• 제목/요약/키워드: Accuracy and precision of 3D images

검색결과 36건 처리시간 0.022초

소아 얼굴 연조직의 3차원 입체영상의 정확성 및 재현성 평가 (Accuracy and Precision of Three-dimensional Imaging System of Children's Facial Soft Tissue)

  • 최경화;김미선;이고은;남옥형;이효설;최성철;김광철
    • 대한소아치과학회지
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    • 제47권1호
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    • pp.17-24
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    • 2020
  • 이 연구의 목적은 소아 얼굴 연조직의 선형 길이를 비교하여 삼차원 입체영상의 정확성과 재현성을 평가하는 것이다. 연구는 7 - 12세 아동 15명을 대상으로 하였다. 환자의 안모에 23개의 계측 점을 표시하고, 전자 캘리퍼를 이용하여 16 개의 선형길이를 직접 2번 계측하였다. 3차원(3D) 스캐너를 이용하여 2개의3D 얼굴 영상을 만들었으며, 직접계측과 동일한 16개의 선형 길이를 계측하였다. 연구결과 정확성 평가에서 전체 평균 차이 값은 0.9 mm였다. 3D 영상의 재현성은 직접계측의 재현성과 거의 유사한 정도로 나타났다. 이에 따라 이 3D 영상장비는 소아에서 임상적으로 충분한 정확성과 재현성을 가지고 있었다. 3D 영상 시스템은 정확한 이미지를 위하여 대상의 협조가 필요하다. 소아의 정확한 3D영상을 얻기 위한 구체적인 지시사항을 바탕으로 촬영을 한다면, 이 3D 영상 장비는 향후 소아의 성장과 발달을 조사하고, 소아교정치료에서 결과를 평가하는데 유용하게 사용될 수 있을 것이다.

Accuracy and precision of integumental linear dimensions in a three-dimensional facial imaging system

  • Kim, Soo-Hwan;Jung, Woo-Young;Seo, Yu-Jin;Kim, Kyung-A;Park, Ki-Ho;Park, Young-Guk
    • 대한치과교정학회지
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    • 제45권3호
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    • pp.105-112
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    • 2015
  • Objective: A recently developed facial scanning method uses three-dimensional (3D) surface imaging with a light-emitting diode. Such scanning enables surface data to be captured in high-resolution color and at relatively fast speeds. The purpose of this study was to evaluate the accuracy and precision of 3D images obtained using the Morpheus 3D$^{(R)}$ scanner (Morpheus Co., Seoul, Korea). Methods: The sample comprised 30 subjects aged 24.34 years (mean $29.0{\pm}2.5$ years). To test the correlation between direct and 3D image measurements, 21 landmarks were labeled on the face of each subject. Sixteen direct measurements were obtained twice using digital calipers; the same measurements were then made on two sets of 3D facial images. The mean values of measurements obtained from both methods were compared. To investigate the precision, a comparison was made between two sets of measurements taken with each method. Results: When comparing the variables from both methods, five of the 16 possible anthropometric variables were found to be significantly different. However, in 12 of the 16 cases, the mean difference was under 1 mm. The average value of the differences for all variables was 0.75 mm. Precision was high in both methods, with error magnitudes under 0.5 mm. Conclusions: 3D scanning images have high levels of precision and fairly good congruence with traditional anthropometry methods, with mean differences of less than 1 mm. 3D surface imaging using the Morpheus 3D$^{(R)}$ scanner is therefore a clinically acceptable method of recording facial integumental data.

Multi-Detector Row CT를 이용한 중심부 기도 질환의 평가 (Multi-Detector Row CT of the Central Airway Disease)

  • 강은영
    • Tuberculosis and Respiratory Diseases
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    • 제55권3호
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    • pp.239-249
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    • 2003
  • Multi-detector row CT (MDCT) provides faster speed, longer coverage in conjunction with thin slices, improved spatial resolution, and ability to produce high quality muliplanar and three-dimensional (3D) images. MDCT has revolutionized the non-invasive evaluation of the central airways. Simultaneous display of axial, multiplanar, and 3D images raises precision and accuracy of the radiologic diagnosis of central airway disease. This article introduces central airway imaging with MDCT emphasizing on the emerging role of multiplanar and 3D reconstruction.

전이학습 기반 사출 성형품 burr 이미지 검출 시스템 개발 (Development of a transfer learning based detection system for burr image of injection molded products)

  • 양동철;김종선
    • Design & Manufacturing
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    • 제15권3호
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    • pp.1-6
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    • 2021
  • An artificial neural network model based on a deep learning algorithm is known to be more accurate than humans in image classification, but there is still a limit in the sense that there needs to be a lot of training data that can be called big data. Therefore, various techniques are being studied to build an artificial neural network model with high precision, even with small data. The transfer learning technique is assessed as an excellent alternative. As a result, the purpose of this study is to develop an artificial neural network system that can classify burr images of light guide plate products with 99% accuracy using transfer learning technique. Specifically, for the light guide plate product, 150 images of the normal product and the burr were taken at various angles, heights, positions, etc., respectively. Then, after the preprocessing of images such as thresholding and image augmentation, for a total of 3,300 images were generated. 2,970 images were separated for training, while the remaining 330 images were separated for model accuracy testing. For the transfer learning, a base model was developed using the NASNet-Large model that pre-trained 14 million ImageNet data. According to the final model accuracy test, the 99% accuracy in the image classification for training and test images was confirmed. Consequently, based on the results of this study, it is expected to help develop an integrated AI production management system by training not only the burr but also various defective images.

Precision Evaluation of Three-dimensional Feature Points Measurement by Binocular Vision

  • Xu, Guan;Li, Xiaotao;Su, Jian;Pan, Hongda;Tian, Guangdong
    • Journal of the Optical Society of Korea
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    • 제15권1호
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    • pp.30-37
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    • 2011
  • Binocular-pair images obtained from two cameras can be used to calculate the three-dimensional (3D) world coordinate of a feature point. However, to apply this method, measurement accuracy of binocular vision depends on some structure factors. This paper presents an experimental study of measurement distance, baseline distance, and baseline direction. Their effects on camera reconstruction accuracy are investigated. The testing set for the binocular model consists of a series of feature points in stereo-pair images and corresponding 3D world coordinates. This paper discusses a method to increase the baseline distance of two cameras for enhancing the accuracy of a binocular vision system. Moreover, there is an inflexion point of the value and distribution of measurement errors when the baseline distance is increased. The accuracy benefit from increasing the baseline distance is not obvious, since the baseline distance exceeds 1000 mm in this experiment. Furthermore, it is observed that the direction errors deduced from the set-up are lower when the main measurement direction is similar to the baseline direction.

무인항공기 정밀 센서모델링을 통한 대축척 수치도화 가능성 평가 (Evaluation of Possibility of Large-scale Digital Map through Precision Sensor Modeling of UAV)

  • 임평채;김한결;박지민;이수암
    • 대한원격탐사학회지
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    • 제36권6_1호
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    • pp.1393-1405
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    • 2020
  • 무인항공기(UAV: Unmanned Aerial Vehicle)는 저고도 비행으로 인해 고해상도 영상을 취득할 수 있으며, 수시촬영이 가능하여 지도제작에 있어 수시갱신이 가능하다. 이러한 이점으로 인해 무인항공기 영상을 이용한 대축척 수치지도 제작 가능성에 대한 연구가 활발히 진행되고 있다. 정밀한 수치지도는 디지털트윈이나 스마트시티의 기반 데이터로 활용될 수 있다. 정밀한 수치지도를 제작하기 위해서는 지상기준점을 이용한 정밀 센서모델링이 반드시 선행되어야 한다. 본 연구에서는, 자체 개발한 정밀 센서모델링 알고리즘을 통해 무인항공기 영상의 기하모델을 수립하였다. 그리고 수치지도를 제작하여 대축척 수치도화 가능성을 평가하였다. 연구 데이터는 인천 간석동과 서울 여의도를 대상으로 영상 및 지상기준점을 취득하였다. 정밀 센서모델링 정확도 분석 결과, 두 지역에 대해서 체크 점 평균오차 3 픽셀 이내, RMSE 4 픽셀 이내의 높은 정확도를 확인하였다. 수치도화 정확도 분석 결과, 국토지리정보원에서 고시한 1:1,000 세부도화 수평오차(0.4 m) 및 표고오차(0.4 m)를 만족하는 범위의 정확도를 확인하였다. 따라서 본 연구에서 자체개발한 정밀 센서모델링 기술은 무인항공기 영상의 1:1,000 대축척 수치도화 제작 가능성을 시사한다.

드론영상 기반 고밀 도심지의 3차원 공간모형의 정밀도에 관한 연구 (A Study on Precision of 3D Spatial Model of a Highly Dense Urban Area based on Drone Images)

  • 최연우;윤혜원;추미진;윤동근
    • 한국측량학회지
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    • 제40권2호
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    • pp.69-77
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    • 2022
  • 3차원 공간모형은 도시문제 해결을 위한 분석틀로서 도시계획, 환경, 토지 및 주택관리, 재난 시뮬레이션 등 다양한 분야에서 이용되고 있다. 또한, 3차원 공간모형의 구축 시에 저비용으로 단시간에 3차원 영상 촬영이 가능한 드론의 활용성은 증가하고 있다. 드론을 활용한 가상도시 구축 및 시뮬레이션 모듈 활용 측면에서 항공촬영의 정확도 및 3차원 공간모형의 정밀도는 매우 중요한 요소로 기능하기 때문에 이를 향상시키기 위한 방법들이 제안되고 있다. 본 연구는 건축물이 밀집하여 위치한 도심지를 대상으로 항공촬영 조건별로 드론을 활용한 항공촬영의 정확도 및 3차원 공간모형의 정밀도를 비교분석하였다. 분석 대상지는 서울특별시 영등포구 대림2동 내 건축물 밀집도가 높은 일부지역으로 선정하였으며 항공촬영 조건으로, 촬영각, 촬영고도, 드론영상의 중복률을 활용하였다. 항공촬영의 정확도는 대상지 내에 설치한 검사점의 실제 측량값과 항공촬영을 통해 구축한 3차원 공간모형의 예측값 간의 차이를 분석함으로써 정확도를 산정하였다. 3차원 공간모형의 정밀도는 항공촬영을 통해 생산된 Point cloud와 Point cloud에 기반하여 구축된 3차원 공간모형 간의 차이를 분석함으로써 정밀도를 산정하였다. 분석결과, 정확도의 경우, 상대적으로 높은 중복률에서 정확도가 높은 것으로 분석되었으나, 정밀도의 경우에는 중복률이 높을수록 정밀도는 오히려 낮아지는 경향을 보였으며 촬영각도가 수직에 가까울수록 정밀도는 높아지는 경향을 보였다. 촬영고도의 경우에는 정밀도와 유의미한 관련성은 없는 것으로 분석되었고, 기선고도비의 경우에는 중복률과 상이하게, 기선고도비가 커질수록 정밀도는 높아지는 경향을 보였다.

Accuracy of maxillofacial prototypes fabricated by different 3-dimensional printing technologies using multi-slice and cone-beam computed tomography

  • Yousefi, Faezeh;Shokri, Abbas;Farhadian, Maryam;Vafaei, Fariborz;Forutan, Fereshte
    • Imaging Science in Dentistry
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    • 제51권1호
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    • pp.41-47
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    • 2021
  • Purpose: This study aimed to compare the accuracy of 3-dimensional(3D) printed models derived from multidetector computed tomography (MDCT) and cone-beam computed tomography (CBCT) systems with different fields of view (FOVs). Materials and Methods: Five human dry mandibles were used to assess the accuracy of reconstructions of anatomical landmarks, bone defects, and intra-socket dimensions by 3D printers. The measurements were made on dry mandibles using a digital caliper (gold standard). The mandibles then underwent MDCT imaging. In addition, CBCT images were obtained using Cranex 3D and NewTom 3G scanners with 2 different FOVs. The images were transferred to two 3D printers, and the digital light processing (DLP) and fused deposition modeling (FDM) techniques were used to fabricate the 3D models, respectively. The same measurements were also made on the fabricated prototypes. The values measured on the 3D models were compared with the actual values, and the differences were analyzed using the paired t-test. Results: The landmarks measured on prototypes fabricated using the FDM and DLP techniques based on all 4 imaging systems showed differences from the gold standard. No significant differences were noted between the FDM and DLP techniques. Conclusion: The 3D printers were reliable systems for maxillofacial reconstruction. In this study, scanners with smaller voxels had the highest precision, and the DLP printer showed higher accuracy in reconstructing the maxillofacial landmarks. It seemed that 3D reconstructions of the anterior region were overestimated, while the reconstructions of intra-socket dimensions and implant holes were slightly underestimated.

3D PROCESSING OF HIGH-RESOLUTION SATELLITE IMAGES

  • Gruen, Armin;Li, Zhang
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2003년도 Proceedings of ACRS 2003 ISRS
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    • pp.24-27
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    • 2003
  • High-resolution satellite images at sub-5m footprint are becoming increasingly available to the earth observation community and their respective clients. The related cameras are all using linear array CCD technology for image sensing. The possibility and need for accurate 3D object reconstruction requires a sophisticated camera model, being able to deal with such sensor geometry. We have recently developed a full suite of new methods and software for the precision processing of this kind of data. The software can accommodate images from IKONOS, QuickBird, ALOS PRISM, SPOT5 HRS and sensors of similar type to be expected in the future. We will report about the status of the software, the functionality and some new algorithmic approaches in support of the processing concept. The functionality will be verified by results from various pilot projects. We put particular emphasis on the automatic generation of DSMs, which can be done at sub-pixel accuracy and on the semi-automated generation of city models.

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다중 스테레오영상을 이용한 대응문제의 해결과 거리오차의 해석 (Solving the Correspondence Problem by Multiple Stereo Image and Error Analysis of Computed Depth)

  • 이재웅;이진우;박광일
    • 대한기계학회논문집
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    • 제19권6호
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    • pp.1431-1438
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    • 1995
  • In this paper, we present a multiple-view stereo matching method in case of moving in the direction of optical axis with stereo camera. Also we analyze the obtainable depth precision to show that multiple-view stereo increases the virtual baseline with single-view stereo. This method decides candidate points for correspondence in each image pair and then search for the correct combinations of correspondences among them using the geometrical consistency they must satisfy. Adantages of this method are capability in increasing the accuracy in matching by using the multiple stereo images and less computation due to local processing. This method computes 3-D depth by averaging the depth obtained in each multiple-view stereo. We show that the resulting depth has more precision than depth obtainable by each independent stereo when the position of image feature is uncertain due to image noise. This paper first defines a multipleview stereo agorithm in case of moving in the direction of optical axis with stereo camera and analyze the obtainable precision of computed depth. Then we represent the effect of removing the incorrect matching candidate and precision enhancement with experimental result.