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        Ablation Rate and Intrapulpal Temperature by Addition of Water Spray During Er:YAG Laser Irradiation

        김정문,김미은,김기석,Kim, Jung-Moon,Kim, Mee-Eun,Kim, Ki-Suk Korean Academy of Orofacial Pain and Oral Medicine 2005 Journal of Oral Medicine and Pain Vol.30 No.3

        Er:YAG laser has been considered a promising alternative to dental drill and many researches indicate that adjustment to variable parameters, including water flow rate, pulse energy and pulse repetition rate, can be made to improve ablation ability and efficiency of the laser. Of these parameters, addition of water spray during irradiation has been thought to ablate dental hard tissue more rapidly and safely. The purpose of this study was to investigate tooth ablation amount by Er:YAG laser irradiation as related to varied water flow rates added and, ultimately to find the most effective water flow rate for ablation. In addition, the temperature change of pulp chamber during irradiation was also monitored on the irradiated and opposite pulpal walls, respectively. An Er:YAG laser with contact mode was employed. Extracted human molars were split into two pieces for ablation experiment. Pulse energies of 200 and 300 mJ with a pulse repetition rate of 20 Hz and 5 water flow rates (1.6, 3.0, 5.0, 7.0, and 10.0 ml/min) were applied. Each irradiation was performed for 3 seconds. According to these parameters, experimental groups were divided into 10 subgroups which consisted of 5 specimens. For temperature experiment, another 5 tooth-specimens were prepared in the manner that pulp chamber was open through access cavity preparation and two temperature-measuring probes were placed respectively on the irradiated and the opposite walls of pulp chamber. From the experiment on ablation amount related to different water flow rates, it was shown that the least water flow rate of 1.6 ml/min ablated more than any other water flow rates (p<0.000). When the irradiation for 3 seconds, combined with the pulse repetition time of 20Hz and the water flow rate of 1.6 ml/min was done to tooth specimen, the temperature rise was not noticeable both on the irradiated and the opposite pulpal walls (less than 3$^{\circ}C$) and there was no significant difference in temperature rise between the two pulse energies, 200 and 300 mJ. From the results of this study, it is suggested that tooth ablation with Er:YAG laser can be done effectively and safely at a energy between 200 and 300 mJ/pulse and a pulse repetition rate of 20 Hz when the lasing is conjugated with the water flow rate of 1.6ml/min.

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        사이드 스캔 소나 영상에서 수중물체 자동 탐지를 위한 컨볼루션 신경망 기법 적용

        김정문,최지웅,권혁종,오래근,손수욱,Kim, Jungmoon,Choi, Jee Woong,Kwon, Hyuckjong,Oh, Raegeun,Son, Su-Uk 한국음향학회 2018 韓國音響學會誌 Vol.37 No.2

        본 논문은 사이드 스캔 소나 영상을 컨볼루션 신경망으로 학습하여 수중물체를 탐색하는 방법을 다루었다. 사이드 스캔 소나 영상을 사람이 직접 분석하던 방법에서 컨볼루션 신경망 알고리즘이 보강되면 분석의 효율성을 높일 수 있다. 연구에 사용한 사이드 스캔 소나의 영상 데이터는 미 해군 수상전센터에서 공개한 자료이고 4종류의 합성수중물체로 구성되었다. 컨볼루션 신경망 알고리즘은 관심영역 기반으로 학습하는 Faster R-CNN(Region based Convolutional Neural Networks)을 기본으로 하며 신경망의 세부사항을 보유한 데이터에 적합하도록 구성하였다. 연구의 결과를 정밀도-재현율 곡선으로 비교하였고 소나 영상 데이터에 지정한 관심영역의 변경이 탐지성능에 미치는 영향을 검토함으로써 컨볼루션 신경망의 수중물체 탐지 적용성에 대해 살펴보았다. In this paper, we have studied how to search an underwater object by learning the image generated by the side scan sonar in the convolution neural network. In the method of human side analysis of the side scan image or the image, the convolution neural network algorithm can enhance the efficiency of the analysis. The image data of the side scan sonar used in the experiment is the public data of NSWC (Naval Surface Warfare Center) and consists of four kinds of synthetic underwater objects. The convolutional neural network algorithm is based on Faster R-CNN (Region based Convolutional Neural Networks) learning based on region of interest and the details of the neural network are self-organized to fit the data we have. The results of the study were compared with a precision-recall curve, and we investigated the applicability of underwater object detection in convolution neural networks by examining the effect of change of region of interest assigned to sonar image data on detection performance.

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        19세기 후반 산형도(山形圖)로 본 왕릉도(王陵圖)의 표현방법(表現方法) -전주이씨시조이한(全州李氏始祖李翰)의 조경단(肇慶檀)관련 그림을 중심으로-

        김정문 ( Jeong Moon Kim ) 한국전통조경학회(구 한국정원학회) 2012 한국전통조경학회지 Vol.30 No.1

        본 연구는 대한제국기에 그려진 ``완산도형(完山圖形)``, ``조경단비각재실도형(肇慶壇碑閣齋室圖形), ``전주건지산도형(全州乾止山圖形)`` 그리고 ``조경묘경기전도형(肇慶廟慶基殿圖形)`` 등 4매 고지도의 제작의도 및 각 도형의 경관, 조망, 시점, 경물 등의 표현내용 및 방법의 특성을 고찰하고 도형 상호간의 관련성 분석을 통해 지형표현의 특질과 조망구도 그리고 내포된 상징경관의 의미를 고찰할 목적으로 시도되었으며, 문헌조사와 병행, 지도를 통한 관찰조사를 수행하였으며 현장조사·위성사진·인터넷조사를 통해 다음과 같은 결과를 얻었다. 전주가 조선왕실의 본향이라는 역사성을 확보하는데 중심적 공간인 경기전(1410)·조경묘(1771)·조경단(1899)은 왕조의 정통성 부여와 왕권강화의 일환으로 건립·중건되었고 조선왕조 초기부터 대한제국시기까지 정신적 지주 역할을 하면서, 지속적으로 유지 및 관리되었다. 4개 도형은 국호를 대한제국으로 변경한 후 황실과 황제의 위엄성과 당위성을 정당화하기 위해 국가적 차원에서 집중적으로 그려진 조선왕실의 시조 이한(李翰)의 묘소를 알리는 산형도(山形圖)와 그에 부속되는 보조도면으로 파악된다. 즉 완산도형은 전주부에서 조경묘, 경기전, 조경단의 존재를 알리고 그 위치를 파악하기 위한 키맵(key map)이며 건지산도형은 풍수국면도로서 시조묘의 풍수적 정당성을 강조하기 위한 것으로, 조경단비각재실도형은 이를 보다 세밀히 보여주기 위해 상세부분도로서 그려졌다. 전주건지산도형과 조경묘경기전도형은 공히 이원적축적과 부감법을 사용하고 주산을 건지산으로 삼고, 왕자봉과 의묘소(疑墓所)를 중심으로 중요지형을 실제 지형보다 과장해서 표현하였다. 또한 묘지에서 관찰되지 않는 중요 지형은 시점 이동을 통해 관찰하고 이를 세밀하게 표현하였다. 4벌 1조의 지도라는 측면에서 볼 때 ``완산도형``은 군현도이며 위치도의 성격을 보이는 반면 ``조경묘경기전도형``은 부분상세도로서 배치도로써의 기능을 보인다. 또한 ``전주건지산도형``과 ``조경단비각재실도형``은 산형도로서의 기능을 갖는 풍수형국도이자 상세도인 것이 확인되었다. 이와 같은 특성으로 볼 때, 기존 고지도와는 달리 연계도면(serial map)으로서의 기능성이 강화된 것으로 보인다. This work attempted to study the properties of expression of ground, the composition of outlook and the implications of the connotative symbolic scenery throughout investigating the properties of expression content and method of the scenery, outlook, viewpoint, natural features for each drawing and intention of making 4 old maps, which had been made in the period of the Great Korean Empire and had been called ``Wansan-dohyoung(完山圖形),`` ``Jogyeongdan- bigak-jaesil-dohyoung(肇慶壇碑閣齋室圖形),`` ``Jeonju-geonjisan-dohyoung(全州乾止山圖形)`` and ``Jogyeongmyo-gyounggijeon- dohyoung(肇慶廟慶基殿圖形),`` and analyzing the correlation between their drawings. For this aim, observatory investigation by using a map, on-spot investigation, analysis involving the satellite images and internet were carried out with literature review simultaneously. The result of investigation could be sum up as follows. Gyounggijeon(1410), Jogyeongmyo(1771) and Jogyeongdan(1899), where are the core space to lay the historically firm foundation for securing the fact Jeonju is the home of the Royal Family of Joseon, had been built, fixed and extended for giving legitimacy to the Joseon Dynasty and a part of strengthening of royal authority. And these had played an important role of spiritual mainstay from early in the Joseon Dynasty to the era of the Great Korean Empire and had been managed and maintained continuously. It is grasped that the 4 maps consist of Sanhyuoungdo(山形圖; a kind of a mountain map), which is the map for showing a burial place of Lee Han(李翰), the founder of the Joseon Dynasty, and its auxiliary drawings and these had been drawn intensively to justify dignity and authority of the Imperial Family and the Emperor after the name of country was renamed the Great Korean Empire as a part of national undertaking. In detail, Wansan-doghyoung is the key map for announcing the existence of Jogyeong-myo, Gyounggijeon and Jogyeongdan in Jeonju and informing their locations and Geonjisan-dohyoung is the map of divination based on topography for highlighting the geomantic justification of the founder`s mausoleum. Jogyeongdan-bigak-jaesil-dohyooung is the partial map detailing for Geonjisan-dohyoung. Jeonju-geonjisan-dohyoung and Jogyeongmyo-gyounggijeon-dohyoung had employed the binary reduced scale and the bird-eye view method and in the above maps, Geonji Mountain is the main mountain and these maps make an exaggeration of the main geographical features, centering Wangjabong and Euimyoso, unlike the real geographical features. Also, the other main geographical features, which are found in the burial place, are expressed in detail by changing the view. In the point of view of 1 set being consisted of 4 maps, ``Wansan-dohyoung`` has the property not only as Gunhyoundo, which Gun and Hyoun mean a unit of the administrative district, respectively and Gynhyoundo is a kind of the map for recording their locations, but also as the map of showing their locations. On the other side, ``Jogyoungmyogyounggijeondohyoung`` is a kind of lay-out drawing as a partially detailed map. In addition, it has been found out that ``Jeonju-geonjisan-dohyoung`` and ``Jogyeongdan-bigak-jaesil-dohyoung`` is not only Pungsu- hyounggukdo having the function of Sanhyoungdo but also a detail drawing. On the base of these properties, it is considered that the functionality as a serial map had been strengthened, unlike the existing old maps.

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