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      • 심실근의 수축현상에 미치는 O₂, CO₂ 및 pH의 영향

        장석종,박해근 충남대학교 의과대학 지역사회의학연구소 1983 충남의대잡지 Vol.10 No.2

        It has been well known that increased hydrogen ion concentration causes the negative inotropic effect on the heart. But in the status of acid base imbalance, metabolic or respiratory, the question of which status has more profound effect on the cardiac muscle contractility remains unsolved. Furthermore, whether such effect is attributable to the change of the intracellular pH or the extracellular change is a matter of controversy. In many studies concerning to the effect of carbon dioxide tension on the cardiac contractility, the effect of excess oxygen has been ignored despite of its significant influence upon the cellular function. The author intended to investigate the effects of the change of carbon dioxide tension, which causes the pH change simultaneously, as well as the effect of excess oxygen on the cardiac ventricular contractility. Also, to prove which change, metabolic or respiratory, has more profound effect and which change, intracellulcr or extracellular, has more crucial effect, the author examined the contractility of the ventricle under two different conditions. They were as follows: a) PCO_2 was varying despite of same magnitude of the change in pH. b) pH was varying despite of the same magnitude of the change in PCO_2 Turtle hearts were used and the Langendorf preparations were made. The perfusate was Tris-buffer solution for turtle, saturated with various gases, such as air, pure oxygen, nitrogen, or different concentrations of CO_2 balanced with oxygen or nitrogen. The tension and maximal dT/dt were recorded with the Physiograph and its accessories. The results were summarized as follows. 1. The excess oxygen enhanced the ventricular contractility. 2. Increased carbon dioxide tension, which decreases the pH simultaneously, reduced the ventricular contractility and that was more pronounced when CO_2 was balanced with nitrogen gas rather than with oxygen gas. 3. The relationships among several physiological parameters were estimated as follows: a) Y=1.01X-0.56 X: percent change of the tension Y: percent change of maximal contration dT/dt b) Z=1.06X-4.56 Z: percent change of maximal relation dT/dt The corelation coefficient in a) is 0.939 and in b) is 0.926, being significant statistically (P<0.005). 4. When the change of pH were same but the changes of PCO_2 were different, the change of ventricular contractility was more profound in the respiratory decrease of pH, that was higher PCO_2, more depressing effect (P<0.005) was manifested, than in the case of metabolic origin (p<0.005). 5. When the changes of PCO_2 were same but the changes of pH were different, the influence of the latter parameter on the contractility was not significant (P<0.1). From the above results it was suggested that the increased PCO_2, which also causes the decrease of pH, has negative inotropic effect and excess oxygen has positive inotropic effect on the ventricular muscle of the turtle. The negative inotropic effect of the lowered pH on the ventricular muscle was revealed to be more profound when it was induced by respiratory distress rather than motabolic and may be affected by change of intracellular pH rather than extracellular pH.

      • KCI등재후보

        The Analysis on the Value of Yongsan National Park and its Economic Effect

        Chang, In-Seok,Cho, Young-Tae,Lee, Mi-Hong,Park, Shin-Won Land and Housing Institute 2011 LHI journal of land, housing, and urban affairs Vol.2 No.4

        This study estimated economic value and benefits of Yongsan National Park, which will be constructed by financial investment of the government and objectively estimated the real value of it by understanding the value of the park from a user's view of the park. For this, the value of Yongsan National Park is divided into using value such as carbon reduction and the function of relieving urban heat island as an environmental material and non-using value based on willingness to pay of the public according to the construction of the park. As a result of the analysis, it was found out that the using value of Yongsan National Park would reach 130 million won up to maximum level of 450 million won per year, and the non-using value was analyzed to be worthy of 2,344 won per capita every month. Besides, economic ripple effect that can be expected in the process of the park construction project was analyzed to be a national policy that creates effect on production inducement of 2.6 trillion won and value added of 809.6 billion won and new jobs for 25,620 persons. Considering the value of Yongsan National Park and the effect of the project based on the result of this study, it was found that it could sufficiently secure the validity of implementing the project compared to the financial investment by the government. Therefore, it must be emphasized that diffusion strategy is necessary for national understanding and for a nation to make it understood its appropriateness widely in respect to the construction of Yongsan National Park for the successful construction of Yongsan National Park and to raise its using value in the future.

      • SCOPUSKCI등재

        Vegetation change and emerging research feedback for Korean National Long Term Ecological Research (KNLTER)

        Cho, Yong-Chan,Lee, Chang-Seok,Cho, Hyun-Je,Lee, Kyu-Song,Park, Pil-Sun The Ecological Society of Korea 2011 Journal of Ecology and Environment Vol.34 No.1

        Various responses of forest ecosystems to climate change underscore the need to improve our understanding of the environmentally-driven changes in forests, most effectively by long-term monitoring protocols. We have explored vegetation dynamics based on changes in community structure, species composition, diversity and demographics in four Korean National Long Term Ecological Research (KNLTER) sites--Mt. Nam, Mt. Jeombong, Mt. Worak, and Mt. Jiri--between 2004 and 2009. Most of the sites and forests studied exhibited increments in total basal area, but this was not observed in Quercus mongolica forests in Mt. Nam and Mt. Worak. Stem density exhibited various changes. Altitude gradient was the representative factor in differences in species composition. Two patterns of compositional change--convergence and divergence--were detected. The vegetation of Mt. Nam and Q. mongolica community of Mt. Work showed relatively larger changes in composition. However, in the other sites, few changes were observed. Changes of species richness were not notable except for Mt. Nam, where three species were added in the pine forest, whereas one species disappeared in the oak forest. In the oak forests, mortality rate was as follows (in descending order): Mt. Nam (25.5%), Mt. Jeombong (24.3%), Mt. Worak (16.4%) and Mt. Jiri (0.8%). In the pine forest, the recruitment rate was as follows (in descending order): Mt. Nam (63.7%), Mt. Worak (12.9%), Mt. Jeombong (7.6%) and Mt. Jiri (7.3%). The mortality rate and change rate of basal area were strongly negatively correlated (r = -0.9, P = 0.002), and the recruitment rate and change rate of density were positively correlated (r = 0.77, P = 0.026). In the KNLTER sites, larger vegetation changes were attributed to anthropogenic activities such as salvage logging. Suppression or competition for resources would also affect these changes. Research suggestions such as monitoring to clarify the causes of species mortality were discussed.

      • Projections of summertime ozone concentration over East Asia under multiple IPCC SRES emission scenarios

        Lee, Jae-Bum,Cha, Jun-Seok,Hong, Sung-Chul,Choi, Jin-Young,Myoung, Ji-Su,Park, Rokjin J.,Woo, Jung-Hun,Ho, Changhoi,Han, Jin-Seok,Song, Chang-Keun Elsevier 2015 Atmospheric environment Vol.106 No.-

        <P><B>Abstract</B></P> <P>We have developed the Integrated Climate and Air Quality Modeling System (ICAMS) through the one-way nesting of global–regional models to examine the changes in the surface ozone concentrations over East Asia under future climate scenarios. Model simulations have been conducted for the present period of 1996–2005 to evaluate the performance of ICAMS. The simulated surface ozone concentrations reproduced the observed monthly mean concentrations at sites in East Asia with high R<SUP>2</SUP> values (0.4–0.9), indicating a successful simulation to capture both spatial and temporal variability. We then performed several model simulations with the six IPCC SRES scenarios (A2, A1B, A1FI, A1T, B1, and B2) for the next three periods, 2016–2025 (the 2020s), 2046–2055 (the 2050s), and 2091–2100 (the 2090s). The model results show that the projected changes of the annual daily mean maximum eight-hour (DM8H) surface ozone concentrations in summertime for East Asia are in the range of 2–8 ppb, −3 to 8 ppb, and −7 to 9 ppb for the 2020s, the 2050s, and the 2090s, respectively, and are primarily determined based on the emission changes of NO<SUB>x</SUB> and NMVOC. The maximum increases in the annual DM8H surface ozone and high-ozone events occur in the 2020s for all scenarios except for A2, implying that the air quality over East Asia is likely to get worse in the near future period (the 2020s) than in the far future periods (the 2050s and the 2090s). The changes in the future environment based on IPCC SRES scenarios would also influence the change in the occurrences of high-concentrations events more greatly than that of the annual DM8H surface ozone concentrations. Sensitivity simulations show that the emissions increase is the key factor in determining future regional surface ozone concentrations in the case of a developing country, China, whereas a developed country, Japan would be influenced more greatly by effects of the regional climate change than the increase in emissions.</P> <P><B>Highlights</B></P> <P> <UL> <LI> Change in ozone level is determined by the combination of NO<SUB>x</SUB> and NMVOC emissions. </LI> <LI> Ozone level over East Asia would get worse in the near future (the 2020s) than far future. </LI> <LI> A high-concentration event generally increases and more frequently occurs in the future. </LI> <LI> Change in ozone air quality in a developing country depends more on emissions change. </LI> <LI> Change in ozone air quality in a developed country depends more on climate change. </LI> </UL> </P>

      • KCI등재

        DMZ세계평화공원 추진 및 운영에 대한 법적지원방안

        박창석(Park, Chang-Seok) 한양법학회 2020 漢陽法學 Vol.31 No.4

        May 2013, Park Geun-hye of the president of the U.S. senate in a speech to dmz the World Peace Initiative after a public offering, the DMZ is a new park the two Koreas.(- building trust process) the confidence-building process of public opinion as to be New Year’s Day of the spotlight.The proposed DMZ World Peace Park at the time is fundamentally different from the previous plan in that it not only covers the southern part of the Demilitarized Zone but also the northern part of the DMZ, but also opens up the main body of the park’s creation and operation to the international community, including the two Koreas, the United Nations, the United States and China. The purpose of this study is to illuminate the Demilitarized Zone from a legal and institutional point of view and explore domestic legal support measures for the future creation and operation of the World Peace Park. Prior to the full-fledged analysis of the system, a brief look at the concept of the Demilitarized Zone and the normality of the Armistice Agreement, which is the basis for its direct installation, in order to understand the legal reality of the Demilitarized Zone. The constitutional and unification legal significance of the World Peace Park project to be created in the Demilitarized Zone based on the problems of legal reality found herein and the legal basis of the current law are considered (II respectively. Next, in the analysis of the current system, the normative system currently applied in the Demilitarized Zone will be divided into international and domestic law aspects, and among these, regulations that serve as obstacles to the relationship with the World Peace Park project will be reviewed (III). This study mainly aims to check domestic legal elements, but to the extent deemed essential, such as the Armistice Agreement, the international legal problems will also be pointed out and solutions reviewed together.

      • KCI등재

        서식지 적합성 평가를 통한 국립공원 탐방로 관리 방안 연구 - 무등산 국립공원 내 담비 서식지를 중심으로 -

        임치홍,이창석,정성희,박용수,Lim, Chi-Hong,Lee, Chang-Seok,Jung, Song-Hie,Park, Yong-Su 한국환경복원기술학회 2017 한국환경복원기술학회지 Vol.20 No.4

        This study carried out for establishing the synthetic restoration plan to improve ecological quality of Mt. Mudeung National Park based on the results of conservation value assessment for yellow-throated marten habitats. Yellow-throated marten has significant implications as umbrella species for the wildlife habitats conservation, therefore, this species could be used to ecological restoration plan of the damaged forest ecosystem in Mt. Mudeung National Park. In this study, we diagnosed the quality of yellow-throated marten habitats in Mt. Mudeung National Park based on five natural and two artificial factors. In addition, we evaluated the integrity of each zone divided by trails quantitatively based on land use intensity. As a result, forest landscape quality in Mt. Mudeung National Park was influenced greatly by human activity and the degree was depended on the intensity of trails. Therefore, in this study, we suggested the closing of trails composed of the illegal and 36 legal trails. And then, we modeled the changes of habitats quality of Yellow-throated marten for each closing step. As a result the area of core habitats increased by two times and wildlife habitats quality improved in the whole area of the Mt. Mudeung National Park. As a result, the results of this study indicate that man-made linear landscape elements play a key role in the quality of habitats for predators, which require large habitats area like the Yellow-throated marten. Therefore, in order to establish an ecological restoration plan in the mountainous area, we recommend the concept of the linear landscape should be applied with the concept of area landscape.

      • SCOPUSKCI등재

        Which Environmental Factors Caused Lammas Shoot Growth of Korean Red Pine?

        Lee, Chang-Seok,Song, Hye-Gyung,Kim, Hye-Soo,Lee, Bit-Na-Ra,Pi, Jeong-Hoon,Cho, Yong-Chan,Seol, Eun-Sil,Oh, Woo-Seok,Park, Sung-Ae,Lee, Seon-Mi The Ecological Society of Korea 2007 Journal of Ecology and Environment Vol.30 No.1

        Lammas growth, a rare phenomenon for Korean red pine (Pinus densiflora), occurred in 2006. Lammas shoots showed higher frequency and longer length in Seoul's hotter urban center than in urban boundary or suburban forest sites. Frequency and length showed a close correlation with urbanization density and vegetation cover expressed in NDVI. Air temperature in the late summer of 2006 was more than $1^{\circ}C$ higher than an average year. Of the predominant environmental signals that modulate bud flush, only temperature changed significantly during the year. Differences in temperature between the urban centers, urban boundaries and suburban forests correlated with varying land-use density. The rise in temperature likely spurred lammas growth of the Korean red pine. Symptoms of climate change are being detected throughout the world, and its consequences will be clearer in the future. Considerate interest in the responses of ecological systems to the variable changes is required to prepare for unforeseeable crises. Monitoring of diverse ecological phenomena at Long Term Ecological Research sites could offer harbingers of change.

      • SCIEKCI등재

        Bone Marrow T Cells are Superior to Splenic T Cells to Induce Chimeric Conversion After Non-Myeloablative Bone Marrow Transplantation

        ( Hyun Sil Park ),( Seok Goo Cho ),( Min Jung Park ),( So Youn Min ),( Hong Seok Chang ),( Hee Je Kim ),( Seok Lee ),( Chang Ki Min ),( Jong Wook Lee ),( Woo Sung Min ),( Chun Choo Kim ),( Ho Youn Kim 대한내과학회 2009 The Korean Journal of Internal Medicine Vol.24 No.3

        Background/Aims: The bone marrow functions not only as the primary B-lymphocyte-producing organ but also as a secondary lymphoid organ for CD4 and CD8 cell responses and a site of preferential homing and persistence for memory T cells. Bone marrow T (BM-T) cells are distinguished from peripheral blood T cells by surface phenotype, cytokine secretion profile, and immune functions. In this study, we evaluated the alloreactive potential of donor lymphocyte infusion (DLI) using BM-T cells in mixed chimerism compared to that using spleen T (SP-T) cells. Methods: Cells were prepared using established procedures. BM-T cells were obtained as a by-product of T-cell depletion in BM grafting and then cryopreserved for subsequent DLI. We performed DLI using BM-T cells in allogeneic mixed chimera mice on post-BMT day 21. Results: When the same dose of T cells, 5-10×105 (Thy1.2+), fractionated from BM and spleen were administered into mixed chimeras, the BM-T group showed complete chimeric conversion, with self-limited graftversus-host disease (GVHD) and no pathological changes. However, the SP-T group showed persistent mixed chimerism, with pathological signs of GVHD in the liver and intestine. Conclusions: Our results suggest that DLI using BM-T cells, even in small numbers, is more potent at inducing chimeric conversion in mixed chimerism than DLI using SP-T cells. Further study is needed to determine whether cryopreserved BM-T cells are an effective cell source for DLI to consolidate donor-dominant chimerism in clinical practice without concerns about GVHD. (Korean J Intern Med 2009;24:252-262)

      • SCIESCOPUSKCI등재

        Biotransformation of major ginsenosides in ginsenoside model culture by lactic acid bacteria

        Park, Seong-Eun,Na, Chang-Su,Yoo, Seon-A,Seo, Seung-Ho,Son, Hong-Seok The Korean Society of Ginseng 2017 Journal of Ginseng Research Vol.41 No.1

        Background: Some differences have been reported in the biotransformation of ginsenosides, probably due to the types of materials used such as ginseng, enzymes, and microorganisms. Moreover, most microorganisms used for transforming ginsenosides do not meet food-grade standards. We investigated the statistical conversion rate of major ginsenosides in ginsenosides model culture during fermentation by lactic acid bacteria (LAB) to estimate possible pathways. Methods: Ginsenosides standard mix was used as a model culture to facilitate clear identification of the metabolic changes. Changes in eight ginsenosides (Rb1, Rb2, Rc, Rd, Re, Rf, Rg1, and Rg2) during fermentation with six strains of LAB were investigated. Results: In most cases, the residual ginsenoside level decreased by 5.9-36.8% compared with the initial ginsenoside level. Ginsenosides Rb1, Rb2, Rc, and Re continuously decreased during fermentation. By contrast, Rd was maintained or slightly increased after 1 d of fermentation. Rg1 and Rg2 reached their lowest values after 1-2 d of fermentation, and then began to increase gradually. The conversion of Rd, Rg1, and Rg2 into smaller deglycosylated forms was more rapid than that of Rd from Rb1, Rb2, and Rc, as well as that of Rg1 and Rg2 from Re during the first 2 d of fermentation with LAB. Conclusion: Ginsenosides Rb1, Rb2, Rc, and Re continuously decreased, whereas ginsenosides Rd, Rg1, and Rg2 increased after 1-2 d of fermentation. This study may provide new insights into the metabolism of ginsenosides and can clarify the metabolic changes in ginsenosides biotransformed by LAB.

      • 에타놀 정맥투여 고양이의 뇌압 변화에 관한 연구

        김세훈,장석종,박해근 충남대학교 의과대학 지역사회의학연구소 1987 충남의대잡지 Vol.14 No.2

        It has been well known that respiratory status has affected the intracranial pressure by' changing the brain blood flow, and also ethanol has affected the respiratory system by inhibiting the respiratory center and has affected cardiovascular system by inhibiting the cardiac performance and decreasing the total peripheral resistance. However, effect of ethanol on intracranial pressure has not been studied satisfactorily. Thus, following experiment was performed to examine the change of the intracranial pressure after ethanol administration in the cats. Ethanol was infused intravenously by lg ethanol per kg body weight for 15 minutes. Intracranial pressure was measured through balloon inserted between epidura and skull. Arterial blood pH, Po_2, Pco_2, ethanol concentration were measured. The results obtained are surnmerized as follows. Blood ethanol concentration increased by linear and peaked at 15 minutes(blood ethanol concentration was 409±31 mg%). Po_2, Pco_2. and pH at 15 minutes were 80. 3±5. lmmHg, 49.2±3.3mmHg and 7.24 =0.015 respectively. Blood pressure began to decrease and arterial pulse pressure began to increase at 10 minutes and more and more at 15 minutes respectively. Intracranial pressure began to increase at 10 minutes (blood ethanol concentration was 316±33 mg%) and peaked as 168.7±11.4% contrast to control at 15 minutes and also amplitude of intracranial pulse wave was increased. From the above results, it was suggested that intracranial presssure and amplitude of intracranial pulse wave were increased significantly by inhibiting respiratory center and thereby dilatating cerebral blood vessels with intravenous ethanol administration.

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