
    • pp.273-279
    • /
    • 2021
  • Metal material inserted into the body have a large difference in density from human tissues or bones around the Metal during CT scans.. Therefore, the Metal material inserted into the body produces Artifact. Metal Artifact, which occurs around Metals, can degrade the quality of CT images, causing confusion when medical team diagnose lesions. Through this experiment, we confirm that the occurrence of Artifacts decrease by using Dual energy CT and MAR algorithm in Single source Dual energy CT. We also want to present basic data on clinical application methods by comparing and analyzing the characteristics of images obtained by each method. Using GE 750HD CT, artificial implants were scanned using general method and Dual energy. Then we apply the MAR algorithm to each image obtained. And all previously acquired images were compared and analyzed the characteristics of the examination, such as image quality evaluation and dose evaluation. Images with MAR algorithm and Dual Energy confirmed a decrease in Metal Artifact. Images with MAR algorithm have reduced Metal Artifact, but have the disadvantage of distorting the details of artificial joint implants. On the other hand images teseted with Dual Energy have the advantage of being able to implement details than those applied with MAR algorithms, it takes longer to reconstruct the image and the exposure dose was about four times higher than those applied with MAR algorithm. In order to locate Metals, such as the post-operative follow-up period, it is useful to apply MAR algorithm to obtain images. And it is more useful to examine with Dual Energy when micro lesion identification, such as cardiac examination, and surgical planning or when tests are performed in diagnostic way.

Photon Defects due to Residual Barium in the Colon Simulating Cold Bone Metastasis in Two Patients with Extraskeletal Cancer (골격외 종양 환자에서 냉소 골전이와 유사하게 보인 잔류 바리움에 의한 광자 결손)

  • Lim, Seok-Tae;Kim, Min-Woo;Sohn, Myung-Hee
    • The Korean Journal of Nuclear Medicine
    • /
    • v.36 no.5
    • /
    • pp.314-316
    • /
    • 2002
  • One of common causes of cold defects on bone scintigraphy is an attenuation artifact. Cold defects can be produced by belt buckles, buttons, earring, necklaces, or other metal objects. Cold lesions in the abdomen are also produced by retained barium in the gastrointestinal tract after recent barium studies. We observed artifacts due to retained barium in the colon on bone scintigraphy, which simulated cold bone metastases in two patients with extraskeletal cancer.

Study for the Film Coating Techniqur of Gilt Bronze Artifacts from Mir ksa Temple (미륵사지 출토 고대 금동유물의도금기법에 관한 연구)

  • Lim, Sun-Ki;Kang, Dai-Ill;Kim, Sun-Dug;Park, Dong-Kyu;Kang, Sung-Goon
    • 보존과학연구
    • /
    • s.14
    • /
    • pp.45-76
    • /
    • 1993
  • Au-Cu alloyed coating layer were found by Hg-amalgam process and it seemed to be used Cu-amalgam process similar to Au-amalgam. Coated layer is dense and unique, Thickness of layer was 1.5 to $18.0\mum$ which had 95.3 to 99.8% purity of gold Matrix metal mostly cosists of forged copper alloy which had high purity and ferrite ($\alpha$) strusture. It showed excellent refining technical level at that time. Aowever, the nail, ferrous matrix used for strength needed, composed of silver foil packed and gold layer for adherence between ferrous matrix and gold layer

  • PDF

A study of surface characteristic and the removal of acrylic resin from metal artifacts using an Nd:YAG laser (Nd:YAG 레이저를 적용한 금속문화재에 코팅된 아크릴 수지의 제거 및 표면 특성 연구)

  • Lee, Hye-Yeon;Jo, Nam-Cheol
    • Proceedings of the Korean Institute of Surface Engineering Conference
    • /
    • 2012.05a
    • /
    • pp.193-194
    • /
    • 2012
  • 레이저클리닝이란 레이저빔을 표면에 조사하여 오염 물질을 제거하는 공정 기술로서 건식 세정방식이다. 본 연구에서는 레이저클리닝을 금속문화재에 코팅된 아크릴수지에 적용하여 제거 가능성 및 표면 특성을 조사하였다. 실험 결과 소지금속에 손상을 주지 않으면서 아크릴수지를 제거하는 레이저 조건을 확인하였으나 청동유물에 적용한 결과 아크릴수지와 파티나 층이 함께 제거되는 레이저클리닝의 문제점도 확인할 수 있었다. 앞으로 다양한 레이저 시스템 및 파장별 실험을 진행하여 청동 파티나층의 제거 가능성을 검토하면 레이저 클리닝을 청동 문화재에 적용하는데 도움이 될 것으로 본다.

  • PDF

Biological applications of the NanoSuit for electron imaging and X-microanalysis of insulating specimens

  • Ki Woo Kim
    • Applied Microscopy
    • /
    • v.52
    • /
    • pp.4.1-4.11
    • /
    • 2022
  • Field emission scanning electron microscopy (FESEM) is an essential tool for observing surface details of specimens in a high vacuum. A series of specimen procedures precludes the observations of living organisms, resulting in artifacts. To overcome these problems, Takahiko Hariyama and his colleagues proposed the concept of the "nanosuit" later referred to as "NanoSuit", describing a thin polymer layer placed on organisms to protect them in a high vacuum in 2013. The NanoSuit is formed rapidly by (i) electron beam irradiation, (ii) plasma irradiation, (iii) Tween 20 solution immersion, and (iv) surface shield enhancer (SSE) solution immersion. Without chemical fixation and metal coating, the NanoSuit-formed specimens allowed structural preservation and accurate element detection of insulating, wet specimens at high spatial resolution. NanoSuit-formed larvae were able to resume normal growth following FESEM observation. The method has been employed to observe unfixed and uncoated bacteria, multicellular organisms, and paraffin sections. These results suggest that the NanoSuit can be applied to prolong life in vacuo and overcome the limit of dead imaging of electron microscopy.

Clinical Applications of Dual-Energy CT

  • Saira Hamid;Muhammad Umer Nasir;Aaron So;Gordon Andrews;Savvas Nicolaou;Sadia Raheez Qamar
    • Korean Journal of Radiology
    • /
    • v.22 no.6
    • /
    • pp.970-982
    • /
    • 2021
  • Dual-energy CT (DECT) provides insights into the material properties of tissues and can differentiate between tissues with similar attenuation on conventional single-energy imaging. In the conventional CT scanner, differences in the X-ray attenuation between adjacent structures are dependent on the atomic number of the materials involved, whereas in DECT, the difference in the attenuation is dependent on both the atomic number and electron density. The basic principle of DECT is to obtain two datasets with different X-ray energy levels from the same anatomic region and material decomposition based on attenuation differences at different energy levels. In this article, we discuss the clinical applications of DECT and its potential robust improvements in performance and postprocessing capabilities.