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| 1 | Review of Finger millet(Eleusine coracana(L.)Gaertn):A power house of health benefiting nutrients显示文摘The bulk of the world’s millet crop is produced by India,Nigeria,Niger,Mali,Burkina Faso,Chad,and China.Finger millet(Eleusine coracana(L.)Gaertn),little millet(Panicum sumatrense Roth ex Roem.&Schult.),foxtail millet(Setaria italica(L.)P.Beauvois)and proso millet(Panicum miliaceum L.)are most commonly found species among various millet varieties.In India,finger millet occupy the largest area under cultivation among the small millets.Finger millet stands unique among the cereals such as barley,rye and oats with higher nutritional contents and has outstanding properties as a subsistence food crop.It is rich in calcium(0.34%),dietary fiber(18%),phytates(0.48%),protein(6%–13%)minerals(2.5%–3.5%),and phenolics(0.3%–3%).Moreover,it is also a rich source of thiamine,riboflavin,iron,methionine,isoleucine,leucine,phenylalanine and other essential amino acids.The abundance of these phytochemicals enhances the nutraceutical potential of finger millet,making it a powerhouse of health benefiting nutrients.It has distinguished health beneficial properties,such as anti-diabetic(type 2 diabetes mellitus),anti-diarrheal,antiulcer,anti-inflammatory,antitumerogenic(K562 chronic myeloid leukemia),atherosclerogenic effects,antimicrobial and antioxidant properties. | Dinesh Chandra Satish Chandra Pallavi A.K.Sharma | 2016 | Food Science and Human Wellness2016,5,3: | 4 |
| 2 | Dynamics of fine root N,Pand K in high elevation forests of central Himalaya显示文摘Fine root nutrient dynamics were calculated for one year in three high elevation forests of Indian central Himalaya.In all sites,fine root nutrient concentrations varied with respect to forests and seasons.N concentration in fine roots was highest followed by K and P.In general,fine roots showed their highest nutrient concentrations during the rainy season and lowest in winter.Higher nutrient concentrations during the rainy season may be related to favorable moisture and temperature regimes which in turn results in increased plant growth activities.Present fine root nutrient amounts and nutrient uptake values decreased towards high elevations.In general,the highest amounts of nutrients in both live and dead fine roots were observed in September and the lowest in the month of June.Turnover rates of the nutrients in the fine roots also decreased with an increase in elevation. | Satish Chandra GARKOTI | 2012 | Forestry Studies in China2012,14,2: | 3 |
| 3 | Interdependence of Microstructure and Strength of Structural Lightweight Aggregate Concrete显示文摘 | Satish Chandra Leif Berntsson | 1992 | Cement & Concrete Composites1992,14,: | 2 |
| 4 | BISAP评分与Ranson评分和CT严重指数预测印度急性胰腺炎患者并发症发生率和病死率的比较研究显示文摘目的:本研究通过印度中东部地区一家三甲医院,前瞻性评估急性胰腺炎严重度床边指数(BISAP)评分预测急性胰腺炎患者病死率及疾病进展中间指标的准确性,从而为贫困人群提供一个经济、有效的预后预测方法。方法:2012-2014年间我们中心连续收治的119例急性胰腺炎患者纳入研究。起病24 h内对所有病例进行BISAP评分,同时也进行Ranson评分和CT严重指数(CTSI)评估。采用趋势和判别分析来对这三种评分系统对病死率的预测价值进行评价。通过受试者操作特征(ROC)曲线评估这三种评分系统对急性胰腺炎患者病死率及疾病进展中间指标(器官衰竭和胰腺坏死)的预测情况。结果:119例入组病例中42例(35.2%)出现器官衰竭,定义为重症急性胰腺炎,47例(39.5%)发生胰腺坏死,12例(10.1%)死亡。BISAP评分预测重症急性胰腺炎、胰腺坏死和死亡的曲线下面积(AUC)分别为0.962、0.934和0.846。Ranson评分预测重症急性胰腺炎(AUC 0.956)和死亡(AUC 0.841)的准确性稍低于BISAP评分。CTSI在预测胰腺坏死方面的准确性最高,AUC为0.958。以≥3分作为截点,BISAP评分预测病死率的敏感性和特异性分别为100%和69.2%。结论:BISAP评分简单实用,在急性胰腺炎起病24 h内即可鉴别出高危死亡风险及高危疾病进展风险的患者。这种风险分层方法可用以提高临床诊治,并有助于临床研究中的病例入组。 | Jitin Yadav Sanjay Kumar Yadav Satish Kumar Ranjan George Baxla Dipendra Kumar Sinha Pankaj Bodra Ram Chandra Besra Babu Mani Baski Om Prakash Abhinav Anand | 2016 | Gastroenterology Report2016,4,3: | 2 |
| 5 | A low-cost noneontact capacitance-type level transducer for a conducting liquid 显示文摘 | Satish Chandra Bera Jayanta Kumar Ray Subrata Chattopadhyay | 2006 | IEEE Transactions on Instrumentation and Measurement2006,55,3: | 1 |
| 6 | Interdependence of Microstructure and Strength of Structural Lightweight Aggregate Concrete显示文摘 | Shondeep L Sarkar Satish Chandra | 1992 | Cement and Concrete Composities1992,,14: | 1 |
| 7 | Numerical investigation of the effect of transitory strand opening on mixing in a multistrand tundish显示文摘In a multistrand,the outlet near the inlet produces short circuiting flow.This leads to the formation of dead zones inside the tundish,and consequently,the mean residence time decreases.In the present study,numerical investigation of mixing inside a delta shaped tundish with sloping boundaries was carried out by solving the Navier-Stokes equation and employing the standard turbulence model.To decrease the dead zone volume inside the tundish,the effect of closing the outlet near the inlet for a small amount of time and further opening it on the mixing behavior of the tundish was studied.The outlets near the inlet were closed for varying amount of time,and the transient analysis of fluid flow and the tracer dispersion study were carried out to find the mixing parameters of the tundish,namely,mean residence time and the ratio of mixed to dead volume of the tundish.An optimum closure time of the near outlet has been found,which yields best mixing inside the tundish.The numerical code was validated against the experimental observation by performing the tracer dispersion study inside a multistrand tundish and the reasonably good match between the experimental and numerical results in terms of residence time distribution (RTD) curves.The results obtained from the present study confirm the strong role of choosing the right time for opening and closing the outlets to get improved characteristics for the fluid flow and mixing behavior of the tundish.The educational version of computational fluid dynamics (CFD) software PHOENICS was used to solve the governing equations and interpret the results in different forms. | Sabin Kumar Mishra Pradeep Kumar Jha Satish Chandra Sharma Satish Kumar Ajmani | 2011 | International Journal of Minerals,Metallurgy and Materials2011,18,5: | 1 |
| 8 | The Teaching of Statistics in the Biological,Medical and Health Sciences:Some Comments and a Selected Bibliography显示文摘 | Hardeo Sahai Satish Chandra Misra | 1990 | Biometrical Journal1990,32,4: | 1 |
| 9 | I Nteractions of polymers and organic admixtures onportland cement hydration 显示文摘 | SATISH CHANDRA PER FLODIN | 1987 | Cem Concr Res1987,17,87: | 1 |
| 10 | Searching for points-to analysis-显示文摘 | Bruns Glenn Chandra Satish | 2002 | ACM SIGSOFT Software Engineering Notes2002,27,6: | 1 |
| 11 | Mechanistic Approach for Fiber-reinforced Flexible Pavements显示文摘 | Satish Chandra Viladkar M N Prashant Pnagrale | 2008 | J Transp Eng-ASCE2008,134,1: | 1 |
| 12 | Survey on recent advances in IoT application layer protocols and machine learning scope for research directions显示文摘The Internet of Things(IoT)has been growing over the past few years due to its flexibility and ease of use in real-time applications.The IoT's foremost task is ensuring that there is proper communication among different types of applications and devices,and that the application layer protocols fulfill this necessity.However,as the number of applications grows,it is necessary to modify or enhance the application layer protocols according to specific IoT applications,allowing specific issues to be addressed,such as dynamic adaption to network conditions and interoperability.Recently,several IoT application layer protocols have been enhanced and modified according to application requirements.However,no existing survey articles focus on these protocols.In this article,we survey traditional and recent advances in IoT application layer protocols,as well as relevant real-time applications and their adapted application layer protocols for improving performance.As changing the nature of protocols for each application is unrealistic,machine learning offers means of making protocols intelligent and is able to adapt dynamically.In this context,we focus on providing open challenges to drive IoT application layer protocols in such a direction. | Praveen Kumar Donta Satish Narayana Srirama Tarachand Amgoth Chandra Sekhara Rao Annavarapu | 2022 | Digital Communications and Networks2022,8,5: | 1 |
| 13 | Im-plication of unequal rivet load distribution in the failures and dam-age tolerant design of metal and composite civil aircraft riveted lapjoints显示文摘 | Sathiya Naarayan S Pavan Kumar D V T G Satish Chandra | 2009 | Engineering Failure Analysis2009,16,7: | 1 |
| 14 | Effect of Lane Width on Capacity under Mixed Traffic Conditions in India 显示文摘 | Satish Chandra Upendra Kumar | 2003 | Journal of Transportation Engineering2003,,2: | 1 |
| 15 | A tutorial and diagnostic tool for chaotic oscillators and time series显示文摘 | Chandra Satish | 1997 | Computers & Graphics (S0097-8493)1997,21,2: | 1 |
| 16 | Characterization of fly ash bituminous concrete mixes 显示文摘 | Sharma Vishal Chandra Satish Choudhary Rajan | 2010 | Journal of Materials in Civil Engineering2010,22,12: | 1 |
| 17 | Overtaking behavior on divided highways under mixed traffic conditions 显示文摘 | Satish Chandra Shalinee Shukla | 2012 | The 8''h International Conference on Traffic and Transpor- tation Studies2012,43,: | 1 |
| 18 | Mixing Eval- uation in the RH Process Using Mathematical Modeling显示文摘 | Ajmani Satish Kumar Dash Sukanta K Chandra Sanjay | 2004 | ISIJ ln- lernational2004,44,1: | 1 |
| 19 | Coal - oil - water multiphase fuel : Rheological behavior and prediction of optimum particle size 显示文摘 | SATISH CHANDRA SHUKLA SOMANATH KUKADE SAN JIB KU- MAR MANDAL | 2008 | Fuel2008,87,1516: | 1 |
| 20 | Epidemiological study of child &adolescent psychiatricdisor- ders in urban & rural areas of Bangalore India显示文摘 | Shoba Srinath Satish Chandra Girimaji G Gururaj a al | 2005 | Indian J Med Res2005,122,1: | 1 |