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13篇 您的检索式:作者名="Argel"
    题名 作者 年代 出处 被引量
1Electronic residency application service scores:do they correlate with the rank显示文摘Argeles PC 2006J Reprod Med2006,51,6:1
2Human health risk of dietary intake of organochlorine pesticide residues in bovine meat and tissues from Veracruz, México显示文摘Violeta Pardío David Martínez Argel Flores Dora Romero Víctor Suárez Karla López Roxana Uscanga 2012Food Chemistry2012,,3:1
3Human health risk of dietary intake of organochlorine pesticide residues in bovine meat and tissues from Veracruz, México显示文摘Violeta Pardío David Martínez Argel Flores Dora Romero Víctor Suárez Karla López Roxana Uscanga 2012Food Chemistry2012,,3:1
4Electronic residency application service scores: do theycrorrelate with the rank显示文摘Argeles PC 2006J Reprod Med2006,51,6:1
5Electronic residency application service scores: do they correlate with the rank 显示文摘Argeles PC 2006J Reprod Med2006,51,6:1
6Electronic residency application service scores:do they correlate with the rank显示文摘Argeles P C 2006J Reprod Mecl2006,51,6:1
7Electronic residency ap- plication service scores: do they correlate with the rank order list for the mtch?显示文摘Argeles PC Weiss PM Koller CA 2006Journal of Reproductive Medicine2006,51,6:1
8Observation of the Hammick Intermediate:Reduction of the Pyridine-2-ylid Ion in the Gas Phase显示文摘LAVORTATO D TEROUW J K ARGEL T K 1996Journal of the American chemical society1996,118,11:1
9Electronic residency application service scores: do they correlate with the rank显示文摘Argeles P C 2006J Reprod Med2006,51,6:1
10Human health risk of dietary intake of organochlorine pesticide residues in bovine meat and tissues from Veracruz, México显示文摘Violeta Pardío David Martínez Argel Flores Dora Romero Víctor Suárez Karla López Roxana Uscanga 2012Food Chemistry2012,,3:1
11A novel artificial bee colony-optimized visible oblique dipyramid greenness index for visionbased aquaponic lettuce biophysical signatures estimation显示文摘In response to the challenges in providing real-time extraction of crop biophysical signatures,computer vision in computational crop phenotyping highlights the opportunities of computational intelligence solutions.Shadow and angular brightness due to the presence of photosynthetic light unevenly illuminate crop canopy.In this study,a novel vegetation index named artificial bee colony-optimized visible band oblique dipyramid greenness index(vODGIabc)was proposed to enhance vegetation pixels by correcting the saturation and brightness levels,and the ratio of visible RGB reflectance intensities.Consumer-grade smartphone was used to acquire indoor and outdoor aquaponic lettuce images daily for full 6-week crop life cycle.The introduced saturation rectification coeffi-cient(X),value rectification coefficient(m),green–red wavelength adjustment factor(a),and green–blue wavelength adjustment factor(b)on the original triangular greenness index resulted in 3D canopy reflectance spectrum with two oblique tetrahedrons formed by connecting the vertices of visible RGB band reflectance and maximum wavelength point map to corresponding saturation and value of lettuce-captured images.Hybrid neighborhood component analysis(NCA),minimum redundancy maximum relevance(MRMR),Pearson’s correlation coefficient(PCC),and analysis of variance(ANOVA)weighted most of the canopy area,energy,and homogeneity.Strong linear relationships were exhibited by using vODGIabc in estimating lettuce crop fresh weight,height,number of spanning leaves,leaf area index,and growth stage with R2 values of 0.9368 for InceptionV3,0.9574 for ResNet101,0.9612 for ResNet101,0.9999 for Gaussian processing regression,and accuracy of 88.89%for ResNet101,respectively.This low-cost approach on developing greenness index for biophysical signatures estimation proved to be more accurate than the previously established triangular greenness index(TGI)using RGB smartphone camera.Ronnie Concepcion II Elmer Dadios Edwin Sybingco Argel Bandala 2023Information Processing in Agriculture2023,10,3:0
12Aquaphotomics determination of nutrient biomarker for spectrophotometric parameterization of crop growth primary macronutrients using genetic programming显示文摘Water quality assessment is currently based on time-consuming and costly laboratory pro-cedures and numerous expensive physicochemical sensors deployment.In response to the trend of device minimization and reduced outlays in sustainable aquaponic water monitoring,the integration of aquaphotomics and computational intelligence is presented in this paper.This study used the combination of temperature,pH,and electrical conductivity sensors in predicting crop growth primary macronutrient concentration(nitrate,phos-phate,and potassium(NPK)),thus,limiting the number of deployed sensors.A total of 220 water samples collected from an outdoor artificial aquaponic pond were temperature perturbed from 16 to 36℃ with 2℃ increments to mimic ambient range,which varies water compositional structure.Aquaphotomics was applied on ultraviolet,visible light,and near-infrared spectral regions,100 to 1000 nm,to determine NPK compounds.Princi-pal component analysis emphasized nutrient dynamics through selecting the highly corre-lated water absorption bands resulting in 250 nm,840 nm,and 765 nm for nitrate,phosphate,and potassium respectively.These activated water bands were used as wave-length protocols to spectrophotometrically measure macronutrient concentrations.Exper-iments have shown that multigene symbolic regression genetic programming(MSRGP)obtained the optimal performance in parameterizing and predicting nitrate,phosphate,and potassium concentrations based on water physical properties with an accuracy of 87.63%,88.73%,and 99.91%,respectively.The results have shown the established 4-dimensional nutrient dynamics map reveals that temperature significantly strengthens nitrate and potassium above 30℃ and phosphate below 25℃ with pH and electrical con-ductivity ranging between 7 and 8 and 0.1 to 0.2 mS cm^(-1) respectively.This novel approach of developing a physicochemical estimation model predicted macronutrient concentra-tions in real-time using physical limnological sensors with a 50%reduction of energy consumption.This same approach can be extended to measure secondary macronutrients and micronutrients.Ronnie Concepcion II Sandy Lauguico Jonnel Alejandrino Elmer Dadios Edwin Sybingco Argel Bandala 2022Information Processing in Agriculture2022,9,4:0
13The adjustment of γ-aminobutyric acid_A tonic subunits in Huntington's disease:from transcription to translation to synaptic levels into the neostriatum显示文摘γ-Aminobutyric acid(GABA),plays a key role in all stages of life,also is considered the main inhibitory neurotransmitter.GABA activates two kind of membrane receptors known as GABAA and GABAB,the first one is responsible to render tonic inhibition by pentameric receptors containing α4-6,β3,δ,or ρ1-3 subunits,they are located at perisynaptic and/or in extrasynaptic regions.The biophysical properties of GABAA tonic inhibition have been related with cellular protection against excitotoxic injury and cell death in presence of excessive excitation.On this basis,GABAA tonic inhibition has been proposed as a potential target for therapeutic intervention of Huntington's disease.Huntington's disease is a neurodegenerative disorder caused by a genetic mutation of the huntingtin protein.For experimental studies of Huntington's disease mouse models have been developed,such as R6/1,R6/2,Hdh Q92,Hdh Q150,as well as YAC128.In all of them,some key experimental reports are focused on neostriatum.The neostriatum is considered as the most important connection between cerebral cortex and basal ganglia structures,its cytology display two pathways called direct and indirect constituted by medium sized spiny neurons expressing dopamine D1 and D2 receptors respectively,they display strong expression of many types of GABAA receptors,including tonic subunits.The studies about of GABAA tonic subunits and Huntington's disease into the neostriatum are rising in recent years,suggesting interesting changes in their expression and localization which can be used as a strategy to delay the cellular damage caused by the imbalance between excitation and inhibition,a hallmark of Huntington's disease.Abraham Rosas-Arellano Argel Estrada-Mondragón Carola A.Mantellero Carlos Tejeda-Guzmán Maite A.Castro 2018Neural Regeneration Research2018,13,4:0
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