• 제목/요약/키워드: morphometric technique

검색결과 14건 처리시간 0.017초

Model Development for Specific Degradation Using Data Mining and Geospatial Analysis of Erosion and Sedimentation Features

  • Kang, Woochul;Kang, Joongu;Jang, Eunkyung;Julien, Piere Y.
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2020년도 학술발표회
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    • pp.85-85
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    • 2020
  • South Korea experiences few large scale erosion and sedimentation problems, however, there are numerous local sedimentation problems. A reliable and consistent approach to modelling and management for sediment processes are desirable in the country. In this study, field measurements of sediment concentration from 34 alluvial river basins in South Korea were used with the Modified Einstein Procedure (MEP) to determine the total sediment load at the sampling locations. And then the Flow Duration-Sediment Rating Curve (FD-SRC) method was used to estimate the specific degradation for all gauging stations. The specific degradation of most rivers were found to be typically 50-300 tons/㎢·yr. A model tree data mining technique was applied to develop a model for the specific degradation based on various watershed characteristics of each watershed from GIS analysis. The meaningful parameters are: 1) elevation at the middle relative area of the hypsometric curve [m], 2) percentage of wetland and water [%], 3) percentage of urbanized area [%], and 4) Main stream length [km]. The Root Mean Square Error (RMSE) of existing models is in excess of 1,250 tons/㎢·yr and the RMSE of the proposed model with 6 additional validations decreased to 65 tons/㎢·yr. Erosion loss maps from the Revised Universal Soil Loss Equation (RUSLE), satellite images, and aerial photographs were used to delineate the geospatial features affecting erosion and sedimentation. The results of the geospatial analysis clearly shows that the high risk erosion area (hill slopes and construction sites at urbanized area) and sedimentation features (wetlands and agricultural reservoirs). The result of physiographical analysis also indicates that the watershed morphometric characteristic well explain the sediment transport. Sustainable management with the data mining methodologies and geospatial analysis could be helpful to solve various erosion and sedimentation problems under different conditions.

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한국, 중국, 러시아에 서식하는 등줄쥐, Apodemus agrarius(포유강, 설치목), 6아종의 미토콘도리아 DNA 절단단편의 변이 (Variation Pattern of mtDNA among Six Subspecies of Apodemus agrarius(Mammalia, Rodentia) in Korea, China, and Russia)

  • 고흥선;안용철;유정원;이우재
    • Animal Systematics, Evolution and Diversity
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    • 제15권2호
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    • pp.153-164
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    • 1999
  • 한국, 중국, 러시아에 서식하는 등줄쥐 Apodemus agrarius 6아종 111마리를 이용하여, 미토콘드리아 DNA를 8개의 제한효소로 절단한 단편들을 blot hybridization법으로 분석하였다. 모두 32개의 단편들이 보여졌고, 9개의 haplotype이 밝혀졌으며, 평균 발산값이 0.896에서 1.150%인 4아군이 나타났다. 결론적으로 세 형을 인정할 수가 있었다: [I. 아종 chejuensis (제주도, 한국)], [ll, 아종 pallescens(남서 한국), coreae(중앙 한국), 및 septentrionalis(러시아)], and [lll, 아종 manchuricus(북동 중국)와 pallidior(북부 중국)]. 그러나 아종 coreae의 일부 표본들은 다른 6아종의 표본들과 다소 차이를 보였고, 아종 pallidior의 일부 표본들은 아종 septentrionalis의 모든 표본들과 같아서 동일한 haplotype을 형성하였다. 아종 a. agrarius chejuensis는 독특한 아종중의 하나이고, 아종 corea(pallescens포함)도 독특한 아종중의 하나이며, 아종 manch-uricus와 pallidior는 아종 ningpoensis의 동아종이명이고, 아종 septentrionalis도 아종 agrarius의 동아종이명임이 재확인되었다. 뿐만 아니라, 등줄쥐는 염색체 핵형이 일정하며, 미토콘드리아 DNA 유전형에 약간의 변이를 보이고, 형태형질의 상당한 발산을 보이고 있지만, 이들 분류형질의 변이 정도의 파악과 아종분류의 재검토를 위하여 유라시아산 등줄주의 보다 많은 표본을 이용한 분석이 앞으로 필요하다.

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Feasibility of Bilateral Crossing C7 Intralaminar Screws : A Cadaveric Study

  • Baek, Tae-Hyun;Kim, Ilsup;Hong, Jae-Taek;Kim, Daniel H.;Shin, Dongsuk;Lee, Sang-Won
    • Journal of Korean Neurosurgical Society
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    • 제56권1호
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    • pp.5-10
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    • 2014
  • Objective : When the pedicle screw insertion technique is failed or not applicable, C7 intralaminar screw insertion method has been used as an alternative or salvage fixation method recently. However, profound understanding of anatomy is required for safe application of the bilaterally crossing laminar screw at C7 in clinic. In this cadaveric study, we evaluated the anatomic feasibility of the bilateral crossing intralaminar screw insertion and especially focused on determination of proper screw entry point. Methods : The C7 vertebrae from 18 adult specimens were studied. Morphometric measurements of the mid-laminar height, the minimum laminar thickness, the maximal screw length, and spino-laminar angle were performed and cross-sectioned vertically at the screw entry point (spino-laminar junction). The sectioned surface was equally divided into 3 parts and maximal thickness and surface area of the parts were measured. All measurements were obtained bilaterally. Results : The mean mid-laminar height was 13.7 mm, mean minimal laminar thickness was 6.6 mm, mean maximal screw length was 24.6 mm, and mean spinolaminar angle was $50.8{\pm}4.7^{\circ}$. Based on the measured laminar thickness, the feasibility of 3.5 mm diameter intralaminar screw application was 83.3% (30 sides laminae out of total 36) when assuming a tolerance of 1 mm on each side. Cross-sectional measurement results showed that the mean maximal thickness of upper, middle, and lower thirds was 5.0 mm, 7.5 mm, and 7.3 mm, respectively, and mean surface area for each part was $21.2mm^2$, $46.8mm^2$, and $34.7mm^2$, respectively. Fourteen (38.9%) sides of laminae would be feasible for 3.5 mm intralaminar screw insertion when upper thirds of C7 spino-laminar junction is the screw entry point. In case of middle and lower thirds of C7 spino-laminar junction, 32 (88.9%) and 28 (77.8%) sides of laminae were feasible for 3.5 mm screw insertion, respectively. Conclusion : The vertical cross-sectioned area of middle thirds at C7 spinolaminar junction was the largest area and 3.5 mm screw can be accommodated with 77.8 % of feasibility when lower thirds were the screw entry point. Thus, selection of middle and lower thirds for each side of screw entry point in spino-laminar junction would be the safest way to place bilateral crossing laminar screw within the entire lamina. This anatomic study result will help surgeons to place the screw safely and accurately.

칼슘포스페이트 나노-크리스탈이 코팅된 골이식재와 자가골을 병행 이용한 상악동 거상술 (SINUS FLOOR GRAFTING USING CALCIUM PHOSPHATE NANO-CRYSTAL COATED XENOGENIC BONE AND AUTOLOGOUS BONE)

  • 방강미;이보한;알라쉬단;유상배;성미애;김성민;장정원;김명진;고재승;이종호
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제31권3호
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    • pp.243-248
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    • 2009
  • Purpose: Rehabilitation of the edentulous posterior maxilla with dental implants often poses difficulty because of insufficient bone volume caused by pneumatization of the maxillary sinus and by crestal bone resorption. Sinus grafting technique was developed to increase the vertical height to overcome this problem. The present study was designed to evaluate the sinus floor augmentation with anorganic bovine bone (Bio-$cera^{TM}$) using histomorphometric and clinical measures. Patients and methods: Thirteen patients were involved in this study and underwent total 14 sinus lift procedures. Residual bone height was ${\geq}2mm$ and ${\leq}6mm$. Lateral window approach was used, with grafting using Bio-$cera^{TM}$ only(n=1) or mixed with autogenous bone from ramus and/or maxillary tuberosity(n=13). After 6 months of healing, implant sites were created with 3mm diameter trephine and biopsies taken for histomorphometric analysis. The parameters assessed were area fraction of new bone, graft material and connective tissue. Immediate and 6 months after grafting surgery, and 6 months after implantation, computed tomography (CT) was taken and the sinus graft was evaluated morphometric analysis. After implant installation at the grafted area, the clinical outcome was checked. Results: Histomorphometry was done in ten patients.Bio-$cera^{TM}$ particles were surrounded by newly formed bone. The graft particles and newly formed bone were surrounded by connective tissue including small capillaries in some fields. Imaging processing revealed $24.86{\pm}7.59%$ of new bone, $38.20{\pm}13.19%$ connective tissue, and $36.92{\pm}14.51%$ of remaining Bio-$cera^{TM}$ particles. All grafted sites received an implant, and in all cases sufficient bone height was achieved to install implants. The increase in ridge height was about $15.9{\pm}1.8mm$ immediately after operation (from 13mm to 19mm). After 6 months operation, ridge height was reduced about $11.5{\pm}13.5%$. After implant installation, average marginal bone loss after 6 months was $0.3{\pm}0.15mm$. Conclusion: Bio-$cera^{TM}$ showed new bone formation similar with Bio-$Oss^{(R)}$ histomorphometrically and appeared to be an effective bone substitute in maxillary sinus augmentation procedure with the residual bone height from 2 to 6mm.