• Title/Summary/Keyword: Sumatran

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Anatomical Characteristics of Major Plantation Species Growing in Indonesia II (인도네시아산 주요 조림수종의 해부학적 특성 II)

  • Jang, Sa-Ra;Jang, Jae-Hyuk;Kim, Jong-Ho;Febrianto, Fauzi;Kim, Nam-Hun
    • Journal of the Korean Wood Science and Technology
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    • v.42 no.6
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    • pp.635-645
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    • 2014
  • The anatomical characteristics of eight major wood species planted in Indonesia were investigated to provide valuable information for their effective utilization. The growth-ring boundaries of Damar and Sumatran pine were indistinct. Resin canal was found in Sumatran pine but it was not observed in Damar. Cupressoid pit and taxodioid pit were found in Damar and window-like pit and pinoid pit were observed in Sumatran pine. Tracheid length of Damar and Sumatran pine was shorter than $3,000{\mu}m$. There were uniseriate rays in Damar and Sumatran pine and fusiform ray in Sumatran pine. All the hardwood species observed in this study were diffuse-porous. They had different vessel groups, i.e., solitary pore in Afrika and Simpur Batu, pore cluster in Angsana and mostly 2-4 rows of radial pore multiple in Mahoni. Mindi and Trembesi had mostly 2-3 rows of radial pore multiple with paratracheal parenchyma as aliform and confluent types. Afrika, Mahoni and Simpur Batu showed heterocellular rays which composed of procumbent cells in the body and mostly 1-2 rows of upright and/or square cells in the margin. All ray cells procumbent was observed in Angsana, Mindi and Trembesi. The large rays commonly exceeding 1 mm in height and ray width of 3~6 cells were observed in Simpur Batu. The other five hardwood species showed ray width of 1~3 cells. Vessel number per $mm^2$ of Angsana and Simpur Batu was higher than those of the other hardwood species. The length of wood fiber and tracheid showed a tendency to increase from pith to bark. By IAWA list, fiber length of hardwoods was classified into long in Simpur Batu and short in Angsana and Trembesi.

Seismicity of Peninsular Malaysia due to intraplate and far field sources

  • Loi, Daniel W.;Raghunandan, Mavinakere E.;Swamy, Varghese
    • Earthquakes and Structures
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    • v.10 no.6
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    • pp.1391-1404
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    • 2016
  • Peninsular Malaysia lying on the stable Sunda Plate has traditionally been considered safe with low to moderate seismicity. However, far field Sumatran mega-earthquakes have been shown to be capable of triggering ground motions felt in high rise structures in the major Malaysian cities while seismic impact from local earthquakes of moment magnitude 3.8 have reportedly induced nominal structural damages to nearby buildings. This paper presents an overview of the recent seismic activities in and around Peninsular Malaysia with reference to prominent earthquakes generated by far field interplate and local intraplate sources. Records of ground motion data and seismic hazard assessment (SHA) results available in the literature have been analyzed and discussed. The peak ground acceleration (PGA) values from historical records for few local intraplate events were observed to be higher than those for the events from Sumatran Subduction Zone. This clearly points to the need for a detailed and comprehensive SHA incorporating both far field and local sources. Such an analysis would contribute the knowledge required for secure and reliable infrastructure design and safeguard the Malaysian people and economy.

Ethyl Haematommate from Stereocaulon graminosum Schaer.: Isolation and Crystal Structure

  • Ismed, Friardi;Arifa, Nurwahidatul;Zaini, Erizal;Bakhtiar, Amri;Umeda, Daiki;Putra, Okky Dwichandra;Yonemochi, Etsuo
    • Natural Product Sciences
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    • v.24 no.2
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    • pp.115-118
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    • 2018
  • Herein, we reported the phytochemical investigation of whole thallus Sumatran lichen, Stereocaulon graminosum Schaer, and isolated a mono aromatic compound, ethyl haematommate (1). The structure of compound 1 have been established based on spectroscopic data and confirmed by single crystal X-ray structure analysis.

Evaluation of the bioequivalence of Sumatriptan in healthy volunteers (이미그란 정 50 mg에 대한 수마트란 정의 생물학적 동등성 평가)

  • Yun, Hwi-Yeol;Baek, In-Hwan;Kwon, Kwang-Il
    • Korean Journal of Clinical Pharmacy
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    • v.15 no.2
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    • pp.160-164
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    • 2005
  • 수마트립탄은 뇌혈관에 분포되어 있는 5-HT1B/1D수용체에 특이적이고 선택적으로 작용하여 뇌혈관 수축 작용을 나타내어 편두통의 치료에 널리 쓰이는 약물이다. 본 연구는 수마트립탄 제제인 이미그란(50 mg tablet, GSK사)을 대조약으로 하여 시험약인 명인 제약의 수마트란 50mg정의 생물학적 동등성 평가를 하기 위해 22명의 건강한 지원자를 모집하였다. 지원자를 두 군으로 나누어 1정씩 투여하였고 $2{\times}2$ 교차시험을 실시하였다. 수마트립탄의 혈장 중의 농도를 정량하기 위하여 발리데이션된 HPLC/FD를 사용하였다. 채혈 시간은 투약 전 및 투약 후 0.5, 1, 1.5, 2, 2.5, 3,4, 5, 7, 9, 12시간에 걸쳐 총 12시점에 걸쳐 시행하였다. 생물학적 동등성을 판정하기 위한 파라미터로 12시간까지의 혈장 중 농도 곡선 하 면적$(AUC_{12hr})$ 최고 혈중 농도$(C_{max})$를 사용하였다. $AUC_{12hr}$의 평균은 $137.87ng{\cdot}ml/hr$(시험약)과 $130.12ng{\cdot}ml/hr$(대조약)으로 나타났다. $C_{max}$의 경우 각 각 29.30 ng/ml(시험약)과 29.25ng/m1(대조약)으로 관찰되었다. $AUC_{12hr}$의 경우 로그변환 한 평균치 차의 90% 신뢰구간이 log0.95-log1.24이었고, $C_{max}$의 경우 log0.90-log1.149로 계산되 어 두 항목 모두 log0.8-log1.25이어야 한다는 식품의 약품 안전청 과 FDA의 기준을 모두 만족시켰다. 이상의 결과를 종합하면 시험약 수마트란 정 50 mg은 대조약 이미그란 정 50 mg에 대하여 생물학적으로 동등한 것으로 판정되었다.

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An Analysis on Characteristics of Ancient Indonesian Textiles (II) - Focus on the Techniques and the Patterns of the 'Sacred Cloths' -

  • Langi, Kezia-Clarissa;Park, Shinmi
    • Journal of the Korean Society of Costume
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    • v.66 no.7
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    • pp.34-49
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    • 2016
  • The ancient 'sacred cloths' of Indonesia have diverse characteristics. The purpose of this study is to analyze the characteristics of ancient Indonesian textiles, focusing on 'sacred cloths.' The research is divided into two parts. The first part analyzes the creation period, religious importance, region where the cloths are found, and color of the 'sacred cloths.' The second part focuses on the textile-making techniques and the ritual patterns of the 'sacred cloths.' This research is the second paper. This research analyzes 225 Indonesian sacred cloth examples chosen for their religious function in ceremony, and reviews 10 books and 8 research papers. Field research was done in the Museum of Bali, the Indonesian Museum of Textiles, and nine weaving production houses in eastern Bali. Indonesian sacred cloths express their cultural philosophy and function through production techniques, colors, techniques, and visual patterns. The 'sacred cloth'-making techniques are classified as Batik, Prada, and Ikat. The regions that contribute to the textile production determine what patterns show up on the cloths. Sumatran patterns are philosophical, lavish, and prestigious. Bornean patterns are barbaric and prestigious. Balinese patterns are complex, decorative, warm, festive, calm, and aristocratic. Javanese patterns are symbolic and repetitive. Celebes patterns are artistic and simple. Nusa Tenggara patterns are symbolic and narrative. The forms shown on the textiles, whether geometric, human and animal, natural objects, or abstract patterns, determine how to classify the varied patterns. As a result, ancient Indonesian sacred cloths characteristics portray Indonesian identity as Bhinneka Tunggal Ika(Unity in Diversity).

Wood Chemical Compositions of Raru Species Originating from Central Tapanuli, North Sumatra, Indonesia: Effect of Differences in Wood Species and Log Positions

  • ISWANTO, Apri Heri;TARIGAN, Fazilla Oktaviani;SUSILOWATI, Arida;DARWIS, Atmawi;FATRIASARI, Widya
    • Journal of the Korean Wood Science and Technology
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    • v.49 no.5
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    • pp.416-429
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    • 2021
  • Raru is a lesser-known plant species originating from North Sumatra, Indonesia. Information on the characteristics is still limited, especially its chemical component. Therefore, this study aims to examine the chemical composition information of Cotylelobium lanceolatum, Cotylelobium melanoxylon, and Vatica pauciflora woods based on their axial log positions (bottom, middle, and top). The wood chemical analysis was performed in terms of the Indonesian National Standard (SNI) method. Furthermore, the analysis measured holocellulose, 𝛼-cellulose, hemicellulose, lignin content, alcohol benzene extractive content, the extractive substance in hot and water, and solubility in NaOH 1%. The results indicated that the species and their log axial positions affected different chemical components, which included 𝛼-cellulose, hemicellulose, and lignin of C. lanceolatum amounting to 41.88%, 19.39%, and 28.68% respectively. Meanwhile, for C. Melanoxylon, they were 42.01%, 21.11%, and 24.76% respectively; and for V. pauciflora wood, they were 42.95%, 23.24%, and 30.11% respectively. The average values of the extractive contents including the solubility in 1: 2 ethanol benzene, NaOH, and hot water for C. lanceolatum, C. melanoxylon, and V. pauciflora wood were (10.58%, 27.62%, 8.13%), (14.54%, 28.22%, 7.82%), and (10.95%, 28.60%, 7.57%) respectively. The wood species had a significant effect on chemical components including lignin, cellulose and hemicellulose, and extractive solubility in cold water. Furthermore, the axial log position had a significant effect on all the parameters of the chemical composition of the wood being tested.

Ensuring Consumer Safety: Molecular Authentication of Eurycoma longifolia Derivative Products in the Wood Science and Technology Industry

  • Arida SUSILOWATI;Henti Hendalastuti RACHMAT;Kusumadewi Sri YULITA;Asep HIDAYAT;Susila SUSILA;Nawwall ARROFAHA;Irsyad KAMAL;Fifi Gus DWIYANTI
    • Journal of the Korean Wood Science and Technology
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    • v.52 no.4
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    • pp.343-362
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    • 2024
  • Eurycoma longifolia (pasak bumi) is a popular medicinal plant in Indonesia and is widely used in various products. Its high economic value has caused illegal harvesting and product falsification. Using molecular techniques, the authentication and traceability of E. longifolia derivatives can be controlled to ensure consumer safety. Therefore, this study aimed to authenticate the products and derivatives of E. longifolia (pasak bumi) produced, marketed, and consumed in Indonesia using molecular identification techniques. Genomic DNA from 37 leaf samples collected from the Sumatran mainland and the Riau Islands and six E. longifolia products were amplified and sequenced using trnL-trnF and internal transcribed spacer (ITS) regions. The results revealed that all leaf samples were indeed E. longifolia based on the markers used, with the six products, only the herbal tea product (sample code TCPB) was most likely derived from E. longifolia based on the two regions, suggesting that not all products labelled as E. longifolia in the market are authentic. The results also indicated that several other plants species are used as substitutes or adulterants, including Simaba spp., Simarouba spp., Homalolepis spp., Vernonia gigantea, Elephantopus scaber, Gymnanthemum amygdalinum, Cyanthillium spp., Potentilla lineata, Ailanthus altissima, Geijera paniculata, Hannoa chlorantha, and Dalbergia spp. Klebsiella pneumoniae bacteria were also identified in this study on the outer wooden cup of E. longifolia products. Therefore, this molecular approach is effective in identifying the authenticity of E. longifolia products, with trnL-trnF and ITS as the recommended DNA markers.