Automatic child-face age-progression based on heritability factors of familial faces

Author(s):  
Anonymous Submission
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2013 ◽  
Author(s):  
James Michael Lampinen ◽  
Blake Erickson ◽  
Charlie Frowd ◽  
Gregory Mahoney
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2020 ◽  
Vol 57 (3) ◽  
pp. 241-270
Author(s):  
Kyle L. Schusler ◽  
David M. Pearson ◽  
Michael McCurry ◽  
Roy C. Bartholomay ◽  
Mark H. Anders

The eastern Snake River Plain (ESRP) is a northeast-trending topographic basin interpreted to be the result of the time-transgressive track of the North American plate above the Yellowstone hotspot. The track is defined by the age progression of silicic volcanic rocks exposed along the margins of the ESRP. However, the bulk of these silicic rocks are buried under 1 to 3 kilometers of younger basalts. Here, silicic volcanic rocks recovered from boreholes that penetrate below the basalts, including INEL-1, WO-2 and new deep borehole USGS-142, are correlated with one another and to surface exposures to assess various models for ESRP subsidence. These correlations are established on U/Pb zircon and 40Ar/39Ar sanidine age determinations, phenocryst assemblages, major and trace element geochemistry, δ18O isotopic data from selected phenocrysts, and initial εHf values of zircon. These data suggest a correlation of: (1) the newly documented 8.1 ± 0.2 Ma rhyolite of Butte Quarry (sample 17KS03), exposed near Arco, Idaho to the upper-most Picabo volcanic field rhyolites found in borehole INEL-1; (2) the 6.73 ± 0.02 Ma East Arco Hills rhyolite (sample 16KS02) to the Blacktail Creek Tuff, which was also encountered at the bottom of borehole WO-2; and (3) the 6.42 ± 0.07 Ma rhyolite of borehole USGS-142 to the Walcott Tuff B encountered in deep borehole WO-2. These results show that rhyolites found along the western margin of the ESRP dip ~20º south-southeast toward the basin axis, and then gradually tilt less steeply in the subsurface as the axis is approached. This subsurface pattern of tilting is consistent with a previously proposed crustal flexural model of subsidence based only on surface exposures, but is inconsistent with subsidence models that require accommodation of ESRP subsidence on either a major normal fault or strike-slip fault.


Author(s):  
Pallavi Madhukar ◽  
Rachana Chetan ◽  
Supriya Prasad ◽  
Mohamed Shayan ◽  
B. Niranjana Krupa

Author(s):  
T. Praveen Kumar ◽  
Prashanthi P. ◽  
Shaik Sabiya ◽  
M. Chinna Eswaraiah

Congestive heart disease (CHD) is considered to be the leading cause of mortality and morbidity in both gender groups in developed and developing countries. Hypertension is one of the main mortality risks and is attributed to over 45% of all deaths from CHD. The main objective of our work was to evaluate cardiovascular risk in hypertensive patients attending a tertiary care hospital in the Khammam region. The study was a prospective observational study conducted over an 8-month period from June 2019 to January 2020. 192 subjects were selected based on the inclusion criteria. CVD risk was assessed using Q Risk 3 software and the results were presented as CVD risk and relative risk. The same number of men and women (96) was selected in the study to evaluate the influence of gender on CVD risk. Other risk factors such as BMI, marital status, literacy rate, occupation, physical activity and lifestyle were assessed to determine CVD risk. Abnormal HTN values were found in 66 men and 63 women. Age progression was found to be an important factor in CVD risk in both men and women. Social status and literacy rates in patients over 50 have also been found to cause CVD risk. Our study showed that physical inactivity, eating habits, obesity, smoking, alcohol and hypertension had a direct effect on cardiovascular risk.


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