PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Catalogs, Library”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 217 records · Page 12Linked to original sources

Centralization vs. decentralization in medical school libraries.

Does the medical school library in the United States operate more commonly under the university library or the medical school administration? University-connected medical school libraries were asked to indicate (a) the source of their budgets, whether from the central library or the medical school, and (b) the responsibility for their acquisitions and cataloging. Returns received from sixtyeight of the seventy eligible institutions showed decentralization to be much the most common: 71 percent of the libraries are funded by their medical schools; 79 percent are responsible for their own acquisitions and processing. The factor most often associated with centralization of both budget and operation is public ownership. Decentralization is associated with service to one or two rather than three or more professional schools. Location of the medical school in a different city from the university is highly favorable to autonomy. Other factors associated with these trends are discussed.

Libraries, Medical↗

The health sciences library's contributions to patient care.

The medical librarian in a hospital contributes to the quality of patient care by building a library which can provide promptly the information needed by all members of the treatment team, including medical and paramedical persons. The librarian is meeting his responsibility to the patient when he performs the duties of selecting materials, cataloging these materials speedily and thoroughly, and giving reference service to library users. An excellent hospital library and the services of a knowledgeable librarian can be a significant factor in the medical team's ability to provide superior patient care.

Delivery of Health Care↗

Library-media production interface.

This article presents a detailed discussion of the roles of the health sciences library and the media production service personnel in providing a standardized system for accessing audiovisual and video in-house produced software. A worksheet and guidelines for collecting complete bibliographic information for these programs are also included.

Audiovisual Aids↗

EARS: Electronic Access to Reference Service.

Electronic Access to Reference Service (EARS) is a front end to the Health Sciences Library's electronic mail system, with links to the online public catalog. EARS, which became operational in September 1984, is accessed by users at remote sites with either a terminal or microcomputer. It is menu-driven, allowing users to request: a computerized literature search, reference information, a photocopy of a journal article, or a book. This paper traces the history of EARS and discusses its use, its impact on library staff and services, and factors that influence the diffusion of new technology.

Libraries, Medical↗

The Osler Library: today and tomorrow.

The Osler Library's purpose is to build a collection capable of supporting research in the history of medicine. The major acquisition area is material published from 1960 to 1968. Out-of-print material is acquired on microfilm. The Library contains all pre-1850 monographs, transferred from the Medical Library, and all new monographs from 1850 to 1899 are housed there. The catalogs are described, together with special files, including chronological, journal article index, and publishers' lists index.The place of the original Osler collection is discussed, as are methods by which the collections are preserved. The Library hopes to become a deposit center in Eastern Canada for historical medical material.The administration and organization of the Library are described.

History of Medicine↗

UCMP and the Internet help hospital libraries share resources.

The Medical Library Center of New York (MLCNY), a medical library consortium founded in 1959, has specialized in supporting resource sharing and fostering technological advances. In 1961, MLCNY developed and continues to maintain the Union Catalog of Medical Periodicals (UCMP), a resource tool including detailed data about the collections of more than 720 medical library participants. UCMP was one of the first library tools to capitalize on the benefits of computer technology and, from the beginning, invited hospital libraries to play a substantial role in its development. UCMP, beginning with products in print and later in microfiche, helped to create a new resource sharing environment. Today, UCMP continues to capitalize on new technology by providing access via the Internet and an Oracle-based search system providing subscribers with the benefits of: a database that contains serial holdings information on an issue specific level, a database that can be updated in real time, a system that provides multi-type searching and allows users to define how the results will be sorted, and an ordering function that can more precisely target libraries that have a specific issue of a medical journal. Current development of a Web-based system will ensure that UCMP continues to provide cost effective and efficient resource sharing in future years.

Catalogs as Topic↗

MELVYL MEDLINE: a library services perspective.

The MELVYL MEDLINE project resulted in the addition of a full five-year subset of MEDLINE to the University of California's (UC) MELVYL online union catalog. As one of the nation's largest MEDLINE end-user searching systems, MELVYL MEDLINE provides online bibliographic access to the biomedical journal literature for all UC personnel at over seventy library sites or by remote access. This paper summarizes the project's accomplishments, reports MELVYL MEDLINE use and its impact on library services, and provides insights for other end-user search systems. The project serves as a model for adding databases to the MELVYL catalog and demonstrates the potential for use by other disciplines of a specialized database when readily accessible. Evaluation results report high user satisfaction and high usage. However, many advanced searching features of the interface are little used by searchers. Effects on library services include marked increases in reference transactions and interlibrary loans, with significant declines in mediated search services. Future MELVYL MEDLINE enhancements include matching search retrievals to journal locations, linkage to an online document delivery system, and consideration of building a superset of databases by combining MELVYL MEDLINE with citations from another database in the MELVYL catalog.

California↗

John Shaw Billings as a Bibliographer.

The influences that a man's childhood have on his life are, it is well known, great. Life is essentially a part of the things that happen to the individual and it is the manner in which one relates oneself to these things that determines what one is. With these facts in mind this study of John Shaw Billings as a bibliographer has been approached. His early life has been reviewed as an influence on his later achievements. Stress has been placed on those events which led to his bibliographic activities.Dr. Billings was prolific in many fields. Others have given detailed analyses of his writings (1, 2). The present study will consider only his bibliographic works. The description of these follows the brief outline of his childhood and youth.

Bibliography of Medicine↗

Cataloging audiovisual materials: a new dimension.

A new more comprehensive system for cataloging audiovisual materials is described. Existing audiovisual cataloging systems contain mostly descriptive information, publishers' or producers' summaries, and order information. This paper discusses the addition of measurable learning objectives to this standard information, thereby enabling the potential user to determine what can be learned from a particular audiovisual unit. The project included media in nursing only. A committee of faculty and students from the University of Alabama in Birmingham School of Nursing reviewed the materials. The system was field-tested at nursing schools throughout Alabama; the schools offered four different types of programs. The system and its sample product, the AVLOC catalog, were also evaluated by medical librarians, media specialists, and other nursing instructors throughout the United States.

Audiovisual Aids↗

Metropolitan Detroit's network: "...informed by magic numbers".

Wayne State University Library's serials automation project is evolutionary in concept, with its first completed stage designed to give information on titles and holdings. Its master tape includes, in addition to Wayne State University holdings, data for more than twenty biomedical libraries in the area, and print options are available that will produce a full union list or individual lists singly or in any combination.

Catalogs, Union as Topic↗

OCLC for the hospital library: the justification plan for hospital administration.

This paper delineates the necessary steps to provide hospital administrators with the information needed to evaluate an automated system, OCLC, for addition to the medical library. Based on experience at the Norton-Children's Hospitals, included are: (1) cost analyses of present technical processing systems and cost comparisons with OCLC; (2) delineation of start-up costs for installing OCLC; (3) budgetary requirements for 1981; (4) the impact of automation on library systems, personnel, and services; (5) potential as a shared service; and (6) preparation of the proposal for administrative review.

Budgets↗

The Georgetown University Library Information System (LIS): a minicomputer-based integrated library system.

Georgetown University's Library Information System (LIS), an integrated library system designed and implemented at the Dahlgren Memorial Library, is broadly described from an administrative point of view. LIS' functional components consist of eight "user-friendly" modules: catalog, circulation, serials, bibliographic management (including Mini-MEDLINE), acquisitions, accounting, networking, and computer-assisted instruction. This article touches on emerging library services, user education, and computer information services, which are also changing the role of staff librarians. The computer's networking capability brings the library directly to users through personal or institutional computers at remote sites. The proposed Integrated Medical Center Information System at Georgetown University will include interface with LIS through a network mechanism. LIS is being replicated at other libraries, and a microcomputer version is being tested for use in a hospital setting.

Computers↗

Creating and curating a pediatric radiology digital library to make the internet a useful reference tool for the radiologist.

BACKGROUND: To practice pediatric radiology optimally, radiologists need convenient access to organized and authoritative pediatric radiology information. The Internet has the potential for offering such convenient access, but the majority of information on it is poorly organized and of questionable authority. OBJECTIVE: The goal of this project was to create and curate a pediatric radiology digital library that will make the Internet a useful reference tool for the radiologist at the point-of-care. MATERIALS AND METHODS: A pediatric radiology digital library containing organized and authoritative pediatric radiology information from the Internet was created and has three components : (1) PediatricRadiology.com (http://pediatricradiology.com)--a catalog of pediatric radiology Web sites; (2) The MetaTextbook of Pediatric Radiology (http://www. vh.org/Providers/TeachingFiles/MetatextbookPedRad/MetaTBP edRad.html)--a catalog of pediatric radiology teaching file cases on the Internet; and (3) Paediapedia (http://www.vh. org/Providers/TeachingFiles/PAP/PAPHome.html)--an imaging encyclopedia of pediatric disease. The pediatric radiology digital library is curated regularly. RESULTS: Over 7 months, 223,689 pages of information were read and 26,972 images were viewed in the pediatric radiology digital library by 69,866 individual users, with 20% of the users from outside the United States. CONCLUSION: Creating a pediatric radiology digital library that identifies and organizes authoritative pediatric radiology information and makes it conveniently available can allow radiologists to use the Internet productively as a reference tool.

Child↗

Restriction sites as identification tags for the gene catalog: a 2D gel model.

In our effort to collect, organize and assemble data from lymphocyte cDNA libraries, we assign DNA restriction sites collectively to the spots on two-dimensional (2D) gel patterns. In order to test the efficiency and reliability of such an approach, we have modeled the restriction analysis of cDNA libraries with a panel of restriction endonucleases. The work has two parts. In the first, we have chosen 255 proteins from the EMBL data base and determined whether or not their coding sequences contain restriction sites for the enzymes of our choice. In order to apply a sufficient discriminatory power we decided to use a relatively large number of cleaving enzymes with low and high cutting frequencies. In total, 13 restriction enzymes were chosen, which could distinguish 2(13) or 8192 different restriction site combinations. We have compiled a table in which the absence or presence of restriction sites yields a pattern of 'zeros' and 'ones'. Such a restriction pattern can be read as a binary number. The binary numbers with maximally 13 digits would uniquely assign each of the 255 proteins if the nucleotide sequences would be truly at random. As the restriction sites are not randomly distributed, the 'typing' does not yield a unique assignment. The choice of sequences was not random either. In fact, there are some human nucleotide sequences which possess the same cut number (the decimal equivalent of the binary number representing the restriction pattern). In spite of this redundancy, 141 coding sequences could uniquely be distinguished by the above treatment. In the second part of the project we have used the above mentioned coding sequences to prepare two-dimensional maps (plots of charge vs size) of the same kind as one obtains from experimental 2D gels and submitted such a map together with 13 maps of restriction enzyme treated populations to a computer image analysis. Ideally, one would expect results (cut numbers) congruent to those obtained in the first part of the work. In the modeled system we were confronted with 2D maps which closely resembled the experimental situation (e.g. some spots were close together and overlapping) and instances of incorrect spot detection yielding 'false cut numbers'. From 255 proteins we were able to assign unequivocally 161 proteins. To implement the model in an actual experiment we will perform the digestion with the restriction enzymes in duplicate, and only spots assigned the same cut number upon the two independent treatments will be considered as carrying a valid restriction tag.

Base Sequence↗