BACKGROUND: The design and manufacturing of effective foot orthoses is a complex multidisciplinary problem involving biomedical and gait pattern aspects, technical material and geometric design elements as well as psychological and social contexts. This complexity contributes to the current trial-and-error and experience-based orthopedic footwear practice in which a major part of the expertise is implicit. This hampers knowledge transfer, reproducibility and innovation. OBJECTIVE/METHODS: A systematic review of literature has been performed to find evidence of explicit knowledge, quantitative guidelines and design motivations of pedorthists. RESULTS: 17 studies have been included. No consensus is found on which measurable parameters ensure proper foot and ankle functioning. Parameters suggested are: neutral foot positioning and control of rearfoot motion, maximum arch, but also tibial internal/external rotation as well as a three point force system. Also studies evaluating foot orthoses centering on the diagnosis or orthosis type find no clear guidelines for treatment or for measuring the effectiveness. CONCLUSIONS: A gap in the translation from diagnosis to a specific, customized and quantified effective orthosis design is identified. Suggested solutions are both top-down, fitting of patient data in simulations, as well as bottom-up, quantifying current practices of pedorthists in order to develop new practical guidelines and evidence-based procedures.
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Rationale: The Patient-Generated Subjective Global Assessment (PG-SGA) is a validated instrument to assess malnutrition and its risk factors in clinical populations. Its patient component, PG-SGA Short Form (SF), can be used as screening instrument. In this cross-sectional study we aimed to assess agreement between the PG-SGA SF, Malnutrition Universal Screening Tool (MUST), and Short Nutritional Assessment Questionnaire (SNAQ) in patients at the University Medical Center Groningen, The Netherlands.Methods: Malnutrition risk was assessed by PG-SGA SF, MUST, and SNAQ in 81 patients from the Departments Ear Nose Throat (ENT), Oral and Maxillofacial Surgery (OMS) and Orthopedics. Point scores of PG-SGA SF=4-8, MUST=1, and SNAQ=2 were classified as ‘medium malnutrition risk’, and PG-SGA SF≥9, MUST ≥2, and SNAQ ≥3 as ‘high malnutrition risk’. Agreement in classification for malnutrition risk was assessed by weighted kappa (κ) and intra-class correlation coefficient (ICC). A p-value of <0.05 was considered statistically significant.Results: According to the PG-SGA SF, MUST and SNAQ, respectively 65%, 81%, and 80% of all patients were classified as ‘low malnutrition risk’; 24%, 8% and 6% as ‘medium malnutrition risk’; 11%, 10% and 14% as ‘high malnutrition risk’.Agreement between PG-SGA SF and MUST (κ=0.452, ICC=0.448; p<0.001), and between PG-SGA SF and SNAQ (κ=0.395, ICC=0.395; p<0.001) were both fair. In patients from the Departments ENT and OMS, PG-SGA SF classified more patients at medium/high malnutrition risk (n=26) as compared to the MUST (n=12) or SNAQ (n=14).Conclusion: We found only fair agreement between the PG-SGA SF and MUST and SNAQ, respectively. The PG-SGA SF classified three and four times more patients at medium malnutrition risk, compared to MUST and SNAQ respectively, due to its scoring on symptoms and activities/functioning. Hence, the PG-SGA SF may help facilitate proactive prevention of malnutrition.
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PURPOSE: It has been reported that there is no correlation between anterior tibia translation (ATT) in passive and dynamic situations. Passive ATT (ATTp) may be different to dynamic ATT (ATTd) due to muscle activation patterns. This study aimed to investigate whether muscle activation during jumping can control ATT in healthy participants.METHODS: ATTp of twenty-one healthy participants was measured using a KT-1000 arthrometer. All participants performed single leg hops for distance during which ATTd, knee flexion angles and knee flexion moments were measured using a 3D motion capture system. During both tests, sEMG signals were recorded.RESULTS: A negative correlation was found between ATTp and the maximal ATTd (r = - 0.47, p = 0.028). An N-Way ANOVA showed that larger semitendinosus activity was seen when ATTd was larger, while less biceps femoris activity and rectus femoris activity were seen. Moreover, larger knee extension moment, knee flexion angle and ground reaction force in the anterior-posterior direction were seen when ATTd was larger.CONCLUSION: Participants with more ATTp showed smaller ATTd during jump landing. Muscle activation did not contribute to reduce ATTd during impact of a jump-landing at the observed knee angles. However, subjects with large ATTp landed with less knee flexion and consequently showed less ATTd. The results of this study give information on how healthy people control knee laxity during jump-landing.LEVEL OF EVIDENCE: III.
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