• 제목/요약/키워드: Tong Body

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위증에 대한 동서의학적(東西醫學的) 고찰(考察) (The Literatual Study on the Wea symptom in the View of Western and Oriental Medicine)

  • 김용성;김철중
    • 혜화의학회지
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    • 제8권2호
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    • pp.211-243
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    • 2000
  • This study was performed to investigate the cause, symptom, treatment, medicine of Wei symptom through the literature of oriental and western medicine. The results obtained were as follows: 1. Wei symptom is the symptom that reveals muscle relaxation without contraction and muscle relaxation occures in the lower limb or upper limb, in severe case, leads to death. 2. Since the pathology and etiology of Wei symptom was first described as "pe-yeol-yeop-cho"(肺熱葉焦) in Hung Ti Nei Ching(黃帝內經), for generations most doctors had have accepted it. but after Dan Ge(丹溪), it had been classified into seven causes, damp-heat(濕熱), phlegm-damp(濕痰), deficiency of qi(氣虛), deficiency of blood(血虛), deficiency of yin(陰處), stagnant blood(死血), stagnant food(食積). Chang Gyeng Ag(張景岳) added the cause of deficiency of source qi(元氣). 3. The concept of "To treat Yangming, most of all"(獨治陽明) was emphasized in the treatment of Wei symptom and contains nourishment of middle warmer energy(補益中氣), clearance of yangming-damp-heat(淸化陽明濕熱). 4. Since Nei-ching era(內經時代), Wei and Bi symptom(痺症) is differenciated according to the existence of pain. After Ming era(明代) appeared theory of co-existence of Wei symptom and pain or numbness but they were accepted as a sign of Wei symptom caused by the pathological factor phelgm(痰), damp(濕), stagnancy(瘀). 5. In the western medical point of view, Wei symptom is like paraplegia, or tetraplegia. and according to the causative disease, it is accompanied by dysesthesia, paresthsia, pain. thus it is more recommended to use hwal-hyel-hwa-ae(活血化瘀) method considering damp-heat(濕熱), qi deficiency of spleen and stornach(脾胃氣虛) as pathological basis than to simply differenciate Wei and Bi symptom according to the existence of pain. 6. The cause of Gullian-Barre syndrome(GBS) is consist of two factors, internal and external. Internal factors include asthenia of spleen and stomach, and of liver and kidney. External factors include summur-damp(暑濕), damp-heat(濕熱), cold-damp(寒濕) and on the basis of "classification and treatment according to the symptom of Zang-Fu"(臟腑辨證論治), the cause of GBS is classified into injury of body fluid by lung heat(肺熱傷津), infiltration of damp-heat(濕熱浸淫), asthenia of spleen and kidney(脾腎兩虛), asthenia of spleen and stomach(脾胃虛弱), asthenia of liver and kidney (肝腎兩虛). 7. The cause of GBS is divided by according to the disease developing stage: Early stage include dryness-heat(燥熱), damp(濕邪), phlegm(痰濁), stagnant blood(瘀血), and major treatment is reducing of excess(瀉實). Late stage include deficiency of essence(精虛), deficiency with excess(虛中挾實), and essencial deficiency of liver and kidney(肝腎精不足) is major point of treatment. 8. Following is the herbal medicine of GBS according to the stage. In case of summur-damp(暑濕), chung-seu-iki-tang(淸暑益氣湯) is used which helps cooling and drainage of summer-damp(淸利暑濕), reinforcement of qi and passage of collateral channels(補氣通絡). In case of damp-heat, used kun-bo-hwan(健步丸), In case of cool-damp(寒濕), used 'Mahwang-buja-sesin-tang with sam-chul-tang'(麻黃附子細辛湯合蓼朮湯). In case of asthenia of spleen and kidney, used 'Sam-lyeng-baik-chul san'(蔘笭白朮散), In case of asthenia of liver and kidney, used 'Hojam-hwan'(虎潛丸). 9. Following is the herbal medicine of GBS according to the "classification and treatment according to the symptom of Zang-Fu"(臟腑辨證論治). In the case of injury of body fluid by lung heat(肺熱傷津), 'Chung-jo-gu-pae-tang'(淸燥救肺湯) is used. In case of 'infiltration of damp-heat'(濕熱浸淫), us-ed 'Yi-myo-hwan'(二妙丸), In case of 'infiltration of cool-damp'(寒濕浸淫), us-ed 'Yui-lyung-tang', In case of asthenia of spleen, used 'Sam-lyung-bak-chul-san'. In case of yin-deficiency of liver and kidney(肝腎陰虛), used 'Ji-bak-ji-hwang-hwan'(知柏地黃丸), or 'Ho-jam-hwan'(虎潛丸). 10. Cervical spondylosis with myelopathy is occuered by compression or ischemia of spinal cord. 11. The cause of cervical spondylosis with myelopathy consist of 'flow disturbance of the channel points of tai-yang'(太陽經兪不利), 'stagnancy of cool-damp'(寒濕凝聚), 'congestion of phlegm-damp stagnant substances'(痰濕膠阻), 'impairment of liver and kidney'(肝腎虛損). 12. In treatment of cervical spondylosis with myelopathy, are used 'Ge-ji-ga-gal-geun-tang-gagam'(桂枝加葛根湯加減), 'So-hwal-lack-dan-hap-do-hong-eum-gagam(小活絡丹合桃紅飮加減), 'Sin-tong-chuck-ue-tang-gagam(身痛逐瘀湯加減), 'Do-dam-tang-hap-sa-mul-tang-gagam'(導痰湯合四物湯加減), 'Ik-sin-yang-hyel-guen-bo-tang'(益腎養血健步湯加減), 'Nok-gakyo-hwan-gagam'(鹿角膠丸加減). 13. The cause of muscle dystropy is related with 'the impairement of vital qi'(元氣損傷), and 'impairement of five Zang organ'(五臟敗傷). Symptoms and signs are classified into asthenia of spleen and stomach, deficiency with excess, 'deficiency of liver and kidney'(肝腎不足) infiltration of damp-heat, 'deficiency of qi and blood'(氣血兩虛), 'yang deficiency of spleen and kidney'(脾腎陽虛). 14. 'Bo-jung-ik-gi-tang'(補中益氣湯), 'Gum-gang-hwan'(金剛丸), 'Yi-gong-san-hap-sam-myo-hwan'(異功散合三妙丸), 'Ja-hyel-yang-gun-tang'(滋血養筋湯), 'Ho-jam-hwan'(虎潛丸) are used for muscle dystropy. 15. The causes of myasthenia gravis are classified into 'insufficiency of middle warmer energy'(中氣不足), 'deficiency of qi and yin of spleen and kidney'(脾腎兩處), 'asthenia of qi of spleen'(脾氣虛弱), 'deficiency of qi and blood'(氣血兩虛), 'yang deficiency of spleen and kidney'(脾腎陽虛). 16. 'Bo-jung-ik-gi-tang-gagam'(補中益氣湯加減), 'Sa-gun-ja-tang-hap-gi-guk-yang-hyel-tang'(四君子湯合杞菊地黃湯), 'Sa-gun-ja-tang-hap-u-gyi-eum-gagam'(四君子湯合右歸飮加減), 'Pal-jin-tang'(八珍湯), 'U-gyi-eum'(右歸飮) are used for myasthenia gravis.

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화엄사 대웅전 목조비로자나삼신 불좌상에 대한 고찰 (A Study on the Wooden Seated Vairocana Tri-kaya Buddha Images in the Daeungjeon Hall of Hwaeomsa Temple)

  • 최성은
    • 미술자료
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    • 제100권
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    • pp.140-170
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    • 2021
  • 정유재란을 겪으며 전소(全燒)된 화엄사는 벽암각성(碧巖覺性)(1575~1660)의 주도 아래 재건이 이루어졌다. 대웅전에는 목조비로자나삼신불상이 봉안되었는데, 1634년에 완성하여 1635년에 점안·봉안되었다. 2015년에 석가불상 복장 <시주질>과 노사나불상 대좌 내부 판재(板材)에 적힌 <묵서명>이 조사되고, 2020년에 노사나불상의 복장 <시주질>이 조사되어 비로자나삼신불상의 조성에 참여한 청헌, 응원, 인균을 포함한 열여덟 명의 조각승들이 밝혀졌고 선조(宣祖)의 아들 의창군 이광(李珖)을 비롯한 왕실과 종친, 천명이 넘는 승속(僧俗)의 시주자들이 동참한 대규모 불사였음이 알려졌다. 비로자나삼신불상의 본존은 높이 2.76m의 장육불상으로 당시 불교조각에서 널리 유행하던 장신형의 비례감이 아닌 두부가 크고 어깨가 좁은 고식(古式)의 단구형(短軀形) 비례감을 보인다. 주먹 쥔 왼손을 오른손으로 감싼 비로자나불의 지권인(智拳印)과 보관을 쓴 보살형의 노사나불상은 북송대에 고려로 전해진 전통적인 도상(圖像)이며, 석가불상이 결한 독특한 항마촉지인의 형식은 명(明)에서 전래된 경(經) 변상도에 나타난 도상이 불교조각에 반영된 것으로 생각된다. 화엄사 비로자나삼신불상에서 나타나는 신구(新舊) 양식과 도상의 혼재는 화엄사 불사(佛事)를 맡았던 조각승들이 고려시대 불교조각의 귀족적 전통을 계승한 조선초기 불교미술에서 화엄사 삼신불상의 범본을 구하려했던데서 비롯된 것으로 이해된다. 또한 전란으로 소실된 고려시대 비로자나삼신불상의 원(原) 모습에 가깝게 복원되기를 바라는 화엄사 산중대덕(山中大德)들의 기대가 불상조성에 영향을 주었을 것으로 생각된다. 이와 같은 관점에서 화엄사 삼신불상의 노사나불상은 고려시대 비로자나삼신불상과 도상적으로 연결될 수 있으며 고려시대의 화엄사에 이와 유사한 도상과 양식의 비로자나삼신불상이 봉안되어 있었을 가능성을 상정해 볼 수 있다. 만우 휘헌의 『화엄사지』(1924)에 따르면, 화엄사는 고려 왕실의 축성의례를 거행해온 사찰로 여겨지는데, 이 전통이 조선후기까지 이어져 화엄사 재건 불사에서 새로 조성된 대웅전 비로자나삼신불상 역시 조선왕실의 축성의례를 위한 예배대상이었을 가능성이 크다. 따라서 화엄사 재건에 왕실과 종친이 시주자로 참여한 점도 이와 관련이 있을 것으로 생각된다.

거제${\cdot}$한산만 양식굴 Crassostrea gigas의 에너지 전환 효율 (EFFICIENCY OF ENERGY TRANSFER BY A POPULATION OF THE FARMED PACIFIC OYSTER, CRASSOSTREA GIGAS IN GEOJE-HANSAN BAY)

  • 김용술
    • 한국수산과학회지
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    • 제13권4호
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    • pp.179-183
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    • 1980
  • 거제${\cdot}$한산만 양식굴 Crassostrea gigas의 에너지 전환 효율을 추정하기 위하여 한 양성 기간인 1979년 7월부터 1980년 4일까지 성장도, 생식 물질 방출량, 패자 형성량, 호흡량, 집단 감모율에 대한 현지 생체 실측 조사를 행하였으며, 연체부의 물질 조성 및 에너지 함량, 패각의 유기 물질 및 생식 물질의 에너지 함량을 각각 측정하고, 호흡량에서 호흡 열량 계수를 사용하여 이화 에너지양을 계산하였다. 이상의 자료에서 동화 에너지양에 대한 연체부 에너지양의 비율로 순 에너지 전환 효율을 계산하고 동화 효율을 측정하여 섭취 에너지양에 대한 연체부 에너지양의 비율로 총 에너지 전환 효율을 계산하였으며, 그 결과는 다음과 같다. 1. 각고(SH) 및 연체부 건조 중량 (DW)의 반월령(t)에 따른 성장도; $$SH=6.33(1-e^{-0.2421(t+0.54)}),\;(0<\leqq10)$$ $$SH=4.44+0.14t,\;(10{\leqq}t{\leqq}20)$$ $$DW=0.608(1-e^{-0.2421(t+0.54)2.589}),\;(0 $$DW=1.53\times10^{-6}\times(4.44+0.14t)^{7.2},(10{\leqq}t{\leqq}20)$$ 2. 생식물질 방출량(G): $$G=0.0145+(3.95\times10^{-3}{\times}SH^{2.9861}$$ 3. 패각 형성량(SO); $$SO=0.000648{\times}SH^{2.527}$$ 4. 호흡량(R); $$log\;R=(0.0386T-0.5381)+(0.6409-0.0083T){\cdot}log\;DW$$ 5. 연체부 에너지 함량; 3.93(7월)-4.54(4월) Kcal/g, DW(질소 보정에 의한 계산값) 6. 생식 물질의 에너지 함량$(E_G)$: $$E_G,\;Kcal=\frac{1}{4}[0.0149SH^{2.961}+0.0547]$$ 7. 패각 유기물의 에너지 함량$(E_{so})$; $$E_{so},\;Kcal=0.00184SH^{2.527}$$ 8. 호흡 에너지 계수: 3.18(8월)-3.31(4월) cal/mg $O_2$ 9. 집단 총 감모율 : $36\%$ 10. 동화 효율 : $55.5\%(40\~70\%)$ 11. 순 에너지 전환 효율 : $28\%$ 12. 총 에너지 전환효율 : $15.28\%(11\~20\%)$.

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Dietary corn resistant starch regulates intestinal morphology and barrier functions by activating the Notch signaling pathway of broilers

  • Zhang, Yingying;Liu, Yingsen;Li, Jiaolong;Xing, Tong;Jiang, Yun;Zhang, Lin;Gao, Feng
    • Asian-Australasian Journal of Animal Sciences
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    • 제33권12호
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    • pp.2008-2020
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    • 2020
  • Objective: This study was conducted to investigate the effects of dietary corn resistant starch (RS) on the intestinal morphology and barrier functions of broilers. Methods: A total of 320 one-day-old broilers were randomly allocated to 5 dietary treatments: one normal corn-soybean (NC) diet, one corn-soybean-based diet supplementation with 20% corn starch (CS), and 3 corn-soybean-based diets supplementation with 4%, 8%, and 12% corn resistant starch (RS) (identified as 4% RS, 8% RS, and 12% RS, respectively). Each group had eight replicates with eight broilers per replicate. After 21 days feeding, one bird with a body weight (BW) close to the average BW of their replicate was selected and slaughtered. The samples of duodenum, jejunum, ileum, caecum digesta, and blood were collected. Results: Birds fed 4% RS, 8% RS and 12% RS diets showed lower feed intake, BW gain, jejunal villus height (VH), duodenal crypt depth (CD), jejunal VH/CD ratio, duodenal goblet cell density as well as mucin1 mRNA expressions compared to the NC group, but showed higher concentrations of cecal acetic acid and butyric acid, percentage of jejunal proliferating cell nuclear antigen-positive cells and delta like canonical Notch ligand 4 (Dll4), and hes family bHLH transcription factor 1 mRNA expressions. However, there were no differences on the plasma diamine oxidase activity and D-lactic acid concentration among all groups. Conclusion: These findings suggested that RS could suppress intestinal morphology and barrier functions by activating Notch pathway and inhibiting the development of goblet cells, resulting in decreased mucins and tight junction mRNA expression.