• Title/Summary/Keyword: 해부학적 위치 분류

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A Taxonomic study of the Ophelia D. Don(Gentianaceae) in Korea -Anatomical and ultrastructure- (한국산 용담과 쓴풀속(Ophelia) 식물의 분류 2. 해부학적형질 및 미세구조)

  • 백원기
    • Korean Journal of Plant Resources
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    • v.13 no.1
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    • pp.66-79
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    • 2000
  • Anatomical characters such as stem, leaf, ovary, calyx lobe, ultrastructure of stigma, epidermis of leaf blade and midvein, corolla lobe, nectary, seed coat and pollen were examined on 6 taxa of Korean Ophelia, including 5 taxa distributed in south Korea and one taxon considered to be the variation type of Ophelia wilfordi, in order to clarify the limits of intersection and interspecies and to establish the taxonomic position. One taxon distributed in north Korea was also included in the description of species by observation of herbarium specimen of the University of Tokyo in Japan. The two sections were successfully distinguished by internal structure of ovary, morphology of nectary, surface sculpturing of corolla lobe and pollen, ultrastructure of seed and seed coat, which were useful characters to distinguish taxa higher than species. The variation type of Ophelia wilfordi was not distinguished with other species except for absent or present of purple spot in corolla lobe.

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Taxonomic position of Cymopterus melanotiligia (H. Boissieu) C.Y. Yoon based on morphological and anatomical characters (외부형태 및 해부학적 형질에 의한 큰참나물의 분류학적 위치)

  • Yoon, Chang-Young
    • Korean Journal of Plant Taxonomy
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    • v.31 no.3
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    • pp.253-265
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    • 2001
  • Cymopterus melanotilingia (Apiaceae) was reviewed by external morphology and cross-section of leaf-margin and mericarp, and the taxonomic position of species and genus was reexamined. Based on these results, the description and adistribution map of C. melanotiligia were obtained. The leaf-margin forms a collenchymatous ridge by projecting toward the lower part. One mericarp has 2-lateral ribs and 2-intermediate ribs and the other mericarp has 2-lateral ribs and 1-dorsal rib, suggesting each of them is asymmetric. These characters show that this species does not belong to the genus Ostericum s.s., but should be treated as the genus Cymopterus.

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A Taxonomic Sfudy of the Gentiana (Gentianaceae) in Korea - Anatomical and Ultrastructure - (한국산 용담과 용담속(Gentiana) 식물의 분류 - 해부학적형질 및 미세구조 -)

  • Chung Young-Jae;Paik Weon-Ki
    • Korean Journal of Plant Resources
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    • v.19 no.1
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    • pp.8-14
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    • 2006
  • Anatomical and ultra-structural investigations on the vegetative and reproductive characters include stem, leaf, ovary, sepal, corolla, stigma, and seed surface on 10 taxa of the Korean Gentiana (Gentianaceae) were carried out to clarify the section and species limitation, As the results, taxonomic boundaries of the section, subsection, and series were recognized by using characters such as stem, leaf, sepal, ovary, and corolla. Also the seed morphology and testa surfaces were well defined at the species level.

Studies on the Morphological and Anatomical Characteristics of Genus Abies in Korea (한국산(韓國産) Abies 속(屬)의 내외형태학적(內外形態學的) 특성(特性)에 관한 연구(研究))

  • Kim, Yeang Du;Kim, Sam Sik
    • Journal of Korean Society of Forest Science
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    • v.62 no.1
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    • pp.68-75
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    • 1983
  • Some morphological and anatomical characteristics of four Abies species in Korea were investigated to find the characteristics and the taxonomical relationship between the species. The results were summarized as follows: There was no significant difference in needle thickness and number of hypodermic cell layer among 18 morphological and anatomical characteristics of cone and needle between the species. A. koreana and A. nephrolepis were similar in above fourteen characters and A. holophylla and A. firma were also similar in the 14 characters. A. koreana and A. firma showed similarity in above two characters. Main resin canals of needles in A. koreana and A. nephrolepis were situated in leaf margin (L-LM), those of A. holophylla, in L, L-M and M, and that of A. firma fully in other locations except L.

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Taxonomic reconsideration of Lactuca hallaisanensis H. Lév. (한라고들빼기 (Lactuca hallaisanensis H. Lév.)의 분류학적 재고)

  • Pak, Jae-Hong;Kim, Young-Ok;Choi, Kyung
    • Korean Journal of Plant Taxonomy
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    • v.31 no.4
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    • pp.311-319
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    • 2001
  • In order to evaluate taxonomic status of Latcuca hallaisanensis H. $L{\acute{e}}v$., an endemic species of the Jeju-do Island, we investigated fruit wall structure and chromosome morphology. The fruit wall structure had 10-11 obtuse costae in the transverse section. The costa was wholly occupied by libriform fiber cells, and the underlying fibersclereid tissue was only one to three cells layers thick. Also, the intercosta lacked fiber-sclereid layers. Somatic chromosome numbers and karyotype of Latcuca hallaisanensis were recorded for the first time. This diploid species (2n=10) with the same basic number of x=5 has the total chromosome length $23.3{\mu}m$ and the length of each chromosome falls in $1.9{\mu}m-2.9{\mu}m$. It possess the karyotype complement i.e., 3sm+2st and a characteristic chromosome pair (No. 1 and 2) with a secondary constriction at the distal portion of the short arms. The overall similarity in external morphology (involucre, achene etc), chromosome morphology as well as in fruit wall anatomy between Lactuca hallaisanensis and Crepidiastrum s. lat. clearly indicated that this species should be treated as Crepidiastrum, rather than Lactuca.

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Anatomy of the Korean mistletoe and their haustorial features in host plants (한국산 겨우살이과 식물의 형태와 기주별 흡기 특징)

  • Choi, Kyung;Park, Kwang-Woo;Kim, Hyuk-Jin;Lee, Jae-Dong;Koo, Jachoon;Whang, Sung-Soo
    • Korean Journal of Plant Taxonomy
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    • v.39 no.1
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    • pp.4-11
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    • 2009
  • Anatomical features of both leaves and stems of the four mistletoes in Korea (Viscum album var. coloratum, Korthalsella japonica, Loranthus yadoriki, L. tanaka) and of their secondary haustorial structure within several host plants were investigated. Among the four mistletoes, there were diagnostic characters of the anatomy of leaves and stems which enabled us to distinguish the four taxa. Leaves were observed to have three distinct characters including unifacial or bifacial leaves, the number of vascular bundles in the midveins, and the level of development of sclerenchyma cells. There were four diagnostic characters of stems: overall morphology of stems in transverse view, degree of cuticle development, arrangement of vascular bundles, and features of the sclerenchyma and pith. In order to determine secondary haustorial traits, the research focused on the seven host plants of L. yadoriki and on the five host plants of K. japonica. The following features were found to be important: presence or absence of an aerial runner root, the shape of the haustorial strand and flange, the degree of penetration into host tissues, and their development of shaft in transverse view, the development both of secondary haustorial cells and short tracheid in hyphae. Korthalsella japonica and L. yadorki were clearly distinguished by these characters. The secondary haustorial forms in each host were somewhat different, due to varying degrees of development in the strength of the host plants' wood. However, qualitative characters like the final position of the secondary haustorial penetration into host tissues and the development of short tracheid cells were not only affected by the degree of development of the host plants, but also useful for the systematic study.

Leaf anatomy of Pinus thunbergii Parl. (Pinaceae) collected from different regions of Korea (곰솔의 잎 해부 형태)

  • Ghimire, Balkrishna;Kim, Muyeol;Lee, Jeong-Ho;Heo, Kweon
    • Korean Journal of Plant Taxonomy
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    • v.44 no.2
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    • pp.91-99
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    • 2014
  • Leaf anatomical study of Pinus thunbergii collected from 12 different coastal regions of Korea was conducted to understand the adaptive variation on leaf traits. Basic anatomical features are typical pine needle type with fibrous epidermis, 2-3 layered hypodermis, sunken stomata, monomorphic mesophyll, and well-represented bundle sheath. The bundle sheath surrounds a couple of vascular bundle separated by parenchyma bands. On the basis of their position, the resin ducts are of three types; external, medial and internal of the bundle sheath. The total number of resin ducts in all samples varies from 4 to 12. The stomata were found on stomatal bands throughout the leaf surface. Important dissimilarities observed on P. thunburgii leaf are the number and position of resin ducts and the number of stomata rows in leaf surface.

Feature-based Gene Classification and Region Clustering using Gene Expression Grid Data in Mouse Hippocampal Region (쥐 해마의 유전자 발현 그리드 데이터를 이용한 특징기반 유전자 분류 및 영역 군집화)

  • Kang, Mi-Sun;Kim, HyeRyun;Lee, Sukchan;Kim, Myoung-Hee
    • Journal of KIISE
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    • v.43 no.1
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    • pp.54-60
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    • 2016
  • Brain gene expression information is closely related to the structural and functional characteristics of the brain. Thus, extensive research has been carried out on the relationship between gene expression patterns and the brain's structural organization. In this study, Principal Component Analysis was used to extract features of gene expression patterns, and genes were automatically classified by spatial distribution. Voxels were then clustered with classified specific region expressed genes. Finally, we visualized the clustering results for mouse hippocampal region gene expression with the Allen Brain Atlas. This experiment allowed us to classify the region-specific gene expression of the mouse hippocampal region and provided visualization of clustering results and a brain atlas in an integrated manner. This study has the potential to allow neuroscientists to search for experimental groups of genes more quickly and design an effective test according to the new form of data. It is also expected that it will enable the discovery of a more specific sub-region beyond the current known anatomical regions of the brain.

Automatic Anatomical Classification Model of Esophagogastroduodenoscopy Images Using Deep Convolutional Neural Networks for Guiding Endoscopic Photodocumentation

  • Park, Jung-Whan;Kim, Yoon;Kim, Woo-Jin;Nam, Seung-Joo
    • Journal of the Korea Society of Computer and Information
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    • v.26 no.3
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    • pp.19-28
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    • 2021
  • Esophagogastroduodenoscopy is a method commonly used for early diagnosis of upper gastrointestinal lesions. However, 10-20 percent of the gastric lesions are reported to be missed, due to human error. And countries including the US, the UK, and Japan, the World Endoscopy Organization (WEO) suggested guidelines about essential gastrointestinal parts to take pictures of so that all gastric lesions are observed. In this paper, we propose deep learning techniques for classification of anatomical sites, aiming for the system that informs practitioners whether they successfully did the gastroscopy without blind spots. The proposed model uses pre-processing modules and data augmentation techniques suitable for gastroscopy images. Not only does the experiment result with a maximum F1 score of 99.6%, but it also shows a error rate of less than 4% based on the actual data. Given the performance results, we found the model to be explainable with the potential to be utilized in the clinical area.

임상가를 위한 특집 2 - 구강악안면영역에서 양성 종양의 영상진단

  • Kim, Gyeong-A
    • The Journal of the Korean dental association
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    • v.47 no.10
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    • pp.637-646
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    • 2009
  • 양성 종양(benign tumor)을 언급하기에 앞서 과오종(hamartoma) 및 과다 형성(hyperplasia)과의 차이를 구분할 필요가 있다. 양성 종양은 기원조직과 유사한 조직이 이상 증식하는 것으로 서서히 성장하지만 일반적으로 치료하기 전까지 이상 증식을 지속하는 진성 신생물을 일컫는다. 이에 비해 과오종은 정상 조직이 무질서하게 과증식하는 것으로 일정기간 후에는 성장을 멈추기 때문에 진성 신생물로 간주하지 않는다. 그러나 일부 과오종이 양성 종양에 포함되기도 하는데, 예를 들어 치아종은 정상적인 치성 조직의 성장이 완료되는 시기와 거의 동일한 시기에 성장을 멈추지만 양성 종양으로 분류된다. 과다 형성은 조직의 세포가 정상적인 배열 양상을 보이면서 세포의 수가 증가하는 것으로 지속적인 성장 양상을 보이지만 그 성장이 제한적이므로 양성 종양과는 구별된다. 양성 종양은 일반적으로 무통성으로 서서히 성장하기 때문에 종양의 크기가 증가하여 안면 종창이나 동통 등을 유발하는 경우에 발견될 수 있으며, 방사선검사에서 우연히 발견되기도 한다. 방사선검사는 병소의 위치, 범위, 특징 및 병소와 인접 해부학적 구조와의 관계 등 많은 방사선학적 진단 정보를 제공한다. 일부 종양은 방사선사진에서 매우 특징적인 소견을 나타내기 때문에 방사선학적 소견으로 예비 진단을 할 수 있을 정도의 진단정보를 제공하기도 하는 반면 어떤 종양들은 방사선사진에서 관찰되는 소견이 매우 유사하여 진단에 어려움을 주기도 한다. 따라서 종양의 확진을 위해서는 생검이 필수적이며, 방사선검사는 반드시 생검에 앞서 진행되어야만 정확한 방사선학적 진단을 할 수 있다. 양성 종양은 각각의 특징적인 방사선학적인 소견을 나타내지만 일반적으로 관찰되는 양성 종양의 특징이 존재하므로 이러한 일반적인 특징을 관찰하여 병소가 양성인지 악성인지를 감별할 수 있다. 첫째, 양성 종양은 대개 호발하는 부위가 있으므로 종양의 발생부위는 감별 진단을 하는 데 매우 중요하다. 일반적으로 치성 병소는 치아가 형성되는 하악관 상방의 치조돌기에서, 혈관성 및 신경성 병소는 하악관 내에서, 연골성 종양은 하악과두와 같이 연골세포가 잔존되어 있는 부위에서 발생하는 경우가 많다. 둘째, 양성 종양은 대체로 명확한 경계와 피질골성 변연을 보이며, 종종 병소가 결체조직으로 둘러싸여 있어 병소 주위에 방사선투과성 띠가 관찰되기도 한다. 셋째, 양성 종양은 일반적으로 인접 주위 조직에 압력을 가하면서 서서히 성장하기 때문에 인접 치아의 변위 또는 흡수, 피질골의 비박, 팽융 등의 소견을 보이며 피질골의 천공은 드물다. 방사선학적으로 양성 종양의 병소 내부는 방사선투과상으로 관찰되거나, 방사선불투과상으로 관찰되거나, 방사선투과상과 방사선불투과상이 혼재된 상으로 관찰된다. 저자는 이 지면에서 이러한 방사선학적 특징을 기초로 하여 구강악안면영역에 발생하는 양성 종양을 분류하고 각각의 특징에 대해 살펴보고자 한다.

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