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Research

Accommodation and stereopsis in adults with traumatic brain injury

, MS, , MD, , MD PhD & , MD PhD
Pages 877-884 | Received 12 Nov 2019, Accepted 16 Feb 2020, Published online: 15 Apr 2021

References

  • Menon DK, Schwab K, Wright DW et al. Position statement: definition of traumatic brain injury. Arch Phys Med Rehabil 2010; 91: 1637–1640.
  • Cheng P, Yin P, Ning P et al. Trends in traumatic brain injury mortality in China, 2006‐2013: a population‐based longitudinal study. PLoS Med 2017; 14: e1002332–e1002353.
  • Farinde A. An examination of co‐occurring conditions and management of psychotropic medication use in soldiers with traumatic brain injury. J Trauma Nurs 2014; 21: 153–157.
  • Armstrong RA. Visual problems associated with traumatic brain injury. Clin Exp Optom 2018; 101: 716–726.
  • Das M, Tang X, Mohapatra SS et al. Vision impairment after traumatic brain injury: present knowledge and future directions. Rev Neurosci 2019; 30: 305–315.
  • Laukkanen H, Scheiman M, Hayes JR. Brain injury vision symptom survey (BIVSS) questionnaire. Optom Vis Sci 2017; 94: 43–50.
  • Magone MT, Kwon E, Shin SY. Chronic visual dysfunction after blast‐induced mild traumatic brain injury. J Rehabil Res Dev 2014; 51: 71–80.
  • Ventura RE, Balcer LJ, Galetta SL. The neuro‐ophthalmology of head trauma. Lancet Neurol 2014; 13: 1006–1016.
  • Cockerham GC, Lemke S, Rice TA et al. Closed‐globe injuries of the ocular surface associated with combat blast exposure. Ophthalmology 2014; 121: 2165–2172.
  • Mohan K, Kecova H, Hernandez‐merino E et al. Retinal ganglion cell damage in an experimental rodent model of blast‐mediated traumatic brain injury. Invest Ophthalmol Vis Sci 2013; 54: 3440–3450.
  • Terzi MY, Casalis P, Lang V et al. Effects of pigment epithelium‐derived factor on traumatic brain injury. Restor Neurol Neurosci 2015; 33: 81–93.
  • Zheng H, Zhang Z, Luo N et al. Increased Th17 cells and IL‐17 in rats with traumatic optic neuropathy. Mol Med Rep 2014; 10: 1954–1958.
  • Goodrich GL, Flyg HM, Kirby JE et al. Mechanisms of TBI and visual consequences in military and veteran populations. Optom Vis Sci 2013; 90: 105–112.
  • Capo´‐aponte JE, Jorgensen‐wagers KL, Sosa JA et al. Visual dysfunctions at different stages after blast and non‐blast mild traumatic brain injury. Optom Vis Sci 2017; 94: 7–15.
  • Ciuffreda KJ, Kapoor N, Rutner D et al. Occurrence of oculomotor dysfunctions in acquired brain injury: a retrospective analysis. Optometry 2007; 78: 155–161.
  • Matuseviciene G, Johansson J, Moller M et al. Longitudinal changes in oculomotor function in young adults with mild traumatic brain injury in Sweden: an exploratory prospective observational study. BMJ Open 2018; 8: e018734–e018743.
  • Drew SA, Borsting E, Escobar AE et al. Can chronic visual discomfort measures accurately predict acute symptoms? Optom Vis Sci 2013; 90: 1149–1155.
  • Chase C, Tosha C, Borsting E et al. Visual discomfort and objective measures of static accommodation. Optom Vis Sci 2009; 86: 883–889.
  • Alvarez TL, Kim EH, Vicci VR et al. Concurrent vision dysfunctions in convergence insufficiency with traumatic brain injury. Optom Vis Sci 2012; 89: 1740–1751.
  • Lara F, Cacho P, García A et al. General binocular disorders: prevalence in a clinic population. Ophthal Physiol Opt 2001; 21: 70–74.
  • Szymanowicz D, Ciuffreda KJ, Thiagarajan P et al. Vergence in mild traumatic brain injury: a pilot study. J Rehabil Res Dev 2012; 49: 1083–1100.
  • Schmidtmann G, Ruiz T, Reynaud A et al. Sensitivity to binocular disparity is reduced by mild traumatic brain injury. Invest Ophthalmol Vis Sci 2017; 58: 2630–2635.
  • Jones PS, Lee JW, Phillips LR et al. An adaptation of Brislin's translation model for cross‐cultural research. Nurs Res 2001; 50: 300–304.
  • Vancleef K, Read JCA, Herbert W et al. Overestimation of stereo thresholds by the TNO stereotest is not due to global stereopsis. Ophthalmic Physiol Opt 2017; 37: 507–520.
  • Nunes AF, Monteiro PML, Ferreira FBP et al. Convergence insufficiency and accommodative insufficiency in children. BMC Ophthalmol 2019; 19: 58–65.
  • Adler P, Scally AJ, Barrett BT. Test‐retest reproducibility of accommodative facility measures in primary school children. Clin Exp Optom 2018; 101: 764–770.
  • Reith FCM, Lingsma HF, Gabbe BJ et al. Differential effects of the Glasgow coma scale score and its components: an analysis of 54,069 patients with traumatic brain injury. Injury 2017; 48: 1932–1943.
  • Luethcke CA, Bryan CJ, Morrow CE et al. Comparison of concussive symptoms, cognitive performance, and psychological symptoms between acute blast‐versus nonblast‐induced mild traumatic brain injury. J Int Neuropsychol Soc 2011; 17: 36–45.
  • Landre N, Poppe CJ, Davis N et al. Cognitive functioning and postconcussive symptoms in trauma patients with and without mild TBI. Arch Clin Neuropsychol 2006; 21: 255–273.
  • White OB, Fielding J. Cognition and eye movements: assessment of cerebral dysfunction. J Neuroophthalmol 2012; 32: 266–273.
  • Cassidy JD, Cancelliere C, Carroll LJ et al. Systematic review of self‐reported prognosis in adults after mild traumatic brain injury: results of the International Collaboration on mild traumatic brain injury prognosis. Arch Phys Med Rehabil 2014; 95: S132–S151.
  • Ciuffreda KJ, Yadav NK, Han E et al. Distance perception in mild traumatic brain injury (mTBI). Optometry 2012; 83: 127–136.
  • Kim HR, Angelaki DE, Deangelis GC. A functional link between MT neurons and depth perception based on motion parallax. J Neurosci 2015; 35: 2766–2777.
  • Nakatsuka C, Zhang B, Watanabe I et al. Effects of perceptual learning on local stereopsis and neuronal responses of V1 and V2 in prism‐reared monkeys. J Neurophysiol 2007; 97: 2612–2626.
  • Miller L, Mittenberg W, Carey V et al. Astereopsis caused by traumatic brain injury. Arch Clin Neuropsychol 1999; 14: 537–543.
  • Green W, Ciuffreda KJ, Thiagarajan P et al. Accommodation in mild traumatic brain injury. J Rehabil Res Dev 2010; 47: 183–200.
  • Schilling T, Ohlendorf A, Varnas SR et al. Peripheral design of progressive addition lenses and the lag of accommodation in Myopes. Invest Ophthalmol Vis Sci 2017; 58: 3319–3324.
  • Kalsi M, Heron G, Charman W. Changes in the static accommodation response with age. Ophthal Physiol Opt 2001; 21: 77–84.

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