• 제목/요약/키워드: 토르소 패턴

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경계요소법을 이용한 트로소 표면전위의 계산 (The computation of the torso surface potentials using the boundary element method)

  • 이경중;이세진
    • 전자공학회논문지B
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    • 제33B권8호
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    • pp.22-29
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    • 1996
  • 본 연구는 경계요소법을 이용하여 토르소 표면전위를 구하는 연구이다. '그린의 2차정리'로 부터 토르소 표면 전위를 구하는 지배방정식을 유도한 후 균질성, 등방성 매질인 경우에 적합한 경계요소법을 적용하였다. 구모델을 이용하여 구의 중심에 소스를 배치하고 구표면의 전위를 경계요소법으로 구한 계산치와 이론치를 비교함으로서 알고리즘의 타당성을 검증하였다. 토르소 모델에 경계요소법을 적용하여 시뮬레이션 한 결과, 심실흥분에 의한 토르소 표면 등전위도 패턴을 정상심전도의 매핑결과와 유사한 패턴을 보였다.

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20~30대 저체중 성인여성의 토르소원형 설계 - Clo 3D 프로그램 적용 사례 - (Development of Torso Pattern for Underweight Female in their 20s~30s - Using Clo 3D program -)

  • 임지영
    • 한국의류산업학회지
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    • 제15권6호
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    • pp.963-970
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    • 2013
  • The purpose of this study was to develop torso pattern of underweight female in their 20s~30s by using Clo 3D virtual garment simulation system. The results were as follows; first, as a result of analyzing torso somatotype, underweight women showed lower average than average values of whole women in their twenties and thirties in the items such as length, width, circumference, thickness except for height. Second, by using 3D virtual garment simulation, new torso pattern considered underweight female was development. The basic numerical formula were as follows ; bust girth B/2+3.5, armhole depth B/4+0.5, front waist girth W/4+0.5+0.7, back waist girth W/4+0.5-0.7, front hip girth H/4+1+0.5, back hip girth H/4+1-0.5, chest width B/6+3.1, back width B/6+4.5, neck width B/12+0.2 and neck depth B/12+1.7. Third, by reducing hollowed amount of front, back, and side line, and hollowed amount of back center line, the reduced quantity was included to darts amount. Number of dart was adjusted to two pieces so that darts amount was equally distributed to two darts. Forth, according to the results of the new torso pattern's appearance evaluation, it estimated more highly than existing pattern in silhouette and ease amount, confirming that new torso pattern was appropriate for the underweight women. This study is expected to serve as one of important basic data for ensuing studies that may utilize 3D virtual garment simulation system with 2D patterns, and also for future 3D pattern production program development.

3차원 인체형상자료를 활용한 토르소 마스터패턴 개발 - 30대 바른 체형 여성을 대상으로 - (A study of Developing Torso Master Pattern Using 3D body Measurement Data - Focusing on Women in their thirties proper Body Types -)

  • 신주영;남윤자
    • 한국의류산업학회지
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    • 제17권3호
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    • pp.447-461
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    • 2015
  • The purpose of this study is to develop a torso pattern that is highly representative for the proper body shape of women in their thirties. Size data of the women with age of 30 through 39 from the database of Size Korea 2004 were used for the study. In order to develop a master pattern which will be used as the benchmark for grading of research group, 4 existing torso block drafting methods were compared based on the data gathered and the block with the highest evaluation score was utilized as a reference point. For the analysis, data was divided into four types, only the data of 138 subjects which were evaluated at least by four or more experts as valid were used for the study. The major results can be summarized as follow. The women of bust girth of 91cm and height of 160cm which was turned out to be representative type of research group were used as standard measurement for the purpose of reflecting not only curve length of the 3D analysis measurement but also the difference between front and back thickness to the pattern. Dart locations were set based on front and back torso ease, shoulder area revisions, front sagging length 1.5cm and cross section crevice length analysis. According to the experts' appearance evaluation of the pattern was found to be better than the control pattern which was regarded as the best among 4 patterns created based on existing torso block drafting methods.

가상착의를 활용한 20대 남성 피티드 토르소 패턴 개발 -역삼각 체형을 중심으로- (Developing fitted Torso Patterns for Men in Their 20s Utilizing Virtual Fitting -Focused on the Inverted Triangle Body Type-)

  • 권의정;장정아
    • 한국의류학회지
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    • 제47권1호
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    • pp.17-34
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    • 2023
  • This study aimed to develop a fitted torso pattern with an improved fit for inverted-triangular males in their twenties. For this study, six torso patterns were collected, compared and evaluated, and a fitted torso pattern was developed using virtual fittings. The research results are as follows. First, the fitted torso pattern received a good rating as a result of the virtual fitting evaluation: waist dart set 2 of the front; the amount of comfort is set at 5 cm around the chest, 4 cm around the waist and 10 cm around the hips. Second, the evaluation of virtual fitting of the development pattern showed that fit evaluation was 4.11/5 points, ease evaluation was 6.53/7 points, and that the stress map and airgap were suitable for the human body. Third, the actual fit evaluation of the development pattern was 4.25/5 points, 6.35/7 points for ease evaluation, and 4.81/5 points for motion evaluation. Fourth, there was no significant difference between the results of the virtual and actual fitting evaluation with the objectivity test. It is therefore possible to apply a pattern developed through a virtual fitting to an actual human body and to confirm the objectivity of the pattern.

3D 가상착의를 활용한 40~50대 비만남성 피티드 토르소 패턴 개발 ( Developing a fitted torso pattern for obese males in their forties and fifties utilizing virtual fitting)

  • 장정아;권의정
    • 복식문화연구
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    • 제30권6호
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    • pp.828-841
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    • 2022
  • This study aims to develop a fitted torso pattern suitable for males in their forties and fifties who are obese-a group that accounts for more than fifty percent of men in this age group-using a 3D virtual fitting program. Size Korea's 2022 data for obese males in their forties and fifties is utilized for this study. In terms of the research method, a 3D program (CLO 3D) is used to implement the target group's various body types and to apply fitted torsos that enable verification and evaluation of the pattern's fit and ease. The characteristics of fitted torso patterns for obese bodies are as follows: the front centerline is a profile line; shoulder darts are added by reflecting waist-abdominal protrusion in the front panel; and shoulder, arm, waist, and center-back darts are constructed for the back panel. For obese bodies, the minimum circumference ease amounts should be approximately 6-7cm for the chest, 6cm for the waist, and 6-7cm for the hips. Based on an evaluation of the virtual fit of the developed fitted torso pattern, the data shows that a pattern (foundation) such as this is well suited for obese body types with an average of 4.67/5 points for reverse triangular obesity, an average of 6.67/7 points for log obesity, and an average of 6.69 points for the ease amount.

여자대학생을 위한 토르소(Torso)패턴의 비교연구 (A Comparative Study on the Torso Patterns of Female College Students)

  • 최미성;안혜자
    • 한국가정과학회지
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    • 제1권2호
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    • pp.100-112
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    • 1998
  • The purpose of this study is to investigate the torso patterns by analyzing sensory evaluations. The anthropometric measurements for female college students were obtained between March and October in 1998, and a total of 197 anthropomatric data was used for the somatotype analysis. The appearance and fit of three kinds of torso patterns(ESMOD, FIT, and Muller & sohn) were evaluated by expert panel and the subjects. The results of the anthropometric measurements and sensory evaluations are as follows; The mean height of the anthropometric data for 197 students is 158.98cm. The largest proportion of the three somatotypes(H, M and A type) is big hip type(A type) consisting of 47.7% of all the respondents. The result of the torso pattern evaluations by expert panel indicates that the ESMOD pattern obtains the highest rating in general acceptability. A significant difference(p<.05) in the responses to two questions, the placement of the waist dart, and the gapping & creasing at back hip area was found. The ESMOD and Muller & sohn patterns are given the highest rating in the general acceptability. The result of the evaluation was obtained by the subjects. (Korean J. Human Ecology 1(2):100∼112, 1998)

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