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Survey on Radiographic Works in Hospitals and Clinics (병(病)-의원(醫院)의 X선촬영업무(線撮影業務)에 관한 실태조사(實態調査))

  • Choi, Song-Hak;Jeon, Man-Jin;Park, Sung-Ock;Lim, Han-Young;Kim, Keon-Chung;Huh, Joon;Choi, Jong-Woon
    • Journal of radiological science and technology
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    • v.7 no.1
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    • pp.3-11
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    • 1984
  • The major findings of this investigation on radiographic works in 125 medical institutions around Seoul and Kyung-Ki area, from March 1983 to February 1984, are summarized as follows. 1. The number of references provided on radiographic techniques were 3 to 5 in general hospitals (52.1%), in hospitals (58.5%), and clinics (44.5%), and only the 10.4% of general hospitals had 11 or more. 2. The relatively high percentages of 75.0% of general hospitals and 68.3% of hospitals have established the standardized radiographic methods for regions examined, but most clinics (61.1%) have not. 3. As a log system for the radiographic request, the method of "routine study, or all the x-ray examinations are marked as 0 on a printed form" was most commonly used by general hospitals (62.5%) and hospitals (51.2%), and "the doctors employ their own methods" in most clinics (44.6%). 4. In the 85.4% of general hospitals, the 68.3% of hospitals and the 38.9% of clinics, the data such as diagnosis, clinic history, purpose of x-ray examination were recorded on a radiographic request at all times, or at least in part. 5. On a scale of hardness and easiness of order of doctors, the greatest response was "fairly easy to understand", and the 37.5% of general hospitals responded as "sometimes hard". 6. In determining the standards for radiographic factors, the general hospitals (62.5%) and hospitals (65.9%) adapted mostly "a departmental check list", and the clinics (61.1%) used mainly "a personal decision". 7. In using the immobilizing devices, angligner, and radiographic accessories, the Percentages were high in general hospitals and hospitals on the one hand, and were low in clinics on the other. 8. A consideration with regard to the devices for an improvement of examination of the same patients was totally ignored by the 50.0% of clinics, the 26.8% of hospitals and the 20.8% of general hospitals. 9. The causes of re-examination were due largely to patients (33.6%), and followed proportionately by incorrect exposure (22.8%), errors in positioning (22.0%), film processing faults (9.2%), conditions of x-ray equipments (8.8%), and quality of x-ray films (3.6%). 10. The conference on radiography was conducted regularly or irregularly by the 87.5% of general hospitals, the 56.1% of hospitals, and the 27.7% of clinics, and the meeting was proceeded only by radiologic technologists.

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Electron microscopic studies on Flavobacterium branchiophila in experimentally induced gill disease of rainbow trout (세균성(細菌性) 아가미병(病)에 실험적(實驗的)으로 감염(感染)된 무지개송어에 있어서 Flavobacterium branchiophila에 대한 전자현미경학적(電子顯微鏡學的) 연구(硏究))

  • Heo, Gang-joon
    • Korean Journal of Veterinary Research
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    • v.32 no.3
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    • pp.381-387
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    • 1992
  • Gill epithelia of normal rainbow trout fingerlings and abnormal ones suffering bacterial gill disease by experimental infection were examined by transmitting electron microscopy (TEM) and scanning electron microscopy (SEM). TEM observations revealed that Flavobacterium branchiophila consisted of slender rods measuring 0.5 by 5 to $8{\mu}m$, and they had which were long, thin, flexible filaments measuring approximately 4 nm by $1{\mu}m$, and packed together to organize into bundles. Morphological alterations of the diseased epithelia started at hypertrophy of the lamellar epithelium. F branchiophila attached to the gill surface of infected fish through pili with a regular distance, and did not invade into gill tissue. In SEM observations, normal surface ultrastructure of epithelial cell in the outermost layer were characterized by a typical labyrinth-like structure branching and anastomosing microridges on the cell surface. Hyperplastic lesions in experimentally infected gill were most serious at near the tips. Each filament exhibited a club-like, and fusion between the filaments was sometimes observed at their tips. On the surface of gill filaments, thread-like bacterial cells attached and were entangled. The bacterial cells almost covered the surface. After immersion in 5 % NaCl, the cell of F branchiophila, however, appeared to be indeterminate shape.

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Studies on the Varietal Resistance and Effects of Nutrients for Fungal Growth of Pepper Anthracnose Disease Caused by Colletotrichum dematium f. sp. capsicum (고추 탄달병(炭疸病)에 대한 품종(品種) 저항성(抵抗性) 및 병원균(病原菌) 생장(生長)에 미치는 영양원(營養源)의 효과(效果))

  • Chang, Sun-Hwa;Chung, Bong-Koo
    • The Korean Journal of Mycology
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    • v.13 no.4
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    • pp.227-233
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    • 1985
  • Studies on the varietal resistance and effects of nutrients for fungal growth were carried out in order to obtain basic materials for breeding resistant variety and control measures of the red pepper anthracnose disease caused by Colletotrichum dematium f. sp. capsicum. Four cultivars such as Kumchang No. 2, Bulamhouse, Pakistan, Hongilpum were resistant among twenty-one pepper cultivars, and five cultivars including Taiwan pepper were moderate. The remaining twelve cultivars including H-038 and Saegochu were susceptible. These susceptible cultivars were mostly belonged to sweet taste cultivars. Glucose was known the best source for fungal growth, and near 3 percent of carbon concentration was the best for mycelial growth of the fungus. Conidial sporulation was rather decreased by adding high concentrations of C-source, whereas fungal dry weight was a positive tendency in proportion to increasing carbon concentrations. N-sources and vitamins were not remarkable as that for carbon, and rather a decreasing trend for mycelial growth by adding N-source. Especially, the lowest of mycelial growth was in the case of Czapek-Dox plus ammonium sulfate. The medium plus vitamins either niacin or thiamine was slightly increased to mycelial growth.

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Some Factors Affecting Growth of Diehlomyces microsporus and Chemical Control of Truffle Disease in Cultivation of Agaricus bisporus (양송이 괴균병균(塊菌病菌)의 방제(防除) 및 생장요인(生長要因)에 관한 연구(硏究))

  • Kim, Gwang-Po;Cha, Dong-Yeul;Chung, Hoo-Sup
    • The Korean Journal of Mycology
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    • v.9 no.1
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    • pp.31-37
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    • 1981
  • Mycelial growth and fruit body formation of Diehlomyces microsporus were best on mushroom spawn extract medium and rice bran extract medium, respectively. L-asparagine, fructose and glucose were good nutrient sources for mycelial growth. Optimum temperature for mycelial growth ranged at $25{\sim}28^{\circ}C$. Maximum mycelial growth occurred at pH 5.5 while optimum pH for ascospore germination was 6.0. Mycelial mats of D. microsporus did not survive at $60^{\circ}C$ for 60 minutes while ascospores at $80^{\circ}C$ for 120 minutes. Damages of fruit body of Agaricus bisporus caused by D. microsporus were maximum when the fruit bodies were infected at spawning and casing on the compost. The truffle disease could be controlled by basamid with $100{\sim}150 ppm$ treating on the compost after filling.

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Some Biological Studies on Mycogone perniciosa Magn. Causing Wet Bubble in ultivated Mushroom, Agaricus bisporus (Lange) Sing (I) Antagonistic Relationships between M. perniciosa and Microfloral Organisms in the Casing Soil (II) lnteractions between M. perniciosa and A. bisporus (양송이[Agaricus bisporus(Lange)Sing.]에 마이코곤병(病)을 유발(誘發)하는 Mycogone perniciosa Magn.에 관한 생물학적(生物學的) 연구(硏究) (I) M. perniciosa와 양송이 복토중(覆土中) 미생물(微生物)사이의 길항적(拮抗的) 관계(關係) (II) M. perniciosa와 A. bisporus사이의 상호관계(相互關係))

  • Han, Young-Sik;Shin, Kwan-Chul;Kim, Dong-Soo
    • The Korean Journal of Mycology
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    • v.2 no.1
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    • pp.7-14
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    • 1974
  • These experiments were conducted to learn the antibiosis of microfloral organisms in the casing soil to Mycogone perniciosa, and interactions between M. perniciosa and Agaricus bisporus. The results obtained were as follows: 1. In vitro tests, the development of M. perniciosa was suppressed from the unidentified microfloral organisms in the casing soil. All the infected sporophores of A. bisporus occurred within an area applied with spore suspension of M. perniciosa as spot treatment and no infected ones in the area around the spot treated under cropping conditions. 2. In vitro tests, although the antagonistic relationship between M. perniciosa and A. bisporus was somewhat different in varying the kind of media, A. bisporus ultimately overgrew the colony of M. perniciosa. When spore inoculation of M. perniciosa was applied on the surface of grain spawn of A. bisporus and the mid layer of casing soil under cropping conditions, no infected sporophores were produced, whereas the infected sporophores were only produced on casing soil inoculated on the surface of casing soil with spore suspension.

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Notes on Powdery mildew of Ailanthus altissima caused by Phyllactinia corylea (Pers.) Karst (Phyllactinia corylea (Pers.) Karst에 의(依)한 가중나무 흰가루병(病))

  • Kim, Ki Chung
    • Journal of Korean Society of Forest Science
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    • v.4 no.1
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    • pp.9-13
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    • 1965
  • Powdery mildew of Ailanthus altissima Sw. was first reported by J.S. Park in Korea, 1961. According to his report, this disease was found on the leaves of this tree species collected in Jeongup, 1957, and in Taejon, 1958. He described morphological characters of this pathogen and described also that the causal fungus may be closely related with Phyllactinia corylea. This disease which appears dusty grayish yellow molds under surface of leaves was collected again by the author in Kwangju, 1962. The present works were undertaken to make clear the species of causal fungus by means of the morphology and pathogenecity. According to the following results, the pathogen was identified as Phyllactinia corylea (Pers.) Karst. Morphological characters of the fungus Mycelia persistent or more or less evanescent; matured conidia solitary, aseptate, short-clavate to clavate to clavate, hyaline or yellowish, granulate, $44.6-89.2{\times}9.3-24.2{\mu}$, average $64.8-17.8{\mu}$ in size; conidiophores elongate clavate or columnar, hyaline, 2-3 septate, $122.8-346.0{\times}3.7-7.4{\mu}$, average $208.8{\times}6.3{\mu}$; per-thecia usually scattered, rarely gregarious, dark brown to black, depressed globose to globose, $223.2-297.6{\mu}$, average $267.8{\mu}$ in diameter; appendages 12-19, usually 15 in number, hyaline, straight, needle-shaped, sharply pointed at the apex and bulbous at the base, aseptate, $93.0-310.0{\times}5.0-8.0{\mu}$, average $173.3{\times}6.4{\mu}$ in size; asci elongate ellipsoidal to broadly clavate, hyaline, more or less stalked, 8-13 in number, $68.5-76.6{\times}26.1-34.2{\mu}$, average $71.4{\times}29.0{\mu}$ in size; ascospores 2-4, usually 2 in number, hyaline or yellowish, aseptate, ellipsoidal or ovate, $27.7-34.2{\times}14.7-17.9{\mu}$, average $25.5{\times}13.9{\mu}$ in size. Pathogenicity of the fungi In order to make clear the species of the fungus and the pathogenic differences of Phyllactinia fungi which are collected around the contaminated area and seemed to be related to Ailanthus powdery mildew, some inoculation experiments were performed. 1. Cross inoculation to several tree species with their pathogen: Tested materials; Phyllactinia in question on Ailanthus altissima Sw. Ph. fraxini (DC.) Homma. On Alnus firma S. et Z. Ph. moricola (P. Henn.) Homma on morus alba L. According to the results of the experiments, the reactions were all negative with the exception of the original hosts of tested fungi. 2. Inoculation to Picrasma ailanthoides Planch. : The appearance of symptom on the leaves of P. ailanthoides is not distinct, but more or less mycelial growth. Therefore, under the optimal condition in glass chamber, it may be possible to success artificially.

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Anthracnose of Pepper seedling caused by Colletotrichum coccodes (Wallr.) Hughes (Colletotrichum coccodes(Wallr.) Hughes에 의(依)한 고추 유묘탄저병(幼苗炭疽病))

  • Oh, In-Seok;In, Moo-Seong;Woo, In-Shik;Lee, Sung-Koo;Yu, Seung-Hun
    • The Korean Journal of Mycology
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    • v.16 no.3
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    • pp.151-156
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    • 1988
  • A leaf anthracnose disease of pepper(Capsicum annuum L.) seedling caused by Colletotrichum coccodes was found in fields of Chungnam District for the first time in 1988. Initial symptom of the disease was spotting on leaves and stems of the seedlings. The spots became sunken and gradually increased in size and coalesced to form bigger irregular spots and blights on the leaves. In severely affected fields, many pepper seedlings were defoliated and lodged. Field survey revealed that the infection rate of anthracnose ranged form 15.3% to 92.3%. Conidia from lesions on seedlings were hyaline, aseptate, straight, cylindrical with obtuse ends, $115-25(av.\;19.\;5){\times}2.5-4.8{\mu}m(av.\;3.3{\mu}m)$ and setaes were straightly extended above the acervuli, $41.3-136.3\;{\um}m(av.\;85.0{\mu}m)$ long. The fungus produced abundant sclerotia on PDA when it was cultured under darkness. In the inoculation experiments, the fungus was found to infect pepper seedlings and fruits, and fruits of tomato and egg plant.

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A Study on Transmission and Transmutation of Disease in "Hwangjenaegyeong(黃帝內經)" ("황제내경(黃帝內經)"에 나타난 병(病)의 전변유형(傳變類型)에 관한 고찰(考察))

  • Kim, Jong-Hyun;Jeong, Chang-Hyun;Baik, You-Sang
    • Journal of Korean Medical classics
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    • v.23 no.2
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    • pp.157-189
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    • 2010
  • Many chapters of the Hwangjenaegyeong[HN] explain the process of transmission and transmutation of disease. The transmission and transmutation process in the HN can be categorized into one between the viscera and bowels, and another of the external pathogenic gi itself. The process between the viscera and bowels indicates the transport of the pathologic burden between each viscera and bowel. This again is categorized into three types. Interpromoting, intercontrolling and that by Saeng-yang(生陽), Sa-eum(死陰). Next, the transport of the pathogenic gi can be categorized into one moving inwards from the exterior according to personal traits, and that according to the three Eum and three Yang. Although there are numerous types of transmission and transmutation, there are two main criteria in understanding the process. First, whether the process is in accordance with the physiological or natural flow of the body. Interpromoting and three Eum three Yang processes are such examples. To follow the physiological flow of the body means to correspond to either the Heaven and Earth or the original physiology of the human body. Therefore, the disease progresses according to a certain date or season. This indicates a partial malfunction in the circulation of the vital energy, which is relatively easy to recover. In contrast, there are processes that go against the physiological flow, for example, intercontrolling transmission and transmutation. This process focuses on the movement of the pathogenic gi rather than the vital gi. The disease progresses regardless of the flow of the vital energy, and sequential functional damage occurs accordingly. Consequently, as the transmission and transmutation continue, formerly passed organs are left damaged, and the whole process is headed towards death. The second criteria for understanding the process is whether it is cyclic or not. To have a cyclic pattern means that the occurrence of a disease and the time of death is not fixed. Transmission and transmutation processes that have a cyclic pattern mostly follow the physiological flow of the body. As a result, they rarely end in deaths, and the process is centered on vital energy. On the other hand, those with acyclic patterns have a fixed occurrence and death point in the course of the disease. They are mostly unnatural processes, found in fatal acute diseases or consumption diseases.

Isolation, Identification, and Evaluation of Biocontrol Potentials of Rhizosphere Antagonists to Rhizoctonia solani (원예작물(園藝作物) 모잘록병(Rhizoctonia solani $K\"{u}hn$)의 발생(發生)에 관여하는 근권길항균(根圈拮抗菌)의 분리(分離), 동정(同定) 및 생물적(生物的) 방제(防除) 검토(檢討))

  • Kim, Hee-Kyu;Roh, Myung-Ju
    • Korean journal of applied entomology
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    • v.26 no.2 s.71
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    • pp.89-97
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    • 1987
  • Antagonistic microorganisms from rhizosphere soil were isolated, identified, and applied successfully as the biocontrol agents of damping-off caused by Rhizoctonia spp. Rhizosphere antagonists isolated from rhizosphere soil were identified as Trichoderma viride, T. harzianum, T. hamatum, T. polysporum, Gliocladium sp., Pseudomonas fluorescence, P. stutzeri, P. cepacia, Enterobacter sp., Serratia sp. and Erwinia herbicola. Of these, the most promising ones in vitro were T. virdie, T. harzianum, Gliocladium sp., Serratia sp., P. stutzeri, and P. cepacia. These above six antagonists were efficient in reducing disease incidence to $40{\sim}70%$ when the reselected rhizosphere antagonists preparations were applied to the soil at $10^6$ propagules per gram. Among six antagonists, T. viride was the most promising biocontrol agents against R. solani isolates in soil. The suppressive effect was more evident in steam-sterilized soil than in non-sterilized field soil.

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Classification of Fusarium moniliforme Isolates into Four Strains Based on Mycological Characteristics (벼키다리 병원균(病原菌)인 Fusarium moniliforme의 균주특성(菌株特性)에 의(依)한 Strain 분류(分類))

  • Sung, Jae-Mo;Yang, Sung-Suk;Lee, Eun-Jong;Park, Jong-Seong
    • The Korean Journal of Mycology
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    • v.11 no.4
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    • pp.169-175
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    • 1983
  • For the classification of 531 isolates of Fusarium moniliforme from infected rice plants, five criteria were employed for clarifying the mycological difference from I to IV based on host symptoms, conidial formation, septate of macroconidia, color of mycelium on the culture, and fungicide response. Four strains I, II, III, and IV were detected and Strain IV was the most prevalent one. Based on mycological characteristics, macroconidia with 6 or 7 septate were mostly produced by Strains I and II. Four septate macroconidia were mostly formed by Strain III while Strain IV mostly formed 3 septate macroconidia. Strain I was reddish purple (5RP 5/4) on both the bottom and the surface of the media. Strain II produced reddish purple(5RP 3/2) on both the bottom and the surface of the media. Strain I produced mostly macroconidia in pionnotes on the media surface while Strain II produced mostly microconidia in pionnotes on the media surface. Both of Strain III and IV produced mostly macroconidia in sporodochia on the surface of the mycelium. Strain IV was less reduction of germination and caused abnormal elongation of all parts of the plants, but did not kill the plants in nursery boxes. Strain III killed fewer plants than Strain IV. As above results, isolates of F. moniliforme were classified into four strains I, II, III, and IV, on the basis of five criteria.

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