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      • KCI등재

        일본 화훼수출 효율화를 위한 물류 라우트 연구

        최훈영,백선우,김인규,강경식 대한안전경영과학회 2015 대한안전경영과학회지 Vol.17 No.3

        In this study, refer to cases of domestic flower exporters, important factors for flower export logistics were categorized and analyzed and efficient logistics processes were suggested. According to export profitability and product quality, important factors were categorized as quarantine, costs, lead time. By applying important factors, commonly using route- SHIMONOSEKI, reverse distribution prevented route-HAKATA, Excellent market access routes-OSAKA were analyzed and efficient logistics processes were suggested.

      • KCI등재후보

        Potassium Balances in Maintenance Hemodialysis

        최훈영,하성규 전해질고혈압연구회 2013 Electrolytes & Blood Pressure Vol.11 No.1

        Potassium is abundant in the ICF compartment in the body and its excretion primarily depends on renal (about 90%), and to a lesser extent (about 10%) on colonic excretion. Total body potassium approximated to 50mmol/kg body weight and 2% of total body potassium is in the ECF compartment and 98% of it in the intracellular compartment.Dyskalemia is a frequent electrolyte imbalance observed among the maintenance hemodialysis patients. In case of hyperkalemia, it is frequently “a silent and a potential life threatening electrolyte imbalance” among patients with ESRD under maintenance hemodialysis. The prevalence of hyperkalemia in maintenance HD patients was reported to be about 8.7-10%. Mortality related to the hyperkalemia has been shown to be about 3.1/1,000 patient-years and about 24% of patients with HD required emergency hemodialysis due to severe hyperkalemia. In contrast to the hyperkalemia, much less attention has been paid to the hypokalemia in hemodialysis patients because of the low prevalence under maintenance hemodialysis patients. Severe hypokalemia in the hemodialysis patients usually was resulted from low potassium intake (malnutrition), chronic diarrhea, mineralocorticoid use, and imprudent use of K-exchange resins. Recently, the numbers of the new patients with advanced chronic kidney disease undergoing maintenance hemodialysis are tremendously increasing worldwide. However, the life expectancy of these patients is still much lower than that of the general population. The causes of excess mortality in these patients seem to various, but dyskalemia is a common cause among the patients with ESRD undergoing hemodialysis.

      • KCI등재

        High Water Intake and Progression of Chronic Kidney Diseases

        최훈영,박형천,하성규 전해질고혈압연구회 2015 Electrolytes & Blood Pressure Vol.13 No.2

        Impact of water intake on the courses of chronic kidney and urinary tract diseases, such as urolithiasis, urinary tract infections, chronic kidney diseases (CKD), autosomal dominant polycystic kidney diseases and bladder cancer, has recently been studied. It still remains controversial whether increased water intake slows the progression of CKD or not. However, high water intake suppresses plasma levels of arginine vasopressin (AVP), which is expected to be beneficial for the preservation of the kidney function. Previous studies suggest that water intake suppresses plasma levels of AVP, and high levels of AVP have been suggested to play deleterious roles in animal models of kidney disease. Moreover, recent epidemic of CKD of unknown origin, which was supposed to be related to the insufficient water intake and chronic volume depletion, has been reported in Central America, further suggesting that the suppression of AVP by sustained water intake might be beneficial in this CKD population. Indeed, the data from recent studies were consistent with the view that high water intake is associated with slower progression of CKD. However, contradictory findings also exist. The intriguing effects of increased urine volume in preserving the glomerular filtration rate in human patients with CKD require more large and well-designed randomized prospective clinical trials.

      • KCI등재

        Scanned Point-Detecting System을 이용한 플라즈마 디스플레이 패널에서 방출되는 광의 3차원 시간 분해 측정

        최훈영,이석현,이승걸,김준엽 한국광학회 2002 한국광학회지 Vol.13 No.6

        본 논문에서는 직접 고안한 scanned point-detecting system(SPDS)을 이용하여 PDP 방전 셀 내에서 방출되는 광을 3차원 적으로 시간 분해하여 측정하였다. PM tube를 통해 검출된 광 신호를 오실로스코프 상에서 파형을 확인하고 PC제어를 통해 결과를 얻었다. Ne-Xe(4%) 혼합가스가 400 ton압력으로 채워진 패널에서 측정한 시간 분해 결과를 살펴보면 패널의 전면판(top view)에서는 방전이 cathode전극의 안쪽 edge에서 시작되면서 cathode전극 바깥쪽으로 호의 형태를 이루면서 진행되는 것을 알 수 있었으며 패널의 측면(side view)에서 측정한 시간 분해 결과를 살펴보면 약 150$\mu\textrm{m}$의 높이까지 방전에 의한 광이 검출되었다. 그리고 구동전압 펄스가 인가된 후 730 ns에서 가장 큰 intensity가 나타났다. We measure the 3-dimensional temporal behavior of the light emitted from the discharge cell of a plasma display panel (PDP) by using a scanned point detecting system. The light signal detected by a PM tube is sent to the oscilloscope, and the oscilloscope is connected to a PC with GPIB. From the resultant temporal behaviors, we could analyze the discharge characteristics of the panel with a Ne-Xe (4%) mixing gas at a 400 torr pressure. The top view of the panel shows that discharge moves from the inner edge of the cathode electrode to the outer cathode electrode, forming an arc shape. The side view of the panel shows that the light is detected up to 150 $\mu\textrm{m}$ up the barrier rib. After a trigger pulse is applied, peak intensity is detected at 730 ns and peak intensity position is located at the center of the ITO electrodes.

      • KCI등재

        플라즈마 디스플레이 패널에서 방출되는 광의 3차원 측정을 위한 Scanned Point-Detecting System

        최훈영,이석현,이승걸 한국광학회 2001 한국광학회지 Vol.12 No.2

        플라즈마 디스플레이 패널(plasma display panel :PDP)에서 방출되는 광의 3차원 분포를 측정하기 위한 scanned point-detecting system(SPDS)을 고안하여 제작하였으며 이 시스템을 이용하여 실제 PDP의 3차원 광 방출 특성을 측정하고 해석하였다. SPDS는 상면에 핀홀이 달려 있는 광검출기(point detector)를 위치시킴으로써 특정 지점으로부터 방출되는 광만을 검출할수 있다. 3차원 물체의 특정 지점으로부터 방출된 광은 핀홀을 지나 검출기로 모두 입사되지만 다른 지점으로부터 방출된 광은 핀홀 앞에서 미리 집속되거나 핀홀 뒤에서 집속될것이므로 이러한 광들은 핀홀에 의해 대부분 차단될 것이다. 그러므로 물체의 특정 지점으로부터 방출된 광만이 핀홀이 설치된 검출기에 의해 검출되어 진다. SPDS를 이용하여 PDP cell 내에서 측정된 3차원 광 intensity 분포로부터 cellso의 방전현상을 다음과 같이 유추해낼수 있었다. Z축 측정이 진행될수록광의 intensity는 증가하였고 ITO전극의 안쪽부분에서 검출되는 광의 intensity가 가장 컸고 Y축 scan시 나타나는 X-Z평면에서 광의 intensity가 격벽과 격벽의 중심부분에서 가장 크게 나타났다. In this paper, we designed and made the scanned point detecting system for 3-dimensional measurement of the light emitted from plasma display panel (PDP) , and we measured and analyzed 3-dimensional light emitted from a real PDP by using this scanned point detecting system. The scanned point detecting system has a point detector with a pinhole. The light emitted from the source at the in-focus position can pass through the pinhole and be collected by detector. The light from other sources at outof-focus positions is focused at points in front of or behind the pinhole, and thus it is intercepted by the pinhole. Therefore, we can detect light information from a particular point of a PDP cell of 3-dimensional structure. We know the electric field distribution inside the PDP cell from the 3-dimensionallight intensity distribution measured by using the scanned point detecting system. As the Z axial measurement increases, the intensity of light detected increases and intensity of light detected on the inside edge of the ITa electrode is larger than outside edge of the ITa eletrode and gap of the ITa electrodes. Also, as the measurement point moves from one barrier rib to another, the detected light is weaker near to the barrier ribs than at the center between the barrier ribs. The emitted light is concentrated at the center between barrier ribs. ribs.

      • KCI등재

        물류센터관리시스템 도입에 따른 물류업무의 생산성 향상에 관한 연구

        최훈영,임만규,강경식 대한안전경영과학회 2015 대한안전경영과학회지 Vol.17 No.3

        This treatise is a study on the effectiveness of logistics tasks through the Warehouse Management System. Using manufacturer 'D' company's logistics operation as an example, we compared before and after cases, in which WMS was used. Upon using WMS, we observed the processes and researched how much the logistics company’s performance was affected by the process changes influencing profits.

      • KCI등재

        Salt Sensitivity and Hypertension: A Paradigm Shift from Kidney Malfunction to Vascular Endothelial Dysfunction

        최훈영,박형천,하성규 전해질고혈압연구회 2015 Electrolytes & Blood Pressure Vol.13 No.1

        Hypertension is a complex trait determined by both genetic and environmental factors and is a major public health problem due to its high prevalence and concomitant increase in the risk for cardiovascular disease. With the recent large increase of dietary salt intake in most developed countries, the prevalence of hypertension increases tremendously which is about 30% of the world population. There is substantial evidence that suggests some people can effectively excrete high dietary salt intake without an increase in arterial BP, and another people cannot excrete effectively without an increase in arterial BP. Salt sensitivity of BP refers to the BP responses for changes in dietary salt intake to produce meaningful BP increases or decreases. The underlying mechanisms that promote salt sensitivity are complex and range from genetic to environmental influences. The phenotype of salt sensitivity is therefore heterogeneous with multiple mechanisms that potentially link high salt intake to increases in blood pressure. Moreover, excess salt intake has functional and pathological effects on the vasculature that are independent of blood pressure. Epidemiologic data demonstrate the role of high dietary salt intake in mediating cardiovascular and renal morbidity and mortality. Almost five decades ago, Guyton and Coleman proposed that whenever arterial pressure is elevated, pressure natriuresis enhances the excretion of sodium and water until blood volume is reduced sufficiently to return arterial pressure to control values. According to this hypothesis, hypertension can develop only when something impairs the excretory ability of sodium in the kidney. However, recent studies suggest that nonosmotic salt accumulation in the skin interstitium and the endothelial dysfunction which might be caused by the deterioration of vascular endothelial glycocalyx layer (EGL) and the epithelial sodium channel on the endothelial luminal surface (EnNaC) also play an important role in nonosmotic storage of salt. These new concepts emphasize that sodium homeostasis and salt sensitivity seem to be related not only to the kidney malfunction but also to the endothelial dysfunction. Further investigations will be needed to assess the extent to which changes in the sodium buffering capacity of the skin interstitium and develop the treatment strategy for modulating the endothelial dysfunction.

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