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1.
J Telemed Telecare ; : 1357633X231195091, 2023 Aug 30.
Artigo em Inglês | MEDLINE | ID: mdl-37649362

RESUMO

INTRODUCTION: Although there is growth in the approach to telerehabilitation (TLRH) in different pathologies, research on TLRH for the management of low back pain is scarce and controversial. Thus, the purpose of this study was to analyze whether a TLRH program is as effective as a clinical exercise program in improving pain and different functional variables in patients with nonspecific low back pain (NLBP). METHOD: A single-blind, two-armed randomized controlled trial was carried out with 68 individuals with chronic NLBP. Participants were randomly allocated to either the TLRH group (TG) (n = 34) or the clinic group (CG) (n = 34). The TG received an exercise-based TLRH video and an educational program on the neurophysiology of pain. The CG received the same pain education and exercise program at the clinic facility supervised by a clinician. Both groups performed 2 weekly sessions for 8 weeks. Active movements of the lumbar spine, pain and range of motion, and kinesiophobia were assessed at baseline, at the end of 8 weeks of treatment, and at 3 months. RESULTS: Statistically significant differences for time-by-group interaction were identified in range of motion of right (F = 11.668; p = 0.001) and left (F = 4.219; p = 0.042) legs when knee extended test is performed; as well as in pain intensity when the same test (F = 5.176; p = 0.043). Moreover, higher pain level during flexion (F = 5.133; p = 0.009) and extension movements (F = 6.335; p = 0.003) in patients with bilateral pain location than those with unilateral or central pain location has been appreciated. CONCLUSION: A TLRH rehabilitation program via mobile app is as effective as the same exercise program supervised in a clinic.

2.
Musculoskelet Sci Pract ; 65: 102765, 2023 06.
Artigo em Inglês | MEDLINE | ID: mdl-37141771

RESUMO

BACKGROUND: s:The effectiveness of telerehabilitation (TLRH) in patients with non-specific low back pain (NLBP) remains unknown. No study till date has investigated the efficacy of a mobile-based TLRH in patients with NLBP. OBJECTIVES: To investigate if a TLRH program is as effective as a clinical exercise programme in improving disability, pain intensity, pain catastrophizing, and hip pain and strength in patients with NLBP. DESIGN: Single-blind, two-armed, randomized controlled study. METHOD: A total of 71 individuals with NLBP were randomly allocated to either the TLRH home group (TLRH) or clinic group (CG). The TLRH followed exercise videos and read information on pain neurophysiology. The CG performed the same exercises and received on-site pain education. Both groups performed the exercises twice weekly for 8 weeks. Disability, pain intensity, pain catastrophizing, and hip pain and strength were assessed at baseline, at post-treatment, and at three months. RESULTS: Statistically significant differences for time-by-group interaction were detected in the strength of left hip flexors (supine [F = 8.356; p = .005]; sitting [F = 9.828; p = .003]), right hip extensors with extended knee [F = 7.461; p = .008], left hip extensors (extended knee [F = 13.175; p = .001]; flexed knee [F = 13.505; p < .001]), pain during flexion of the right [F = 5.133; p = .027] and left [F = 4.731; p = .033] hips in the supine position, disability [F = 4.557; p = .014], and pain catastrophizing [F = 14.132; p < .001]. CONCLUSION: A TLRH mobile-based is as effective as clinical treatment in improving disability, pain catastrophizing, and pain and strength of the hip structures in patients with NLBP.


Assuntos
Dor Lombar , Telerreabilitação , Humanos , Dor Lombar/terapia , Método Simples-Cego , Terapia por Exercício , Exercício Físico
3.
Adv Mater ; 26(44): 7474-9, 2014 Nov 26.
Artigo em Inglês | MEDLINE | ID: mdl-25183637

RESUMO

Electrons photoemitted through layers of purely organic chiral molecules become strongly spin-polarized even at room temperature and for double-monolayer thicknesses. The substitution of one enantiomer for its mirror image does not revert the sign of the spin polarization, rather its direction in space. These findings might lead to the obtention of highly efficient spin filters for spintronic applications.

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