• 제목/요약/키워드: anatomical models

검색결과 78건 처리시간 0.025초

외곽선을 이용한 고속 3차원 인체모델 재구성 (East Reconstruction of 3D Human Model from Contour Lines)

  • 신병석;노성;정회상;정민석;이용숙
    • 대한의용생체공학회:의공학회지
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    • 제25권6호
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    • pp.537-543
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    • 2004
  • 의학 영상 분야에서 인체에 대한 3차원 모델을 생성하는 데는 평행한 2차원 영상위에 있는 외곽선들로부터 원래 물체의 형상을 복원하는 방법이 일반적으로 사용된다. CT나 MR영상을 획득한 후 해부구조물에 대해서 구역화를 하면 외곽선 집합을 얻을 수 있다. 기존의 표면 재구성 알고리즘은 외곽선을 단순 정합이 가능한 부분과 클레프트(cleft)를 나누어 처리하는데, 클레프트를 처리하는 시간이 오래 걸리기 때문에 모델이 복잡할 경우 수행속도가 저하되는 단점이 있다. 본 논문에서는 분기(branch)가 없는 단순영역을 형태에 관계없이 한번에 타일화하고, 분기가 있는 경우에는 한 외곽선의 정점들을 대응하는 외곽선들의 정점개수와 분포를 고려하여 분할함으로써 간단하고 신속하게 타일화하는 방법을 제안한다. 이 기법을 이용하여 해부구조물의 3차원 모델을 생성하는 표면 재구성 시스템을 구현하였다.

Psychosocial Factors and Musculoskeletal Pain Among Rural Hand-woven Carpet Weavers in Iran

  • Chaman, Reza;Aliyari, Roqayeh;Sadeghian, Farideh;Shoaa, Javad Vatani;Masoudi, Mahmood;Zahedi, Shiva;Bakhshi, Mohammad A.
    • Safety and Health at Work
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    • 제6권2호
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    • pp.120-127
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    • 2015
  • Background: Musculoskeletal pain (MSP) is a common and disabling problem among carpet weavers and is linked to physical and psychosocial factors of work. This study aimed to determine the prevalence of MSP, its psychosocial risk factors, and association of pain in each pair of anatomical sites among carpet weavers. Methods: A cross-sectional study was performed among 546 hand-woven carpet weavers in rural small-scale workshops of Iran. Data were collected by using parts of a standardized CUPID (Cultural and Psychosocial Influences on Disability) questionnaire focused on MSP in 10 body sites, including the low-back, neck, both right and left shoulders, elbows, wrists/hands, individual, physical and psychosocial risk factors. Statistical analysis was performed applying logistic regression models. Results: Prevalence of MSP in at least one body sitewas 51.7% over the past month. The most common sites were low back and right shoulder pain 27.4% and 20.1%, respectively. A significant difference was found between the mean number of painful anatomical sites and the level of education, age, physical loading at work, time pressure, lack of support, and job dissatisfaction. In pairwise comparisons, strongest association was found between pain in each bilateral anatomical site (odds ratio = 11.6-35.3; p < 0.001). Conclusion: In home-based workshops of carpet weaving, psychosocial factors and physical loading were associated with MSP. This finding is consistent with studies conducted among other jobs. Considering the preventive programs, the same amount of attention should be paid to psychosocial risk factors and physical loading. Also, further longitudinal studies are needed to investigate the relationship of psychological factors.

이동통신단말기에 노출된 인체 두부에 따른 전자파 비흡수율 비교 (Comparison of SARs of Human Heads Exposed to Mobile Phone)

  • 이애경;최형도;최재익
    • 대한전자공학회논문지TC
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    • 제37권11호
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    • pp.32-41
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    • 2000
  • 두부 형상이 국내 표준에 근접하는 한 자원자 두부의 MR 및 CT 영상에 바탕하여 새로운 해부학적 두부 모델을 구현하였다. 서로 다른 형상을 갖는 두부의 전자파 비흡수율(SAR)을 비교하기 위해 두 가지의 해부학적 두부 모델의 SAR을 계산하였다. 하나는 구현된 모델이고 다른 하나는 미국 National Library Medicine에서 제작된 흑인 모델이다. 계산 공간 내의 두부와 이동통신단말기는 CENELEC과 FCC 지침의 접촉위치가 되도록 배치하였다. 얻어진 결과로부터 두부의 크기가 작을수록 두부 전체 평균 SAR은 높아짐을 볼 수 있었으나 1g 또는 10g 평균의 국부 SAR은 두부의 크기보다는 외이의 형상에 더 의존하는 것으로 보인다.

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Visualization Based Building Anatomy Model for Construction Safety Education

  • Pham, Hai Chien;Le, Quang Tuan;Pedro, Akeem;Park, Chan Sik
    • 국제학술발표논문집
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    • The 6th International Conference on Construction Engineering and Project Management
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    • pp.430-434
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    • 2015
  • Safety education at the tertiary level prepares students to enter construction industry with adequate safety knowledge; then accidents can be prevented proactively. However, safety subject has not been paid adequate attention in universities and most institutional safety programs consider safety matters in isolation. Meanwhile, anatomical theory in the medicine field has been successfully adopted and proved potential advantageous in various scientific disciplines. With this regard, this study proposes a visualization based Building Anatomy Model (BAM) for construction safety education, which utilizes the anatomical theory in order to improve student's safety knowledge and practical skill. This BAM consists of two modules: 1) Knowledge Acquisition Module (KAM) aims to deliver safety knowledge to students through building anatomy models; 2) Practical Experience Module (PEM) where students safely perform construction activities by using the system to improve safety skill. The system trial is validated with virtual scenarios derived from real accidents cases. This study emphasizes the visualization based building anatomy model would be a powerful pedagogical method to provide effectively safety knowledge and practical skill for students, as a result, safety competence of students would be enhanced.

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CT절편두께와 RP방식이 3차원 의학모델 정확도에 미치는 영향에 대한 연구 (Influence of slice thickness of computed tomography and type of rapid protyping on the accuracy of 3-dimensional medical model)

  • 엄기두;이병도
    • Imaging Science in Dentistry
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    • 제34권1호
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    • pp.13-18
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    • 2004
  • Purpose : This study was to evaluate the influence of slice thickness of computed tomography (CT) and rapid protyping (RP) type on the accuracy of 3-dimensional medical model. Materials and Methods: Transaxial CT data of human dry skull were taken from multi-detector spiral CT. Slice thickness were 1, 2, 3 and 4 mm respectively. Three-dimensional image model reconstruction using 3-D visualization medical software (V-works /sup TM/ 3.0) and RP model fabrications were followed. 2-RP models were 3D printing (Z402, Z Corp., Burlington, USA) and Stereolithographic Apparatus model. Linear measurements of anatomical landmarks on dry skull, 3-D image model, and 2-RP models were done and compared according to slice thickness and RP model type. Results: There were relative error percentage in absolute value of 0.97, 1.98,3.83 between linear measurements of dry skull and image models of 1, 2, 3 mm slice thickness respectively. There was relative error percentage in absolute value of 0.79 between linear measurements of dry skull and SLA model. There was relative error difference in absolute value of 2.52 between linear measurements of dry skull and 3D printing model. Conclusion: These results indicated that 3-dimensional image model of thin slice thickness and stereolithographic RP model showed relative high accuracy.

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한국인 Cadaver Test에 대한 상완골 골수정 개발에 관한 연구 (A Study on Development of Humeral Intramedullary Fixation Nail based on Korean Cadaver Tests)

  • 전창수;이재원;고철웅;오종건;우수현;이성재
    • 한국정밀공학회지
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    • 제28권8호
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    • pp.984-991
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    • 2011
  • The aim of this study is to develop a humeral Intramedullary fixation nail (HIFN) suitable for Korean people. In this study, CT images were obtained from 72 Korean cadaveric humeral bones and 3D Korean humeral bone models were reconstructed based on the CT images to investigate anatomical characteristics. Major design parameters of HIFN were selected using the morphological measurement information of the Korean humeral bone models. Through finite element analysis and mechanical tests, the developed HIFN prototype was compared with the Polarus HIFN ($ACUMED^{(R)}$, USA), and it was found that the HIFN prototype showed similar and/or superior mechanical performance compared to the Polarus HIFN. Also, clinical validation for the HIFN prototype was carried out to check predictable troubles in surgical operations. Finally, optimal design modification was proposed to prevent the possible axillary nerve injury due to the locking screw system of the HIFN prototype.

Current status of simulation training in plastic surgery residency programs: A review

  • Thomson, Jennifer E.;Poudrier, Grace;Stranix, John T.;Motosko, Catherine C.;Hazen, Alexes
    • Archives of Plastic Surgery
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    • 제45권5호
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    • pp.395-402
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    • 2018
  • Increased emphasis on competency-based learning modules and widespread departure from traditional models of Halstedian apprenticeship have made surgical simulation an increasingly appealing component of medical education. Surgical simulators are available in numerous modalities, including virtual, synthetic, animal, and non-living models. The ideal surgical simulator would facilitate the acquisition and refinement of surgical skills prior to clinical application, by mimicking the size, color, texture, recoil, and environment of the operating room. Simulation training has proven helpful for advancing specific surgical skills and techniques, aiding in early and late resident learning curves. In this review, the current applications and potential benefits of incorporating simulation-based surgical training into residency curriculum are explored in depth, specifically in the context of plastic surgery. Despite the prevalence of simulation-based training models, there is a paucity of research on integration into resident programs. Current curriculums emphasize the ability to identify anatomical landmarks and procedural steps through virtual simulation. Although transfer of these skills to the operating room is promising, careful attention must be paid to mastery versus memorization. In the authors' opinions, curriculums should involve step-wise employment of diverse models in different stages of training to assess milestones. To date, the simulation of tactile experience that is reminiscent of real-time clinical scenarios remains challenging, and a sophisticated model has yet to be established.

Review of the UBC Porcine Model of Traumatic Spinal Cord Injury

  • Kim, Kyoung-Tae;Streijger, Femke;Manouchehri, Neda;So, Kitty;Shortt, Katelyn;Okon, Elena B.;Tigchelaar, Seth;Cripton, Peter;Kwon, Brian K.
    • Journal of Korean Neurosurgical Society
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    • 제61권5호
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    • pp.539-547
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    • 2018
  • Traumatic spinal cord injury (SCI) research has recently focused on the use of rat and mouse models for in vivo SCI experiments. Such small rodent SCI models are invaluable for the field, and much has been discovered about the biologic and physiologic aspects of SCI from these models. It has been difficult, however, to reproduce the efficacy of treatments found to produce neurologic benefits in rodent SCI models when these treatments are tested in human clinical trials. A large animal model may have advantages for translational research where anatomical, physiological, or genetic similarities to humans may be more relevant for pre-clinically evaluating novel therapies. Here, we review the work carried out at the University of British Columbia (UBC) on a large animal model of SCI that utilizes Yucatan miniature pigs. The UBC porcine model of SCI may be a useful intermediary in the pre-clinical testing of novel pharmacological treatments, cell-based therapies, and the "bedside back to bench" translation of human clinical observations, which require preclinical testing in an applicable animal model.

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.

Deformable image registration in radiation therapy

  • Oh, Seungjong;Kim, Siyong
    • Radiation Oncology Journal
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    • 제35권2호
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    • pp.101-111
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    • 2017
  • The number of imaging data sets has significantly increased during radiation treatment after introducing a diverse range of advanced techniques into the field of radiation oncology. As a consequence, there have been many studies proposing meaningful applications of imaging data set use. These applications commonly require a method to align the data sets at a reference. Deformable image registration (DIR) is a process which satisfies this requirement by locally registering image data sets into a reference image set. DIR identifies the spatial correspondence in order to minimize the differences between two or among multiple sets of images. This article describes clinical applications, validation, and algorithms of DIR techniques. Applications of DIR in radiation treatment include dose accumulation, mathematical modeling, automatic segmentation, and functional imaging. Validation methods discussed are based on anatomical landmarks, physical phantoms, digital phantoms, and per application purpose. DIR algorithms are also briefly reviewed with respect to two algorithmic components: similarity index and deformation models.