950
Views
0
CrossRef citations to date
0
Altmetric
Neurology

Translation and validation of a Swedish version of the Visual Vertigo Analogue Scale

&
Pages 572-577 | Received 23 Oct 2022, Accepted 01 Feb 2023, Published online: 09 Mar 2023

References

  • Newman-Toker DE, Hsieh Y-H, Camargo CA, et al. Spectrum of dizziness visits to US emergency departments: cross-sectional analysis from a nationally representative sample. Mayo Clin Proc. 2008;83(7):765–775.
  • Newman-Toker DE, Cannon LM, Stofferahn ME, et al. Imprecision in patient reports of dizziness symptom quality: a cross-sectional study conducted in an acute care setting. Mayo Clin Proc. 2007;82(11):1329–1340.
  • Newman-Toker DE, Kerber KA, Hsieh Y-H, et al. HINTS outperforms ABCD 2 to screen for stroke in acute continuous vertigo and dizziness. Acad Emerg Med. 2013;20(10):986–996.
  • Dannenbaum E, Chilingaryan G, Fung J. Visual vertigo analogue scale: an assessment questionnaire for visual vertigo. J Vestib Res. 2011;21(3):153–159.
  • Reason JT. Motion sickness adaptation: a neural mismatch model. J R Soc Med. 1978;71(11):819–829.
  • Bronstein AM. The visual vertigo syndrome. Acta Otolaryngol Suppl. 1995;520(Pt 1):45–48.
  • Azulay JP, Mesure S, Amblard B, et al. Increased visual dependence in Parkinson’s disease. Percept Mot Skills. 2002;95(3 Pt 2):1106–1114.
  • Lempert T, Olesen J, Furman J, et al. Vestibular migraine: diagnostic criteria. J Vestib Res. 2012;22(4):167–172.
  • Yelnik AP, Kassouha A, Bonan IV, et al. Postural visual dependence after recent stroke: assessment by optokinetic stimulation. Gait Posture. 2006;24(3):262–269.
  • Hüweler R, Kandil FI, Alpers GW, et al. The impact of visual flow stimulation on anxiety, dizziness, and body sway in individuals with and without fear of heights. Behav Res Ther. 2009;47(4):345–352.
  • Kontos AP, Jorgensen-Wagers K, Trbovich AM, et al. Association of time since injury to the first clinic visit with recovery following concussion. JAMA Neurol. 2020;77(4):435–440.
  • Zur O, Schoen G, Dickstein R, et al. Anxiety among individuals with visual vertigo and vestibulopathy. Disabil Rehabil. 2015;37(23):2197–2202.
  • Fong E, Li C, Aslakson R, et al. Systematic review of patient-reported outcome measures in clinical vestibular research. Arch Phys Med Rehabil. 2015;96(2):357–365.
  • Verdecchia DH, Hernandez D, Andreu MF, et al. Translation and cross-cultural adaptation of the visual vertigo analogue scale for use in Argentina. Acta Otorrinolaringol Esp. 2020;71(5):289–295.
  • Talaat H, Zein El Abedein A, Ali RE. Arabic version of the visual vertigo analogue scale for assessment visual vertigo syndrome. Egypt J Ear Nose Throat Allied Sci. 2019;20(3):117–121.
  • Tsang S, Royse CF, Terkawi AS. Guidelines for developing, translating, and validating a questionnaire in perioperative and pain medicine. Saudi J Anaesth. 2017;11(Suppl 1):S80–s89.
  • Bronstein AM. Visual vertigo syndrome: clinical and posturography findings. J Neurol Neurosurg Psychiatry. 1995;59(5):472–476.
  • Abdul Razzak R, Hussein W. Postural visual dependence in asymptomatic type 2 diabetic patients without peripheral neuropathy during a postural challenging task. J Diabetes Complicat. 2016;30(3):501–506.
  • Bonan IV, Marquer A, Eskiizmirliler S, et al. Sensory reweighting in controls and stroke patients. Clin Neurophysiol. 2013;124(4):713–722.
  • Li R, Wang N, Yan X, et al. Comparison of postural control between healthy subjects and individuals with nonspecific low back pain during exposure to visual stimulus. Chin Med J. 2014;127(7):1229–1234.
  • Slaboda JC, Lauer RT, Keshner EA. Postural responses of adults with cerebral palsy to combined base of support and visual field rotation. IEEE Trans Neural Syst Rehabil Eng. 2013;21(2):218–224.
  • Staab JP. Chronic subjective dizziness. Continuum. 2012;18(5):1118–1141.
  • Anzalone AJ, Blueitt D, Case T, et al. A positive vestibular/ocular motor screening (VOMS) is associated with increased recovery time after sports-related concussion in youth and adolescent athletes. Am J Sports Med. 2017;45(2):474–479.
  • Eagle SR, Puligilla A, Fazio-Sumrok V, et al. Association of time to initial clinic visit with prolonged recovery in pediatric patients with concussion. J Neurosurg Pediatr. 2020;26(2):165–170.
  • Elbin RJ, Sufrinko A, Anderson MN, et al. Prospective changes in vestibular and ocular motor impairment after concussion. J Neurol Phys Ther. 2018;42(3):142–148.
  • Kontos AP, Deitrick JM, Collins MW, et al. Review of vestibular and oculomotor screening and concussion rehabilitation. J Athl Train. 2017;52(3):256–261.
  • Mittenberg W, Canyock EM, Condit D, et al. Treatment of post-concussion syndrome following mild head injury. J Clin Exp Neuropsychol. 2001;23(6):829–836.
  • Mucha A, Fedor S, DeMarco D. Vestibular dysfunction and concussion. Handb Clin Neurol. 2018;158:135–144.
  • Sufrinko AM, Mucha A, Covassin T, et al. Sex differences in vestibular/ocular and neurocognitive outcomes following sport-related concussion. Clin J Sport Med. 2017;27(2):133–138.
  • Jarlsäter S, Mattsson E. Test of reliability of the dizziness handicap inventory and the activities-specific balance confidence scale for use in Sweden. Adv Physiother. 2003;5(3):137–144.
  • Piedmont R. L. in encyclopedia of quality of life and well-being research (ed Alex C. Michalos). Netherlands: Springer, 2014; pp. 3303–3304.
  • Cristobal E, Flavian C, Guinaliu M. Perceived e‐service quality (PeSQ): measurement validation and effects on consumer satisfaction and web site loyalty. Manag Serv Qual. 2007;17(3):317–340.