116 research outputs found

    First Impression: An Interview With Author and Bibliophile Nicholas A. Basbanes

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    Nicholas A. Basbanes did not publish his first book until he was 52 but, in the ten years since, the former literary editor at the Worcester Sunday Telegram has given bibliophiles and librarians five books about books. The first, A Gentle Madness: Bibliophiles, Bibliomanes, and the Eternal Passion for Books (Holt, 1995), was a landmark commentary on book collecting that has sold 100,000 copies. The second, Patience & Fortitude (HarperCollins, 2001), named for the pair of lions that guard the entrance to the New York Public Library, explored the ways librarians and collectors have protected and housed their treasures throughout history, while describing libraries and book culture in general. Next came Among the Gently Mad: Strategies and Perspectives for the Book-Hunter in the 21st Century (Holt, 2002), a spin-off book from the first book. Arriving after that was A Splendor of Letters: The Permanence of Books in an Impermanent World (HarperCollins, 2003), an expanded section intended for Patience & Fortitude that looked at how books are preserved for succeeding generations. Borrowing from Ranganathan's third law of library science, Basbanes' recent book, Every Book Its Reader (HarperCollins, 2005), allowed him to draw on numerous taped interviews conducted for A Gentle Madness that were never used. His next work will be a centennial history of Yale University Press. The Lowell, Massachusetts, native spoke at Indiana University as a guest of its Medieval Studies Institute in October 2005, when William F. Meehan III sat down with the author at the Grant Street Inn in Bloomington

    Ben Franklin, Printer: Selections From the Indiana University Lilly Library Collection

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    Ben Franklin’s career as a printer occupies an important part of a life distinguished by remarkable accomplishment. Often overshadowed by his scientific inventions and civic activity, Franklin’s pursuits as a printer reveal an industrious, clever, and resourceful business owner whose sway affected printing throughout colonial America, particularly from Philadelphia to Charleston. His work as official printer for Pennsylvania, beginning in 1730, demonstrates his gift for winning friends and influencing lawmakers, as well as his ability to deliver quality work. Typical of printers in Colonial America, Franklin also sold books, and the title page of his imprints is a clarion call to bibliophiles still today: “Printed and Sold by B. Franklin.” The second printer to set up shop in Philadelphia, Franklin became one of the trade’s leading members, his venture combining roles as type founder, papermaker, binder, and woodcut artist

    The Importance of Cosimo de Medici in Library History

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    Cosimo de Medici, the aristocratic banker and statesman who enlivened philanthropy in Renaissance Florence, might have made his greatest contribution to the arts through his patronage of humanist libraries. Cosimo himself accumulated a superb personal collection, but his three major library initiatives were charitable activities and included Italy’s first public library, which made its way to the magnificent library founded generations later by one of his descendants

    Sports Holdings in the Southeastern Conference University Libraries: Football as a Case Study

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    Of the twelve National Collegiate Athletic Association’s (NCAA) Division I Football Bowl Subdivision conferences, the Southeastern Conference (SEC) has attained prominence. But how do the SEC’s university libraries fare when evaluated for their football holdings? While university libraries develop their collections mainly to support research and teaching functions, according to accepted collection development practice, the extent to which sports of local importance are represented in their collections is a subject given little attention in the professional literature. In order to help close the gap, this study evaluates the football holdings of the 12 SEC university library systems using the checklist method of each library’s Online Public Access Catalog (OPAC) system from a remote location. The evaluation is meant to serve as a case study of sports holdings in the SEC libraries by using an authoritative checklist consisting of the best fiction and nonfiction football books. The checklist method, which compares a library’s holdings to an authoritative list, is an effective means of identifying collection strengths and weaknesses

    Phylogeography and Ethnogenesis of Aboriginal Southeast Asians

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    Studying the genetic history of the Orang Asli of Peninsular Malaysia can provide crucial clues to the peopling of Southeast Asia as a whole. We have analyzed mitochondrial DNA (mtDNAs) control-region and coding-region markers in 447 mtDNAs from the region, including 260 Orang Asli, representative of each of the traditional groupings, the Semang, the Senoi, and the Aboriginal Malays, allowing us to test hypotheses about their origins. All of the Orang Asli groups have undergone high levels of genetic drift, but phylogeographic traces nevertheless remain of the ancestry of their maternal lineages. The Semang have a deep ancestry within the Malay Peninsula, dating to the initial settlement from Africa >50,000 years ago. The Senoi appear to be a composite group, with approximately half of the maternal lineages tracing back to the ancestors of the Semang and about half to Indochina. This is in agreement with the suggestion that they represent the descendants of early Austroasiatic speaking agriculturalists, who brought both their language and their technology to the southern part of the peninsula ∼4,000 years ago and coalesced with the indigenous population. The Aboriginal Malays are more diverse, and although they show some connections with island Southeast Asia, as expected, they also harbor haplogroups that are either novel or rare elsewhere. Contrary to expectations, complete mtDNA genome sequences from one of these, R9b, suggest an ancestry in Indochina around the time of the Last Glacial Maximum, followed by an early-Holocene dispersal through the Malay Peninsula into island Southeast Asia

    A large scale hearing loss screen reveals an extensive unexplored genetic landscape for auditory dysfunction

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    The developmental and physiological complexity of the auditory system is likely reflected in the underlying set of genes involved in auditory function. In humans, over 150 non-syndromic loci have been identified, and there are more than 400 human genetic syndromes with a hearing loss component. Over 100 non-syndromic hearing loss genes have been identified in mouse and human, but we remain ignorant of the full extent of the genetic landscape involved in auditory dysfunction. As part of the International Mouse Phenotyping Consortium, we undertook a hearing loss screen in a cohort of 3006 mouse knockout strains. In total, we identify 67 candidate hearing loss genes. We detect known hearing loss genes, but the vast majority, 52, of the candidate genes were novel. Our analysis reveals a large and unexplored genetic landscape involved with auditory function

    The Effects of External Jugular Compression Applied during Head Impact Exposure on Longitudinal Changes in Brain Neuroanatomical and Neurophysiological Biomarkers: A Preliminary Investigation

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    Objectives: Utilize a prospective in vivo clinical trial to evaluate the potential for mild neck compression applied during head impact exposure to reduce anatomical and physiological biomarkers of brain injury. Methods: This project utilized a prospective randomized controlled trial to evaluate effects of mild jugular vein (neck) compression (collar) relative to controls (no collar) during a competitive hockey season (males; 16.3 ± 1.2 years). The collar was designed to mildly compress the jugular vein bilaterally with the goal to increase intracranial blood volume to reduce risk of brain slosh injury during head impact exposure. Helmet sensors were used to collect daily impact data in excess of 20 g (games and practices) and the primary outcome measures, which included changes in white matter (WM) microstructure, were assessed by diffusion tensor imaging (DTI). Specifically, four DTI measures: fractional anisotropy, mean diffusivity (MD), axial diffusivity, and radial diffusivity (RD) were used in the study. These metrics were analyzed using the tract-based Spatial Statistics (TBSS) approach – a voxel-based analysis. In addition, electroencephalography-derived event-related potentials were used to assess changes in brain network activation (BNA) between study groups. Results: For athletes not wearing the collar, DTI measures corresponding to a disruption of WM microstructure, including MD and RD, increased significantly from pre-season to mid-season (p 0.05). In addition to these anatomical findings, electrophysiological network analysis of the degree of congruence in the network electrophysiological activation pattern demonstrated concomitant changes in brain network dynamics in the non-collar group only (p < 0.05). Similar to the DTI findings, the increased change in BNA score in the non-collar relative to the collar group was statistically significant (p < 0.01). Changes in DTI outcomes were also directly correlated with altered brain network dynamics (r = 0.76; p < 0.05) as measured by BNA. Conclusion: Group differences in the longitudinal changes in both neuroanatomical and electrophysiological measures, as well as the correlation between the measures, provide initial evidence indicating that mild jugular vein compression may have reduced alterations in the WM response to head impacts during a competitive hockey season. The data indicate sport-related alterations in WM microstructure were ameliorated by application of jugular compression during head impact exposure. These results may lead to a novel line of research inquiry to evaluate the effects of protecting the brain from sports-related head impacts via optimized intracranial fluid dynamics

    Integrating data types to estimate spatial patterns of avian migration across the Western Hemisphere

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    For many avian species, spatial migration patterns remain largely undescribed, especially across hemispheric extents. Recent advancements in tracking technologies and high-resolution species distribution models (i.e., eBird Status and Trends products) provide new insights into migratory bird movements and offer a promising opportunity for integrating independent data sources to describe avian migration. Here, we present a three-stage modeling framework for estimating spatial patterns of avian migration. First, we integrate tracking and band re-encounter data to quantify migratory connectivity, defined as the relative proportions of individuals migrating between breeding and nonbreeding regions. Next, we use estimated connectivity proportions along with eBird occurrence probabilities to produce probabilistic least-cost path (LCP) indices. In a final step, we use generalized additive mixed models (GAMMs) both to evaluate the ability of LCP indices to accurately predict (i.e., as a covariate) observed locations derived from tracking and band re-encounter data sets versus pseudo-absence locations during migratory periods and to create a fully integrated (i.e., eBird occurrence, LCP, and tracking/band re-encounter data) spatial prediction index for mapping species-specific seasonal migrations. To illustrate this approach, we apply this framework to describe seasonal migrations of 12 bird species across the Western Hemisphere during pre- and postbreeding migratory periods (i.e., spring and fall, respectively). We found that including LCP indices with eBird occurrence in GAMMs generally improved the ability to accurately predict observed migratory locations compared to models with eBird occurrence alone. Using three performance metrics, the eBird + LCP model demonstrated equivalent or superior fit relative to the eBird-only model for 22 of 24 species–season GAMMs. In particular, the integrated index filled in spatial gaps for species with over-water movements and those that migrated over land where there were few eBird sightings and, thus, low predictive ability of eBird occurrence probabilities (e.g., Amazonian rainforest in South America). This methodology of combining individual-based seasonal movement data with temporally dynamic species distribution models provides a comprehensive approach to integrating multiple data types to describe broad-scale spatial patterns of animal movement. Further development and customization of this approach will continue to advance knowledge about the full annual cycle and conservation of migratory birds

    A large scale hearing loss screen reveals an extensive unexplored genetic landscape for auditory dysfunction.

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    The developmental and physiological complexity of the auditory system is likely reflected in the underlying set of genes involved in auditory function. In humans, over 150 non-syndromic loci have been identified, and there are more than 400 human genetic syndromes with a hearing loss component. Over 100 non-syndromic hearing loss genes have been identified in mouse and human, but we remain ignorant of the full extent of the genetic landscape involved in auditory dysfunction. As part of the International Mouse Phenotyping Consortium, we undertook a hearing loss screen in a cohort of 3006 mouse knockout strains. In total, we identify 67 candidate hearing loss genes. We detect known hearing loss genes, but the vast majority, 52, of the candidate genes were novel. Our analysis reveals a large and unexplored genetic landscape involved with auditory function.The full extent of the genetic basis for hearing impairment is unknown. Here, as part of the International Mouse Phenotyping Consortium, the authors perform a hearing loss screen in 3006 mouse knockout strains and identify 52 new candidate genes for genetic hearing loss
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