161 research outputs found

    Growth of the Extended Commercial Republic, and Its Government

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    Reviewing: Noam Maggor, Brahmin Capitalism: Frontiers of Wealth and Populism in America’s First Gilded Age (Harvard University Press 2017); Ajay K. Mehrotra, Making the Modern American Fiscal State: Law, Politics, and the Rise of Progressive Taxation, 1877–1929 (Cambridge University Press 2014)

    A Thousand American Flowers

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    Reviewing Emily Zackin, Looking for Rights in All the Wrong Places: Why State Constitutions Contain America\u27s Positive Rights (Princeton University 20130; and Carol Nackenoff and Julie Novkov, Statebuilding from the Margins: Between Reconstruction and the New Deal (University of Pennsylvania Press 2014

    Monotypes

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    Concentration paper.1984 Spring.Includes bibliographic references (pages 69-70)

    Interior event

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    1984 Spring.Includes bibliographical references.Supplemental zip file includes 12 slides of artwork.My work is based on rooms I have entered, where a corner or objects on a table quicken and stimulate me visually. The way things are placed geometrically and the way light falls to alter and distort them becomes a phenomenon or event. That arrangement or event spells out something very personal; a culmination of reality shown as pure form. It is a unique quality found only there at that moment, which is made up of unrepeatable consequences. These forms perceived in a certain relationship are an inspiration to me, and I create an image stemming from my emotion to it

    Micron-Scale Plasma Membrane Curvature is Recognized by the Septin Cytoskeleton

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    Cells change shape in response to diverse environmental and developmental conditions, creating topologies with micron-scale features. Although individual proteins can sense nanometer-scale membrane curvature, it is unclear if a cell could also use nanometer-scale components to sense micron-scale contours, such as the cytokinetic furrow and base of neuronal branches. Septins are filament-forming proteins that serve as signaling platforms and are frequently associated with areas of the plasma membrane where there is micron-scale curvature, including the cytokinetic furrow and the base of cell protrusions. We report here that fungal and human septins are able to distinguish between different degrees of micron-scale curvature in cells. By preparing supported lipid bilayers on beads of different curvature, we reconstitute and measure the intrinsic septin curvature preference. We conclude that micron-scale curvature recognition is a fundamental property of the septin cytoskeleton that provides the cell with a mechanism to know its local shape

    Septin assemblies form by diffusion-driven annealing on membranes

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    Author Posting. © The Author(s), 2013. This is the author's version of the work. It is posted here by permission of National Academy of Sciences for personal use, not for redistribution. The definitive version was published in Proceedings of the National Academy of Sciences of the United States of America 111 (2014): 2146-2151, doi:10.1073/pnas.1314138111.Septins assemble into filaments and higher-order structures that act as scaffolds for diverse cell functions including cytokinesis, cell polarity, and membrane remodeling. Despite their conserved role in cell organization, little is known about how septin filaments elongate and are knit together into higher-order assemblies. Using fluorescence correlation spectroscopy (FCS), we determined that cytosolic septins are in small complexes suggesting that septin filaments are not formed in the cytosol. When the plasma membrane of live cells is monitored by total internal reflection fluorescence (TIRF) microscopy, we see that septin complexes of variable size diffuse in two dimensions. Diffusing septin complexes collide and make end-on associations to form elongated filaments and higher-order structures, an assembly process we call annealing. Septin assembly by annealing can be reconstituted in vitro on supported lipid bilayers with purified septin complexes. Using the reconstitution assay, we show that septin filaments are highly flexible, grow only from free filament ends and do not exchange subunits in the middle of filaments. This work shows for the first time that annealing is an intrinsic property of septins in the presence of membranes and demonstrates that cells exploit this mechanism to build large septin assemblies.This project was supported with funding from by NSF (MCB-507511, ASG) and NIH (GM100160, TT and ASG), and Colwin, Lemann and Spiegel summer fellowships and The Nikon Award for summer investigation at MBL in Woods Hole, MA (ASG) and instrument support from Micro Video Instruments (MVI).2014-07-2

    Barriers to Screening for Diabetic Retinopathy: A Scoping Review

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    Purpose/Background More than 34 million people in the United States have diabetes. Diabetic retinopathy (DR) is a major complication of diabetes and a leading cause of vision loss. Risk factors for diabetic retinopathy include Type 1 and Type 2 Diabetes, hypertension, smoking, and being African American or Hispanic/Latino. This scoping review seeks to analyze the current research on ways to increase vision screenings, thus reducing cases of diabetic retinopathy in adults. Methods Between September 2020 and November 2021, a search was conducted using PubMed, EBSCOhost, Medline, and CINAHL to identify articles using keywords such as diabetic retinopathy and ophthalmology. This extensive search led our group to twenty articles from different levels of evidence, which after undergoing rapid critical appraisal (RCA) left us with fifteen to be included in this scoping review. Our goal was to understand the barriers to receiving annual screening and strategies to enhance compliance with ophthalmology. Results The articles in our scoping review include systematic reviews, randomized control trials, and case-control studies. From the articles, we discovered barriers to receiving annual exams include cost, insurance, and education. We concluded that patient education along with annual referrals to ophthalmology as prevention for diabetic retinopathy is essential for reducing vision loss. Implications for Nursing Practice Based on our scoping review, we understand that multiple barriers exist that complicate compliance with annual vision screenings. Primary care providers play an essential role in providing patient education and referral to ophthalmology to decrease the prevalence of diabetic retinopathy. More research is needed on the effectiveness of interventions such as educational pamphlets in enhancing screening rates

    Tones Encountered with a Coannular Nozzle and a Method for their Suppression

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    With multi-stream coannular nozzles, sometimes tones are generated that make the nozzle fail noise regulation criteria. A two-stream nozzle was studied experimentally in an attempt to identify the sources of such tones and explore remedies. With the given nozzle configuration, sharp tones occurred in a range of low jet Mach numbers (M (sub j)). The tones could be traced to a coupling of vortex shedding from the struts, that hold the nozzles and the center-body together, and various acoustic resonance modes of the ducts. A leading edge treatment of the struts is shown to suppress the vortex shedding and eliminate the tones

    Investigating the Feedback Path in a Jet-Surface Resonant Interaction

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    A resonant interaction between an 8:1 aspect ratio rectangular jet and flat-plates, placed parallel to the jet, is addressed in this study. For certain relative locations of the plates, the resonance takes place with accompanying audible tones. Even when the tone is not audible the sound pressure level spectra is often marked by conspicuous peaks. The frequencies of the spectral peaks, as functions of the streamwise length of the plate and its relative location to the jet as well as the jet Mach number, are explored in an effort of understand the flow mechanism. It is demonstrated that the tones are not due to a simple feedback between the plates trailing edge and the nozzle exit; the leading edge also comes into play in determining the frequency. An acoustic feedback path, involving diffraction from the leading edge, appears to explain the frequencies of some of the spectral peaks

    Micron-scale plasma membrane curvature is recognized by the septin cytoskeleton

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    © The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Journal of Cell Biology 213 (2016): 23-32, doi: 10.1083/jcb.201512029.Cells change shape in response to diverse environmental and developmental conditions, creating topologies with micron-scale features. Although individual proteins can sense nanometer-scale membrane curvature, it is unclear if a cell could also use nanometer-scale components to sense micron-scale contours, such as the cytokinetic furrow and base of neuronal branches. Septins are filament-forming proteins that serve as signaling platforms and are frequently associated with areas of the plasma membrane where there is micron-scale curvature, including the cytokinetic furrow and the base of cell protrusions. We report here that fungal and human septins are able to distinguish between different degrees of micron-scale curvature in cells. By preparing supported lipid bilayers on beads of different curvature, we reconstitute and measure the intrinsic septin curvature preference. We conclude that micron-scale curvature recognition is a fundamental property of the septin cytoskeleton that provides the cell with a mechanism to know its local shape.This work was supported by grants from the National Science Foundation (MCB-507511 to A.S. Gladfelter) and the National Institutes of Health (NIGMS-T32GM008704 to A.A. Bridges)
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