A Comparison of Rearfoot Motion Control and Comfort between Custom and Semicustom Foot Orthotic Devices

2008 ◽  
Vol 98 (5) ◽  
pp. 394-403 ◽  
Author(s):  
Irene S. Davis ◽  
Rebecca Avrin Zifchock ◽  
Alison T. DeLeo

Background: Motion control and comfort are primary objectives in orthotic intervention. Semicustom orthotic devices have been presented as a more cost-effective solution than custom orthotic devices. However, no studies have compared their function or comfort to that of custom orthotic devices. Methods: Nineteen uninjured runners were fitted for custom and semicustom orthotic devices. Subjects underwent an instrumented gait analysis of running and walking in no-orthotic, custom orthotic, and semicustom orthotic conditions. Subjects completed visual analog scales for the custom and semicustom orthotic conditions. One-way repeated measures analyses of variance were performed on the rearfoot variables of peak eversion, eversion excursion, eversion duration, and eversion velocity. Two-tailed, dependent t tests were used to compare comfort. Results: Eversion excursion showed significant differences between the conditions: during running, it was reduced in the custom orthotic as compared to the no-orthotic condition; during walking, it was reduced in the semicustom orthotic as compared to both the custom and no-orthotic conditions. The custom orthotic devices were significantly more comfortable (P < .05) than the semicustom devices in the area of the edges only. Conclusion: The results suggest that, in uninjured individuals, there are few differences in rearfoot motion control and comfort between the custom and semicustom orthotic devices used in this study. (J Am Podiatr Med Assoc 98(5): 394–403, 2008)

1995 ◽  
Vol 28 (6) ◽  
pp. 361-376 ◽  
Author(s):  
Ken Chee Keung Law ◽  
Horace Ho Shing Ip ◽  
Siu Lok Chan

Author(s):  
Gyanendra Gurung ◽  
Kshama Roy

Abstract The use of Geographic Information System (GIS) in managing pipeline database and automating routine engineering processes has become a standard practice in the pipeline industry. While maintaining a central database provides security, integrity, and easy management of data throughout the pipeline’s lifecycle, GIS enables spatial analysis of pipeline data in addition to streamlining access and visualization of results. One of the major benefits of GIS integration lies in the ease of automating the alignment sheet generation for pipelines. This paper introduces a simplified pipeline alignment sheet generation workflow using GIS datasets to produce highly customizable alignment sheets in AutoCAD, a much-preferred format in the pipeline industry. By utilizing existing GIS and AutoCAD features to generate the alignment sheet, writing complicated geo-processing or plotting algorithms is minimized, which in turn reduces the risks of committing any systematic errors. This robust and user-friendly workflow not only ensures safety but also leads to a cost-effective solution.


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