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Automated computer aided detection/diagnosis (CADe/CADx) system plays a key role in decision making process and work as a recommender system for researchers. Nowadays, CADe/CADx systems are getting popular due to their strong ability to extract complex relations present in unprocessed data set. In this research article, we present an intelligent two phase classification model for the design of CADe/CADx system. In order to design an intelligent CAD system, the primary challenge lies in identifying important attributes. The presence of irrelevant and redundant attributes in the data can have adverse impact over classifier accuracy. An efficient dimensionality reduction technique aims at achieving lower computational cost with reduced storage requirement by choosing problem specific relevant or significant attributes. The secondary challenge is to provide unambiguous and comprehensible rule base for accurate predictions. The contribution of work can be stated twofold: first, to attain reasonably good classification accuracy with possible speed up, linear discriminant analysis and some popular correlation coefficients (Fisher, Phi and Point bi-serial) are being used to identify significant attributes. Second, to generate comprehensible and understandable rule set a fuzzy decision tree based clustering approach is used. The performance of proposed model is verified on twelve famous UCI data sets. 相似文献
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Effects of fiber addition on antioxidant capacity and nutritional quality of wheat bread 总被引:1,自引:0,他引:1
Wholegrain and high fiber foods are recognized as nutritious and healthful products due to their content of dietary fiber, antioxidants and bioactive compounds. In this study, wheat, rye, barley, oat wholegrain flours and two fibers namely cellulose (insoluble fiber) and xanthan gum (soluble fiber) were used to replace a portion of wheat flour in pan bread to study effects of fibers on phenolic compounds, antioxidant capacity, dietary fiber fractions, and starch digestibility in vitro. Incorporation of wholegrain flours increased free and bound phenolics and antioxidant capacity of all the breads examined to various extent depending on the source of fiber. Additionally, soluble, insoluble and total dietary fiber fractions and total minerals increased with the addition of wholegrain flours or fibers. Rapidly and slowly digestible and resistant starches were not significantly influenced by adding wholegrain flours or fibers to breads. The study demonstrates the importance of enriching wheat bread with wholegrain flours to boost antioxidants and dietary fibers. On the other hand, more research is required to better understand impact of wholegrain flours or fiber on starch digestibility in vitro and glycemic response. 相似文献
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Bansal Khushboo Hooda Vikas Verma Neelam Kharewal Tannu Tehri Nimisha Dhull Vikas Gahlaut Anjum 《SILICON》2022,14(16):10173-10186
Silicon - Silicon (Si) is not considered as essential element for plant growth and development but it provides benefits to the plants in several ways. Due to distinguishing physiological features,... 相似文献
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Sharma Poonam Singh Akansha Singh Krishna Kant Dhull Anuradha 《Multimedia Tools and Applications》2022,81(24):34893-34917
Multimedia Tools and Applications - Intelligent transportation systems (ITS) are the integration of information and communications technologies with applications which are significant in traffic... 相似文献
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Avneet Singh Anjali Sharma Nidhi Dhull Anil Arora Monika Tomar 《Integrated ferroelectrics》2018,193(1):72-87
AbstractIn the present work efforts have been made to develop microheater integrated gas sensors with low power consumption. The design and simulation of a single-cell microheater is carried out using ANSYS. Low power consumption (<35?mW) platinum micro-heater has been fabricated using bulk micromachining technique on silicon dioxide membrane (1.5?μm thin), which provided improved thermal isolation of the active area of 250?×?250?μm2. The micro-heater has achieved a maximum temperature of ~950?°C at an applied dc voltage of 2.5 V. Fabricated mircro-heater has been integrated with SnO2 based gas sensors for the efficient detection of H2 and NO2 gases. The developed sensors were found to yield the maximum sensing response of ~184 and ~2.1 with low power consumption of 29.18 and 34.53?mW towards the detection of 1?ppm of NO2 gas and 500?ppm of H2 gas, respectively. 相似文献
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