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Institution

Boston College

EducationBoston, Massachusetts, United States
About: Boston College is a education organization based out in Boston, Massachusetts, United States. It is known for research contribution in the topics: Population & Poison control. The organization has 9749 authors who have published 25406 publications receiving 1105145 citations. The organization is also known as: BC.


Papers
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Journal ArticleDOI
TL;DR: This paper studied the sources and consequences of fluctuations in the US housing market and showed that the spillovers are nonnegligible, concentrated on consumption rather than business investment, and have become more important over time.
Abstract: We study sources and consequences of fluctuations in the US housing market. Slow technological progress in the housing sector explains the upward trend in real housing prices of the last 40 years. Over the business cycle, housing demand and housing technology shocks explain one-quarter each of the volatility of housing investment and housing prices. Monetary factors explain less than 20 percent, but have played a bigger role in the housing cycle at the turn of the century. We show that the housing market spillovers are nonnegligible, concentrated on consumption rather than business investment, and have become more important over time.

822 citations

Journal ArticleDOI
TL;DR: This article found that individuals with highly differentiated emotion experience should be better able to regulate emotions than individuals with poorly differentiated emotion experiences, and that emotion differentiation and emotion regulation would be positively related in the context of negative emotions, where the press for emotion regulation is generally greatest.
Abstract: Individuals differ considerably in their emotion experience. Some experience emotions in a highly differentiated manner, clearly distinguishing among a variety of negative and positive discrete emotions. Others experience emotions in a relatively undifferentiated manner, treating a range of like-valence terms as interchangeable. Drawing on self-regulation theory, we hypothesised that individuals with highly differentiated emotion experience should be better able to regulate emotions than individuals with poorly differentiated emotion experience. In particular, we hypothesised that emotion differentiation and emotion regulation would be positively related in the context of intense negative emotions, where the press for emotion regulation is generally greatest. To test this hypothesis, participants' negative and positive emotion differentiation was assessed using a 14-day diary protocol. Participants' regulation of negative and positive emotions was assessed using laboratory measures. As predicted, negative...

820 citations

Journal ArticleDOI
TL;DR: Polycrystalline BiFeO3 nanoparticles (size 80-120 nm) are prepared by a simple sol-gel technique as discussed by the authors, which are very efficient for photocatalytic decomposition of organic contaminants under irradiation from ultraviolet to visible frequencies.
Abstract: Polycrystalline BiFeO3 nanoparticles (size 80-120 nm) are prepared by a simple sol-gel technique. Such nanoparticles are very efficient for photocatalytic decomposition of organic contaminants under irradiation from ultraviolet to visible frequencies. The BiFeO3 nanoparticles also demonstrate weak ferromagnetism of about 0.06 mu(B)/Fe at room temperature, in good agreement with theoretical calculations.

819 citations

Journal ArticleDOI
08 Nov 2007-Nature
TL;DR: The full potential of olefin metathesis will be realized only when additional catalysts are discovered that are truly practical and afford exceptional selectivity for a significantly broader range of reactions.
Abstract: Catalytic olefin metathesis--through which pairs of C = C bonds are reorganized--transforms simple molecules to those that are complex and precious. This class of reactions has noticeably enriched chemical synthesis, which is the art of preparing scarce molecules with highly desirable properties (for example, medicinal agents or polymeric materials). Research in the past two decades has yielded structurally well-defined catalysts for olefin metathesis that are used to synthesize an array of molecules with unprecedented efficiency. Nonetheless, the full potential of olefin metathesis will be realized only when additional catalysts are discovered that are truly practical and afford exceptional selectivity for a significantly broader range of reactions.

819 citations

Journal ArticleDOI
TL;DR: The view of metastatic cancer cells as a macrophage metabolic disease can provide novel insight for therapeutic management and explain the long-standing "seed and soil" hypothesis and the absence of metastasis in plant cancers.
Abstract: Metastasis involves the spread of cancer cells from the primary tumor to surrounding tissues and to distant organs and is the primary cause of cancer morbidity and mortality. In order to complete the metastatic cascade, cancer cells must detach from the primary tumor, intravasate into the circulatory and lymphatic systems, evade immune attack, extravasate at distant capillary beds, and invade and proliferate in distant organs. Currently, several hypotheses have been advanced to explain the origin of cancer metastasis. These involve an epithelial mesenchymal transition, an accumulation of mutations in stem cells, a macrophage facilitation process, and a macrophage origin involving either transformation or fusion hybridization with neoplastic cells. Many of the properties of metastatic cancer cells are also seen in normal macrophages. A macrophage origin of metastasis can also explain the long-standing "seed and soil" hypothesis and the absence of metastasis in plant cancers. The view of metastasis as a macrophage metabolic disease can provide novel insight for therapeutic management.

808 citations


Authors

Showing all 9922 results

NameH-indexPapersCitations
Eric J. Topol1931373151025
Gang Chen1673372149819
Wei Li1581855124748
Daniel L. Schacter14959290148
Asli Demirguc-Kunt13742978166
Stephen G. Ellis12765565073
James A. Russell124102487929
Zhifeng Ren12269571212
Jeffrey J. Popma12170272455
Mike Clarke1131037164328
Kendall N. Houk11299754877
James M. Poterba10748744868
Gregory C. Fu10638132248
Myles Brown10534852423
Richard R. Schrock10372443919
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202398
2022250
20211,282
20201,275
20191,082
20181,058