• Title/Summary/Keyword: Tibet high

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Influence of the 1960s Anti-Fashion on the Ethnic Fashion (1960년대 저항 패션이 민속풍 패션에 미친 영향)

  • 간문자
    • Journal of the Korean Society of Costume
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    • v.30
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    • pp.153-166
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    • 1996
  • The purpose of this paper is to examine the Ethnic Fashion which is influenced by the Anti-Fashion in 1960s. Anti-Fashion as Hippie style had an effect on high fashion in the 60s-70s and which was restored in the early 90s are ethnic and folk-lore style. The influence that the Anti-Fashion has had on the Ethnic Fashion is summarized as follows. At the Ethnic Fashion in 60s-70s: First Europian romantic style that is velvet doublet breecheese race cuffs ruffle flounce race jabbot embrioderd blouse frilled blouse Victorian mode and Pre-Raphaello style. Second handicraft ornaments style & peasant style what are embroidery weaving variaty ornaments tie-dye patch work smocking beads & bell paisely print peasant blouse dundle skirt long skirt to clinging layered look floral print dress and shepherd-ness style. Third folklore style that is Oriental mao-suit harem pants & Indian pants caftan monk robe Afgan vest burnoos dhoti pants Hindu robe Red Indian fringe head band feather ornaments Red indian embroidery & weaving body painting gaucho poncho and serapi. At the Ethnic Fashion in 90s.: First Europian classical romantic style that is Victorian style Pre-Raphaello style ruffle & race decorations and velvet materials. Second peasant look& handicraft orna-ments what are floral print long skirt to cling-ing uneven stitches top stitchings patch work embroidery crochet and tie-dye. Third folklore style that is Red Indian style South East mode is sarong skirt & Nheru jacket Tibet & Mongolian style South America style and gypso style.

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Helicobacter pylori Infection and Gastric Mucosal Atrophy in Two Ethnic Groups in Nepal

  • Miftahussurur, Muhammad;Sharma, Rabi Prakash;Shrestha, Pradeep Krishna;Maharjan, Ramesh Kumar;Shiota, Seiji;Uchida, Tomohisa;Sato, Hiroki;Yamaoka, Yoshio
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.17
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    • pp.7911-7916
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    • 2015
  • Serum anti-Helicobacter pylori antibodies and pepsinogens (PGs) have been used as gastric cancer screening and gastric mucosal status markers. Nepal is a low risk country for gastric cancer. However, the mountainous populace in the northern region culturally linked to Tibet as well as Bhutan, a neighboring country, have a high risk of GC. We collected gastric biopsy specimens and sera from 146 dyspeptic patients living in Kathmandu, Nepal. We also examined the sera of 80 volunteers living in the mountainous regions of the Himalayas. The optimal cut-off was calculated for serum biomarkers against the histology. Kathmandu patients (43.8%) were serologically positive for H. pylori infection, which was significantly lower than that for the mountainous (61.3%, P = 0.01). The same results also found in the prevalence of PG-positivity, PG I levels and PG I/II ratios (P = 0.001, P<0.0001 and P = 0.03, respectively). Moreover, the PG I/II ratios were significantly, and inversely correlated with the OLGA score (r = -0.33, P<0.009). The low incidence of gastric cancer in Nepal can be attributed to low gastric mucosal atrophy. However, the mountainous subjects have high-risk gastric mucosal status, which could be considered a high-risk population in Nepal.

Genetic Relationship Between Korean and Mongolian Populations Based on the Y Chromosome DNA Variation

  • Jin, Han-Jun;Kim, Wook
    • Animal cells and systems
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    • v.7 no.2
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    • pp.139-144
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    • 2003
  • We analyzed seven Y chromosome binary markers (YAP, RPS4Y_711,\;M9,\;M175,\;LINE1,\;SRY_+465$ and 47z) in samples from a total of 254 males from Koreans and tow Mongolian ethnic groups (Buryat and Khalkh) to study the genetic relationship among these populations. We found eight distinct Y haplogroups constructed from the seven binary markers. Haplogroup DE-YAP was present at extremely low frequencies (∼2%) in the Korean and Mongolian populations. This result is consistent with earlier reports that showed the YAP+ chromosomes to be highly polymorphic only in populations from Japan and Tibet in east Asia. The observed high frequency of haplogroup $C-RPS4Y_711$ in the Mongolian populations (∼40%) is concordant with recent findings, showing that the $RPS4Y_711$-T chromosomes were distributed at high frequencies in Siberian and Mongolian populations compared with most other populations from east Asia. Thus, the relatively moderate frequency of haplogroup $C-RPS4Y_711$ in Korean (∼15%) can be seen as genetic evidence for probable interaction with Mongolian and/or Siberian populations. In contrast, the majority (∼75%) of modern Koreans studied here had high frequencies of Y chromosome lineages of haplogroup O-M175 and additional haplogroupts that define sublineage of O-M175, which are most likely related with modern populations in China. In conclusion, our data on the Y chromosome haplogroup distribution may provide evidence for interaction between Korean and Mongolian populations, but Korean tend to be much more related with those from southern-to-northern populations of China than to Mongolians in east Asia.

Molecular Characterization and Expression Analysis of Insulin-like Growth Factor-1 and Insulin-like Growth Factor Binding Protein-1 Genes in Qinghai-Tibet Plateau Bos grunniens and Lowland Bos taurus

  • Chen, Ya-bing;Fu, Mei;Lan, Dao-liang;Li, Jian
    • Asian-Australasian Journal of Animal Sciences
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    • v.28 no.1
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    • pp.20-24
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    • 2015
  • Insulin-like growth factor-1 (IGF-1) and insulin-like growth factor binding protein-1 (IGFBP-1) play a pivotal role in regulating cellular hypoxic response. In this study, we cloned and characterized the genes encoding IGF-1 and IGFBP-1 to improve the current knowledge on their roles in highland Bos grunniens (Yak). We also compared their expression levels in the liver and kidney tissues between yaks and lowland cattle. We obtained full-length 465 bp IGF-1 and 792 bp IGFBP-1, encoding 154 amino acids (AA) IGF-1, and 263 AA IGFBP-1 protein, respectively using reverse transcriptase-polyerase chain reaction (RT-PCR) technology. Analysis of their corresponding amino acid sequences showed a high identity between B. grunniens and lowland mammals. Moreover, the two genes were proved to be widely distributed in the examined tissues through expression pattern analysis. Real-time PCR results revealed that IGF-1 expression was higher in the liver and kidney tissues in B. grunniens than in Bos taurus (p<0.05). The IGFBP-1 gene was expressed at a higher level in the liver (p<0.05) of B. taurus than B. grunniens, but it has a similar expression level in the kidneys of the two species. These results indicated that upregulated IGF-1 and downregulated IGFBP-1 are associated with hypoxia adaptive response in B. grunniens.

Global Positioning System and Strengthening of Geodetic Network of Nepal

  • Adhikary, Krishna Raj;Mahara, Shree Prakash
    • Proceedings of the KSRS Conference
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    • 2003.11a
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    • pp.955-958
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    • 2003
  • Nepal is a country of mountains The higher order geodetic points were mostly established on the top of mountains and these points were used for the geodetic network extension. Lower order geodetic control networks were established at different times and used for the surveying and mapping activities of the country.. It has been found that the rate of convergence between north and south borders of Nepal to be 21${\pm}$2 mm each year and the rate translation of Kathmandu to 55${\pm}$3 mm/year to the plates. The most intense deformation in Nepal occurs along the belt of high mountains along its northern border res ulting in a strain contraction rate normal to the Himalayan Arc. This belt is approximately 40 km wide and extends into southern Tibet.( 13). Recently Survey Department of Nepal has lunched a program of strengthening the existing geodetic network of Nepal and re-observed the position of higher order geodetic points by using geodetic GPS receivers to evaluate their position and thus to define the precision of the control points once again. This paper describes the observation procedure and the adjustment results of the existing higher order control network of Nepal established in different time using different types of equipment and techniques; and highlights the observation procedure and the result obtained after the post processing of the GPS observation results. Attempt has been made to give the procedure and identify the methodology for the re observation of existing higher order geodetic points by using GPS receiver and post processing the observed data so that the existing higher order geodetic points are within the given accuracy standard.

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Comparative analysis of liver transcriptome reveals adaptive responses to hypoxia environmental condition in Tibetan chicken

  • Yongqing Cao;Tao Zeng;Wei Han;Xueying Ma;Tiantian Gu;Li Chen;Yong Tian;Wenwu Xu;Jianmei Yin;Guohui Li;Lizhi Lu;Shuangbao Gun
    • Animal Bioscience
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    • v.37 no.1
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    • pp.28-38
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    • 2024
  • Objective: Tibetan chickens, which have unique adaptations to extreme high-altitude environments, exhibit phenotypic and physiological characteristics that are distinct from those of lowland chickens. However, the mechanisms underlying hypoxic adaptation in the liver of chickens remain unknown. Methods: RNA-sequencing (RNA-Seq) technology was used to assess the differentially expressed genes (DEGs) involved in hypoxia adaptation in highland chickens (native Tibetan chicken [HT]) and lowland chickens (Langshan chicken [LS], Beijing You chicken [BJ], Qingyuan Partridge chicken [QY], and Chahua chicken [CH]). Results: A total of 352 co-DEGs were specifically screened between HT and four native lowland chicken breeds. Gene ontology and Kyoto encyclopedia of genes and genomes enrichment analyses indicated that these co-DEGs were widely involved in lipid metabolism processes, such as the peroxisome proliferator-activated receptors (PPAR) signaling pathway, fatty acid degradation, fatty acid metabolism and fatty acid biosynthesis. To further determine the relationship from the 352 co-DEGs, protein-protein interaction network was carried out and identified eight genes (ACSL1, CPT1A, ACOX1, PPARC1A, SCD, ACSBG2, ACACA, and FASN) as the potential regulating genes that are responsible for the altitude difference between the HT and other four lowland chicken breeds. Conclusion: This study provides novel insights into the molecular mechanisms regulating hypoxia adaptation via lipid metabolism in Tibetan chickens and other highland animals.