• Title/Summary/Keyword: 맥상(脈象)

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15 channel tonometric radial pulse measurement system using air cuff pressure (공압 가압 방식의 15채널 맥파 측정 시스템)

  • Kim, Eun-Geun;Heo, Hyun;Nam, Ki-Chang;Huh, Young
    • Proceedings of the KIEE Conference
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    • 2008.10b
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    • pp.205-206
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    • 2008
  • 한의학에서 손목의 맥파를 손으로 짚어 보고 파형의 변화로써 병변의 원인을 파악하는 것은 기본적인 진단 방법이다. 진단을 위해 요골동맥의 촌, 관, 척 세 부위의 맥파를 수지를 통해 일정 가압을 하며 맥의 깊이, 강약, 빠르기 등을 촉진을 통해 맥상을 분석한다. 본 연구에서는 촌, 관, 척 부위를 동시 측정하기 위해 각 부위에 5개의 압력센서 어레이가 적용된 15채널 맥진기를 구성하였다. 또한 요골 동맥 부위에 적정 가압을 유지하기 위해 공기 커프를 이용한 공압 가압 방식을 적용하였다. 본 가압 방식을 통해 요골 동맥 부위에 연속적이며 정밀 가압제어가 가능하였다.

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A Study on the Pulse Wave Parameter in Hypertension Patients (고혈압 환자의 맥상 연구)

  • Jung, Hyun-Jung
    • The Journal of the Society of Korean Medicine Diagnostics
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    • v.18 no.2
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    • pp.51-62
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    • 2014
  • Objectives The purpose of this study was to determine whether a pulse analyzer was useful to characterize the variables of pulse wave of hypertension (HT), compared with those of normal blood pressure group (NP). Methods The subjects were 22,646 who worked at car manufacturing factory. The pulse wave variables and pulse types measured in Guan by DMP 1000. Results In the main and secondary pulse type, there were significant differences between HT and NP. Whereas, in the field of pulse wave variables, no specific differences were between HT and NP. Conclusion Although pulse wave variables were not statistically significant, pulse analyzer might have reliable diagnostic sensitivity between hypertension and non-hypertension population.

Variation of ordinary chondrite textures by thermal/shock metamorphisms and weathering ; a study using scanning electron microscopy (주사전자 현미경으로 관찰한 열변성, 충격변성 및 풍화작용에 따른 오디너리 콘드라이트 조직의 변화)

  • Park Gwon-Tae;Choe Byeon-Gak
    • 한국지구과학회:학술대회논문집
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    • 2006.02a
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    • pp.230-234
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    • 2006
  • 본 연구에서는 미분화 운석 중 오디너리 콘드라이트를 주사전자 현미경으로 관찰하여 열변성, 충격 변성 정도, 지구상에서의 풍화 정도에 따라서 그 구성 성분과 조직이 어떤 변화를 보이는지 알아보았다. 이를 위해 15개의 오디너리 콘드라이트에 대해 각각 연마편 및 연마박편을 준비하였으며, 주사전자 현미경 사진을 이용하여 열변성 단계별로 콘드률과 기질의 경계를 비교하였다. 열변성이 증가할수록 콘드률과 기질의 경계는 점차 모호해 진다. 충격변성을 받았는지의 유무는 감람석을 관찰하여 비교적 쉽게 인지할 수 있다. 충격변성을 받지 않은 콘드률 내의 감람석은 완전 소광과 불규칙적인 깨짐을 보이지만 충격변성을 받은 경우 파동소광과 규칙적인 깨짐을 보인다. 지구상에서 풍화를 받은 경우 철-니켈 금속의 산화가 가장 먼저 진행된다. 풍화에 의한 철산화물은 맥상으로 나타나거나 기존의 철-니켈 금속을 치환하여 나타난다. 철산화물에 의해 풍화를 받은 콘드라이트는 전체적으로 갈색을 띄게 된다.

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A Study on Pulse Condition Appeared at Classic with Pulse Condition by Electro Pulse Machine (I) (전자맥진기(電子脈診器)의 맥상(脈狀)과 고전(古典)의 제맥체상(諸脈體狀)에 관한 연구(硏究)(I))

  • Kim, Seog-Ha;Hong, Sub-Hee;Jung, Hyun-Jung;Park, Won-Hwan
    • The Journal of the Society of Korean Medicine Diagnostics
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    • v.13 no.1
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    • pp.36-44
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    • 2009
  • Object : Pulse feeling(脈診) belongs to pulse feeling or palpation(切診) of methods of diagnosis in oriental medical terminology. Pulse appears at bio-energy condition of body, so it is a important part of disease diagnosis but we have been trouble in diagnosis by difficulty of pulse feeling(脈診). Methods : We investigate the books about pulse feeling, which are involved "Hwangjenaegyong", "Nangyong", "Maggyeng" etc. Conclusion : According to these, this paper helps you understand pulse feeling(脈診) through comparision and studying pulse condition at clasics with electro pulse machine.

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Occurrence and Deformation of Fe-Ti ores from the Proterozoic Hadong Anorthosites, Korea (원생대 하동회장암체 내 철-티탄 광체의 산상과 변형)

  • Jung, Jae-Sung;Kim, Jong-Sun;Cho, Hyeong-Seong;Song, Cheol-Woo;Son, Moon;Ryoo, Chung-Ryul;Chi, Sei-Jeong;Kim, In-Soo
    • The Journal of the Petrological Society of Korea
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    • v.19 no.1
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    • pp.31-49
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    • 2010
  • Nearly NS-trending Fe-Ti ore bodies intermittently occur in the Hadong anorthosites, south Korea, irrespective of the rock types of the anorthosites. In order to determine their occurrence mode and deformation history, we collected the features of occurrence and geological structures in the field, petrographic features using thin sections of the principal constituent rocks, and geochemical data of ilmenites in the ore body using electron probe microanalysis. Fe-Ti ore bodies examined in this study are divided into two types: dike- and lamina-types. It is steadily supported that the dike-type has intruded into the anorthositic rocks after their emplacement and solidification. And the laminar-type is probably a result of the mylonitization and transposition of the dike-type ore bodies parallel to the shear planes, due to later strong dextral ductile shearing. In the meantime, the Fe-Ti ore bodies have experienced the stronger dextral shearing in the more northern part of the study area, i.e. Cheongryong-ri, Wolhoeng-ri, Jonghwa-ri, and Jayangri and Baekun-ri in ascending order of its strength, together with the less content of $TiO_2$. All ilmenites of the ore bodies have very similar chemical composition, as pure ilmenite of 52~55 wt.% in $TiO_2$ content, irrespective of the occurrence mode and degree of later ductile shearing of the ore bodies. And they didn't experience to exsolve into magnetite. The structural data indicate that the Hadong anorthosites have deformed by NNE-trending folding, intrusion of the Fe-Ti ore bodies, NNW~NNE-trending dextral ductile shearing, NW~NNW-trending sinistral semi-brittle shearing, and intrusion of NNE~NE-trending mafic dykes in descending order of chronology after the formation of foliation of the anorthositic rocks. The foliation is interpreted as a result of the accumulation of crystals that settle out from the magma by the action of gravity.

3-D Inversion of 3-D Synthetic DC Resistivity Data for Vein-type Ore Deposits (국내 맥상광체조사를 위한 3차원 전기비저항 모델링자료의 3차원 역산 해석)

  • Lee, Ho-Yong;Jung, Hyun-Key;Jeong, Woo-Don;Kwak, Na-Eun;Lee, Hyo-Sun;Min, Dong-Joo
    • Journal of the Korean earth science society
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    • v.30 no.6
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    • pp.699-708
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    • 2009
  • Recently as the interest in the development of domestic ore deposits has increased, we can easily find some studies on exploration geophysics-based ore-deposit survey in literature. Based on the fact that mineralized zone are generally more conductive than surrounding media, electrical resistivity survey among several geophysical surveys has been applied to investigate metallic ore deposits. Most of them are grounded on 2-D survey. However, 2-D inversion may lead to some misinterpretation for 3-D geological structures. In this study, we investigate the feasibility of the 3-D electrical resistivity survey to 3-D vein-type ore deposits. We first simulate 2-D dipole-dipole survey data for survey lines normal to the strike and 3-D pole-pole survey data, and then perform 3-D inversion. For 3-D ore-body structures, we assume a width-varying dyke, a wedge-shaped, and a fault model. The 3-D inversion results are compared to 2-D inversion results. By comparing 3-D inversion results for 2-D dipole-dipole survey data to 3-D inversion results for 3-D pole-pole survey data, we could note that the 2-D dipole-dipole survey data yield better inversion results than the 3-D pole-pole data, which is due to the main characteristic of the pole-pole array. From these results, we are convinced that if we have certain information on the direction of the strike, it would be desirable to apply 2-D dipole-diple survey for the survey lines normal to the strike. However, in most cases, we do not have any information on the direction of the strike, because we already developed the ore deposit with the outcrops and the remaining ore deposits are buried under the surface. In that case, performing 3-D pole-pole electrical resistivity survey would be a reasonable choice to obtain more accurate interpretation on ore body structure in spite of low resolution of pole-pole array.

Mineralization and Genetic Environments of the Central and Main Orebodies in the Manjang Deposit, Goesan (만장광상 중앙광체와 본광체의 광화작용과 생성환경)

  • Yu, Hyunmin;Shin, Dongbok
    • Journal of the Mineralogical Society of Korea
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    • v.31 no.2
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    • pp.87-101
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    • 2018
  • The Manjang deposit developed in the Hwajeonri formation of the Okcheon metamorphic belt consists of the Central and Main orebodies of Cu-bearing hydrothermal vein type and the Western orebody of Fe-skarn type. This study focuses on the Cu mineralization of the Central and Main orebodies to compare with the genetic environments of the Western orebody previously studied. The Central orebody produced pyrrhotite and chalcopyrite as major ore minerals with vein texture, while the Main orebody contains pyrite, arsenopyrite, and chalcopyrite as major ore minerals with vein, massive, and brecciated texture. Sphalerite, galena, magnetite, ilmenite, rutile, cassiterite, wolframite, and stannite are also accompanied. Local occurrence of skarn is dominated by grossular and hedenbergite, reflecting the reduced condition of the skarnization. Geothermometries of sphalerite-stannite in the Central orebody and arsenopyrite-pyrite in the Main orebody indicate the formation temperature of $204-263^{\circ}C$ and $383-415^{\circ}C$, respectively. Sulfur fugacity of $10^{-6}-10^{-7}atm$. in the Main orebody decreased toward the Central orebody. Sulfur isotope compositions of sulfide minerals from the Central and Main orebodies are 4.6-7.9‰ and 4.3-7.0‰, respectively, reflecting magmatic origin with slight influence by host rock. Considering ore mineralogy, texture as well as physicochemical conditions, the Main and Central orebodies of hydrothermal Cu mineralization reflect the characteristics of proximal and distal type ore mineralization, respectively, related to hidden igneous rocks, and they were generated under different hydrothermal systems from the Fe-skarn Western orebody.

A Survey Report on the Polymetallic Mineralization in the Oyon Mineralized District, Central Peru (페루 중부 오욘 다중금속 광화작용에 대한 조사보고)

  • Lee, Jaeho;Kim, Injoon;Nam, Hyeong-tae
    • Economic and Environmental Geology
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    • v.50 no.1
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    • pp.73-83
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    • 2017
  • The surveyed mines are located in a polymetallic vein, replacement, and skarn mineral district in the central Andes of Peru. Iscaycruz, which includes underground and open pit mines that produce zinc and lead concentrates, was the largest mineral deposit of an important group of base metal deposits in the Andes of central Peru. The deposits are sub-vertical seams of polymetallic ores(Zn, Cu, and Pb). These seams are hosted by Jurassic and Cretaceous sedimentary rock formation. The intrusion of igneous rocks in these formations originated metallic deposits of metasomatic and skarn types. The Raura mine is composed of polymetallic deposit of veins and replacement orebodies. The main sedimentary unit in the area is Cretaceous Machay Limestone. The Raura depression contains several orebodies each with different mineralization: predominantly Pb-Zn bearing Catuvo orebody; Ag-rich galena-bearing Lake Ninacocha orebody; Cu-Ag bearing Esperanza and Restauradora orebody. Huaron is a hydrothermal polymetallic deposit of silver, lead, zinc, and copper mineralization hosted within structures likely related to the intrusion of monzonite dikes, principally located within the Huaron anticline. Mineralization is encountered in veins parallel to the main fault systems, in replacement bodies known as "mantos" associated with the calcareous sections of the conglomerates and other favourable stratigraphic horizons, and as dissemination in the monzonitic intrusions at vein intersections.

Studies on Fluid Inclusion and Pyrite Geochemistry in the Moisan Au-Ag Deposit, Haenam District, Korea (해남 모이산 금-은 광상의 유체포유물 및 황화물 지구화학 연구)

  • Park, Sol;Seo, Jung Hun;Kim, Chang Seong;Yang, Yoon-Seok;Oh, Jihye;Kim, Jonguk
    • Economic and Environmental Geology
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    • v.53 no.3
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    • pp.221-234
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    • 2020
  • We occur together with telluride minerals. Fluid inclusions in the euhedral quartz crystals are mainly aqueous liquid-rich inclusions, which have salinities about 0.18-2.24 wt% NaCl equivalent. Some quartz vein contains aqueous vapor-rich inclusions as well. Homogenization temperatures of the assemblages of the liquid-rich inclusions are about 141-384 ℃, and the temperatures are lower at the shallower vein samples. In the high Au-Ag grade depth intervals, relatively deeper fluids have relatively higher salinities and homogenization temperatures, while shallower fluids show somewhat wider ranges. These might indicate that the deep Au-Ag bearing hydrothermal fluids at the Moisan area experienced phase separation as well as mixing with meteoric water by decreasing pressure. Au-Ag precipitation in the Moisan deposit is not associated with pyrite, but pyrite include Au-Ag bearing phase as an inclusion, which might possibly be tellurides or electrum. Au/Ag ratios in the Au-Ag bearing phase do not change with different depth.

Spatio-Temporal Variation of Polymetallic Mineralization in the Wooseok Deposit (우석광상 다금속 광화작용의 시공간적 특성변화)

  • Im, Heonkyung;Shin, Dongbok;Jeong, Junyeong;Lee, Moontaek
    • Economic and Environmental Geology
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    • v.51 no.6
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    • pp.493-507
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    • 2018
  • The Wooseok deposit in Jecheon belongs to the Hwanggangri Mineralized Distict of the northeastern Ogcheon Metamorphic Belt. Its geology consists mostly of limestone of the Choseon Supergroup and the Cretaceous Muamsa granite intruded at the eastern area of the deposit. The deposit shows vertical occurrence of skarn and hydrothermal vein ores with W-Mo-Fe and Cu-Pb-Zn mineralization and skarn is developed only at lower levels of the deposit. Skarn minerals are replaced or cut by ore minerals in paragenetic sequence of magnetite-hematite, molybdenite-scheelite-wollframite, and higher abundances of pyrrhotite-chalcopyrite-pyrite-sphalerite-galena. Garnet has chemical compositions of $Ad_{65.9-97.8}Gr_{0.3-32.0}Pyr_{0.9-3.0}$, corresponding to andradite series, and pyroxene compositions are $Hd_{4.5-49.7}Di_{42.3-93.9}Jo_{0.5-7.9}$, prevailing in diopside compositions, both of which suggest oxidized conditions of skarnization. On the FeS-MnS-CdS ternary diagram, FeS contents of sphalerite in vein ores decrease with increasing MnS contents from bottom to top levels, possibly relating to W mineralization in deep and Pb-Zn mineralization in shallow level. Sulfur isotope values of sulfide minerals range from 5.1 to 6.8‰, reflecting magmatic sulfur affected by host rocks. W-Mo skarn and Pb-Zn vein mineralization in the Wooseok deposit were established by spatio-temporal variation of decreasing temperature and oxygen fugacity with increasing sulfur fugacity from bottom to top levels.