Commentary: EMS Education Agenda for the Future: Flexner Revisited

2000 ◽  
Vol 35 (6) ◽  
pp. 623-625
Author(s):  
Jon A King
2015 ◽  
Vol 31 (1) ◽  
pp. 90-97 ◽  
Author(s):  
Ingrid A. Brooks ◽  
Michael R. Sayre ◽  
Caroline Spencer ◽  
Frank L. Archer

AbstractIntroductionThe Emergency Medical Services (EMS) approach to emergency prehospital care in the United States (US) has global influence. As the 50-year anniversary of modern US EMS approaches, there is value in examining US EMS education development over this period. This report describes US EMS education milestones and identifies themes that provide context to readers outside the US.MethodAs US EMS education is described mainly in publications of federal US EMS agencies and associations, a Google search and hand searching of documents identified publications in the public domain. MEDLINE and CINAHL Plus were searched for peer reviewed publications. Documents were reviewed using both a chronological and thematic approach.ResultsSeventy-eight documents and 685 articles were screened, the full texts of 175 were reviewed, and 41 were selected for full review. Four historical periods in US EMS education became apparent: EMS education development (1966-1980); EMS education consolidation and review (1981-1989); EMS education reflection and change (1990-1999); and EMS education for the future (2000-2014). Four major themes emerged: legislative authority, physician direction, quality, and development of the profession.ConclusionDocuments produced through broad interprofessional consultations, with support from federal and US EMS authorities, reflect the catalysts for US EMS education development. The current model of US EMS education provides a structure to enhance educational quality into the future. Implementation evaluation of this model would be a valuable addition to the US EMS literature. The themes emerging from this review assist the understanding of the characteristics of US EMS education.BrooksIA, SayreMR, SpencerC, ArcherFL. An historical examination of the development of Emergency Medical Services education in the US through key reports (1966-2014). Prehosp Disaster Med. 2016;31(1):90–97.


1961 ◽  
Vol 13 ◽  
pp. 29-41
Author(s):  
Wm. Markowitz
Keyword(s):  

A symposium on the future of the International Latitude Service (I. L. S.) is to be held in Helsinki in July 1960. My report for the symposium consists of two parts. Part I, denoded (Mk I) was published [1] earlier in 1960 under the title “Latitude and Longitude, and the Secular Motion of the Pole”. Part II is the present paper, denoded (Mk II).


1978 ◽  
Vol 48 ◽  
pp. 387-388
Author(s):  
A. R. Klemola
Keyword(s):  

Second-epoch photographs have now been obtained for nearly 850 of the 1246 fields of the proper motion program with centers at declination -20° and northwards. For the sky at 0° and northward only 130 fields remain to be taken in the next year or two. The 270 southern fields with centers at -5° to -20° remain for the future.


Author(s):  
Godfrey C. Hoskins ◽  
Betty B. Hoskins

Metaphase chromosomes from human and mouse cells in vitro are isolated by micrurgy, fixed, and placed on grids for electron microscopy. Interpretations of electron micrographs by current methods indicate the following structural features.Chromosomal spindle fibrils about 200Å thick form fascicles about 600Å thick, wrapped by dense spiraling fibrils (DSF) less than 100Å thick as they near the kinomere. Such a fascicle joins the future daughter kinomere of each metaphase chromatid with those of adjacent non-homologous chromatids to either side. Thus, four fascicles (SF, 1-4) attach to each metaphase kinomere (K). It is thought that fascicles extend from the kinomere poleward, fray out to let chromosomal fibrils act as traction fibrils against polar fibrils, then regroup to join the adjacent kinomere.


Author(s):  
Nicholas J Severs

In his pioneering demonstration of the potential of freeze-etching in biological systems, Russell Steere assessed the future promise and limitations of the technique with remarkable foresight. Item 2 in his list of inherent difficulties as they then stood stated “The chemical nature of the objects seen in the replica cannot be determined”. This defined a major goal for practitioners of freeze-fracture which, for more than a decade, seemed unattainable. It was not until the introduction of the label-fracture-etch technique in the early 1970s that the mould was broken, and not until the following decade that the full scope of modern freeze-fracture cytochemistry took shape. The culmination of these developments in the 1990s now equips the researcher with a set of effective techniques for routine application in cell and membrane biology.Freeze-fracture cytochemical techniques are all designed to provide information on the chemical nature of structural components revealed by freeze-fracture, but differ in how this is achieved, in precisely what type of information is obtained, and in which types of specimen can be studied.


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