• Title/Summary/Keyword: Lateral cephalometric radiography

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두부규격방사선사진 촬영시 주요 장기의 등가선량, 유효선량 및 위험도 (EQUIVALENT DOSE, EFFECTIVE DOSE AND RISK ASSESSMENT FROM CEPHALOMETRIC RADIOGRAPHY TO CRITICAL ORGANS)

  • 강성숙;조봉혜;김현자
    • 치과방사선
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    • 제25권2호
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    • pp.309-318
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    • 1995
  • In head and neck region, the critical organ and tissue doses were determined, and the risks were estimated from lateral, posteroanterial and basilar cephalometric radiography. For each cephalometric radiography, 31 TLDs were placed in selected sites(18 internal and 13 external sites) in a tissue-equivalent phantom and exposed, then read-out in the TLD reader. The results were as follows: 1. From lateral cephalometric radiography, the highest effective dose recorded was that delivered to the salivary gland(3.6pSv) and the next highest dose was that received by the bone marrow(3pSv). 2. From posteroanterial cephalometric radiography, the highest effective dose recorded was that delivered to the salivary gland(2pSv) and the next highest dose was that received by the bone marrow(1.8pSv). 3. From basilar cephalometric radiography, the highest effective dose recorded was that delivered to the thyroid gland(31A p Sv) and the next highest dose was that received by the salivary gland(13.3 p Sv). 4. The probabilities of stochastic effect from lateral, posteroanterial and basilar cephalometric radiography were $0.72{\times}10^{-6}$, $0.49{\times}10^{-6}$ and $3.51{\times}10^{-6}$, respectively

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일반두부방사선계측사진과 디지털방사선계측사진의 계측점 식별의 오차 및 재현성에 관한 비교 연구 (The comparison of landmark identification errors and reproducibility between conventional lateral cephalometric radiography and digital lateral cephalometric radiography)

  • 이양구;양원식;장영일
    • 대한치과교정학회지
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    • 제32권2호통권91호
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    • pp.79-89
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    • 2002
  • 본 연구의 목적은 일반두부방사선계측사진과 디지털두부방사선계측사진의 계측점 식별의 오차를 구하여 각각의 영상에서 오차의 특징을 살펴보고 재현성을 비교 평가하는 것이다. 연구 대상은 서울대학교병원 치과진료부 교정과에 내원한 교정 환자 중 18세에서 29세 사이의 성인 환자 중에서 일반두부방사선계측사진군과 디지털두부방사선계측사진군 각각 15명씩 30명을 무작위로 선택하여 연구 대상으로 하였으며 남녀의 구별이나 두개 안면 구조의 형태는 고려하지 않았다. 계측점은 동일인이 시간차를 두고 식별 하였다. 식별 후 각 계측점은 좌표 (x, y)로 표시하였으며, 처음 계측점을 식별한 두부방사선계측사진군을 T1으로, 1 주 후 동일 계측점을 재식별한 두부방사선계측사진군을 T2로, 1 달 후 동일계측점을 재식별한 두부방사선계측사진군을 T3로 분류하였다. 오차의 평균과 표준편차는 x좌표, y좌표로 구분하여 계산하였다. 초기 식별 1주 후 재식별시 오차는 T2-T1(x), T2-T1(y)로, 초기 측정 1달 후 재시별시 오차는 T3-T1(x), T3-T1(y)로 표시하였으며 일반두부방사선계측사진과 디지털두부방사선계측사진으로 각각 나누었다. 재현성의 평가를 위한 오차간의 통계학적인 검정은 independent t-test를 사용하였으며 다음과 같은 결론을 얻었다. 1. 디지털두부방사선계측사진이 일반두부방사선계측사진보다 일반적으로 오차의 평균 및 표준편차가 작았다. 2. 일반두부방사선계측사진의 오차와 디지털두부방사선계측사진의 오차가 통계학적으로 유의성 있는 차이를 보인 항목은 드물었다. 3.상의 향상을 통한 오차의 개선은 한계가 있었으며 상이 향상되더라도 각 계측점의 오차 의 경향은 크게 변하지 않았다.

소아환자에서 교정분석을 위한 콘빔CT 촬영시 유효선량에 관한 연구 (Effective dose of cone-beam computed tomography for orthodontic analysis in pediatric patient)

  • 김은경
    • 대한치과의사협회지
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    • 제53권8호
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    • pp.558-568
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    • 2015
  • Objective: The objectives of this study were to measure pediatric organ and effective doses of cone-beam computed tomography (CBCT) for orthodontic analysis and to compare them to those of panoramic and lateral cephalometric radiography, the conventional radiography for orthodontic analysis. Materials and Methods: Alphard VEGA for CBCT, Planmeca Proline XC for panoramic radiography and Orthophos CD for cephalometric radiography were used for this study. Thermoluminescent dosimeter (TLD) chips were located at 24 anatomic sites of 10-year-old anthropomorphic phantom and exposed during CBCT (C-mode; $200{\times}179mm$ FOV), panoramic and lateral cephalometric radiographic procedures at the clinical exposure settings for 10-year-old patient. Pediatric organ and effective doses were measured and calculated using ICRP 2007 tissue weighting factors. Results: Effective doses of CBCT, panoramic radiography and lateral cephlometric radiography in pediatric clinical exposure settings were $292.5{\mu}Sv$, $19.3{\mu}Sv$, and $4.4{\mu}Sv$ respectively. The thyroid gland contributed most significantly to the effective dose in all the radiographic procedures. Conclusion: Effective dose of CBCT was about 12 times to conventional radiographic procedures for orthodontic analysis in pediatric patient. The use of CBCT for orthodontic analysis should be fully justified over conventional radiography and dose optimization to decrease thyroid dose is needed in pediatric patients.

국내 의료기관에서 측방두부규격방사선촬영시 임상에서의 촬영조건 및 환자 선량 (Radiographic examination protocol and patient dose in lateral cephalometric radiography in Korea)

  • 최진우
    • Imaging Science in Dentistry
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    • 제40권4호
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    • pp.165-169
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    • 2010
  • Purpose : To survey the radiographic examination protocol for lateral cephalometric radiographic examinations and to measure their patient doses in Korea and to compare the dose according to the size of hospital, the type of image receptor system, and the installation duration. Materials and Methods : The radiographic examination protocols (kVp, mA, and exposure time) for lateral cephalometric radiography were surveyed with 61 cephalometric radiographic equipments and their patient dose-area product (DAP) measured with a DAP meter (DIAMENTOR M4-KDK, PTW, Freiburg, Germany) for 51 cephalometric radiographic equipments. The radiographic examination protocols and patient doses were compared according to the size of hospital (university dental hospital, dental hospital, and dental clinic), the type of image receptor system (film-based, DR and CR type) and the installation duration, respectively. SPSS 12.0.1 for Windows (SPSS Inc., Chicago, USA) was used for independent t-test and ANOVA test. Results : The average protocols were 77.0 kVp, 12.7 mA, 6.2 second for cephalometric radiography. The average patient dose (DAP) was $128.0mGy\;cm^2$ and 3rd quartile dose (DAP) $161.1mGy\;cm^2$ for cephalometric radiography for adult male. There was no statistically significant difference at average patient DAP according to the size of hospital, the type of image receptor system, and the installation duration, repectively. Conclusion : The average patient dose was $128.0mGy\;cm^2$ and the third quartile patient dose $161.1mGy\;cm^2$ for lateral cephalometric radiography for adult male in Korea.

계수 영상화된 측모 두부방사선 규격사진의 계측오차 (ERRORS IN DIGITIZED LATERAL CEPHALOMETRIC RADIOGRAPHY)

  • 전선두;조봉혜;나경수
    • 치과방사선
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    • 제27권2호
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    • pp.105-116
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    • 1997
  • The purpose of this study is to evaluate the cephalometric reproducibility in digitized cephalometric radiography by comparing the measurement errors between the remeasured and retaken conventional and digitized lateral cephalometric radiography. The mean of the differences and error percentage of each cephalometric measurement were obtained using 96 lateral cephalometric radiography from 48 patients between the age of 11 and 13. The results were as follows; 1. The repeated measurement group of conventional radiography showed least amount of mean differences while those of the retaken measurement group of digitized image showed largest amount of mean differences in every measurement. 2. The measurements which showed statistically significant difference between the conventional radiography and digitized image were S-Go, Ar-Go, S-Ar-Go and S-sN-sNT in repeated measurement group. 3. The measurements which showed statistically significant difference between the repeated and retaken measurement groups were N-S-Ar, MP-Ll and S-sN-sPog in conventional radiography and S-N, Go-Me and N-A in digitized Image. 4. Large amount of error percentage was shown at A-N-B and N-A in retaken measurement group of conventional radiography and N-S-Ba and A-N-B in retaken measurement group of digitized image. 5. The amount of error percentage at Ar-Go and N-S- Ar in retaken measurement group of conventional radiography and S-N, N-A, S-N-B and N-S-Ba in retaken measurement group of digitized image was more than double than those from remeasured groups.

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The reliability of tablet computers in depicting maxillofacial radiographic landmarks

  • Tadinada, Aditya;Mahdian, Mina;Sheth, Sonam;Chandhoke, Taranpreet K;Gopalakrishna, Aadarsh;Potluri, Anitha;Yadav, Sumit
    • Imaging Science in Dentistry
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    • 제45권3호
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    • pp.175-180
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    • 2015
  • Purpose: This study was performed to evaluate the reliability of the identification of anatomical landmarks in panoramic and lateral cephalometric radiographs on a standard medical grade picture archiving communication system (PACS) monitor and a tablet computer (iPad 5). Materials and Methods: A total of 1000 radiographs, including 500 panoramic and 500 lateral cephalometric radiographs, were retrieved from the de-identified dataset of the archive of the Section of Oral and Maxillofacial Radiology of the University Of Connecticut School Of Dental Medicine. Major radiographic anatomical landmarks were independently reviewed by two examiners on both displays. The examiners initially reviewed ten panoramic and ten lateral cephalometric radiographs using each imaging system, in order to verify interoperator agreement in landmark identification. The images were scored on a four-point scale reflecting the diagnostic image quality and exposure level of the images. Results: Statistical analysis showed no significant difference between the two displays regarding the visibility and clarity of the landmarks in either the panoramic or cephalometric radiographs. Conclusion: Tablet computers can reliably show anatomical landmarks in panoramic and lateral cephalometric radiographs.

Reproducibility of lateral cephalometric landmarks on conventional radiographs and spatial frequency-processed digital images

  • Shin Jeong-Won;Choi Hang-Moon;Heo Min-Suk;Lee Sam-Sun;Choi Hyun-Bae;Choi Soon-Chul
    • Imaging Science in Dentistry
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    • 제32권4호
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    • pp.213-219
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    • 2002
  • Purpose : Computed radiography (CR) has been used in cephalometric radiography and many studies have been carried out to improve image quality using various digital enhancement and filtering techniques, During CR image acquisition, the frequency rank and type affect to the image quality. The aim of this study was to compare the diagnostic quality of conventional cephalometric radiographs to those of computed radiography. Materials and Methods : The diagnostic quality of conventional cephalometric radiographs (MO) and their digital image counterparts were compared, and at the same time, six modalities (M1-M6) of spatial frequency-processed digital images were compared by evaluating the reproducibility of 23 cephalometric landmark locations. Reproducibility was defined as an observer's deviation (in mm) from the mean between all observers. Results and Conclusion: In comparison with the conventional cephalometric radiograph (MO), Ml showed statistically significant differences in 8 locations, M2 in 9, M3 12, M4 in 7, M5 in 12, and M6 showed significant differences in 14 of 23 landmark locations (p < 0.05). The number of reproducible landmarks that each modality possesses were 7 in M6, 6 in M5, 5 in M3, 4 in M4, 3 in M2, 2 in Ml, and 1 location in MO. The image modality that observers selected as having the best image quality was M5.

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A comparative study between data obtained from conventional lateral cephalometry and reconstructed three-dimensional computed tomography images

  • Oh, Suseok;Kim, Ci-Young;Hong, Jongrak
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제40권3호
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    • pp.123-129
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    • 2014
  • Objectives: The aim of this study was to verify the concordance of the measurement values when the same cephalometric analysis method was used for two-dimensional (2D) cephalometric radiography and three-dimensional computed tomography (3D CT), and to identify which 3D Frankfort horizontal (FH) plane was the most concordant with FH plane used for cephalometric radiography. Materials and Methods: Reference horizontal plane was FH plane. Palatal angle and occlusal plane angle was evaluated with FH plane. Gonial angle (GA), palatal angle, upper occlusal plane angle (UOPA), mandibular plane angle (MPA), U1 to occlusal plane angle, U1 to FH plane angle, SNA and SNB were obtained on 2D cephalmetries and reconstructed 3D CT. The values measured eight angles in 2D lateral cephalometry and reconstructed 3D CT were evaluated by intraclass correlation coefficiency (ICC). It also was evaluated to identify 3D FH plane with high degree of concordance to 2D one by studying which one in four FH planes shows the highest degree of concordance with 2D FH plane. Results: ICCs of MPA (0.752), UOPA (0.745), SNA (0.798) and SNB (0.869) were high. On the other hand, ICCs of gonial angle (0.583), palatal angle (0.287), U1 to occlusal plane (0.404), U1 to FH plane (0.617) were low respectively. Additionally GA and MPA acquired from 2D were bigger than those on 3D in all 20 patients included in this study. Concordance between one UOPA from 2D and four UOPAs from 3D CT were evaluated by ICC values. Results showed no significant difference among four FH planes defined on 3D CT. Conclusion: FH plane that can be set on 3D CT does not have difference in concordance from FH plane on lateral cephalometry. However, it is desirable to define FH plane on 3D CT with two orbitales and one porion considering the reproduction of orbitale itself.

Accuracy of virtual 3-dimensional cephalometric images constructed with 2-dimensional cephalograms using the biplanar radiography principle

  • Lee, Jae-Seo;Kim, Sang-Rok;Hwang, Hyeon-Shik;Lee, Kyungmin Clara
    • Imaging Science in Dentistry
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    • 제51권4호
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    • pp.407-412
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    • 2021
  • Purpose: The purpose of this study was to evaluate the accuracy of virtual 3-dimensional (3D) cephalograms constructed using the principle of biplanar radiography by comparing them with cone-beam computed tomography (CBCT) images. Materials and Methods: Thirty orthodontic patients were enrolled in this study. Frontal and lateral cephalograms were obtained with the use of a head posture aligner and reconstructed into 3D cephalograms using biplanar radiography software. Thirty-four measurements representing the height, width, depth, and oblique distance were computed in 3 dimensions, and compared with the measurements from the 3D images obtained by CBCT, using the paired t-test and Bland-Altman analysis. Results: Comparison of height, width, depth, and oblique measurements showed no statistically significant differences between the measurements obtained from 3D cephalograms and those from CBCT images (P>0.05). Bland-Altman plots also showed high agreement between the 3D cephalograms and CBCT images. Conclusion: Accurate 3D cephalograms can be constructed using the principle of biplanar radiography if frontal and lateral cephalograms can be obtained with a head posture aligner. Three-dimensional cephalograms generated using biplanar radiography can replace CBCT images taken for diagnostic purposes.

Sex determination from lateral cephalometric radiographs using an automated deep learning convolutional neural network

  • Khazaei, Maryam;Mollabashi, Vahid;Khotanlou, Hassan;Farhadian, Maryam
    • Imaging Science in Dentistry
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    • 제52권3호
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    • pp.239-244
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    • 2022
  • Purpose: Despite the proliferation of numerous morphometric and anthropometric methods for sex identification based on linear, angular, and regional measurements of various parts of the body, these methods are subject to error due to the observer's knowledge and expertise. This study aimed to explore the possibility of automated sex determination using convolutional neural networks(CNNs) based on lateral cephalometric radiographs. Materials and Methods: Lateral cephalometric radiographs of 1,476 Iranian subjects (794 women and 682 men) from 18 to 49 years of age were included. Lateral cephalometric radiographs were considered as a network input and output layer including 2 classes(male and female). Eighty percent of the data was used as a training set and the rest as a test set. Hyperparameter tuning of each network was done after preprocessing and data augmentation steps. The predictive performance of different architectures (DenseNet, ResNet, and VGG) was evaluated based on their accuracy in test sets. Results: The CNN based on the DenseNet121 architecture, with an overall accuracy of 90%, had the best predictive power in sex determination. The prediction accuracy of this model was almost equal for men and women. Furthermore, with all architectures, the use of transfer learning improved predictive performance. Conclusion: The results confirmed that a CNN could predict a person's sex with high accuracy. This prediction was independent of human bias because feature extraction was done automatically. However, for more accurate sex determination on a wider scale, further studies with larger sample sizes are desirable.