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Authors = Adam Webb ORCID = 0000-0002-6699-0479

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5 pages, 159 KiB  
Correction
Correction: Ko et al. Timing of Mouse Molar Formation Is Independent of Jaw Length Including Retromolar Space. J. Dev. Biol. 2021, 9, 8
by Daisy (Jihyung) Ko, Tess Kelly, Lacey Thompson, Jasmene K. Uppal, Nasim Rostampour, Mark Adam Webb, Ning Zhu, George Belev, Prosanta Mondal, David M. L. Cooper and Julia C. Boughner
J. Dev. Biol. 2025, 13(1), 7; https://doi.org/10.3390/jdb13010007 - 28 Feb 2025
Viewed by 515
Abstract
There was an error in the original publication [...] Full article
15 pages, 4209 KiB  
Article
Energy-Efficient Neuromorphic Architectures for Nuclear Radiation Detection Applications
by Jorge I. Canales-Verdial, Jamison R. Wagner, Landon A. Schmucker, Mark Wetzel, Philippe Proctor, Merlin Carson, Jian Meng, Nathan J. Withers, Charles Thomas Harris, John J. Nogan, Denise B. Webb, Adam A. Hecht, Christof Teuscher, Marek Osiński and Payman Zarkesh-Ha
Sensors 2024, 24(7), 2144; https://doi.org/10.3390/s24072144 - 27 Mar 2024
Cited by 2 | Viewed by 2055
Abstract
A comprehensive analysis and simulation of two memristor-based neuromorphic architectures for nuclear radiation detection is presented. Both scalable architectures retrofit a locally competitive algorithm to solve overcomplete sparse approximation problems by harnessing memristor crossbar execution of vector–matrix multiplications. The proposed systems demonstrate excellent [...] Read more.
A comprehensive analysis and simulation of two memristor-based neuromorphic architectures for nuclear radiation detection is presented. Both scalable architectures retrofit a locally competitive algorithm to solve overcomplete sparse approximation problems by harnessing memristor crossbar execution of vector–matrix multiplications. The proposed systems demonstrate excellent accuracy and throughput while consuming minimal energy for radionuclide detection. To ensure that the simulation results of our proposed hardware are realistic, the memristor parameters are chosen from our own fabricated memristor devices. Based on these results, we conclude that memristor-based computing is the preeminent technology for a radiation detection platform. Full article
(This article belongs to the Section Navigation and Positioning)
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8 pages, 438 KiB  
Brief Report
The Cost of Universal Suicide Risk Screening for Adolescents in Emergency Departments
by Kyle L. Grazier, Jacqueline Grupp-Phelan, David Brent, Adam Horwitz, Taylor C. McGuire, T. Charles Casper, Michael W. Webb and Cheryl A. King
Int. J. Environ. Res. Public Health 2023, 20(19), 6843; https://doi.org/10.3390/ijerph20196843 - 27 Sep 2023
Cited by 3 | Viewed by 2177
Abstract
Suicide is the second leading cause of death among adolescents. As nearly 20% of adolescents visit emergency departments (EDs) each year, EDs have an opportunity to identify previously unrecognized suicide risk. A novel Computerized Adaptive Screen for Suicidal Youth (CASSY) was shown in [...] Read more.
Suicide is the second leading cause of death among adolescents. As nearly 20% of adolescents visit emergency departments (EDs) each year, EDs have an opportunity to identify previously unrecognized suicide risk. A novel Computerized Adaptive Screen for Suicidal Youth (CASSY) was shown in a multisite study to be predictive for suicide attempts within 3 months. This study uses site-specific data to estimate the cost of CASSY implementation with adolescents in general EDs. When used universally with all adolescents who are present and able to participate in the screening, the average cost was USD 5.77 per adolescent. For adolescents presenting with non-behavioral complaints, the average cost was USD 2.60 per adolescent. Costs were driven primarily by time and personnel required for the further evaluation of suicide risk for those screening positive. Thus, universal screening using the CASSY, at very low costs relative to the cost of an ED visit, can facilitate services needed for at-risk adolescents. Full article
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20 pages, 2800 KiB  
Article
Controls on the Generation and Geochemistry of Neutral Mine Drainage: Evidence from Force Crag Mine, Cumbria, UK
by Adam P. Jarvis, Catherine J. Gandy and John A. Webb
Minerals 2023, 13(5), 592; https://doi.org/10.3390/min13050592 - 25 Apr 2023
Cited by 9 | Viewed by 3259
Abstract
Neutral mine drainage (NMD) at Force Crag mine in north-west England has a circumneutral pH and high levels of Zn contamination. A long-term geochemical and hydrological dataset from this site was analysed using a novel molar mass balance approach, which demonstrated that the [...] Read more.
Neutral mine drainage (NMD) at Force Crag mine in north-west England has a circumneutral pH and high levels of Zn contamination. A long-term geochemical and hydrological dataset from this site was analysed using a novel molar mass balance approach, which demonstrated that the water chemistry is dominated by species released by the oxidation of sulphides: sphalerite (Zn, Cd, Ni), galena (Pb, mostly removed by adsorption to ferrihydrite) and pyrite (Fe, mostly precipitates as ferrihydrite). The calculations show that the sphalerite:galena:pyrite oxidation ratio is ~1:2:1, but the mine water chemistry is dominated by Zn due to the removal of Pb and Fe by adsorption/precipitation. The acidity released by pyrite oxidation is neutralised by the dissolution of calcite and, to a lesser extent, chlorite. The presence of pyrite is responsible both for the release of acidity and the removal of some contaminant metals by adsorption on ferrihydrite. The concentrations of sulphate, Zn, Cd and Ni in the mine water decrease with increasing flow due to dilution; modest increases in metal flux with flow probably reflect increased oxidation due to greater amounts of oxygenated water flowing through the mine. In contrast, Al, Pb and Cu concentrations are positively correlated with flow due to the flushing of these metals adsorbed to ferrihydrite particles. The influence of temperature is relatively subtle; metal fluxes are a balance between abiotic oxidation (which increases at higher temperatures and flows) and bacterially mediated oxidation (which is depressed at high flow rates when temperatures decrease below 10 °C). These conclusions apply to NMD mine water throughout the UK and elsewhere in the world, including mines hosted in both limestone and silicate rocks. The molar mass balance approach, together with synchronous flow and geochemistry data, provides crucial information for effective mine-water-treatment system design by elucidating the critical roles of flow rate and temperature in determining contaminant concentrations and loads. Full article
(This article belongs to the Special Issue Environmental Pollution and Assessment in Mining Areas)
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15 pages, 272 KiB  
Article
Hate Crime during the COVID-19 Pandemic: A Qualitative Study of the Experiences of an Ethnically Diverse University Student Population
by Lieve Gies, Mayuri Gogoi, Christopher D. Bayliss, Manish Pareek, Adam Webb, Neil Chakraborti and Emily Wertans
COVID 2023, 3(2), 151-165; https://doi.org/10.3390/covid3020010 - 28 Jan 2023
Cited by 3 | Viewed by 5003
Abstract
The COVID-19 pandemic coincided with a rise in reports of hate crime against East and Southeast Asian minorities. Political rhetoric blaming China for causing the pandemic was tantamount to a ‘permission to hate’, making COVID-19 a catalyst of hate crime against Chinese people [...] Read more.
The COVID-19 pandemic coincided with a rise in reports of hate crime against East and Southeast Asian minorities. Political rhetoric blaming China for causing the pandemic was tantamount to a ‘permission to hate’, making COVID-19 a catalyst of hate crime against Chinese people which also fuelled overt prejudice against other ethnic minorities. Researching experiences of hate offences in an ethnically diverse university student population in the United Kingdom during COVID-19, this qualitative study found that actual reported cases potentially underestimate the problem of hate crime. Analysing data from semi-structured interviews, we argue that a focus on reported cases alone risks obscuring the full extent of pandemic-related harassment and the insidious nature of hate crimes more generally. Minority ethnic interview participants lived with varying degrees of fear of victimisation, even if they were not personally subjected to any actual incidents during the pandemic. Accounts of pre-pandemic experiences, along with vicarious experiences involving victims with similar characteristics as interview participants, confirm the status of hate crime as a ‘message crime’. Third-party bystander accounts involving the victimisation of others whose identity research participants did not share afford additional insights into the nature and extent of pandemic-related hate. Full article
15 pages, 481 KiB  
Article
Cross-Sectional Study of University Students’ Attitudes to ‘On Campus’ Delivery of COVID-19, MenACWY and MMR Vaccines and Future-Proofing Vaccine Roll-Out Strategies
by Adam Webb, Mayuri Gogoi, Sarah Weidman, Katherine Woolf, Maria Zavala, Shamez N. Ladhani, Manish Pareek, Lieve Gies and Christopher D. Bayliss
Vaccines 2022, 10(8), 1287; https://doi.org/10.3390/vaccines10081287 - 10 Aug 2022
Cited by 3 | Viewed by 2494
Abstract
University students are a critical group for vaccination programmes against COVID-19, meningococcal disease (MenACWY) and measles, mumps and rubella (MMR). We aimed to evaluate risk factors for vaccine hesitancy and views about on-campus vaccine delivery among university students. Data were obtained through a [...] Read more.
University students are a critical group for vaccination programmes against COVID-19, meningococcal disease (MenACWY) and measles, mumps and rubella (MMR). We aimed to evaluate risk factors for vaccine hesitancy and views about on-campus vaccine delivery among university students. Data were obtained through a cross-sectional anonymous online questionnaire study of undergraduate students in June 2021 and analysed by univariate and multivariate tests to detect associations. Complete data were obtained from 827 participants (7.6% response-rate). Self-reporting of COVID-19 vaccine status indicated uptake by two-thirds (64%; 527/827), willing for 23% (194/827), refusal by 5% (40/827) and uncertain results for 8% (66/827). Hesitancy for COVID-19 vaccines was 5% (40/761). COVID-19 vaccine hesitancy was associated with Black ethnicity (aOR, 7.01, 95% CI, 1.8–27.3) and concerns about vaccine side-effects (aOR, 1.72; 95% CI, 1.23–2.39). Uncertainty about vaccine status was frequently observed for MMR (11%) and MenACWY (26%) vaccines. Campus-associated COVID-19 vaccine campaigns were favoured by UK-based students (definitely, 45%; somewhat, 16%) and UK-based international students (definitely, 62%; somewhat, 12%). Limitations of this study were use of use of a cross-sectional approach, self-selection of the response cohort, slight biases in the demographics and a strict definition of vaccine hesitancy. Vaccine hesitancy and uncertainty about vaccine status are concerns for effective vaccine programmes. Extending capabilities of digital platforms for accessing vaccine information and sector-wide implementation of on-campus vaccine delivery are strategies for improving vaccine uptake among students. Future studies of vaccine hesitancy among students should aim to extend our observations to student populations in a wider range of university settings and with broader definitions of vaccine hesitancy. Full article
(This article belongs to the Section COVID-19 Vaccines and Vaccination)
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15 pages, 385 KiB  
Article
University Students’ Mental Health and Well-Being during the COVID-19 Pandemic: Findings from the UniCoVac Qualitative Study
by Mayuri Gogoi, Adam Webb, Manish Pareek, Christopher D. Bayliss and Lieve Gies
Int. J. Environ. Res. Public Health 2022, 19(15), 9322; https://doi.org/10.3390/ijerph19159322 - 30 Jul 2022
Cited by 36 | Viewed by 8684
Abstract
The worldwide spread of the coronavirus disease 2019 (COVID-19) pandemic in early 2020 affected all major sectors, including higher education. The measures to contain the spread of this deadly disease led to the closure of colleges and universities across the globe, disrupting the [...] Read more.
The worldwide spread of the coronavirus disease 2019 (COVID-19) pandemic in early 2020 affected all major sectors, including higher education. The measures to contain the spread of this deadly disease led to the closure of colleges and universities across the globe, disrupting the lives of millions of students and subjecting them to a new world of online learning. These sudden disturbances coupled with the demands of a new learning system and the experiences of living through a pandemic have placed additional strains on the mental health of university students. Research on university students’ mental health, conducted during the pandemic, have found high levels of stress, anxiety and depression among students. In this qualitative study, we aimed to understand how pandemic experiences have affected student well-being by conducting in-depth interviews with 34 undergraduate students enrolled in a UK university. All interviews were conducted through Microsoft Teams and recorded with prior permission. Transcripts of recorded interviews were thematically analysed which identified two broad themes: (i) University students’ mental health and well-being experiences during the pandemic; (ii) factors that influenced students’ mental health and well-being. These factors were further distributed across six sub-themes: (a) isolation; (b) health and well-being; (c) bereavement; (d) academic concerns; (e) financial worries and; (f) support, coping, and resilience. Our study identifies the importance of mental health support to university students during pandemics and calls for measures to improve access to support services through these crisis points by universities. Findings can also inform students’ mental health and risk assessments in the aftermath of the pandemic. Full article
(This article belongs to the Special Issue Mental Health Roadmap: Where We Stand and Where to Go?)
13 pages, 1459 KiB  
Article
Development of a MicroRNA Signature Predictive of Recurrence and Survival in Pancreatic Ductal Adenocarcinoma
by Nikhil T. Sebastian, Amy Webb, Kenneth W. Merrell, Eugene J. Koay, Adam R. Wolfe, Lizhi Zhang, Tyler J. Wilhite, Dalia Elganainy, Ryan Robb, Wei Chen, Jordan Cloyd, Mary Dillhoff, Allan Tsung, Laith Abushahin, Anne Noonan and Terence M. Williams
Cancers 2021, 13(20), 5168; https://doi.org/10.3390/cancers13205168 - 15 Oct 2021
Cited by 1 | Viewed by 2652
Abstract
Background: Optimal patient selection for radiotherapy in pancreatic ductal adenocarcinoma (PDAC) is unestablished. Molecular profiling may select patients at high risk for locoregional recurrence (LRR) who would benefit from radiation. Methods: We included resectable pancreatic cancer (R-PDAC) patients, divided into training and validation [...] Read more.
Background: Optimal patient selection for radiotherapy in pancreatic ductal adenocarcinoma (PDAC) is unestablished. Molecular profiling may select patients at high risk for locoregional recurrence (LRR) who would benefit from radiation. Methods: We included resectable pancreatic cancer (R-PDAC) patients, divided into training and validation cohorts, treated among three institutions with surgery and adjuvant chemotherapy, and borderline resectable or locally advanced pancreatic cancer (BR/LA-PDAC) patients treated with chemotherapy with or without radiation at the primary study institution. We isolated RNA from R-PDAC surgical specimens. Using NanoString, we identified miRNAs differentially expressed between normal and malignant pancreatic tissue. ElasticNet regression identified two miRNAs most predictive of LRR in the training cohort, miR-181b/d and miR-575, which were used to generate a risk score (RS). We evaluated the association of the median-dichotomized RS with recurrence and overall survival (OS). Results: We identified 183 R-PDAC and 77 BR/LA-PDAC patients with median follow up of 37 months treated between 2001 and 2014. On multivariable analysis of the R-PDAC training cohort (n = 90), RS was associated with worse LRR (HR = 1.34; 95%CI 1.27–11.38; p = 0.017) and OS (HR = 2.89; 95%CI 1.10–4.76; p = 0.027). In the R-PDAC validation cohort, RS was associated with worse LRR (HR = 2.39; 95%CI 1.03–5.54; p = 0.042), but not OS (p = 0.087). For BR/LA-PDAC, RS was associated with worse LRR (HR = 2.71; 95%CI 1.14–6.48; p = 0.025), DR (HR = 1.93; 95%CI 1.10–3.38; p = 0.022), and OS (HR = 1.97; 95%CI 1.17–3.34; p = 0.011). Additionally, after stratifying by RS and receipt of radiation in BR/LA-PDAC patients, high RS patients who did not receive radiation had worse LRR (p = 0.018), DR (p = 0.006), and OS (p < 0.001) compared to patients with either low RS or patients who received radiation, irrespective of RS. Conclusions: RS predicted worse LRR and OS in R-PDAC and worse LRR, DR, and OS in BR/LA-PDAC. This may select patients who would benefit from radiation and should be validated prospectively. Full article
(This article belongs to the Section Cancer Biomarkers)
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18 pages, 2514 KiB  
Article
Timing of Mouse Molar Formation Is Independent of Jaw Length Including Retromolar Space
by Daisy (Jihyung) Ko, Tess Kelly, Lacey Thompson, Jasmene K. Uppal, Nasim Rostampour, Mark Adam Webb, Ning Zhu, George Belev, Prosanta Mondal, David M. L. Cooper and Julia C. Boughner
J. Dev. Biol. 2021, 9(1), 8; https://doi.org/10.3390/jdb9010008 - 12 Mar 2021
Cited by 11 | Viewed by 4835 | Correction
Abstract
For humans and other mammals to eat effectively, teeth must develop properly inside the jaw. Deciphering craniodental integration is central to explaining the timely formation of permanent molars, including third molars which are often impacted in humans, and to clarifying how teeth and [...] Read more.
For humans and other mammals to eat effectively, teeth must develop properly inside the jaw. Deciphering craniodental integration is central to explaining the timely formation of permanent molars, including third molars which are often impacted in humans, and to clarifying how teeth and jaws fit, function and evolve together. A factor long-posited to influence molar onset time is the jaw space available for each molar organ to form within. Here, we tested whether each successive molar initiates only after a minimum threshold of space is created via jaw growth. We used synchrotron-based micro-CT scanning to assess developing molars in situ within jaws of C57BL/6J mice aged E10 to P32, encompassing molar onset to emergence. We compared total jaw, retromolar and molar lengths, and molar onset times, between upper and lower jaws. Initiation time and developmental duration were comparable between molar upper and lower counterparts despite shorter, slower-growing retromolar space in the upper jaw, and despite size differences between upper and lower molars. Timing of molar formation appears unmoved by jaw length including space. Conditions within the dental lamina likely influence molar onset much more than surrounding jaw tissues. We theorize that molar initiation is contingent on sufficient surface area for the physical reorganization of dental epithelium and its invagination of underlying mesenchyme. Full article
(This article belongs to the Special Issue Craniofacial Genetics and Developmental Biology)
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21 pages, 3333 KiB  
Article
Sulfatase 2 Is Associated with Steroid Resistance in Childhood Nephrotic Syndrome
by Shipra Agrawal, Richard F. Ransom, Saras Saraswathi, Esperanza Garcia-Gonzalo, Amy Webb, Juan L. Fernandez-Martinez, Milan Popovic, Adam J. Guess, Andrzej Kloczkowski, Rainer Benndorf, Wolfgang Sadee, William E. Smoyer and on behalf of the Pediatric Nephrology Research Consortium (PNRC)
J. Clin. Med. 2021, 10(3), 523; https://doi.org/10.3390/jcm10030523 - 2 Feb 2021
Cited by 3 | Viewed by 3342
Abstract
Glucocorticoid (GC) resistance complicates the treatment of ~10–20% of children with nephrotic syndrome (NS), yet the molecular basis for resistance remains unclear. We used RNAseq analysis and in silico algorithm-based approaches on peripheral blood leukocytes from 12 children both at initial NS presentation [...] Read more.
Glucocorticoid (GC) resistance complicates the treatment of ~10–20% of children with nephrotic syndrome (NS), yet the molecular basis for resistance remains unclear. We used RNAseq analysis and in silico algorithm-based approaches on peripheral blood leukocytes from 12 children both at initial NS presentation and after ~7 weeks of GC therapy to identify a 12-gene panel able to differentiate steroid resistant NS (SRNS) from steroid-sensitive NS (SSNS). Among this panel, subsequent validation and analyses of one biologically relevant candidate, sulfatase 2 (SULF2), in up to a total of 66 children, revealed that both SULF2 leukocyte expression and plasma arylsulfatase activity Post/Pre therapy ratios were greater in SSNS vs. SRNS. However, neither plasma SULF2 endosulfatase activity (measured by VEGF binding activity) nor plasma VEGF levels, distinguished SSNS from SRNS, despite VEGF’s reported role as a downstream mediator of SULF2’s effects in glomeruli. Experimental studies of NS-related injury in both rat glomeruli and cultured podocytes also revealed decreased SULF2 expression, which were partially reversible by GC treatment of podocytes. These findings together suggest that SULF2 levels and activity are associated with GC resistance in NS, and that SULF2 may play a protective role in NS via the modulation of downstream mediators distinct from VEGF. Full article
(This article belongs to the Special Issue Clinical Advances in the Management of Glomerular Disease)
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18 pages, 2282 KiB  
Article
Target Localization and Tracking by Fusing Doppler Differentials from Cellular Emanations with a Multi-Spectral Video Tracker
by Casey D. Demars, Michael C. Roggemann, Adam J. Webb and Timothy C. Havens
Sensors 2018, 18(11), 3687; https://doi.org/10.3390/s18113687 - 30 Oct 2018
Cited by 8 | Viewed by 3329
Abstract
We present an algorithm for fusing data from a constellation of RF sensors detecting cellular emanations with the output of a multi-spectral video tracker to localize and track a target with a specific cell phone. The RF sensors measure the Doppler shift caused [...] Read more.
We present an algorithm for fusing data from a constellation of RF sensors detecting cellular emanations with the output of a multi-spectral video tracker to localize and track a target with a specific cell phone. The RF sensors measure the Doppler shift caused by the moving cellular emanation and then Doppler differentials between all sensor pairs are calculated. The multi-spectral video tracker uses a Gaussian mixture model to detect foreground targets and SIFT features to track targets through the video sequence. The data is fused by associating the Doppler differential from the RF sensors with the theoretical Doppler differential computed from the multi-spectral tracker output. The absolute difference and the root-mean-square difference are computed to associate the Doppler differentials from the two sensor systems. Performance of the algorithm was evaluated using synthetically generated datasets of an urban scene with multiple moving vehicles. The presented fusion algorithm correctly associates the cellular emanation with the corresponding video target for low measurement uncertainty and in the presence of favorable motion patterns. For nearly all objects the fusion algorithm has high confidence in associating the emanation with the correct multi-spectral target from the most probable background target. Full article
(This article belongs to the Special Issue Multiple Object Tracking: Making Sense of the Sensors)
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12 pages, 2109 KiB  
Brief Report
Cloacal and Ocular Microbiota of the Endangered Australian Northern Quoll
by Catherine Burke, Delaney Burnard, Adam Polkinghorne, Jonathan Webb and Wilhelmina M. Huston
Microorganisms 2018, 6(3), 68; https://doi.org/10.3390/microorganisms6030068 - 12 Jul 2018
Cited by 8 | Viewed by 5222
Abstract
The Australian northern quoll is an important predatory marsupial carnivore that is currently endangered due to inappropriate fire regimes, predation, and the spread of invasive cane toads. The microbiota of Australian marsupials has not been extensively studied, but is thought to play a [...] Read more.
The Australian northern quoll is an important predatory marsupial carnivore that is currently endangered due to inappropriate fire regimes, predation, and the spread of invasive cane toads. The microbiota of Australian marsupials has not been extensively studied, but is thought to play a role in their health. This study provides an initial characterization of the cloacal microbiota of the northern quoll, as well as other marsupials including possums and kangaroos which were opportunistically sampled. The northern quoll cloaca microbiota was dominated by Enterococcus and Lactobacillus and had a relatively high proportion of members of the Proteobacteria phylum, which has been observed in other carnivorous marsupials. The diversity and structure of the microbiota was not influenced by presence of Chlamydiales which are intracellular bacteria and potential pathogens. The microbiota of the other marsupials was quite varied, which may be related to their health status. Characterization of the northern quoll microbiota will help to better understand the biology of this endangered animal. Full article
(This article belongs to the Special Issue Wildlife Microbiology)
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