• Journal of Innovative Optical Health Sciences
  • Vol. 7, Issue 2, 1450014 (2014)
Zhongxing Zhang1, Maja Schneider1, Ursula Fritschi1, Isabella Lehner1, and Ramin Khatami1、2、*
Author Affiliations
  • 1Sleep Center, Clinic Barmelweid, Switzerland
  • 2Department of Neurology University Hospital Zurich University of Zurich, Switzerland
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    DOI: 10.1142/s179354581450014x Cite this Article
    Zhongxing Zhang, Maja Schneider, Ursula Fritschi, Isabella Lehner, Ramin Khatami. Near-infrared spectroscopy (NIRS) as a useful tool to evaluate the treatment efficacy of positive airways pressure therapy in patients with obstructive sleep apnea syndrome (OSAS): A pilot study[J]. Journal of Innovative Optical Health Sciences, 2014, 7(2): 1450014 Copy Citation Text show less
    References

    [1] L. E. Afzelius, "Obstructive sleep apnea," N. Engl. J. Med. 305(24), 1472 (1981).

    [2] P. J. J. Strollo, R. M. Rogers, "Obstructive sleep apnea," N. Engl. J. Med. 334(2), 99–104 (1996).

    [3] H. K. Yaggi, J. Concato, W. N. Kernan, J. H. Lichtman, L. M. Brass, V. Mohsenin, "Obstructive sleep apnea as a risk factor for stroke and death," N. Engl. J. Med. 353(19), 2034–2041 (2005).

    [4] V. K. Somers, "Sleep — A new cardiovascular frontier," N. Engl. J. Med. 353(19), 2070–2073 (2005).

    [5] S. Sharma, "Obstructive sleep apnea and coronary artery pathology," Clin. Cardiol. 36(5), 300–301 (2013).

    [6] O. B. Paulson, S. Strandgaard, L. Edvinsson, "Cerebral autoregulation," Cerebrovasc. Brain Metab. Rev. 2(2), 161–192 (1990).

    [7] O. B. Paulson, G. Waldemar, J. F. Schmidt, S. Strandgaard, "Cerebral circulation under normal and pathologic conditions," Am. J. Cardiol. 63(6), 2C–5C (1989).

    [8] A. S. M. Shamsuzzaman, B. J. Gersh, V. K. Somers, "Obstructive sleep apnea — Implications for cardiac and vascular disease," Jama-J. Am. Med. Assoc. 290(14), 1906–1914 (2003).

    [9] D. L. Brown, R. D. Chervin, S. L. Hickenbottom, K. M. Langa, L. B. Morgenstern, "Screening for obstructive sleep apnea in stroke patients: A coste ffectiveness analysis," Stroke 36(6), 1291–1293 (2005).

    [10] S. K. Sharma, S. Agrawal, D. Damodaran, V. Sreenivas, T. Kadhiravan, R. Lakshmy, P. Jagia, A. Kumar, "CPAP for the metabolic syndrome in patients with obstructive sleep apnea," N. Engl. J. Med. 365(24), 2277–2286 (2011).

    [11] R. C. Basner, "Continuous positive airway pressure for obstructive sleep apnea," N. Engl. J. Med. 356 (17), 1751–1758 (2007).

    [12] J. C. Baron, "Stroke: Imaging and differential diagnosis," J. Neural Transm. Suppl. 63, 19–36 (2002).

    [13] H. Ito, I. Kanno, H. Fukuda, "Human cerebral circulation: Positron emission tomography studies," Ann. Nucl. Med. 19(2), 65–74 (2005).

    [14] A. Dagal, A. M. Lam, "Cerebral blood flow and the injured brain: How should we monitor and manipulate it ," Current Opin. Anesthesiol. 24(2), 131– 137 (2011).

    [15] N. K. Logothetis, "What we can do and what we cannot do with fMRI," Nature 453(7197), 869–878 (2008).

    [16] H. Obrig, M. Neufang, R. Wenzel, M. Kohl, J. Steinbrink, K. Einhaupl, A. Villringer, "Spontaneous low frequency oscillations of cerebral hemodynamics and metabolism in human adults," Neuroimage 12(6), 623–639 (2000).

    [17] Z. Zhang, R. Khatami, "Brain and muscle oxygenation monitoring using near-infrared spectroscopy (NIRS) during all-night sleep," Proc. SPIE 8578 (100), (2013).

    [18] Z. Zhang, B. Sun, H. Gong, L. Zhang, J. Sun, B. Wang, Q. Luo, "A fast neuronal signal-sensitive continuous-wave near-infrared imaging system," Rev. Sci. Instrum. 83(9), 094301 (2012).

    [19] J. Zhai, T. Li, Z. Zhang, H. Gong, "Hemodynamic and electrophysiological signals of conflict processing in the Chinese-character Stroop task: A simultaneous near-infrared spectroscopy and eventrelated potential study," J. Biomed. Opt. 14(5), 054022 (2009).

    [20] C. F. de Mello Junior, H. A. Guimaraes Filho, C. A. Gomes, C. C. Paiva, "Radiological findings in patients with obstructive sleep apnea," J. Bras. Pneumol. 39(1), 98–101 (2013).

    [21] K. Yaouhi, F. Bertran, P. Clochon, F. Mezenge, P. Denise, J. Foret, F. Eustache, B. Desgranges, "A combined neuropsychological and brain imaging study of obstructive sleep apnea," J. Sleep Res. 18(1), 36–48 (2009).

    [22] S. Gilman, R. D. Chervin, R. A. Koeppe, F. B. Consens, R. Little, H. An, L. Junck, M. Heumann, "Obstructive sleep apnea is related to a thalamic cholinergic deficit in MSA," Neurology 61(1), 35–39 (2003).

    [23] M. Siebler, M. Daffertshofer, M. Hennerici, H. J. Freund, "Cerebral blood flow velocity alterations during obstructive sleep apnea syndrome," Neurology 40(9), 1461–1462 (1990).

    [24] A. Q. Fischer, B. A. Chaudhary, M. A. Taormina, B. Akhtar, "Intracranial hemodynamics in sleep apnea," Chest 102(5), 1402–1406 (1992).

    [25] M. Siebler, A. Nachtmann, "Cerebral hemodynamics in obstructive sleep apnea," Chest 103(4), 1118–1119 (1993).

    [26] N. Netzer, P. Werner, I. Jochums, M. Lehmann, K. P. Strohl, "Blood flow of the middle cerebral artery with sleep-disordered breathing: Correlation with obstructive hypopneas," Stroke 29(1), 87–93 (1998).

    [27] N. C. Netzer, "Impaired nocturnal cerebral hemodynamics during long obstructive apneas: The key to understanding stroke in OSAS patients ," Sleep 33(2), 146–147 (2010).

    [28] M. Ferrari, V. Quaresima, "A brief review on the history of human functional near-infrared spectroscopy (fNIRS) development and fields of application," Neuroimage 63(2), 921–935 (2012).

    [29] A. C. Merzagora, M. T. Schultheis, B. Onaral, M. Izzetoglu, "Functional near-infrared spectroscopybased assessment of attention impairments after traumatic brain injury," J. Innov. Opt. Health Sci. 04(03), 251–260 (2011).

    [30] G. M. Lech, "Using functional near-infrared spectroscopy to measure cognitive function: When will it become an accepted clinical tool for cognitive aging and prodromal dementia screening ," J. Innov. Opt. Health Sci. 04(04), 373–383 (2011).

    [31] K. Izzetoglu, H. Ayaz, A. Merzagora, M. Izzetoglu, P. A. Shewokis, S. C. Bunce, K. Pourrezaei, A. Rosen, B. Onaral, "The evolution of field deployable fNIR spectroscopy from bench to clinical settings," J. Innov. Opt. Health Sci. 04(03), 239–250 (2011).

    [32] T. Hamaoka, K. K. Mccully, "Muscle research work with Britton Chance from in vivo magnetic resonance spectroscopy to near-infrared spectroscopy," J. Innov. Opt. Health Sci. 04(03), 227–237 (2011).

    [33] Y. Zhu, T. Jiang, Y. Zhou, L. Zhao, "Discriminative analysis of functional near-infrared spectroscopy signals for development of neuroimaging biomarkers of elderly depression," J. Innov. Opt. Health Sci. 03 (01), 69–74 (2010).

    [34] T. Li, L. Li, Q. Luo, H. Gong, "Assessing working memory in real-life situations with functional nearinfrared spectroscopy," J. Innov. Opt. Health Sci. 02(04), 423–430 (2009).

    [35] Z. Zhang, B. Wang, H. Gong, G. Xu, S. Nioka, B. Chance, "Comparisons of muscle oxygenation changes between arm and leg muscles during incremental rowing exercise with near-infrared spectroscopy," J. Biomed. Opt. 15(1), 017007–017008 (2010).

    [36] C. Kolyva, H. Kingston, I. Tachtsidis, S. Mohanty, S. Mishra, R. Patnaik, R. J. Maude, A. M. Dondorp, C. E. Elwell, "Oscillations in cerebral haemodynamics in patients with falciparum malaria," Adv. Exp. Med. Biol. 765, 101–107 (2013).

    [37] N. Roche-Labarbe, F. Wallois, E. Ponchel, G. Kongolo, R. Grebe, "Coupled oxygenation oscillation measured by NIRS and intermittent cerebral activation on EEG in premature infants," Neuroimage 36(3), 718–727 (2007).

    [38] H. W. Schytz, B. E. Jensen, P. Jennum, J. Selb, D. A. Boas, M. Ashina, "Low-frequency oscillations and vasoreactivity of cortical vessels in obstructive sleep apnea during wakefulness: A near infrared spectroscopy study," Sleep Med. 14(5), 416–421 (2013).

    [39] A. Villringer, B. Chance, "Non-invasive optical spectroscopy and imaging of human brain function," Trends Neurosci. 20(10), 435–442 (1997).

    [40] M. Wolf, M. Ferrari, V. Quaresima, "Progress of near-infrared spectroscopy and topography for brain and muscle clinical applications," J. Biomed. Opt. 12(6), 062104–062114 (2007).

    [41] F. Pizza, M. Biallas, M. Wolf, E. Werth, C. L. Bassetti, "Nocturnal cerebral hemodynamics in snorers and in patients with obstructive sleep apnea: A near-infrared spectroscopy study," Sleep 33(2), 205–210 (2010).

    [42] C. O. Olopade, E. Mensah, R. Gupta, D. Huo, D. L. Picchietti, E. Gratton, A. Michalos, "Noninvasive determination of brain tissue oxygenation during sleep in obstructive sleep apnea: A near-infrared spectroscopic approach," Sleep 30(12), 1747–1755 (2007).

    [43] C. Hausser-Hauw, D. Rakotonanahary, B. Fleury, "Obstructive-sleep apnea syndrome: Brain oxygenation measured with near-infrared spectroscopy. Preliminary results," Neurophysiol. Clin. 30(2), 113–118 (2000).

    [44] B. Urlesberger, A. Kaspirek, G. Pichler, W. Muller, "Apnoea of prematurity and changes in cerebral oxygenation and cerebral blood volume," Neuropediatrics 30(1), 29–33 (1999).

    [45] T. Hayakawa, M. Terashima, Y. Kayukawa, T. Ohta, T. Okada, "Changes in cerebral oxygenation and hemodynamics during obstructive sleep apneas," Chest 109(4), 916–921 (1996).

    [46] Iber C, Ancoli-Israel S, Chesson A, Q. SF, Eds., The AASM Manual for the Scoring of Sleep and Associated Events: Rules, Terminology and Technical Specifications, American Academy of Sleep Medicine, Westchester, Illinois (2007).

    [47] S. Suzuki, S. Takasaki, T. Ozaki, Y. Kobayashi, "A tissue oxygenation monitor using NIR spatially resolved spectroscopy," Proc. SPIE 3597 (1999).

    [48] F. N. Fritsch, R. E. Carlson, "Monotone Piecewise Cubic Interpolation," SIAM J. Numer. Anal. 17(2), 238–246 (1980).

    [49] T. Nasi, J. Virtanen, T. Noponen, J. Toppila, T. Salmi, R. J. Ilmoniemi, "Spontaneous hemodynamic oscillations during human sleep and sleep stage transitions characterized with near-infrared spectroscopy," PLoS ONE 6(10), e25415 (2011).

    [50] A. Matsuo, Y. Inoue, K. Namba, H. Chiba, "Changes in cerebral hemoglobin indices in obstructive sleep apnea syndrome with nasal continuous positive airway pressure treatment," Sleep Breath. 15(3), 487–492 (2011).

    [51] B. Urlesberger, G. Pichler, E. Gradnitzer, F. Reiterer, G. Zobel, W. Muller, "Changes in cerebral blood volume and cerebral oxygenation during periodic breathing in term infants," Neuropediatrics 31 (2), 75–81 (2000).

    [52] M. A. Martinez-Garcia, J. J. Soler-Cataluna, L. Ejarque-Martinez, Y. Soriano, P. Roman-Sanchez, F. B. Illa, J. M. Canal, J. Duran-Cantolla, "Continuous positive airway pressure treatment reduces mortality in patients with ischemic stroke and obstructive sleep apnea: A 5-year follow-up study," Am. J. Respir. Crit. Care. Med. 180(1), 36–41 (2009).

    [53] C. M. Ryan, M. Bayley, R. Green, B. J. Murray, T. D. Bradley, "Influence of continuous positive airway pressure on outcomes of rehabilitation in stroke patients with obstructive sleep apnea," Stroke 42(4), 1062–1067 (2011).

    [54] F. F. Jobsis, "Noninvasive, infrared monitoring of cerebral and myocardial oxygen sufficiency and circulatory parameters," Science 198(4323), 1264– 1267 (1977).

    [55] B. Chance, J. S. Leigh, H. Miyake, D. S. Smith, S. Nioka, R. Greenfeld, M. Finander, K. Kaufmann, W. Levy, M. Young, P. Cohen, H. Yoshioka, R. Boretsky, "Comparison of Time-Resolved and Time- Unresolved Measurements of Deoxyhemoglobin in Brain," Proc. Natl. Acad. Sci. USA 85(14), 4971– 4975 (1988).

    [56] B. Chance, Q. M. Luo, S. Nioka, D. C. Alsop, J. A. Detre, "Optical investigations of physiology: A study of intrinsic and extrinsic biomedical contrast," Philos. Trans. R. Soc. Lond. B Biol. Sci. 352(1354), 707–716 (1997).

    [57] B. Chance, Z. Zhuang, C. UnAh, C. Alter, L. Lipton, "Cognition-activated low-frequency modulation of light absorption in human brain," Proc. Natl. Acad. Sci. USA 90(8), 3770–3774 (1993).

    Zhongxing Zhang, Maja Schneider, Ursula Fritschi, Isabella Lehner, Ramin Khatami. Near-infrared spectroscopy (NIRS) as a useful tool to evaluate the treatment efficacy of positive airways pressure therapy in patients with obstructive sleep apnea syndrome (OSAS): A pilot study[J]. Journal of Innovative Optical Health Sciences, 2014, 7(2): 1450014
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