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Jinyoung Y. Barnaby,Cristina P. Fernandez-Baca,Anna M. McClung,Dan P. Roberts,David H. Fleisher 강원대학교 산림과학연구소 2021 강원대학교 산림과학연구소 학술대회 Vol.2021 No.10
The signs of global warming are everywhere, and are more complex than just climbing temperatures. Climate change encompasses not only rising average temperatures but also extreme weather events. More frequent extreme weather events and water scarcity across the U.S. make it more expensive and difficult to sustain crop production. Therefore, effective breeding of climate resilient crop cultivars combined with adaptation of crop production systems to better cope with the challenges of future climate change are of key importance. High-throughput genotyping and phenotyping technologies offer a new approach to examine Genetics (rice and the associated soil microbiome) x Environment x Management interactions for developing climate resilient crop cultivars with enhanced production and quality as a means to mitigate the effects of a changing climate.
Tanvi Karnik,Sandi G. Dempsey,Micheal J. Jerram,Arun Nagarajan,Ravindra Rajam,Barnaby C. H. May,Christopher H. Miller 한국생체재료학회 2019 생체재료학회지 Vol.23 No.1
Background: Antimicrobial technologies, including silver-containing medical devices, are increasingly utilized in clinical regimens to mitigate risks of microbial colonization. Silver-functionalized resorbable biomaterials for use in wound management and tissue regeneration applications have a narrow therapeutic index where antimicrobial effectiveness may be outweighed by adverse cytotoxicity. We examined the effects of ionic silver functionalization of an extracellular matrix (ECM) biomaterial derived from ovine forestomach (OFM-Ag) in terms of material properties, antimicrobial effectiveness and cytotoxicity profile. Methods: Material properties of OFM-Ag were assessed by via biochemical analysis, microscopy, atomic absorption spectroscopy (AAS) and differential scanning calorimetry. The silver release profile of OFM-Ag was profiled by AAS and antimicrobial effectiveness testing utilized to determine the minimum effective concentration of silver in OFMAg in addition to the antimicrobial spectrum and wear time. Biofilm prevention properties of OFM-Ag in comparison to silver containing collagen dressing materials was quantified via in vitro crystal violet assay using a polymicrobial model. Toxicity of ionic silver, OFM-Ag and silver containing collagen dressing materials was assessed toward mammalian fibroblasts using elution cytoxicity testing. Results: OFM-Ag retained the native ECM compositional and structural characteristic of non-silver functionalized ECM material while imparting broad spectrum antimicrobial effectiveness toward 11 clinically relevant microbial species including fungi and drug resistant strains, maintaining effectiveness over a wear time duration of 7-days. OFM-Ag demonstrated significant prevention of polymicrobial biofilm formation compared to non-antimicrobial and silver-containing collagen dressing materials. Where silver-containing collagen dressing materials exhibited cytotoxic effects toward mammalian fibroblasts, OFM-Ag was determined to be non-cytotoxic, silver elution studies indicated sustained retention of silver in OFM-Ag as a possible mechanism for the attenuated cytotoxicity. Conclusions: This work demonstrates ECM biomaterials may be functionalized with silver to favourably shift the balance between detrimental cytotoxic potential and beneficial antimicrobial effects, while preserving the ECM structure and function of utility in tissue regeneration applications.
Low-Earth orbit satellite constellation for ADS-B based in-flight aircraft tracking
Nguyen, Thien H.,Tsafnat, Naomi,Cetin, Ediz,Osborne, Barnaby,Dixon, Thomas F. Techno-Press 2015 Advances in aircraft and spacecraft science Vol.2 No.1
Automatic Dependent Surveillance Broadcast (ADS-B) is quickly being adopted by aviation safety authorities around the world as the standard for aircraft tracking. The technology provides the opportunity for live tracking of aircraft positions within range of an ADS-B receiver stations. Currently these receiver stations are bound by land and local infrastructural constraints. As such there is little to no coverage over oceans and poles, over which many commercial flights routinely travel. A low cost space based ADS-B receiving system is proposed as a constellation of small satellites. The possibility for a link between aircraft and satellite is dependent primarily on proximity. Calculating the likelihood of a link between two moving targets when considering with the non-periodic and non-uniform nature of actual aircraft flight-paths is non-trivial. This analysis of the link likelihood and the performance of the tracking ability of the satellite constellation has been carried out by a direct simulation of satellites and aircraft. Parameters defining the constellation (satellite numbers, orbit size and shape, orbit configuration) were varied between reasonable limits. The recent MH370 disappearance was simulated and potential tracking and coverage was analysed using an example constellation. The trend of more satellites at a higher altitude inclined at 60 degrees was found to be the optimal solution.
Fluorescence hyperspectral imaging technique for foreign substance detection on fresh‐cut lettuce
Mo, Changyeun,Kim, Giyoung,Kim, Moon S,Lim, Jongguk,Cho, Hyunjeong,Barnaby, Jinyoung Yang,Cho, Byoung‐,Kwan John Wiley & Sons 2017 Journal of the Science of Food and Agriculture Vol.97 No.12
<P>CONCLUSIONThe overall results demonstrate that fluorescence HSI techniques have the potential to detect worms on fresh-cut lettuce. In the future, we will focus on developing a multi-spectral imaging system to detect foreign substances such as worms, slugs and earthworms on fresh-cut lettuce. (c) 2017 Society of Chemical Industry</P>
Correlation between Methane (CH4) Emissions and Root Aerenchyma of Rice Varieties
김우재,Liem T. Bui,전재범,Anna M. McClung,Jinyoung Y. Barnaby 한국육종학회 2018 Plant Breeding and Biotechnology Vol.6 No.4
Percentage of aerenchyma area has been closely linked with amounts of methane emitted by rice. A diversity panel of 39 global rice varieties were examined to determine genetic variation for root transverse section (RTS), aerenchyma area, and % aerenchyma. RTS and aerenchyma area showed a strong positive correlation while there existed no significant correlation between RTS area and % aerenchyma. Five varieties previously shown to differ in methane emissions under field conditions were found to encompass the variation found in the diversity panel for RTS and aerenchyma area. These five varieties were evaluated in a greenhouse study to determine the relationship of RTS, aerenchyma area, and % aerenchyma with methane emissions. Methane emissions at physiological maturity were the highest for ‘Rondo’, followed by 'Jupiter', while 'Sabine', 'Francis' and 'CLXL745' emitted the least. The same varietal rank, ‘Rondo’ being the largest and ‘CLXL745’ the smallest, was observed with RTS and aerenchyma areas. RTS and aerenchyma area were significantly correlated with methane emissions, r = 0.61 and r = 0.57, respectively (P < 0.001); however, there was no relationship with % aerenchyma. Our results demonstrated that varieties with a larger root area also developed a larger aerenchyma area, which serves as a gas conduit, and as a result, methane emissions were increased. This study suggests that root transverse section area could be used as a means of selecting germplasm with reduced CH4 emissions.
Are current labeling terms suitable for people who are at risk of psychosis?
Kim, Sung-Wan,Polari, Andrea,Melville, Fritha,Moller, Bridget,Kim, Jae-Min,Amminger, Paul,Herrman, Helen,McGorry, Patrick,Nelson, Barnaby Elsevier 2017 Schizophrenia Research Vol.188 No.-
<P><B>Abstract</B></P> <P>Inclusion of ‘attenuated psychosis syndrome (APS)’ in the DSM-5 has been hotly debated because of the concern about stigmatising young patients with a ‘psychosis risk’ label. This study aimed to investigate whether current labeling terms such as ‘at risk mental state’, ‘ultra-high risk’ (UHR) and ‘APS’ are suitable for people who are at risk of psychosis. This study included 105 subjects (55 patients aged 15–25years who used an early interventional service to prevent psychosis and 50 professionals who worked with them). A questionnaire regarding their opinions about the stigma associated with the above labels and the Mental Health Consumers' Experience of Stigma scale were administered. The patients were less likely than the professionals to agree that there was stigma associated with the terms ‘UHR’ and ‘APS’. Significantly more patients with a family history of psychosis and those who had transitioned to psychosis agreed that there was stigma associated with the term ‘UHR’ and/or that this term should be changed. Patients who agreed with the negative attitude items for the three labeling terms and the need to change the terms ‘UHR’ and ‘schizophrenia’ showed significantly higher scores on the Stigma scale. In conclusion, patients at risk of psychosis may experience less stigma related to labels than expected by professionals, suggesting that mental health professionals may not be able to help patients unless they listen to their views on nosological and treatment issues rather than make assumptions. Previous stigmatising experiences may have strengthened the stigma attached to this label.</P>
Solar Water Splitting with a Hydrogenase Integrated in Photoelectrochemical Tandem Cells
Nam, Dong Heon,Zhang, Jenny Z.,Andrei, Virgil,Kornienko, Nikolay,Heidary, Nina,Wagner, Andreas,Nakanishi, Kenichi,Sokol, Katarzyna P.,Slater, Barnaby,Zebger, Ingo,Hofmann, Stephan,Fontecilla‐,Ca John Wiley and Sons Inc. 2018 Angewandte Chemie Vol.57 No.33
<P><B>Abstract</B></P><P>Hydrogenases (H<SUB>2</SUB>ases) are benchmark electrocatalysts for H<SUB>2</SUB> production, both in biology and (photo)catalysis in vitro. We report the tailoring of a p‐type Si photocathode for optimal loading and wiring of H<SUB>2</SUB>ase through the introduction of a hierarchical inverse opal (IO) TiO<SUB>2</SUB> interlayer. This proton‐reducing Si|IO‐TiO<SUB>2</SUB>|H<SUB>2</SUB>ase photocathode is capable of driving overall water splitting in combination with a photoanode. We demonstrate unassisted (bias‐free) water splitting by wiring Si|IO‐TiO<SUB>2</SUB>|H<SUB>2</SUB>ase to a modified BiVO<SUB>4</SUB> photoanode in a photoelectrochemical (PEC) cell during several hours of irradiation. Connecting the Si|IO‐TiO<SUB>2</SUB>|H<SUB>2</SUB>ase to a photosystem II (PSII) photoanode provides proof of concept for an engineered Z‐scheme that replaces the non‐complementary, natural light absorber photosystem I with a complementary abiotic silicon photocathode.</P>