• 제목/요약/키워드: TRANSDUCER

검색결과 2,038건 처리시간 0.032초

Arsenic처리에 따른 흰쥐 혈관의 수축과 heat shock protein 70과의 관계 (Relation between Expression of Heat Shock Protein 70 and Vascular Contractility of Rat Aorta Treated with Arsenic)

  • 권윤정;박태규;김중영
    • 환경생물
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    • 제21권3호
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    • pp.313-318
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    • 2003
  • 외부에서 투여된 열자극, 알콜 및 생리적 염과 같은 환경 스트레스는 체내 각 부위에서 스트레스단백질(열자극단백질, HSP)을 생성하게 된다. 본 연구에서는 비소가 흰쥐 대동맥의 수축에 미치는 영향을 조사하기 위해 스트레스단백질의 발현과 대동맥의 수축력의 변화와 이들과의 관계를 알아보고자 실험을 실시하였다 적출한 혈관은 organ bath에 담가 0, 0.5, 1, 2,및 4 mM As를 처리한 후 1, 3, 및 8시간 뒤에 KCI(55 mM)에 대한 수축반응과 HSP 발현을 각각 생리기록계와 western blotting 을 통해 분석하였다. 비소(4 mM)를 처리한 혈관의 KCI에 대한 수축력은 처리 초기(1, 3시간)에는 효과가 없었고 처리 8시간째 대조군에 비해 39%로 유의적인 증가를 보였다. 또한 비소처리로 혈관의 스트레스단백질 HSP 70의 생성은 비소 처리농도에 따라 증가되었고, 비소 처리 초기에는 변화가 없었으며 비소처리 8시간째 HSP생성이 촉진되었다. HSP는 주로 혈관 평활근세포에서 현저하게 발현되었고 일부 내피세포에서도 발현되었다. 이상의 결과에서 비소 처리에 따른 HSP 70의 발현과 혈관의 수축 증가의 상승되는 현상이 비소처리 8시간째에 유의하게 증가되는 것으로 보아, 비소처리에 의해 혈관의 스트레스단백질 HSP 발현이 증가되고 이로 인해 혈관 수축력을 상승시켜 고혈압 유발과정에 관여하는 것으로 여겨진다.

MLCK and PKC Involvements via Gi and Rho A Protein in Contraction by the Electrical Field Stimulation in Feline Esophageal Smooth Muscle

  • Park, Sun-Young;Shim, Jae-Ho;Kim, Mi-Na;Sun, Yih Hsiu;Kwak, Hyun-Soo;Yan, Xiangmei;Choi, Byung-Chul;Im, Chae-Uk;Sim, Sang-Soo;Jeong, Ji-Hoon;Kim, In-Kyeom;Min, Young-Sil;Sohn, Uy-Dong
    • The Korean Journal of Physiology and Pharmacology
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    • 제14권1호
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    • pp.29-35
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    • 2010
  • We have shown that myosin light chain kinase (MLCK) was required for the off-contraction in response to the electrical field stimulation (EFS) of feline esophageal smooth muscle. In this study, we investigated whether protein kinase C (PKC) may require the on-contraction in response to EFS using feline esophageal smooth muscle. The contractions were recorded using an isometric force transducer. On-contraction occurred in the presence of $N^G$-nitro-L-arginine methyl ester (L-NAME), suggesting that nitric oxide acts as an inhibitory mediator in smooth muscle. The excitatory composition of both contractions was cholinergic dependent which was blocked by tetrodotoxin or atropine. The on-contraction was abolished in $Ca^{2+}$-free buffer but reappeared in normal $Ca^{2+}$-containing buffer indicating that the contraction was $Ca^{2+}$ dependent. 4-aminopyridine (4-AP), voltage-dependent $K^+$ channel blocker, significantly enhanced on-contraction. Aluminum fluoride (a G-protein activator) increased on-contraction. Pertussis toxin (a $G_i$ inactivator) and C3 exoenzyme (a rhoA inactivator) significantly decreased on-contraction suggesting that Gi or rhoA protein may be related with $Ca^{2+}$ and $K^+$ channel. ML-9, a MLCK inhibitor, significantly inhibited on-contraction, and chelerythrine (PKC inhibitor) affected on the contraction. These results suggest that endogenous cholinergic contractions activated directly by low-frequency EFS may be mediated by $Ca^{2+}$, and G proteins, such as Gi and rhoA, which resulted in the activation of MLCK, and PKC to produce the contraction in feline distal esophageal smooth muscle.

Inhibition of eNOS/sGC/PKG Pathway Decreases Akt Phosphorylation Induced by Kainic Acid in Mouse Hippocampus

  • Lee, Sang-Hyun;Byun, Jong-Seon;Kong, Pil-Jae;Lee, Hee-Jae;Kim, Duk-Kyung;Kim, Hae-Sung;Sohn, Jong-Hee;Lee, Jae-Jun;Lim, So-Young;Chun, Wan-Joo;Kim, Sung-Soo
    • The Korean Journal of Physiology and Pharmacology
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    • 제14권1호
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    • pp.37-43
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    • 2010
  • The serine/threonine kinase Akt has been shown to play a role of multiple cellular signaling pathways and act as a transducer of many functions initiated by growth factor receptors that activate phosphatidylinositol 3-kinase (PI3K). It has been reported that phosphorylated Akt activates eNDS resulting in the production of NO and that NO stimulates soluble guanylate cyclase (sGC), which results in accumulation of cGMP and subsequent activation of the protein kinase G (PKG). It has been also reported that PKG activates PI3K/Akt signaling. Therefore, it is possible that PI3K, Akt, eNOS, sGC, and PKG form a loop to exert enhanced and sustained activation of Akt. However, the existence of this loop in eNOS-expressing cells, such as endothelial cells or astrocytes, has not been reported. Thus, we examined a possibility that Akt phosphorylation might be enhanced via eNOS/sGC/PKG/PI3K pathway in astrocytes in vivo and in vitro. Phosphorylation of Akt was detected in astrocytes after KA treatment and was maintained up to 72 h in mouse hippocampus. 2 weeks after KA treatment, astrocytic Akt phosphorylation was normalized to control. The inhibition of eNOS, sGC, and PKG significantly decreased Akt and eNDS phosphorylation induced by KA in astrocytes. In contrast, the decreased phosphorylation of Akt and eNDS by eNDS inhibition was significantly reversed with PKG activation. The above findings in mouse hippocampus were also observed in primary astrocytes. These data suggest that Akt/eNOS/sGC/PKG/PI3K pathway may constitute a loop, resulting in enhanced and sustained Akt activation in astrocytes.

High fat diet-induced obesity leads to proinflammatory response associated with higher expression of NOD2 protein

  • Kim, Min-Soo;Choi, Myung-Sook;Han, Sung-Nim
    • Nutrition Research and Practice
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    • 제5권3호
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    • pp.219-223
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    • 2011
  • Obesity has been reported to be associated with low grade inflammatory status. In this study, we investigated the inflammatory response as well as associated signaling molecules in immune cells from diet-induced obese mice. Four-week-old C57BL mice were fed diets containing 5% fat (control) or 20% fat and 1% cholesterol (HFD) for 24 weeks. Splenocytes ($1{\times}10^7$ cells) were stimulated with $10\;{\mu}g/mL$ of lipopolysaccharide (LPS) for 6 or 24 hrs. Production of interleukin (IL)-$1{\beta}$, IL-6, and TNF-${\alpha}$ as well as protein expression levels of nucleotide-binding oligomerization domain (NOD)2, signal transducer and activator of transcription (STAT)3, and pSTAT3 were determined. Mice fed HFD gained significantly more body weight compared to mice fed control diet ($28.2{\pm}0.6$ g in HFD and $15.4{\pm}0.8$ g in control). After stimulation with LPS for 6 hrs, production of IL-$1{\beta}$ was significantly higher (P=0.001) and production of tumor necrosis factor (TNF)-${\alpha}$ tended to be higher (P < 0.064) in the HFD group. After 24 hrs of LPS stimulation, splenocytes from the HFD group produced significantly higher levels of IL-6 ($10.02{\pm}0.66$ ng/mL in HFD and $7.33{\pm}0.56$ ng/mL in control, P=0.005) and IL-$1{\beta}$ ($121.34{\pm}12.72$ pg/mL in HFD and $49.74{\pm}6.58$ pg/mL in control, P < 0.001). There were no significant differences in the expression levels of STAT3 and pSTAT3 between the HFD and the control groups. However, the expression level of NOD2 protein as determined by Western blot analysis was 60% higher in the HFD group compared with the control group. NOD2 contributes to the induction of inflammation by activation of nuclear factor ${\kappa}B$. These findings suggest that diet-induced obesity is associated with increased inflammatory response of immune cells, and higher expression of NOD2 may contribute to these changes.

초음파 열 영상 검사를 이용한 브레이징 접합 결함 검출 (A Brazing Defect Detection Using an Ultrasonic Infrared Imaging Inspection)

  • 조재완;최영수;정승호;정현규
    • 비파괴검사학회지
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    • 제27권5호
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    • pp.426-431
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    • 2007
  • 고에너지 초음파 여기 탄성파가 물체의 균열, 박리 등의 결함 부위를 통과할 때 서로 맞닿은 결함면은 균일하게 진동하지 않는다. 초음파 입사에 따른 결함 면 사이의 마찰(friction), 문지름 (rubbing) 또는 부딪침(clapping) 에 의해 진동 에너지가 결함 부위에서 국부적인 열로 변환된다. 이를 적외선 열 영상 카메라로 관측하면 구조물의 결함을 실시간으로 검출할 수 있다. 본 논문에서는 초음파 열 영상 검사를 이용한 인코넬 합금 박판의 브레이징 접합 결함 검출에 대해 기술한다. 2 kW 의 전력과 23 kHz 대역의 가진 주파수를 갖는 초음파 펄스를 280 ms 기간 동안 인코넬 합금의 브레이징 접합 박판에 입사시켰다. 브레이징 접합부의 결함위치 부근의 인코넬 합금 박판의 양면이 맞닿은 경계선에서 아주 밝은 국부적인 발열(핫 스팟)이 적외선 열 영상 카메라에 의해 관측되었으며 브레이징 접합 결함 위치에서도 미약한 열이 관측되었다. 배경 감산 평균 및 히스토그램 평활화 처리 등의 영상처리를 통해 브레이징 접합의 결함을 확인하였다.

의복착용형 무선 호흡모니터 시스템 (Wearable wireless respiratory monitoring system)

  • 이인광;김성식;장종찬;김군진;김경아;이태수;차은종
    • 센서학회지
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    • 제17권2호
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    • pp.133-142
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    • 2008
  • Respiration is induced by muscular contraction of the chest and abdomen, resulting in the abdominal volume change. Thus, continuous measurement of the abdominal dimension enables to monitor breathing activity. Conductive rubber cord has been previously introduced and tested to develop wearable application for respiratory measurements. The present study implemented wireless wearable respiratory monitoring system with the conductive rubber cord in the patient's pants. Signal extraction circuitry was developed to obtain the abdominal circumference changes reflecting the lung volume variation caused by respiratory activity. Wireless transmission was followed based on the zigbee communication protocol in a size of 65mm${\times}$105mm easily put in pocket. Successful wireless monitoring of respiration was performed in that breathing frequency was accurately estimated as well as different breathing patterns were easily recognized from the abdominal signal. $CO_2$ inhalation experiment was additionally performed in purpose of quantitative estimation of tidal volume. Air mixed with $0{\sim}5%\;CO_2$was inhaled by 4 normal males and the respiratory air flow rate, abdominal dimension change, and end tidal $CO_2$ concentration were simultaneously measured in steady state. $CO_2$ inhalation increased the tidal volume in normal physiological state with a correlation coefficient of 0.90 between the tidal volume and the end tidal $CO_2$ concentration. The tidal volume estimated from the abdominal signal linearly correlated with the accurate tidal volume measured by pneumotachometer with a correlation coefficient of 0.88 with mean relative error of approximately 8%. Therefore, the tidal volume was accurately estimated by measuring the abdominal dimension change.

Effects of Intermittent Sciatic Nerve Stimulation on the Soleus and Medial Gastrocnemius Muscle Atrophy in Hindlimb Suspended Rats

  • Park, Byung-Rim;Cho, Jung-Shick;Kim, Min-Sun;Chun, Sang-Woo
    • The Korean Journal of Physiology
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    • 제26권2호
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    • pp.159-166
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    • 1992
  • The present study was designed to evaluate effects of intermittent electrical stimulation of the sciatic nerve on the atrophic response of antigravity muscles, such as the soleus (slow m.) and medial gastrocnemius (fast m.) muscles. Rats (Sprague-Dawley, 245-255g) were subjected to a hindlimb suspension and divided into three groups : one was with hindlimb suspension (MS) and another with hindlimb suspension plus intermittent electrical stimulation of the sciatic nerve (HS ES). Control group (CONT) was kept free without strain of the hindlimb. After 7 days of hindlimb suspension, the soleus and medial gastrocnemius muscles were cut at their insertion sites, and were then connected to the force transducer to observe their mechanical properties. Optimal pulse width and frequency of electrical stimulation were 0.2ms, 20Hz for the soleus muscle and 0.3ms, 40Hz for the medial gastrocnemius muscle under supramaximal stimulation. Body weight and circumference of the hindlimb were significantly decreased in HS and HS-ES groups compared with the control group. In HS-ES group, however, the weight of the soleus muscle was not different from that in the control group while the weight of the medial gastrocnemius muscle was lower than that in the control group. In HS group, mechanical properties of muscle contraction including contraction time, half relaxation time, twitch tension, tetanic tension, and fatigue index of both muscles were significantly decreased compared with the control group except for twitch tension and tetanic tension of medial gastrocnemius muscle. The degree of atrophy of the soleus muscle in HS group was more prominent than that of the medial gastrocnemius muscle. Twitch tension and fatigue index of the soleus muscle and fatigue index of the medial gastrocnemius muscle in HS-ES group were not different from those of the control group. While mechanical properties of the soleus muscle examined were all significantly increased in HS-ES group compared with HS group, only contraction time and fatigue index of the medial gastrocnemius muscle were significantly increased in HS-ES group. These data indicate that intermittent electrical stimulation may be useful in prevention of muscle atrophy.

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그린하우스의 프라스틱 피복재를 통한 상대적 열손실 속도를 측정하는 간단한 장치 (A simple device to measure the relative rate of heat loss through plastic coverings from greenhouse)

  • 정진;박병빈
    • 한국환경농학회지
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    • 제8권2호
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    • pp.142-147
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    • 1989
  • 환기에 의한 열손실과 지중으로의 열손실을 제외하면 그린하우스의 열손실은 피복재를 통한 열전도 및 열복사에 의해 일어난다. 따라서 동일한 환경조건 하에서 프라스틱 필름으로 하우스를 만들 때 하우스의 보온력은 피복재를 통한 열손실 속도의 크기에 지배받는다. 본 연구에서는 프라스틱 필름을 통한 상대적 열손실 속도를 측정함으로써 하우스의 보온력을 예측할 수 있는 간단한 장치와 방법을 고안하였다. 육면체 형태의 frame을 만들어 측정용 필름으로 둘러싸서 밀폐된 box를 만들고 thermostat로 조절되는 heater와 box 내부의 온도변화를 감지 기록하기 위한 온도 Probe를 내부에 장치하였다. box 내부와 외부간에 일정한 온도차를 이루게 한 다음 (10$^{\circ}C$내외), 그 온도 차이가 유지되도록 일정한 양의 열을 10회에 걸쳐 단속적으로 (그리고 자동적으로) 투입함에 있어서 그 투입 에 요한 총 시간, 즉 항온유지시간을 재고, 이 항온유지 시간의 역수로서 필름을 통한 상대적 열손실 속도를 측정하였다. 동일한 두께의 필름인 경우에 상대적 열손실 속도는 PE>EVA>PVC의 순으로 감소하였고, silica gel보온재가 첨가된 필름의 열손실 속도는 보온재 무첨가 필름보다 역시 감소함을 보여주었다. 이러한 측정결과는 재질에 따른 필름 보온성에 관한 이미 상식화한 사실과 부합되는 것으로서, 본 고안 장치가 여러 가지 상품화된 하우스용 필름의 선별에 쉽게 이용될 수 있음을 시사한다.

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초음파 미립화 노즐의 분무 특성에 미치는 주요 인자의 영향 (Effect of Major Factors on the Spray Characteristics of Ultrasonic Atomizing Nozzle)

  • 정선용;이계복
    • 한국산학기술학회논문지
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    • 제18권6호
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    • pp.1-7
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    • 2017
  • 분무식 노즐(spray nozzle)은 액체의 표면을 증가시키기 위해 에너지를 공급하여 액체를 다수의 액적으로 미립화시키는 장치로 연소과정에서의 연료의 미립화 또는 표면이나 입자의 코팅 등 여러 산업분야에 다양한 목적으로 응용된다. 초음파 미립화 노즐은 진동 발생장치로부터 고진동수의 전기에너지를 받아 같은 진동수의 기계적 에너지로 변환시키는 변환기를 갖고 있다. 변환된 에너지를 액체에 부가하여 고주파 진동에 의해 미세한 액적을 생성하여 분사한다. 코팅작업에서 가압되지 않은 저속의 분무는 액적이 튕겨나가지 않고 표면에 달라붙어 과도하게 분사되는 양을 줄일 수 있다. 초음파 미립화 노즐은 초음파 진동부 외벽에 공기를 공급해 줄 수 있는 공간을 통해 생성된 보조 공기흐름을 이용하여 저속의 액적을 운반하여 분무특성이나 분무형상을 조절할 수 있다. 따라서 주위 공기의 흐름을 이용하여 원하는 분무특성을 얻을 수 있다. 본 연구에서는 액적의 분사 운동을 모사하기 위해 라그랑지안 분산상 모델(DPM)을 적용한 상용코드 FLUENT를 사용하여 액적 주위의 공기흐름을 동반하는 초음파 미립화 노즐을 해석하였다. 노즐 수축부 형상, 액적의 크기 그리고 공기 측 압력차의 크기를 변화시키며 수치해석을 수행하여 코팅용 분무를 위한 최적 조건을 연구하였다.

Response of circular footing on dry dense sand to impact load with different embedment depths

  • Ali, Adnan F.;Fattah, Mohammed Y.;Ahmed, Balqees A.
    • Earthquakes and Structures
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    • 제14권4호
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    • pp.323-336
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    • 2018
  • Machine foundations with impact loads are common powerful sources of industrial vibrations. These foundations are generally transferring vertical dynamic loads to the soil and generate ground vibrations which may harmfully affect the surrounding structures or buildings. Dynamic effects range from severe trouble of working conditions for some sensitive instruments or devices to visible structural damage. This work includes an experimental study on the behavior of dry dense sand under the action of a single impulsive load. The objective of this research is to predict the dry sand response under impact loads. Emphasis will be made on attenuation of waves induced by impact loads through the soil. The research also includes studying the effect of footing embedment, and footing area on the soil behavior and its dynamic response. Different falling masses from different heights were conducted using the falling weight deflectometer (FWD) to provide the single pulse energy. The responses of different soils were evaluated at different locations (vertically below the impact plate and horizontally away from it). These responses include; displacements, velocities, and accelerations that are developed due to the impact acting at top and different depths within the soil using the falling weight deflectometer (FWD) and accelerometers (ARH-500A Waterproof, and Low capacity Acceleration Transducer) that are embedded in the soil in addition to soil pressure gauges. It was concluded that increasing the footing embedment depth results in increase in the amplitude of the force-time history by about 10-30% due to increase in the degree of confinement. This is accompanied by a decrease in the displacement response of the soil by about 40-50% due to increase in the overburden pressure when the embedment depth increased which leads to increasing the stiffness of sandy soil. There is also increase in the natural frequency of the soil-foundation system by about 20-45%. For surface foundation, the foundation is free to oscillate in vertical, horizontal and rocking modes. But, when embedding a footing, the surrounding soil restricts oscillation due to confinement which leads to increasing the natural frequency. Moreover, the soil density increases with depth because of compaction, which makes the soil behave as a solid medium. Increasing the footing embedment depth results in an increase in the damping ratio by about 50-150% due to the increase of soil density as D/B increases, hence the soil tends to behave as a solid medium which activates both viscous and strain damping.