The purpose of this study was to compare the reliability of repeated spring tape measurements with optoelectronic volumeter measurements for the assessment of lower leg circumferences. The limb circumferences at mid-calf and ankle level of both legs were measured three times using a spring tape measure as well as an optoelectronic volumeter. In all, 30 healthy volunteers participated in the study. Test reliability and repeatability were described through the process-related and between-subject variances and variance-derived parameters such as the reliability coefficient (intraclass correlation coefficient, RC), the relative precision (RP), and the coefficient of repeatability (CR). A higher value for the RC and a lower value for the RP indicate that the test variability is predominantly due to between-subject variance and not to test process-related variance. RCs for both methods, independent of whether measurements were taken at calf or at ankle level, always exceeded 0.95. RPs were in the same order of magnitude for both methods but lower for measurements at calf than at ankle level (range: RPcalf 6.36-8.74%; range: RPankle 12.49-18.56%). CRs for both methods were low and of comparable magnitude (CR range: 4.8-7.7), although slightly smaller for the spring tape. When measurement results from the spring tape and the volumeter were compared, results achieved with the volumeter were significantly longer than those from the spring tape (p<0.05). Results from both methods were linearly in good agreement and there was no proportional bias; differences shown were due to a significant constant bias regarding the volumeter. Circumference measurements taken by spring tape and by optoelectronic volumetry are both characterized by a comparably high reliability. However, these methods cannot be used in an interchangeable way because a constant bias exists for volumetry, resulting in significantly larger circumferences compared with those measured using the spring tape.
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http://dx.doi.org/10.1177/1358836X0000500202 | DOI Listing |
Materials (Basel)
July 2024
School of Mechanical and Electrical Engineering, Soochow University, Suzhou 215137, China.
Traditional deployable truss space structures previously had upper limits on their key indicators, such as the deployed area, folded ratio and total weight, and hence, the application of new extendable mechanisms with novel deployment types is desired. Foldable extendable tape spring booms made from FRP (fiber-reinforced polymer) laminate composites and their corresponding boom-membrane structures were invented in recent years to satisfy the needs of the large-scale requirements of spacecraft, especially for antennas, solar sails and solar arrays. This paper aimed to analyze the properties of the deployed states of extendable tape spring booms and their boom-membrane structures.
View Article and Find Full Text PDFJ Bodyw Mov Ther
April 2024
Department of Physiotherapy, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
Background: Basketball is a high-risk team sport for lower extremity injuries, with ankle sprains being the most common injury. Non-elastic tape is widely used in injury prevention and quick return to play after ankle sprains, but its impact on stiffness, particularly global stiffness, has not been thoroughly investigated.
Objectives: The aim of this study was to investigate the effects of non-elastic ankle taping on vertical stiffness, among basketball players during the jump shot tasks; and to assess the reliability of accelerometers to evaluate vertical stiffness.
Adv Sci (Weinh)
May 2024
State Key Laboratory of Digital Medical Engineering, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096, China.
Plants can autonomously adjust their growth direction based on the gravitropic response to maximize energy acquisition, despite lacking nerves and muscles. Endowing soft robots with gravitropism may facilitate the development of self-regulating systems free of electronics, but remains elusive. Herein, acceleration-regulated soft actuators are described that can respond to the gravitational field by leveraging the unique fluidity of liquid metal in its self-limiting oxide skin.
View Article and Find Full Text PDFSteerable needles are a novel technology that offers a wide range of uses in medical diagnostics and therapeutics. Currently, there exist several steerable needle designs in the literature, however, they are limited in their use by the number of possible turns, turn radius, and tissue damage. We introduce a novel design of a tape spring steerable needle, capable of multiple turns, that minimizes tissue damage.
View Article and Find Full Text PDFPlant Dis
February 2024
Universitat Autonoma de Barcelona, 16719, BABVE. Plant Physiology Laboratory, Biosciences Faculty, Barcelona, Catalunya, Spain;
In 2021, grapevines (Vitis vinifera L.) cv. Callet growing in a commercial vineyard located at Pollença (northeast of the island of Majorca, Spain) showed severe symptoms of shoot blight during spring and early summer, with an incidence of 70%.
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