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      • Benzoate, m-Toluate, Phenol의 Pseudomonas putida에 의한 생분해

        김장규,김석형,김태환,이대광,김남기 成均館大學校 科學技術硏究所 1993 論文集 Vol.44 No.1

        It this study, basic data were obtained for the treatment of industrial waste water which includes aromatic compounds. Substrate concentrations used were 100ppm, 500ppm, and 1,000pprn and initial pH's were pH6, pH7, and pH8 in order to obtain the optimum conditions for treating benzoate, m-toluate, and phenol by Pseudomonas putida(KCTC 1644). Durations were 20hrs for 100ppm, 40hrs for 500ppm, and 60hrs for 1,000ppm before the static growth of Pseudomonas putida. 100% of 100ppm benzoate(0.31g cell/1) was biodegraded at pH6, pH7, and pH8 before 20hrs, 52.8% of 500ppm at pH8 in 40hrs, and 27.9% of 1,000ppm at pH8 in 60hrs. The best initial pH was pH8 for the biodegradation and the growth of Pseudomonas putida in benzoate medium. For m-toluate, the best initial pH was also pH8. At this pH, 40.6% of 10Dppm(0.31 cell/1), 21.9% of 500ppm, and 14.1% of 1,000ppm m-toluate were biodegraded respectively in limited time. But for phenol, the best initial pH was pH7. At this point, 9.8% of 100ppm(0.218 cell/1), 7.1% of 500ppm, and 4.7% of 1,000ppm phenol were biodegraded respectively. Therefore, the best carbon source in this experiment was benzoate. Pseudomonas putida was also able to biodegrade m-cresol, p-hydroxybenzoic acid, and benzaldehyde.

      • 내시경적 역행성 췌담관조영술중 췌선방 조영 후 발생한 중증 췌장염 1예

        장세중,기승석,김훈일,신혜영,박장원,송은훈,태재웅 朝鮮大學校 附設 醫學硏究所 2008 The Medical Journal of Chosun University Vol.33 No.2

        내시경적 역행성 담췌관조영술 후 발생한 급성췌장염의 발생인자로 여러 가지 인자들이 관여하지만 특히 담췌관조영술 시행 후 과도한 췌선방 조영화에 의한 중증의 췌장염 증례를 경험하였기에 보고하는 바이다 Endoscopic retrograde cholangiopancreatography (ERCP) has been considered as a valuable tool for the diagnosis and management of disease of the pancreas and biliary tree. Post-ERCP pancreatitis is the most frequent and clinically significant complication following ERCP. But a few complication associated with this procedure are unforeseeable. Specially, acinarization as a result of a careless cooperation between operator and assistant may be influenced in complications of ERCP. Severe post-ERCP pancreatitis is rare complication, and its prognosis will be poor. Therefore, careful process and good relationship between operator and assistant in ERCP may be prevented this complication, but is not clear. Neglect of acinarization may be resulted in more aggravation of pancreatitis. We have cared for one patient with severe post-ERCP pancreatitis with pseudocyst after water-soluble contrast media spreading into the acini (acinarization) via ERCP in resolving phase idiopathic pancreatitis.

      • 신경인성방광에서 요역동학적 고찰

        노준,전상준,정치영,이기봉,이길용,소영석,김철성,장대수 조선대학교 2001 The Medical Journal of Chosun University Vol.26 No.2

        Background and objectives : A disparity between clinical and urodynamic findings is commonly found and its application to the clinical management of neurogenic bladder is pratically as well embrassing as it reading. We investigated urodynamic study for the diagnosis and management of neurogenic bladder. Materials and methods : From July 1997 to June 2001, total of 83 patients of neurogenic bladder were evaluated by urodynamic study. Results : urodynamically, there were 20 cases(24%) showing detrusor hyperreflexia with detrusor external sphincter dyssynergia(DESD), 12 cases(15%) detrusor areflexia with low compliance. A disparity between the clinical and urodynamic assessment was noted in 26 cases(31%), clinically severe symptom with complication was particularily common in detrusor hyperreflexia with DESD, detrusor areflexia with low compliance and catheter indwelling patients. Conclusion : In neurogenic bladder, clinically symptom with complication was particularly common in detrusor hyperreflexia with DESD, detrusor areflexia with low compliance and catheter indwelling patients.

      • SCIESCOPUSKCI등재

        Relationship between Ectomycorrhizal Fruiting Bodies and Climatic and Environmental Factors in Naejangsan National Park

        Jang, Seog-Ki,Kim, Sang-Wook The Korean Society of Mycology 2015 Mycobiology Vol.43 No.2

        We collected and identified 5,721 ectomycorrhizal fruiting bodies (EcM) from Naejangsan National Park from June 2004 to 2013, belonging to 1 phylum, 1 class, 6 orders, 19 families, 40 genera, and 196 species. Of these, 2,249 individuals were identified as 89 species belonging to 11 genera in 7 families in the Agaricales; 1,511 were identified as 43 species belonging to 2 genera in 1 family in the Russulales; 1,132 were identified as 50 species belonging to 21 genera in 6 families in the Boletales; 793 were identified as 8 species belonging to 3 genera in 2 families in the Cantharellales; 29 were identified as 3 species belonging to 2 genera in 2 families in the Thelephorales; and 7 were identified as 3 species belonging to 1 genus in 1 family in the Gomphales. Thus, most of the EcMs identified belonged to the following 3 orders: Agaricales, Russulales, and Boletales. Russulaceae were most common (43 species), followed by Boletaceae (39 species), and Amanitaceae (27 species); most individuals were Russulaceae (1,511), followed by Hydnagiaceae (1,071) and Boletaceae (804). The monthly distribution showed that the greatest number of individuals and species of EcM, including the dominant ones, occur around July~September at an elevation of 200~299 m, diminishing markedly above 600 m. The greatest number of individuals and species, including the dominant ones, were collected in the period with average temperatures $25.0{\sim}26.9^{\circ}C$, lows of $21.0{\sim}22.9^{\circ}C$, and highs of $30.0{\sim}31.9^{\circ}C$, relative humidity > 76%, and rainfall > 400 mm.

      • SCIESCOPUSKCI등재

        Relationship between Climatic Factors and the Distribution of Higher Fungi in Byeonsanbando National Park, Korea

        ( Seog Ki Jang ),( Tae Chul Hur ) 한국균학회 2014 Mycobiology Vol.42 No.1

        From April 2009 to October 2011, we surveyed the higher fungi in the Byeonsanbando National Park, Korea. In total, we identified 2 kingdoms, 3 divisions, 7 classes, 22 orders, 63 families, 149 genera, and 313 species(including 6 undocumentedtaxa: 2 families, 2 genera, and 2 species). Seventeen 17 orders, 49 families, 128 genera, and 286 species belonged to Basidiomycota; 7 orders, 9 families, 15 genera, and 21 species were of Ascomycota; and 4 orders, 5 families, 6 genera, and 6species of primordial fungi. Among the Basidiomycota, Agaricomycetes were represented by 47 families, 126 genera, and 282species. The most common fungi were Boletaceae(33 species), followed by Russulaceae(30), Agaricaceae(27), and Amanitaceae(24). Various species of most of the higher fungi occurred during periods with average temperatures of 23~24.9oC, maximum temperatures of 28~31.9oC, minimum temperatures of 22~23.9oC, > 82% relative humidity, and>200 mm precipitation

      • KCI등재SCOPUS
      • KCI등재SCOPUS

        내장산국립공원의 고등균류 발생과 기후환경 요인과의 관계

        장석기 ( Seog Ki Jang ),김상욱 ( Sang Wook Kim ) 한국균학회 2012 韓國菌學會誌 Vol.40 No.1

        This study was conducted to investigate the diversity of higher fungi and relationship between higher fungi and climatic factors in Naejangsan National Park from April 2004 to October 2010. The obtained results from investigation were as follows. The higher fungi were classified into 48 families, 158 genera and 451 species in Basidiomycotina, 13 families, 26 genera and 39 species in Ascomycotina, and 4 families, 7 genera and 7 species in Myxomycetes, and most of them belonged to Hymenomycetidae in Basidiomycotina. Dominant species belonged to Ttricholomataceae (72 species), Russulaceae (39 species), Polyporaceae (41 species), Boletaceae (40 species), Cor-tinariaceae (35 species) and Amamtaceae (28 species). For the habitat environment, the ectomycorrhizal mushrooms were 38.8% (15 families, 36 genera and 193 species), litter decomposing and wood rotting fungi 39.4% (36 families, 107 genera and 196 species), grounding Fungi 19.9% (24 families, 51 genera and 99 species) and others 1.8% (3 families, 4 genera and 9 species). Monthly, most of higher fungi were found in July, August and September, and least found in November, In climatic conditions, most higher fungi were occurred in 23oC and above of mean temperature, 20oC and above of minimum temperature, and 29oC and above of maximum temperature, most of higher fungi were found in 73% and above of relative humidity and 200 mm and above of monthly precipitation. In case of ectomycorrhizal fungi like Amamtaceae, Boletaceae and Cortinariaceae, significance levels are not high in 32oC and above of maximum temperature which mostly affects species occurrence than other climatic factors of mean and minimum temperature and monthly precipitation.

      • KCI등재SCOPUS

        월출산 국립공원의 고등균류 분포

        장석기 ( Seog Ki Jang ) 한국균학회 2014 韓國菌學會誌 Vol.42 No.1

        The result of the survey on higher fungi in the Wolchulsan National Park from April 2009 to October 2011 is as follows. During the survey, total of 1 kingdoms 2 divisions 5 classes 18 orders 56 families 133 genera and 298 species were surveyed, Basidiomycota has 12 orders 47 families 120 genera 278 species, Ascomycota 6 orders 9 families 13 genera 20 species.As for Basidiomycota, Agaricomycetes has 46 families 118 genera 276 species. The most occurred fungi were Russulaceae with 37species, followed by Boletaceae, Amanitaceae, Agaricaceae and Polyporaceae. Various species of most higher fungi occurred during the period with average temperature of 26.0~27.9, max. 32.0~34.9, min. 24.0~25.9, and over 100mm of precipitation.

      • KCI등재SCOPUS

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