• Title/Summary/Keyword: 무균

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Feeding of Bacteria by Copepod Tigriopus japonicus (Tigripus japonicus의 세균 섭이)

  • Jung, Min-Min;Rho, Sum;Kim, Pil-Yun
    • Journal of Aquaculture
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    • v.11 no.1
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    • pp.113-118
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    • 1998
  • This study was carried out to investigate feeding of bacteria by Tigripus japonicus (Copepoda : Harpacticoida) under axenic culture. The ovigerous females and nauplii were grown with feed of aquatic bacteria. Growth of RT bacteria strain was suppressed by feeding of co-existing T. japonicus. T. japonicus of non-axenic culture was observed with oil bead in the egg sac. On the other hand, early nhauplius stage did not develop to the next stage without stage took bacteria as food. And the adult of T. japonicus may utilize the baxteria as nutrient source for egg development.

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Epidemics of Aseptic Meningitis in Kyoungsangnamdo from March to October, 1997 (1997년 경상남도 중부지방에서 유행한 무균성 뇌막염의 임상적 고찰)

  • Park, Sun Young;Kwon, Oh Su;Kim, Won Youb;Jung, Won Jo;Ma, Sang Hyouk;Kim, Sang Ki;Nam, Sung Jin;Jo, Sung Rae;Gu, Bon Chun;Lee, Kyu Man
    • Pediatric Infection and Vaccine
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    • v.5 no.1
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    • pp.104-114
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    • 1998
  • Purpose : Enteroviruses are the most common cause of aseptic meningitis. The epidemics of aseptic meningitis in 1993 and 1996 were mostly caused by echovirus type 9. Identification of the causative virus of aseptic meningitis in epidemics, is very important not only for diagnosis but also for epidemiologic purpose. The purpose of this study was to identify the causative virus and investigate the relationship between aseptic meningitis, prevailed in Masan and surrounding areas in Kyoungsangnamdo in 1997, and its clinical manifestations. Methods : One hundred twenty eight cerebrospinal fluid(CSF) and 239 stool specimens were obtained from 239 patients(213 children and 26 adult patients) with aseptic meningitis were admitted to Masan Fatima Hospitals from March to October 1997. Viral isolation and serotype identification was performed by cell culture and immunofluorescent test. Enteroviruses not typed by immunofluorescent test was confirmed by reverse transcription-polymerase chain reaction(RT-PCR). Results : 1) The peak incidence was noted in June. 2) The age of 239 patients(pediatrics-213 cases, internal medicine-26 cases) that were diagnosed ranged from neonate to 35 years, the age of the patients of pediatrics ranged from neonate to 15years(mean 4.9 years), the age of the patients of internal medicine (above 16 years) ranged from 16 years to 35 years(mean 24.2 years). 3) Fifty-three(41.4%) of 128 CSF specimens were positive for enteroviruses, and 163(68.2%) of 239 stool specimens were positive for enteroviruses respectively. 4) Serotypes of 53 enteroviruses isolated from CSF were 16(30.2%) of echovirus type 30, 6(11.3%) of echovirus type 6, 1 of echovirus type 4, 4 of untyped echovirus, 1 of coxsackievirus type B5, and 24 isolates of untyped enteroviruses. Of 163 enterovirus isolated from stool were 72(44.2%) of echovirus type 30, 21(12.9%) of echovirus type 6, 1 of echovirus type 4, 17(10.4%) of undetermined subtyped echovirus, 1 of coxsackievirus type B5, 2 of A24, 3 of undetermined subtyped coxsackievirus type B, and 46 isolates of untyped enterovirus. Conclusion : There were epidemics of aseptic meningitis in the central areas of Kyoungsangnamdo from March to October 1997. The main causative organism was thought to be the echovirus type 30, and echovirus type 4, 6, coxsackievirus B5 and A24 were also thought to contribute to the epidemics.

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Quality Changes of Aseptic Packaged Cooked Rice during Storage (무균포장밥의 저장중 품질 변화에 관한 연구)

  • Kum, Jun-Seok;Lee, Chang-Ho;Lee, Sang-Hyo;Lee, Hyun-Yu
    • Korean Journal of Food Science and Technology
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    • v.27 no.4
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    • pp.449-457
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    • 1995
  • Aseptic packaged cooked rice without oxygen absorber and EVOH material was not suitable for good quality during long storage at room temperature. Quality change of aseptic packaged cooked rice with OPP/EVOH/EPL(P-1), PET/EVOH/EPL(P-2) and OPP/EVOH/LLDPE(P-3) for lid material and FX and TSQ for oxygen absorber was observed during storage(60 days) at $20^{\circ}C,\;30^{\circ}C\;and\;40^{\circ}C$. To evaluate quality change of aseptic packaged cooked rice, water content, color, pH, acidity, hardness, and total plate count were measured periodically. The results showed that moisture content was decreased as storage time increased while storage temperature showed no significant effect. P-2 and FX combination had the lowest evaporation of water. L value was decreased as storage time increased while a value increased in all treatment. P-2 and FX combination had the best result for color value. Titratable acidity and pH of P-3 increased up to 20, 5.5, respectively at the end of storage while the other treatment showed no significant effect. Hardness of aseptic packaging of cooked rice was decreased as temperature of storage increased while lid materials and oxygen absorber types showed no significant effect. Result of total plate count showed that there was no detection for $20^{\circ}C\;and\;30^{\circ}C$ storage temp. while more than $1{\times}10^6\;CFU/g\;for\;40^{\circ}C$ storage temp. at the end of storage. In conclusion, aseptic packaged cooked rice could be stored and distributed for 6 month at room temp. and effect of lid materials on quality change of aseptic packaged cooked rice was more significant than oxygen absorber.

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A Clinical Study of Aseptic Meningitis from 1996 to 1998 (입원 치료한 무균성 뇌막염 환아의 임상적 검토 : 1996년~1998년)

  • Lee, Yong Hee;Kim, Ae Suk
    • Pediatric Infection and Vaccine
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    • v.8 no.2
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    • pp.168-174
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    • 2001
  • Purpose : There was an epidemic of aseptic meningitis in Korea for 3 years from 1996 to 1998. In this study, we reported the time of outbreak, age and sex distribution, clinical manifestations, laboratory data, and complications of the children with aseptic meningitis. Methods : We reviewed clinical records of 192 aseptic meningitis patients who had been admitted to Pohang St. Mary's Hospital from 1996 to 1998. Results : Aseptic meningitis occurred most frequently in July and August. The ratio of male to female was 1.91 : 1, and the most prevalent age was 1 to 5 years of age. The main symptoms were fever, vomiting, headache in this order of frequency. Peripheral blood showed leukocytosis(WBC > $10,000/mm^3$) in 44.3% of the cases. CSF examination showed WBC count were less than $500/mm^3$ in 88.0%, protein levels less than 40 mg/dL in 61.5%, and glucose levels more than 40 mg/dL in 94.3% of the cases. We did not isolate the causative viral agents. Conclusion : Aseptic meningitis was prevalent in children in the Pohang area from 1996 to 1998. Clinical manifestations and CSF profiles of aseptic meningitis patients showed no great difference compared to other reported.

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Global analysis of Aseptic Meningitis in Pusan Area in 1997 (1997년에 부산지역에서 유행한 무균성 뇌막염)

  • Park, Young Hee;Kim, Won Jung;Son, Byeong Hee;Kim, Sung Won
    • Pediatric Infection and Vaccine
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    • v.5 no.1
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    • pp.115-120
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    • 1998
  • Purpose : In the summer 1997, there was an outbreak of aseptic meningitis in Pusan area. We report the clinical features and viral studies of aseptic meningitis in Pusan area in 1997. Methods : 265 children with aseptic meningitis who had been admitted to Department of Pediatrics, St. Benedict Hospital between April to October 1997 were included. Results : 1) Male-to-female ratio was 1.7:1. 2) Mean age was $6.2{\pm}3.29$ years. 3) It occured mostly April to October. 4) Clinical manifestations were fever 99.6%, vomiting 99.2%, headache 99.2%, rash 6.0%. 5) The duration of fever was $3.34{\pm}2.21$ days. 6) The duration of admission was $5.3{\pm}3.21$ days. 7) WBC count in peripheral blood were $11,200{\pm}4,163/mm^3$. 8) WBC count in CSF were $156.1{\pm}394.7/mm^3$. 9) Causative agents were coxsackievirus B5, echovius 6, 30, type nonspecific enterovirus. Conclusion : Aseptic meningitis in 1997 compared with that in 1996 had clinical feature of increase in age, decrease in duration of fever and incidende of rash. It occurred mostly April to October in 1997 and May to October in 1996. Causative agents were coxackievirus B5, echovirus 6, 30, type nonespecific enterovirus in 1997, and echovirus 9, coxsackievirus A24, type nonespecific enterovirus in 1996.

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Effects of Stress-Induced Sterile Inflammation on the Development of Depression (스트레스로 유발된 무균 염증이 우울증 발생에 미치는 영향)

  • Mi Kyoung Seo;Jung Goo Lee;Dae-Hyun Seog;Se Young Pyo;Won Hee Lee;Sung Woo Park
    • Journal of Life Science
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    • v.33 no.12
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    • pp.1062-1073
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    • 2023
  • Although depression is a common psychiatric disorder that negatively affects individuals and societies, its exact pathogenesis is not well understood. Stress is a major risk factor for depression and is known to increase susceptibility by triggering inflammation. Indeed, many preclinical and clinical studies have suggested a strong link between depression and inflammation. Depression is associated with increased levels of pro-inflammatory cytokines, such as interleukin (IL-)1β, IL-6, IL-12, tumor necrosis factor-α, and interferon-γ, and decreased levels of the anti-inflammatory IL-4, IL-10, and transforming growth factor-β. Administering pro-inflammatory cytokines causes depression-like behaviors in rodents. Conversely, administering anti-inflammatory drugs appears to ameliorate depressive symptoms. Although the importance of inflammation as a mediator of depression has been demonstrated, the mechanisms by which inflammation is activated in depression remain unclear. To address this issue, recent studies have focused on the importance of stress-induced sterile inflammation. Sterile inflammation refers to the activation of inflammatory processes due to physical and/or psychological stress in the absence of pathogens. Stress promotes the release of endogenous factors known as damage-associated molecular patterns (DAMPs), thereby triggering sterile inflammation. In turn, DAMPs are recognized by pattern recognition receptors, leading to the production of pro-inflammatory cytokines. Here, we review the role of DAMPs in depression based on preclinical and clinical evidence on the dysregulation of sterile inflammation.