758 research outputs found
Js. H. Wilson, Maj. Gen. Vols.
Print shows a half-length portrait of Maj. Gen. James Harrison Wilson (1837-1925).Civil War Photograph Collection (Library of Congress).This record contains unverified, old data from caption card
Introduction and Transcription of the Song Cycle, "On Wenlock Edge," by Ralph Vaughan Williams, for Male Chorus and Piano
by Lowell C. Everson.Typescript. Also microfilm. 16 mm.Transcriber's thesis (M.A.--Music)--Catholic University of America, 1961.Bibliography: leaves 39-40
Robert Lowell
Medium: Woodcut.Print Image Size: 26 x 18 inches.Print Edition: 30 (with 1 artist's proof).Alternate Medium: Woodcut.Ink(s): black.Support: laid paper.Bust-length portrait of the author Robert Lowell, with hand carved text that reads "International Poetry Forum presents Robert Lowell, October 5, 1967, 8:30 P.M., Carnegie Lecture Hall." Commissioned for the annual event held in Pittsburgh, Pennsylvania
Lowell, Massachusetts 2025
Includes text, illustrations, and descriptive key to places of interest.
"This map, completed in May 2025, grows out of 'A people's guide to Greater Boston' (University of California Press, 2020) by Joseph Nevins, Suren Moodliar, and Eleni Macrakis."
"Financial support provided by: Norman B. Leventhal Map & Education Center at the Boston Public Library, Merrimack Valley Central Labor Council, UMass Lowell History Department.Color;1:8,75
Terry K. Woods at the Lowell Dam
1 color photographic slide of Terry K. Woods standing on the wall in front of the Lowell Dam on the Muskingum River in Lowell in Washington County, Ohio. Woods was an author and canal historian and past president of the American Canal Society, the Canal Society of Ohio, and the New York State Canal Society
Will Science and Engineering Now Be a Good Career?
Before rushing to panicked conclusions about a math and science crisis in every classroom and college, let us take an evidence-based approach to addressing the nation's future.This Commentary originally published as "Will Science and Engineering Now Be a Good Career?" As first appeared in Education Week November 11, 2009. Reprinted with permission from the authors
Amy Lowell
Medium: Etching.Print Image Size: 15 1/4 x 11 5/8 inches.Print Edition: no edition (with 2 artist's proofs).Alternate Medium: Two-plate color etching.Ink(s): brown (first plate); blue, green (second plate).Support: Rives BFK paper.Half-length portrait of American author Amy Lowell holding a cigar in front of an abstract landscape. A similar etched depiction of the poet [CMA 2001.034.341] was produced a couple of years later
Fort Lowell Park master plan
abstract: Fort Lowell was a supply base for the United States Army “Apache Campaigns” between 1873 and 1891. Following abandonment of the fort in 1891, settlers moved in and used some fort buildings as residences, or stripped the buildings of useful materials. By the 1930s, much of the fort had fallen into disrepair or had been sold off. Eventually, the City of Tucson acquired a large portion of the old fort which became what is today’s “Fort Lowell Park.” A 5.2 acre (“Adkins”) parcel of the former fort containing several original adobe buildings was still in private ownership, and the 2004 County bond election passed a proposal to acquire the land and preserve the historic resources
Methods for analyzing deformation of in vitro tissue models during simulated acupuncture therapy:
Traditional acupuncture therapy involves insertion and manipulation of fine needles through the skin at various points of the body. Studying acupuncture therapy both in vivo and ex vivo has revealed that during needle manipulation, loose connective tissue under the skin couples and winds to the needle, producing profound deformation that could act as a mechanism for the treatment’s therapeutic benefits. In order to study this biophysical phenomenon in a controlled setting, we have constructed a simplified model of acupuncture therapy in vitro. We believe that using connective tissue models in our assay allows unique observations not permitted in previous investigations of acupuncture
therapy. Two specific goals of our in vitro assay of acupuncture therapy are: 1) Quantitatively measure the relationship between tissue parameters and the ability to respond to acupuncture therapy, and 2) Make direct observations of deformation invoked by needle manipulation. The objective of this thesis was to construct quantitative tools that allow us to perform these desired observations. We utilize various microscopy and images processing tools to extract quantitative data from our system, including polarized
light microscopy (PLM) to assess aligning extracellular matrix fibers in deforming tissue and automated tracking of displacing beads suspended within our tissue models to characterize the deformation during simulated acupuncture therapy. Our system and the
tools developed for this thesis demonstrate accuracy by corroborating with previously published research and precision by producing reliable, consistent results. These tools have allowed us to make several observations of the biophysical behavior of tissue
during acupuncture therapy and the role of mechanostructural properties in the tissue’s ability to respond to needle manipulation. In conjunction with in vivo and ex vivo research endeavors, we believe that our in vitro tools provide valuable insight towards investigating the role of tissue deformation as a mechanism for acupuncture therapy.M.S.Includes bibliographical references (p. 31-32)by Lowell Taylor Edga
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