검색어: susceptible (영어 - 히브리어)

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English

susceptible

Hebrew

 

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히브리어

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영어

fat tissue is most susceptible to infection, and facial areas typically around the eyes, ears, and cheeks.

히브리어

רקמת שומן היא הרגישה ביותר לזיהום, ואזורים בפנים כגון מסביב לעיניים, אוזניים ולחיים.

마지막 업데이트: 2016-03-03
사용 빈도: 2
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영어

many western sections of the wall are constructed from mud, rather than brick and stone, and thus are more susceptible to erosion.

히브리어

קטעים רבים מחלקה המערבי של החומה בנויים מלבני בוץ, ולא מלבנים או אבן, ולכן הם רגישים יותר לסחיפה.

마지막 업데이트: 2016-03-03
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영어

homosexuals were included in this list by the u.s. state department in 1950, on the theory that they were susceptible to blackmail.

히브리어

הומוסקסואלים היו כלולים ברשימה זו על ידי מחלקת המדינה האמריקנית ב-1950, על סמך התאוריה כי הם מועדים לסחיטה.

마지막 업데이트: 2016-03-03
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영어

women within the 0.7 range have optimal levels of estrogen and are less susceptible to major diseases such as diabetes, cardiovascular disorders and ovarian cancers.

히브리어

לנשים עם יחס של 0.7 יש אסטרוגן באיכות הגבוהה ביותר והן פחות רגישות למחלות כמו סוכרת, ליקויים במחזור הדם וסרטן השחלה.

마지막 업데이트: 2016-03-03
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영어

a neuroendocrinologist, he has focused his research on issues of stress and neuronal degeneration, as well as on the possibilities of gene therapy strategies for protecting susceptible neurons from disease.

히브리어

כנוירואנדוקרינולוג הוא התמקד במחקר על בעיות המתח/לחץ וניוון מוחי, כמו כן עסק באפשרויות טיפול בגנים על מנת להגן על נוירונים רגישים במיוחד מפני מחלות.

마지막 업데이트: 2016-03-03
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영어

penetration by oa of the top layer of the epidermis, the stratum corneum, results in an inflammatory response in susceptible persons which disturbs homeostasis and results in erratic cleavage of stratum corneum cells.

히브리어

חדירת חומצות השומן לשכבה העליונה של האפידרמיס, השכבה הקרנית של העור (stratum corneum), גורמת לתגובה דלקתית אצל אנשים בעלי רגישות לחומצה זו.

마지막 업데이트: 2016-03-03
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영어

effect of biological pretreatment on biomass characteristics biological pretreatment of lignocellulosic biomass using white-rot fungi changes the biochemical and physical characteristic of the biomass (fig. 2). lignin degradation is the point of interest in many studies. for examples, lignin loss of corn straw was up to 54.6% after 30 days pretreatment with t. versicolor (yu et al. 2010b); bamboo culm was > 20% after 4 weeks pretreatment with echinodontium taxodii 2538 and t. versicolor g20 (zhang et al. 2007b); and wheat straw was 39.7% decreased after pretreatment with p. ostreatus (zadražil and puniya 1994). the degradation of lignin by white-rot fungi is a non-specific oxidative process that finally results in complete degradation of the lignin. peer-reviewed review article bioresources.com isroi et. al. (2011). “biological pretreatment: review,” bioresources 6(4), 5224-5259. 5232 fig. 2. schematic diagram of biological pretreatment of lignocelluloses. white-rot fungi decrease lignin content and alter chemical and physical structures of lignocelluloses that make biodegradation of lignocelluloses more efficient. white-rot fungi have unique capability to depolymerise, cleave carbon-carbon linkages, and mineralize lignin by ligninolytic enzymes. studies with 14c labeled lignin showed that white-rot fungi degraded them into 14co2 (lundquist et al. 1977; agosin, daudin and odier 1985; pérez and jeffries 1990; hofrichter et al. 1999). pleurotus ostreatus and b. adusta are highly specific lignin degraders based on 14c-lignin-labeled degradation analysis (agosin, daudin and odier 1985). changes in the ratio between phydroxyphenyl (h), guaiacyl (g), and syringyl (s) lignin units were analysed using pyrolysis-gas chromatography-mass spectrometry. it was shown that 10 u of peroxidase per mg of straw decreased the proportion of phenolic h units from 31% in the control to 3% in the treated straw, the g units from 40 to 4%, and completely removed the small amount of phenolic s units present in wheat straw (camarero et al. 2001). it is proposed that the susceptibility of the lignin units are in the following order: s>g>h. in general, biomass with s-rich lignins is more susceptible to fungal degradation than other lignin units (valmaseda et al. 1991). hemicellulose is easier to degrade than other components in lignocellulosic biomass. white-rot fungus such as p. chrysosporium (kirk and cullen 1998), phlebia floridensis (sharma and arora 2010), c. subvermispora (mendonça et al. 2008), pleurotus ostreatus (baldrian et al. 2005), and pleurotus dryinus (kachlishvili et al. 2005) were shown to produce multiple endoxylanases. compositional analyses of corn stover showed that during the 30 days biodegradation, white-rot fungi mainly degraded hemicellulose by 24.4 to 34.9% (yang et al. 2010). corn stover pretreated using c. subvermispora for 18 days lost up to 22.5% of hemicelluloses, and chinese-willow pretreated using echinodontium taxodii 2538 for 120 days lost 54.8% of its hemicellulose (yu et al. 2009a). degradation of hemicellulose combined with degradation of lignin may decrease recalcitration of lignocelluloses to enzymatic hydrolysis, but xylan loss increases the risk of lowering all sugar recovery in the bioconversion process (yu et al. 2010a).

히브리어

ההשפעה של טיפול מקדים ביולוגי על מאפייני ביומסה טיפול מקדים ביולוגי של ביומסה ליגנוצלולוזית באמצעות פטריות ריקבון לבנות משנה את המאפיין הביוכימי והפיזי של הביומסה (איור 2). השפלת ליגנין היא נקודת העניין במחקרים רבים. לדוגמה, אובדן ליגנין של קש תירס היה עד 54.6% לאחר 30 ימים לפני הטיפול עם t. versicolor (yu et al. 2010b); אשמת במבוק היה 20% לאחר 4 שבועות לפני הטיפול עם echinodontium taxodii 2538 ו - t. versicolor g2

마지막 업데이트: 2023-01-20
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