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Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 29, 2012 - Issue 7
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Research Article

Alterations of Locomotor Activity Rhythm and Sleep Parameters in Patients With Advanced Glaucoma

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Pages 911-919 | Received 13 Feb 2012, Accepted 24 Mar 2012, Published online: 23 Jul 2012

REFERENCES

  • Belforte N, Sande P, de Zavalía N, Knepper PA, Rosenstein RE. (2010). Effect of chondroitin sulfate on intraocular pressure in rats. Invest. Ophthalmol. Vis. Sci. 51:5768–5775.
  • Berson DM, Dunn FA, Takao M. (2002). Phototransduction by retinal ganglion cells that set the circadian clock. Science 295:1070–1073.
  • Bingham C, Arbogast B, Guillaume GC, Lee JK, Halberg F. (1982). Inferential statistical methods for estimating and comparing cosinor parameters. Chronobiologia 9:397–439.
  • Bremner FD, Tomlin EA, Shallo-Hoffmann J, Votruba M, Smith SE. (2001). The pupil in dominant optic atrophy. Invest. Ophthalmol. Vis. Sci. 42:675–678.
  • Buijs RM, Kalsbeek A. (2001). Hypothalamic integration of central and peripheral clocks. Nat. Rev. Neurosci. 2:521–526.
  • Carrier J, Paquet J, Morettini J, Touchette E. (2002). Phase advance of sleep and temperature circadian rhythms in the middle years of life in humans. Neurosci. Lett. 320:1–4.
  • Cole RJ, Kripke DF. (1988). Progress in automatic sleep wake scoring by wrist actigraph. Sleep Res. 17:331.
  • Cole RJ, Kripke DF, Gruen W, Mullaney DJ, Gillin JC. (1992). Automatic sleep/wake identification from wrist activity. Sleep 15:461–469.
  • Czeisler CA, Gooley JJ. (2007). Sleep and circadian rhythms in humans. Cold Spring Harb. Symp. Quant. Biol. 72:579–597.
  • de Zavalía N, Plano SA, Fernandez DC, Lanzani MF, Salido E, Belforte N, Keller Sarmiento MI, Golombek DA, Rosenstein RE. (2011). Effect of experimental glaucoma on the non-image forming visual system. J. Neurochem. 117:904–914.
  • Domingues A, Adamec O, Paiva T, Sanches J. (2010). Automatic annotation of actigraphy data for sleep disorders diagnosis purposes. Conf. Proc. IEEE Eng. Med. Biol. Soc. 1:5081–5084.
  • Drouyer E, Dkhissi-Benyahya O, Chiquet C, WoldeMussie E, Ruiz G, Wheeler LA, Denis P, Cooper HM. (2008). Glaucoma alters the circadian timing system. PLoS ONE 3:e3931.
  • Duffy JF, Czeisler CA. (2009). Effect of light on human circadian physiology. Sleep Med. Clin. 2:165–177.
  • Feigl B, Mattes D, Thomas R, Zele AJ. (2011). Intrinsically photosensitive (melanopsin) retinal ganglion cell function in glaucoma. Invest. Ophthalmol. Vis. Sci. 52:4362–4367.
  • Freedman MS, Lucas RJ, Soni B, von Schantz M., Munoz M., David-Gray Z, Foster R. (1999). Regulation of mammalian circadian behavior by non-rod, non-cone, ocular photoreceptors. Science 284:502–504.
  • Golombek DA, Rosenstein RE. (2010). Physiology of circadian entrainment. Physiol. Rev. 90:1063–1102.
  • Hattar S, Liao H W, Takao M, Berson DM, Yau KW. (2002). Melanopsin-containing retinal ganglion cells: architecture, projections, and intrinsic photosensitivity. Science 295:1065–1070.
  • Hattar S, Kumar M, Park A, Tong P, Tung J, Yau KW, Berson DM. (2006). Central projections of melanopsin-expressing retinal ganglion cells in the mouse. J. Comp. Neurol. 497:326–349.
  • Hofman MA, Swaab DF. (2006). Living by the clock: the circadian pacemaker in older people. Ageing Res. Rev. 5:33–51.
  • Huang YL, Liu RY, Wang QS, Someren EJ, Xu H, Zhou JN. (2002). Age-associated difference in circadian sleep-wake and rest-activity rhythms. Physiol. Behav. 76:597–603.
  • Jakobs TC, Libby RT, Ben Y, John SW, Masland RH. (2005). Retinal ganglion cell degeneration is topological but not cell type specific in DBA/2J mice. J. Cell Biol. 171:313–325.
  • Jean-Louis G, Kripke DF, Cole RJ, Assmus JD, Langer RD. (2001). Sleep detection with an accelerometer actigraph: comparisons with polysomnography. Physiol. Behav. 72:21–28.
  • Kalaboukhova L, Fridhammar V, Lindblom B. (2007). Relative afferent pupillary defect in glaucoma: a pupillometric study. Acta Ophthalmol. Scand. 85:519–525.
  • Kankipati L, Girkin CA, Gamlin PD. (2011). The post-illumination pupil response is reduced in glaucoma patients.Invest. Ophthalmol. Vis. Sci. 52:2287–2292.
  • Kardon R, Anderson SC, Damarjian TG, Grace EM, Stone E, Kawasaki A. (2009). Chromatic pupil responses: preferential activation of the melanopsin-mediated versus outer photoreceptor-mediated pupil light reflex. Ophthalmology 116:1564–1573.
  • Kashiwagi K, Tsumura T, Ishii H, Ijiri H, Tamura K, Tsukahara S. (2000). Circadian rhythm of autonomic nervous function in patients with normal-tension glaucoma compared with normal subjects using ambulatory electrocardiography. J. Glaucoma 9:239–246.
  • Keeler CE. (1927). Rodless retina and ophthalmic mutation in the house mouse, Mus musculus. J. Exp. Zool. 46:355–407.
  • Klerman EB, Rimmer DW, Dijk DJ, Kronauer RE, Rizzo JF 3rd, Czeisler CA. (1998). Nonphotic entrainment of the human circadian pacemaker. Am. J. Physiol. 274:R991–R996.
  • Kohn AN, Moss AP, Podos SM. (1979). Relative afferent pupillary defects in glaucoma without characteristic field loss. Arch. Ophthalmol. 97:294–296.
  • Kripke DF. (1998). Light treatment for nonseasonal depression: speed, efficacy, and combined treatment. J. Affect. Dis. 49:109–117.
  • La Morgia C, Ross-Cisneros FN, Hannibal J, Montagna P, Sadun AA, Carelli V. (2011). Melanopsin-expressing retinal ganglion cells: implications for human diseases. Vis. Res. 51:296–302.
  • Li RS, Chen BY, Tay DK, Chan HH, Pu ML, So KF. (2006). Melanopsin expressing retinal ganglion cells are more injury-resistant in a chronic ocular hypertension model. Invest.Ophthalmol. Vis. Sci. 47:2951–2958.
  • Lötjönen J, Korhonen I, Hirvonen K, Eskelinen S, Myllymäki M, Partinen M. (2003). Automatic sleep-wake and nap analysis with a new wrist worn online activity monitoring device vivago WristCare. Sleep 26:86–90.
  • Lucas RJ, Freedman MS, Munoz M, Garcia-Fernandez JM, Foster RG. (1999). Regulation of the mammalian pineal by non-rod, non-cone, ocular photoreceptors. Science 284:505–507.
  • Lucas RJ, Douglas RH, Foster RG. (2001). Characterization of an ocular photopigment capable of driving pupillary constriction in mice. Nat. Neurosci. 4:621–626.
  • Lucas RJ, Hattar S, Takao M, Berson DM, Foster RG, Yau KW. (2003). Diminished pupillary light reflex at high irradiances in melanopsin-knockout mice. Science 299:245–247.
  • Moore RY, Silver R. (1998). Suprachiasmatic nucleus organization. Chronobiol. Int. 15:475–487.
  • Mrosovsky N, Hattar S. (2003). Impaired masking responses to light in melanopsin-knockout mice. Chronobiol. Int. 20:989–999.
  • Nissen C, Sander B, Lund-Andersen H. (2011). The effect of pupil size on stimulation of the melanopsin containing retinal ganglion cells, as evaluated by monochromatic pupillometry. Front. Neurol. 2: 1–5. [ePub: doi:10.3389/fneur.2011.00092]
  • Onen SH, Mouriaux F, Berramdane L, Dascotte JC, Kulik JF, Rouland JF. (2000). High prevalence of sleep-disordered breathing in patients with primary open-angle glaucoma. Acta Ophthalmol. Scand. 78:638–641.
  • Panda S, Sato TK, Castrucci AM, Rollag MD, DeGrip WJ, Hogenesch JB, Provencio I, Kay SA. (2002). Melanopsin (Opn4) requirement for normal light-induced circadian phase shifting. Science 298:2213–2216.
  • Pandi-Perumal SR, Leger D (eds.). (2006). Sleep disorders: their impact on public health. London, UK: CRC Press, 272.
  • Paquet J, Kawinska A, Carrier J. (2007). Wake detection capacity of actigraphy during sleep. Sleep 30:1362–1369.
  • Paudel ML, Taylor BC, Ancoli-Israel S, Blackwell T, Stone KL, Trunah G, Redline S, Cummings SR, Ensrud KE. (2010). For the Osteoporic Fractures in Men (MrOS) Study Group. Rest/activity rhythms and mortality rates in older men: MrOS Sleep Study. Chronobiol. Int. 27:363–377.
  • Paudel ML, Taylor BC, Ancoli-Israel S, Stone KL, Trunah G, Redline S, Barrett-Connor E, Stefanick ML, Ensrud KE. (2011). Rest/activity rhythms and cardiovascular disease in older men. Chronobiol. Int. 28:258–266.
  • Pérez-Rico C, de la Villa P, Arribas-Gómez I, Blanco R. (2010). Evaluation of functional integrity of the retinohypothalamic tract in advanced glaucoma using multifocal electroretinography and light-induced melatonin suppression. Exp. Eye Res. 91:578–583.
  • Portaluppi F, Smolensky MH, Touitou Y. (2010). Ethics and methods for biological rhythm research on animals and human beings. Chronobiol. Int. 27:1911–1929.
  • Provencio I, Rollag MD, Castrucci AM. (2002). Photoreceptive net in the mammalian retina. This mesh of cells may explain how some blind mice can still tell day from night. Nature 415:493.
  • Ruby NF, Brennan TJ, Xie X, Cao V, Franken P, Heller HC, O'Hara BF. (2002). Role of melanopsin in circadian responses to light. Science 298:2211–2213.
  • Sack RL, Lewy AJ. (2001). Circadian rhythm sleep disorders: lessons from the blind. Sleep Med. Rev. 5:189–206.
  • Skene DJ, Arendt J. (2007). Circadian rhythm sleep disorders in the blind and their treatment with melatonin. Sleep Med. 8:651–655.
  • Stores G, Ramchandani P. (1999). Sleep disorders in visually impaired children. Dev. Med. Child Neurol. 41:348–352.
  • Tabandeh H, Lockley SW, Buttery R, Skene DJ, Defrance R, Arendt J, Bird AC. (1998). Disturbance of sleep in blindness. Am. J. Ophthalmol. 126:707–712.
  • Van Gelder RN. (2003). Making (a) sense of non-visual ocular photoreception. Trends Neurosci. 26:458–461.
  • Wakakura M, Yokoe J. (1995). Evidence for preserved direct pupillary light response in Leber's hereditary optic neuropathy. Br. J. Ophthalmol. 79:442–446.
  • Wang HZ, Lu QJ, Wang NL, Liu H, Zhang L, Zhan GL. (2008). Loss of melanopsin-containing retinal ganglion cells in a rat glaucoma model. Chin. Med. J. (Engl.). 121:1015–1019.
  • Wee R, Van Gelder RN. (2004). Sleep disturbances in young subjects with visual dysfunction. Ophthalmology 111:297–302.
  • Wee R, Castrucci AM, Provencio I, Gan L, Van Gelder RN. (2002). Loss of photic entrainment and altered free-running circadian rhythms in math5−/− mice. J. Neurosci. 22:10427–10433.

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