• 제목/요약/키워드: 3D body scanner

검색결과 101건 처리시간 0.027초

3차원 GSO PET/CT 스캐너(Philips GEMINI PET/CT의 특성 평가 (Performance Characteristics of 3D GSO PET/CT Scanner (Philips GEMINI PET/DT))

  • 김진수;이재성;이병일;이동수;정준기;이명철
    • 대한핵의학회지
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    • 제38권4호
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    • pp.318-324
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    • 2004
  • 목적: Philips GEMINI PET/CT 스캐너는 GSO 섬광결정을 사용해 제작된 전신용 PET/CT 스캐너이다. 이 연구에서는 NEMA에서 새롭게 제안한 NEMA NU2-2001에 따라 GEMINI PET/CT 스캐너의 공간분해능, 민감도, 산란분획, NECR 등을 평가하고 그 결과를 BGO, LSO등의 섬광결정의 특성과 비교하였다. 대상 및 방법: GEMINI는 Philips ALLEGRO PET과 MX8000 D multi-slice CT 스캐너를 결합한 PET/CT 스캐너로서 검출기는 GSO 섬광결정 ($4{\times}6{\times}20mm^3$)을 사용하였고 축방향 시야는 18 cm이다. 공간분해능. 민감도, 산란분획, NECR 등을 평가하기 위하여 PET 데이터를 획득하였다(동시계수창: 8 ns, 에너지창: $409{\sim}664$ keV). 공간분해능 측정을 위하여 축횡단면의 중심에서 1 cm, 10 cm 떨어진 지점의 각 3지점((a) x=0, y=1, (b)x=10, y=0, (c)x=0, y=10)에서 영상을 획득한 다음 여과후역투사방법(램프필터 사용)과 3D RAMLA를 이용하여 영상재구성을 하고 FWHM을 구하였다. 민감도 측정을 위하여 선선원(F-18)을 축횡단면의 중심과 중심에서 10 cm 벗어난 지점에서 5개의 알루미늄관을 차례로 씌워 매질감쇠에 따라 달라지는 참계수를 구하고 이 값을 회귀분석하여 감쇠매질이 없는 이상적인 상황에서의 민감도를 측정하였다(랜덤계수가 참계수의 1%이내). 산란분획과 NECR을 측정하기 위하여 F-18 선선원(1110 MBq)을 산란팬텀에 주입하여 7반감기동안 계수를 획득하였다. SSRB을 사용하여 3D 데이터를 재구성한 다음 랜덤계수율이 참계수율이 1% 미만인 영역에서 산란분획을 구하고 각 횡단면의 값을 평균하여 전체 산란분획을 얻었다. 이 값을 기초로 각 프레임, 각 횡단면에 대한 랜덤계수율, 산란계수율, NECR을 구하였다. 결과: 스캐너의 중심에서 1 cm 벗어난 지점에서 횡축방향, 축방향 공간분해능은 (1) 5.3, 6.5 mm (FBP), (2) 5.1, 5.9 mm (3D RAMLA)이었다. 횡단면의 중심에서 10 cm 벗어난 지점에서 횡축반경방향, 횡축접선방향, 축방향 공간분해능은 (1) 5.7, 5.7, 7.0 mm (FBP), (2) 5.4, 5.4, 6.4 mm (3D RAMLA)이었다. 감쇠매질이 없는 이상적인 상황에서의 민감도는 횡단면의 중심에서 3,620 counts/sec/MBq, 횡단면의 중심에서 10 cm 벗어난 지점에서 4,324 counts/sec/MBq이었다. 산란분획은 40.6%, 최대 참계수율과 최대 NECR은 각각 88.9 kcps @ 12.9 kBq/mL, 34.3 kcps @ 8.84 kBq/mL이었다. 결론: 이 실험에서 NEMA NU2-2001을 이용해 GSO 섬광결정을 사용해 제작된 PET/CT에 대한 성능 평가를 실시하였다. 이는 BGO, LSO 섬광결정을 사용해 제작된 PET 스캐너의 특성과 비교할 수 있는 자료를 제공하며 PET 영상 획득 시 객관적 평가와 분석에 유용하였다.

체표면분할법에 의한 성인 남성용 피티드 토르소형 원형 설계 (Development of Male Fitted Torso Type Basic Patterns According to the Body Surface Segment Method)

  • 서추연
    • 한국의류학회지
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    • 제33권7호
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    • pp.1109-1120
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    • 2009
  • This study develops a fitted torso type basic pattern for men by utilizing 3D body scan data. Recent fashion trends are reflected in the development of the pattern. The subjects were 15 men in their 20's, who wear size 95 (M size). Body scan data was obtained through a 3D whole body scanner (WB4, Cyberware, USA), and a body surface development figure for developing male fitted torso type basic pattern was attained through the use of Rapid Form 2006 as well as Auto CAD 2006 programs. The results are as follows: A body surface development figure through body surface segment method showed high exactitude in an error range of 100$\pm$1%. In addition, it occurred in an error range of 100:1:3% because of the hard scanning conditions in the incline of the shoulder and armpit areas. However, the body surface development figure as well as the direct measurement results can be used as basic data for the given patternmaking since the error range falls into 100$\pm$3%. Dart amounts obtained from the average cross section were center back 2.2cm (24.3%), back armpit point 3.8cm (41.8%), front armpit point 3.0cm (33.9%). As shown the jacket pattern, the biggest dart amount was portioned out at the back armpit point. The drafting equations for the development pattern acquired are as follows; Full width=C/2+5cm, back length=height/4-1cm, armhole depth=(C/10+12cm)+3cm, back width=2C/10+2cm, front width=2C/10. The development pattern was a fitted torso basic pattern that was composed of 3 pieces, so it would be very useful in developing shirt or jacket patterns. According to the results of the evaluation of the developed pattern appearance, it obtained higher scores of over 3.5 points in almost items, meaning that the developed pattern is appropriate for a male fitted torso type basic pattern. It suggests a possibility of patternmaking from a body surface development figure in 2-D to prototype.

20대 여성을 위한 재킷패턴 개발에 관한 연구 (A Study of the Development of Jacket Patterns for Women in Their 20's)

  • 신장희
    • 한국의상디자인학회지
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    • 제16권3호
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    • pp.1-13
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    • 2014
  • This study investigated body type among women in their 20s and the development of prototypes for tailored jackets by body type in order to design clothes in consideration of an imbalance in body type caused by the popularity of portable devices such as smartphones and Netbooks. This study aims to create a design of jacket patterns by body type through both actual and virtual wear testing among women in their 20s, who are the major consumer of ready-made clothes and are very sensitive to size fit. This study will provide pattern information for the manufacture of jackets with a goal of securing the latest scientific body type information and establish the grounds for a research method in the manufacture of clothes. According to actual and virtual wear tests of four different body types, a significant difference was found in armhole circumference in most types because it was scanned with the arms slightly apart to prevent the armhole area from being missed during the 3D scanning. This has resulted in a slight distortion in measurements. To correct this problem, it is necessary to verify the precision of the body scanner and its program. In categories in which a large significant difference was found, it is necessary to test them against many subjects. In addition, it would be required to perform a further study on the 3D virtual wear system, which could be useful in the clothing industry.

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Comparison of 3D accuracy of three different digital intraoral scanners in full-arch implant impressions

  • Ozcan Akkal;Ismail Hakki Korkmaz;Funda Bayindir
    • The Journal of Advanced Prosthodontics
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    • 제15권4호
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    • pp.179-188
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    • 2023
  • PURPOSE. This in vitro study aimed to evaluate the performance of digital intraoral scanners in a completely edentulous patient with angled and parallel implants. MATERIALS AND METHODS. A total of 6 implants were placed at angulations of 0°, 5°, 0°, 0°, 15°, and 0° in regions #36, #34, #32, #42, #44, and #46, respectively, in a completely edentulous mandibular polyurethane model. Then, the study model created by connecting a scan body on the implants was scanned using a model scanner, and a 3D reference model was obtained. Three different intraoral scanners were used for digital impressions (PS group, TR group, and CS group, n = 10 in each group). The distances and angles between the scan bodies in these measurement groups were measured. RESULTS. While the Primescan (PS) impression group had the highest accuracy with 38 ㎛, the values of 104 ㎛ and 171 ㎛ were obtained with Trios 4 IOSs (TR) and Carestream 3600 (CS), respectively (P = .001). The CS scanner constituted the impression group with the highest deviation in terms of accuracy. In terms of dimensional differences in the angle parameter, a statistically significant difference was revealed among the mean deviation angle values according to the scanners (P < .001). While the lowest angular deviation was obtained with the PS impression group with 0.185°, the values of 0.499° and 1.250° were obtained with TR and CS, respectively. No statistically significant difference was detected among the impression groups in terms of precision values (P > .05). CONCLUSION. A statistically significant difference was found among the three digital impression groups upon comparing the impression accuracy. Implant angulation affected the impression accuracy of the digital impression groups. The most accurate impressions in terms of both distance and angle deviation were obtained with the PS impression group.

가상착의에 의한 환편물 상의의 패턴 설계 방법 연구 (Prototype Torso Pattern for Circular Knit using Virtual Garment Software)

  • 김형진;김여숙
    • 한국지역사회생활과학회지
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    • 제22권1호
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    • pp.53-61
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    • 2011
  • We have made knitwear in a different way from the typical woven pattern; it does not have the dart, even for women's tops. The purpose of this research was to compare the fit and appearance of the torso pattern for circular knitted fabric between virtual try-on garments and real garments. First, a woman in her 20's was scanned by a 3D body scanner, and thus producing a virtual avatar. I prepared knit patterns and created a torso pattern appropriate for circular knitted fabric. Next, I measured the body size of the avatar. The 2D patterns for the torso and sleeves were developed using the Yuka Super ALPHA : Plus. The 3D virtual garments were made from the imported 2D patterns and were then tried on the 3D virtual avatars. Finally, the fit of the real garments and the virtual garments was compared. While the shape of the virtual try-on garments were similar to the real garments, the folding and sagging were different. This study found the length was the same as woven wear. However the actual bust size and the clothing size were the same which is not a typical characteristic of woven wear. In the case of hem measurement, more space was needed than actual body size but less space was needed than in woven patterns.

입체 형상 분석을 위한 3차원 계측시스템의 활용 -WBS와 RapidForm 2004를 중심으로- (Applications of Three-Dimensional Measurement System for Shape Analysis -Focused on WBS and RapidForm 2004-)

  • 이명희;정희경
    • 복식
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    • 제55권5호
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    • pp.55-64
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    • 2005
  • The concern with three-dimensional measurement has been growing in recent years. And over the last few years, several studies have been made on three-dimensional measurement. Some of the studies using a three-dimensional measurement have focused on type of form of human body and evaluation of fitness. But there has been no study about applications of three-dimensional measurement system for shape analysis. So, the purpose of this study was to investigate about application of three-dimensional mea-surement system lot shape analysis. The instrument and tools for three-dimensional measurement was Whole Body 3D scanner(model name: Exyma-WBS2H). Analysis program used in experiment is Rapid Form 2004 PPI (INUS technology, Int, Korea). The following results were obtained; 1. The point data using three-dimensional measurement system built 3D model. 2. The three-dimensional data were used to analyze length and curvature of shape. 3. The shape using three-dimensional measurement system could be used in variety field.

Displacement of scan body during screw tightening: A comparative in vitro study

  • Kim, JungHan;Son, KeunBaDa;Lee, Kyu-Bok
    • The Journal of Advanced Prosthodontics
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    • 제12권5호
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    • pp.307-315
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    • 2020
  • PURPOSE. The purpose of this study was to evaluate the occurrence of displacement while tightening the screw of scan bodies, which were compared according to the material type. MATERIALS AND METHODS. Three types of scan bodies whose base regions were made up of polyether ether ketone (PEEK) material [Straumann Group, Dentium Group, and Myfit (PEEK) Group] and another scan body whose base region was made up of titanium material [Myfit (Metal) Group] were used (15 per group). The reference model was fabricated by aligning the scan body library on the central axis of the implant, and moving this position by the resin model. The screws of the scan bodies were tightened to the implant fixture with torques of 5 Ncm, 10 Ncm, and a hand tightening torque. After the application of the torque, the scan bodies were scanned using a laboratory scanner. To evaluate the vertical, horizontal, and 3-dimensional (3D) displacements, a 3D inspection software program was used. To examine the difference among groups, one-way analysis of variance and Tukey's HSD post hoc test were used (α=.05). RESULTS. There were significant differences in 3D, vertical, and horizontal displacements among the different types of scan bodies (P<.001). There was a significantly lower displacement in the Straumann group than in the Myfit (PEEK) and Dentium groups (P<.05). CONCLUSION. The horizontal displacement in all groups was less than 10 ㎛. With the hand tightening torque, a high vertical displacement of over 100 ㎛ occurred in PEEK scan bodies (Myfit and Dentium). Therefore, it is recommended to apply a tightening torque of 5 Ncm instead of a hand tightening torque.

PET/CT 장비와 영상 재구성 차이에 따른 EQ PET을 이용한 표준섭취계수의 평가 (Evaluation of Standardized Uptake Value applying EQ PET across different PET/CT scanners and reconstruction)

  • 윤석환;김병진;문일상;이홍재
    • 핵의학기술
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    • 제22권1호
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    • pp.35-42
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    • 2018
  • 양전자 방출 단층촬영에서 정량적 평가에 통상적으로 쓰이는 표준섭취계수(SUV : Standardized Uptake Value)는 종양의 병소와 병기의 진단 그리고 치료 성적 평가에 있어서 사용되고 있는 유용한 지표이다. 하지만 SUV는 환자의 체격, 검사까지의 시간, 부분용적 효과, 관심영역의 설정, 검사장비, 영상재구성 차이 등에 따라 변화 되므로 다양한 인자의 영향을 고려하여야만 한다. 그 중에서도 PET/CT 장비와 영상의 재구성 방법의 차이에 의한 SUV의 차이를 SIEMENS 사의 EQ PET을 이용하여 방사능의 차이를 보정 할 수 있게 되었다. 그러므로 본 연구에서는 phantom 실험과 FDG PET 임상영상의 SUVmax를 비교 하여 EQ PET을 적용함으로써, SUV의 변화를 평가 하고 EQ PET의 유용성에 대해서 검증해보고자 하였다. 본원의 3대의 PET/CT 장비인 Biograph true point 40, Biograph mCT 40, Biograph mCT 64 장비를 이용하여 $^{18}F-FDG$를 주입 한 NEMA IEC body phantom 영상을 획득 한 후 OSEM3D+PSF, OSEM3D+TOF, OSEM3D+PSF+TOF의 알고리즘을 이용하여 영상을 재구성 하였다. 각각 재구성된 영상에서 관심영역의 방사능 농도를 측정한 후, EARL에서 권고하는 NEMA IEC body phantom의 방사능 농도의 회복계수 값을 비교하여 서로 다른 PET system 간에 방사능 농도의 차이를 줄일 수 있는 EQ filter 값을 산출 하였다. 산출한 EQ Filter 값을 장비와 영상 재구성에 따라 적용하여 팬텀의 회복계수와 61명의 폐암환자의 FDG PET 영상에서 종양의 SUVmax를 비교 분석 하였다. 3대의 PET/CT 장비에서 영상의 재구성 알고리즘을 달리하여 획득한 phantom의 영상의 6개구의 평균 변동계수는 EQ PET 적용 전 후의 값은 OSEM3D 재구성 영상에서 각각 0.05, 0.04 OSEM3D+TOF 재구성 영상에서는 각각 0.04, 0.03, OSEM3D+PSF 재구성 영상에서는 각각 0.04, 0.03, OSEM3D+PSF+TOF 재구성 영상에서는 각각 0.03, 0.02 값을 보여 EQ PET 적용 후 팬텀의 6개 구의 평균 변동계수는 감소하였다. 임상 영상 비교 에서는 폐암환자 종양의 SUVmax는 OSEM3D, OSEM3D+TOF, OSEM3D+PSF, OSEM3D+PSF+TOF 순으로 증가하였으며, EQ PET 적용 후 재구성 영상에 대한 SUVmax는 통계적으로 유의한 차이가 없었다(p=1.000). PET/CT 영상에서 서로 다른 PET/CT 장비와 영상의 재구성 방법의 차이에 의해 발생하는 방사능 농도의 차이를 EQ PET을 이용하여 측정함으로서 장비와 영상 재구성별 방사능 농도의 편차가 감소되었다. PET 영상에서 정량적 평가에 이용되는 SUV의 편차를 줄일 수 있어 종양의 병소와 병기의 진단, 그리고 치료 성적평가의 정량적 평가 신뢰도가 향상 될 것으로 사료된다.

도전율 및 유전율이 다른 병소의 검출을 위한 320-채널 다주파수 Trans-Admittance Scanner(TAS) (320-Channel Multi-Frequency Trans-Admittance Scanner(TAS) for Anomaly Detection)

  • 오동인;이민형;김희진;우응제
    • 대한의용생체공학회:의공학회지
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    • 제28권1호
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    • pp.84-94
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    • 2007
  • In order to collect information on local distribution of conductivity and permittivity underneath a scan probe, we developed a multi-frequency trans-admittance scanner (TAS). Applying a sinusoidal voltage with variable frequency on a chosen distal part of a human body, we measure exit currents from 320 grounded electrodes placed on a chosen surface of the subject. The electrodes are packaged inside a small and light scan probe. The system includes one voltage source and 17 digital ammeters. Front-end of each ammeter is a current-to-voltage converter with virtual grounding of a chosen electrode. The rest of the ammeter is a voltmeter performing digital phase-sensitive demodulation. Using resistor loads, we calibrate the system including the scan probe to compensate frequency-dependent variability of current measurements and also inter-channel variability among multiple. We found that SNR of each ammeter is about 85dB and the minimal measurable current is 5nA. Using saline phantoms with objects made from TX-151, we verified the performance of the lesion estimation algorithm. The error rate of the depth estimation was about 19.7%. For the size estimate, the error rate was about 15.3%. The results suggest improvement in lesion estimation algorithm based on multi-frequency trans-admittance data.

자동차 부품의 원격 레이저 용접기술 (Remote Welding of Automobile Components using CO2 Laser and Scanner)

  • 서정;이문용;정병훈;송문종;강희신;김정오
    • Journal of Welding and Joining
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    • 제26권5호
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    • pp.74-78
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    • 2008
  • The laser welding of the car body and components has been spread in the automotive industry. The Nd:YAG laser welding system could be used in 3D welding with robot. However, this system cannot efficiently reduce the welding cycle time according to various welding sequences because the robot's moving time is same that of the resistant spot welding system. But the remote welding system with high power $CO_2$ laser and scanner makes it possible welding cycle time much faster than the robot laser welding system. In the $CO_2$ laser remote welding system, laser beam can be rapidly transferred to a workpiece by moving mirrors of scanner system. So, it makes reducing the cycle time of welding process and shaping various welding patterns easily. Therefore, in this paper, the characteristic of weld strength according to patterns of weld bead on $CO_2$ laser welding was investigated. Also, the relationship between shape of weld bead and value of tensile load was studied. Finally, the optimum remote welding condition for car bumper was investigated.