1,832 research outputs found

    ‘By prophesying to the wind, the wind came and the dry bones lived’: John Eliot’s puritan ministry to New England Indians

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    John Eliot (1604-1690) has been called ‘the apostle to the Indians’. This thesis looks at Eliot not from the perspective of modern Protestant ‘mission’ studies (the approach mainly adopted by previous research) but in the historical and theological context of 17th century puritanism. Drawing on recent research on migration to New England, the thesis argues that Eliot, like many other migrants, went to New England primarily in search of a safe haven to practise pure reformed Christianity, not to convert Indians. Eliot’s Indian ministry started from a fundamental concern for the conversion of the unconverted, which he derived from his experience of the puritan movement in England. Consequently, for Eliot, the notion of New England Indian ‘mission’ was essentially conversion-oriented, Wordcentred, and pastorally focussed, and (in common with the broader aims of New England churches) pursued a pure reformed Christianity. Eliot hoped to achieve this through the establishment of Praying Towns organised on a biblical model – where preaching, pastoral care and the practice of piety could lead to conversion – leading to the formation of Indian churches composed of ‘sincere converts’. The thesis starts with a critical historiographical reflection on how missiologists deploy the term ‘mission’, and proposes a perspectival shift for a better understanding of Eliot (Chapter 1). The groundwork for this new perspective is laid by looking at key themes in recent scholarship on puritanism, focusing on motives for the Great Migration, millenarian beliefs, and the desire for Indian conversion (Chapter 2). This chapter concludes that Indian conversion and millenarianism were not the main motives for Eliot’s migration to the New World, nor were his thoughts on the millennium an initial or lasting motive for Indian ministry. Next, the thesis investigates Eliot’s historical and theological context as a minister, through the ideas of puritan contemporaries in Old and New England, and presents a new perspective on Eliot by suggesting that conversion theology and pastoral theology were the most fundamental and lasting motives for his Indian ministry (Chapter 3). After the first three chapters, which relocate Eliot in his historical context, the last three chapters consider Eliot’s pastoral activities with the Indians. These have usually been understood as ‘mission’, without sufficient understanding of Eliot’s historical and theological context in the puritan movement and how he applied its ideas to Indian ministry. The thesis examines Eliot’s views on ‘Praying Towns’ as settlements for promoting civility and religion, and ‘Indian churches’ as congregations of true believers formed by covenant (Chapter 4). It investigates Eliot’s activities in the Indian communities, to apply puritan theology and ministerial practice to the Indians as his new parishioners (Chapter 5). Finally, the thesis offers a comparison of puritan and Indian conversion narratives, to try to recover Praying Indians’ own voices about conversion and faith (Chapter 6). This analysis finds both similarities and differences. The extent of the similarities does not necessarily mean (as some have alleged) that puritanism was unilaterally imposed on the Indians. The evidence equally well suggests a nuanced picture of Eliot’s engagement with the Indians from the perspective of 17th century puritanism and its conversion-oriented parish ministry

    Characteristics and treatments of large cystic brain metastasis: radiosurgery and stereotactic aspiration.

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    Brain metastasis represents one of the most common causes of intracranial tumors in adults, and the incidence of brain metastasis continues to rise due to the increasing survival of cancer patients. Yet, the development of cystic brain metastasis remains a relatively rare occurrence. In this review, we describe the characteristics of cystic brain metastasis and evaluate the combined use of stereotactic aspiration and radiosurgery in treating large cystic brain metastasis. The results of several studies show that stereotactic radiosurgery produces comparable local tumor control and survival rates as other surgery protocols. When the size of the tumor interferes with radiosurgery, stereotactic aspiration of the metastasis should be considered to reduce the target volume as well as decreasing the chance of radiation induced necrosis and providing symptomatic relief from mass effect. The combined use of stereotactic aspiration and radiosurgery has strong implications in improving patient outcomes

    Non-Einstein Viscosity Phenomenon of Acrylonitrile–Butadiene–Styrene Composites Containing Lignin–Polycaprolactone Particulates Highly Dispersed by High-Shear Stress

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    Lignin powder was modified via ring-opening polymerization of caprolactone to form a lignin–polycaprolactone (LPCL) particulate. The LPCL particulates were mixed with an acrylonitrile–butadiene–styrene (ABS) matrix at an extremely high rotational speed of up to 3000 rpm, which was achieved by a closed-loop screw mixer and in-line melt extruder. Using this high-shear extruding mixer, the LPCL particulate size was controlled in the range of 3395 nm (conventional twin-screw extrusion) down to 638 nm (high-shear mixer of 3000 rpm) by altering the mixing speed and time. The resulting LPCL/ABS composites clearly showed non-Einstein viscosity phenomena, exhibiting reduced viscosity (2130 Pa·s) compared to the general extruded composite one (4270 Pa·s) at 1 s–1 and 210 °C. This is due to the conformational rearrangement and the increased free volume of ABS molecular chains in the vicinity of LPCL particulates. This was supported by the decreased glass transition temperature (Tg, 83.7 °C) of the LPCL/ABS composite specimens, for example, giving a 21.8% decrement compared to that (107 °C) of the neat ABS by the incorporation of 10 wt % LPCL particulates in ABS. The LPCL particulate morphology, damping characteristics, and light transmittance of the developed composites were thoroughly investigated at various levels of applied shear rates and mixing conditions. The non-Einstein rheological phenomena stemming from the incorporation of LPCL particulates suggest an interesting plasticization methodology: to improve the processability of high-loading filler/polymer composites and ultra-high molecular weight polymers that are difficult to process because of their high viscosity

    Microdroplets for the Study of Mass Transfer

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    Allele-specific deposition of macroH2A1 in imprinting control regions

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    In the current study, we analyzed the deposition patterns of macroH2A1 at a number of different genomic loci located in X chromosome and autosomes. MacroH2A1 is preferentially deposited at methylated CpG-rich regions located close to promoters. The macroH2A1 deposition patterns at the methylated CpG islands of several imprinted domains, including the imprinting control regions (ICRs) of Xist, Peg3, H19/Igf2, Gtl2/Dlk1 and Gnas domains, show consistent allele-specificity towards inactive, methylated alleles. The macroH2A1 deposition levels at the ICRs and other differentially methylated regions of these domains are also either higher or comparable to those observed at the inactive X chromosome of female mammals. Overall, our results indicate that besides DNA methylation macroH2A1 is another epigenetic component in the chromatin of ICRs displaying differential association with two parental alleles. © The Author 2006. Published by Oxford University Press. All rights reserved

    Accelerating Large-Scale Graph-based Nearest Neighbor Search on a Computational Storage Platform

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    K-nearest neighbor search is one of the fundamental tasks in various applications and the hierarchical navigable small world (HNSW) has recently drawn attention in large-scale cloud services, as it easily scales up the database while offering fast search. On the other hand, a computational storage device (CSD) that combines programmable logic and storage modules on a single board becomes popular to address the data bandwidth bottleneck of modern computing systems. In this paper, we propose a computational storage platform that can accelerate a large-scale graph-based nearest neighbor search algorithm based on SmartSSD CSD. To this end, we modify the algorithm more amenable on the hardware and implement two types of accelerators using HLS- and RTL-based methodology with various optimization methods. In addition, we scale up the proposed platform to have 4 SmartSSDs and apply graph parallelism to boost the system performance further. As a result, the proposed computational storage platform achieves 75.59 query per second throughput for the SIFT1B dataset at 258.66W power dissipation, which is 12.83x and 17.91x faster and 10.43x and 24.33x more energy efficient than the conventional CPU-based and GPU-based server platform, respectively. With multi-terabyte storage and custom acceleration capability, we believe that the proposed computational storage platform is a promising solution for cost-sensitive cloud datacenters.Comment: Extension of FCCM 20201 and Accepted in Transaction on Computer

    In vivo and in vitro studies of Mgs1 suggest a link between genome instability and Okazaki fragment processing

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    The non-essential MGS1 gene of Saccharomyces cerevisiae is highly conserved in eukaryotes and encodes an enzyme containing both DNA-dependent ATPase and DNA annealing activities. MGS1 appears to function in post-replicational repair processes that contribute to genome stability. In this study, we identified MGS1 as a multicopy suppressor of the temperature-sensitive dna2Δ405N mutation, a DNA2 allele lacking the N-terminal 405 amino acid residues. Mgs1 stimulates the structure-specific nuclease activity of Rad27 (yeast Fen1 or yFen1) in an ATP-dependent manner. ATP binding but not hydrolysis was sufficient for the stimulatory effect of Mgs1, since non-hydrolyzable ATP analogs are as effective as ATP. Suppression of the temperature-sensitive growth defect of dna2Δ405N required the presence of a functional copy of RAD27, indicating that Mgs1 suppressed the dna2Δ405N mutation by increasing the activity of yFen1 (Rad27) in vivo. Our results provide in vivo and in vitro evidence that Mgs1 is involved in Okazaki fragment processing by modulating Fen1 activity. The data presented raise the possibility that the absence of MGS1 may impair the processing of Okazaki fragments, leading to genomic instability
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