• Title/Summary/Keyword: 생체 외 실험

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A Study on the In-Vitro Test of Thrombogenesis in Centrifugal Biopump (원심성 바이오 펌프를 이용한 혈전 생성의 생체 외 검사에 관한 연구)

  • Na, Myung-Hoon;Kim, Won-Gon;Kim, Joo-Hyun;Kim, Mee-Hyung;Yu, Jae-Hyeon;Lim, Seung-Pyung;Lee, Young
    • Journal of Chest Surgery
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    • v.32 no.10
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    • pp.863-873
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    • 1999
  • 배경: 혈전 생성은 심혈관계 삽입물이나 순환 보조장치의 발전에 있어서 중요한 문제이므로 이러한 장치들의 혈전성에 대한 평가는 필수적이다. 따라서 이러한 장치들의 혈전성 연구를 시행하기 위한 효과적인 생체 외 실험 방식이 개발되어 원심성 순환 펌프의 발전에 큰 도움이 되고 있으며, 최근 엄밀하게 혈액과 공기의 접촉을 차단하는 방식이 믿을 수 있는 생체 외 실험 방식으로 강조되고 있다. 본 논문에서는 모의 순환 회로를 이용하여 기존에 행해진 연구 방법 상의 공기 접촉에 따른 핼액 응고 기전의 활성화 여부를 알아보기 위하여 공기 접촉 여부에 따른 혈액 인자의 변화를 관찰하여 확인하고, 또한 회로 내에서 생성된 혈전을 생체 내에서 형성된 혈전과 비교 분석하여 이 모의 순환 회로를 이용한 생체 외 검사가 새로 고안된 심혈관계 장치들의 혈전성을 평가하는데 있어서 동물실험을 대신할 수 있다는 기존의 주장을 검증하고자 하였다. 연구재료 및 방법: 바이오펌프를 이용한 같은 모의 순환 회로 한 쌍을 준비하고 동일 개체에서 얻은 헤파린을 첨가한(1u/$m\ell$) 신선한 혈액을 공기와 접촉시키지 않도록 한 A-회로와 공기와 접촉시킨 B-회로에 충전시켜 실험을 동시에 진행하여 결과를 얻었으며 총 12번 시행하였다. 회로에 충전한 혈액의 activated clotting time(ACT)은 정상의 3~5배였으며 ACT가 정상 범위의 1.5배가되면 실험을 끝냈고, Hematocrit(HCT), 혈소판, 동맥혈가스분석(ABGA), factor Ⅷ, factor \ulcorner, 섬유소원, thromboxane B2(TXB2), free hemoglobin(fHb) 등을 측정하였다. 실험이 끝난 후 A-회로와 B-회로에서 얻은 각 검사를 평가하고 분석하였으며 생성된 혈전을 생체 내에서 생성된 혈전과 조직 검사로 비교하였다. 본 연구의 자료분석은 SPSS 통계 프로그램을 이용하였고 유의수준 0.05를 기준으로 유의도를 판단하였다. 결과: 정상 ACT는 186.9$\pm$20.5초(평균$\pm$표준편차)이었고, 헤파린을 넣은 초기 ACT는 982.2$\pm$165.5초이었으며, 실험시간은 보통 60분에서 180분 사이였다. HCT, fHb, 혈소판, TXB2, factor Ⅷ, factor \ulcorner, 섬유원소의 초기값은 35.5$\pm$3.2%, 12.4$\pm$6.5 mg/dL, 354$\pm$56($\times$103)/$\mu$L, 72.6$\pm$15.1 mg/dL, 29.3$\pm$1.2%, 137.9$\pm$42.1 mg/dL, 그리고 17.7$\pm$9.7%이었다. 공기 접촉에 따른 차이를 보았을 때 ACT(p=0.398), HCT(p=0.988), fHb(p=0.898), 혈소판 (p=0.904), TXB2(p=0.985), factor Ⅷ(p=0.872), factor \ulcorner(p=0.489), 섬유원소(p=0.973)으로 전 예에서 통계적 유의성이 없었다. 실험 후 양 군에서 생성된 혈전의 현미경 소견은 B-회로의 혈전에 여러 군데 공기 방울이 관찰되는 것 이외에 A-회로에서 생성된 혈전과 차이가 없었고, 생체에서 생성된 혈전과 비교했을 때 그 양상이 같았다. A-회로와 B-회로에서 생성된 혈전의 총 량은 8.4$\pm$3.7 mL와 9.4$\pm$3.1 mL로 통계상 유의성은 없었다. (p=0.624). 결론: 모의 순환 회로를 이용한 혈전성 평가를 위한 생체 외 실험에 있어서 공기와의 접촉 여부는 혈액 응고 기전의 활성화나 혈전 생성에 별다른 영향을 미치지 않는다. 모의 순환 회로에서 형성된 혈전과 문헌에 있는 인체 내에서 형성된 혈전을 비교한 결과 그 형태가 일치하므로 이 모의 순환회로를 이용한 실험이 동물실험을 대신할 수 있다고 판단된다.

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새로운 오메프라졸염의 약효검색에 관한 연구

  • 이영근;이송득;김승희;박윤주;강석연
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1994.04a
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    • pp.302-302
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    • 1994
  • 오메프라졸의 산 불안정성을 개선하기 위하여 신규 합성한 오메프라졸 cholestyramin resin 염 복합체와 오메프라졸 hydroxypropyl-$\beta$-cyclodextrin (HP-$\beta$-CD) 포접화합물의 약효를 검색하였다. 생체외 실험 (in vitro test)으로 H$^{+}$/K$^{+}$-ATPase 활성도 저해효과를 검토하였으며 생체내 실험 (in vivo test)으로 Shay 결찰법에 의한 위산분비 억제효과에 대한 실험을 실시하였다. 오메프라종 염 복합체와 오매프라졸 포접화합물은 1$\times$$10^{-5}$-1$\times$$10^{-3}$M농도 범위에서 용랴의존적으로 H$^{+}$K$^{+}$-ATPase 활성을 억제시켰으며 $IC_{50}$/치는 오메프라졸 결과와 유사하였다. 셍체네 실험에서는 오메프라졸 HP-$\beta$-CD 포접화합물이 오메프라졸과 그 resin염복합체보다 위액분비량, 펩신 활성도에 대한 $IC_{50}$/치가 낮았으며 이는 생체내에서 포접 화합물이 오메프라졸의 안정성을 증가시킴으로서 위산분비 억제효과를 증가시킨것으로 사료된다.

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A Study on the Adduction and Abduction Measurement of Children with Spastic Cerebral Palsy for the Development of Multi-axial Lower Extremity Orthosis (경직성 뇌성마비 소아의 다축 하지 보조기 설계를 위한 내.외전력 측정)

  • 김동진;이영신;김봉옥;양신승;박인식
    • Journal of Biomedical Engineering Research
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    • v.24 no.5
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    • pp.443-446
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    • 2003
  • In the present study. the design of multi-axial lower extremity orthosis was presented with adduction and abduction force data which were measured from three children with cerebral palsy and a normal child. The measurements of adduction and abduction forces were conducted in standing and wolking condition. Adduction and abduction forces were measured by strain gages which were attached on the lateral uprights of lower extremity orthoses. In the standing condition. addcution force of childrens was distributed from 0.11 kgf to 0.26 kgf. During the walking condition. adduction force was reached to 1.56 kgf and abduction force was reached to 1.52 kgf.

Development of Multibody Dynamic Model of Cervical Spine for Virtual In Vitro Cadaveric Experiment (가상 생체외 사체 실험용 경추 다물체 동역학 모델 개발)

  • Lim, Dae Seop;Lee, Ki Seok;Kim, Yoon Hyuk
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.37 no.10
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    • pp.953-959
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    • 2013
  • In this study, a multibody dynamic model of the cervical spine was developed for a virtual in-vitro cadaveric experiment. The dynamic cervical spine model was reconstructed based on Korean CT images and the material properties of joints and soft tissue obtained from in-vitro experimental literature. The model was validated by comparing the inter-segmental rotation, multi-segmental rotations, load-displacement behavior, ligament force, and facet contact force with the published in-vitro experimental data. The results from the model were similar to published experimental data. The developed dynamic model of the cervical spine can be useful for injury analysis to predict the loads and deformations of the individual soft-tissue elements as well as for virtual in-vitro cadaveric experiments.

In Vitro Motion Analysis of Supplementary Valve (생체외 실험을 이용한 보조판막의 운동 연구)

  • 김상현;박영환
    • Journal of Biomedical Engineering Research
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    • v.19 no.1
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    • pp.47-52
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    • 1998
  • To develop the supplementary heart valve which could reduce the complications of prosthetic heart valve, in vitro experiments were performed to analyze the movement of the supplement valves from the view point of the flow dynamics and leaflet dynamics. The autologous pericardium was attached to deficient portion of the porcine valve which was dissected completely and partially. The pericardium was treated by buffered glutaraldehyde solution in the preshaped mould to preserve the shape of the leaflet. The function of the valves were evaluated in the mock circulatory system and three sets of experiment were performed. The instantaneous motion of the leaflet was pictured by the 35mm camera and the pressure drop through the valve and cardiac output were measured. The supplementary valve which was replaced completely performed better thatn the valve replaced partially. In vitro experiments showed that the supplementary valve which was replaced completely performed better than the valve replaced partially. In vitro experiments showed that the supplementary valve could undertake the prosthetic heart valve in clinic.

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A review of biocompatibility of zirconia: In vitro experiment (지르코니아의 생체적합성에 대한 연구: In vitro 실험 문헌 고찰)

  • Suh, Da-Won;Kim, Young-Kyun;Yi, Yang-Jin
    • The Journal of Korean Academy of Prosthodontics
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    • v.56 no.4
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    • pp.391-395
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    • 2018
  • Increasing demands for zirconia material in clinics, assessment of biocompatibility of zirconia is essential. In this article, a review of in vitro studies of zirconia compatibility was performed. Zirconia showed great biocompatibility at in vitro studies with various cell lines such as fibroblasts, osteoblasts, and lymphocytes. Many studies reported that zirconia caused no cytotoxicity or mutation. Zirconia also showed less bacterial adhesion. There were no adverse effects except for small reduced strength with in vitro study mimicking long-term exposure of body fluid. According to the study with ostoblast-like cells, zirconia could regulate genes of immunity, molecular transport, and cell cycle. Such gene regulating was considered as one of the reasons of zirconia biocompatibility. With biocompatibility of zirconia powders, in vitro studies had controversial conclusions. It seems that zirconia powders might have cytotoxicity.

Current and Future Perspectives of Lung Organoid and Lung-on-chip in Biomedical and Pharmaceutical Applications

  • Junhyoung Lee;Jimin Park;Sanghun Kim;Esther Han;Sungho Maeng;Jiyou Han
    • Journal of Life Science
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    • v.34 no.5
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    • pp.339-355
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    • 2024
  • The pulmonary system is a highly complex system that can only be understood by integrating its functional and structural aspects. Hence, in vivo animal models are generally used for pathological studies of pulmonary diseases and the evaluation of inhalation toxicity. However, to reduce the number of animals used in experimentation and with the consideration of animal welfare, alternative methods have been extensively developed. Notably, the Organization for Economic Co-operation and Development (OECD) and the United States Environmental Protection Agency (USEPA) have agreed to prohibit animal testing after 2030. Therefore, the latest advances in biotechnology are revolutionizing the approach to developing in vitro inhalation models. For example, lung organ-on-a-chip (OoC) and organoid models have been intensively studied alongside advancements in three-dimensional (3D) bioprinting and microfluidic systems. These modeling systems can more precisely imitate the complex biological environment compared to traditional in vivo animal experiments. This review paper addresses multiple aspects of the recent in vitro modeling systems of lung OoC and organoids. It includes discussions on the use of endothelial cells, epithelial cells, and fibroblasts composed of lung alveoli generated from pluripotent stem cells or cancer cells. Moreover, it covers lung air-liquid interface (ALI) systems, transwell membrane materials, and in silico models using artificial intelligence (AI) for the establishment and evaluation of in vitro pulmonary systems.

Gait Type Classification Based on Kinematic Factors of Gait for Exoskeleton Robot Recognition (외골격 로봇의 동작인식을 위한 보행의 운동학적 요인을 이용한 보행유형 분류)

  • Cho, Jaehoon;Bong, wonwoo;Kim, donghun;Choi, Hyeonki
    • Journal of Biomedical Engineering Research
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    • v.38 no.3
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    • pp.129-136
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    • 2017
  • The exoskeleton robot is a technology developed to be used in various fields such as military, industry and medical treatment. The exoskeleton robot works by sensing the movement of the wearer. By recognizing the wearer's daily activities, the exoskeleton robot can assist the wearer quickly and efficiently utilize the system. In this study, LDA, QDA, and kNN are used to classify gait types through kinetic data obtained from subjects. Walking was selected from general walking and stair walking which are mainly performed in daily life. Seven IMUs sensors were attached to the subject at the predetermined positions to measure kinematic factors. As a result, LDA was classified as 78.42%, QDA as 86.16%, and kNN as 87.10% ~ 94.49% according to the value of k.

Physiochemical Properties of Extracellular Lipid Produced by Rhodotorula glutinis K-501 as a Biosurfactant (Rhodotorula glutinis K-501에 의해 생산된 세포외지질의 생체계면활성제로서 물리화학적 특성)

  • 박평규;채희정;김의용
    • KSBB Journal
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    • v.13 no.1
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    • pp.65-70
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    • 1998
  • The physiochemical properties of extracellular lipid produced by an oleaginous yeast, Rhodotorula glutinis K-501 were examined. From the analytical experiments, it was suggested that the extracellular lipid produced is glycolipidic compound. Critical micelle concentration and minimum surface tension of the extracellular lipid in aqueous solution were 89mg/L and 31dyne/cm, respectively. Surface tension was also constant throughout wide range of pH. The emulsifying abilities and dispersing power of the extracellular lipid were much greater than those of commercial surfactants such as Tween 80 and Triton X-100 by factors of 2-3 and 1.3, respectively.

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Experimental Evaluation of Far Infrared Characteristic for Bio Liquid Ceramics used in Bulding finishing Materials (액상세라믹의 원적외선 특성의 실험적평가)

  • 지철근;최태섭;장성일
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.16 no.6
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    • pp.7-12
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    • 2002
  • This paper presents the Experimental Evaluation for the physical, chemical property and Far Infrared Characteristic, the effects to the living body of liquid ceramics which was made by the a Bio ceramic(co).