用户名: 密码: 验证码:
Cardiovascular autonomic control in paraplegic and quadriplegic
详细信息    查看全文
  • 作者:Elizângela Márcia de Carvalho Abreu ; Lucas Pinto Salles Dias…
  • 关键词:Spinal cord injury ; Autonomic nervous system ; Heart rate variability
  • 刊名:Clinical Autonomic Research
  • 出版年:2016
  • 出版时间:April 2016
  • 年:2016
  • 卷:26
  • 期:2
  • 页码:117-126
  • 全文大小:557 KB
  • 参考文献:1.World Health Organization, The International Spinal Cord Society. International Perspectives on Spinal Cord Injury. World Health Organization; 2013 http://​apps.​who.​int/​iris/​bitstream/​10665/​94190/​1/​9789241564663_​eng.​pdf . Accessed 26 May 2015
    2.Thuret S, Moon LDF, Gage FH (2006) Therapeutic interventions after spinal cord injury. Nat Rev Neurosci 7:628–643. doi:10.​1038/​nrn1955 CrossRef PubMed
    3.Malmqvist L, Biering-Sørensen T, Bartholdy K, Krassioukov A, Welling K-L, Svendsen JH et al (2015) Assessment of autonomic function after acute spinal cord injury using heart rate variability analyses. Spinal Cord 53:54–58. doi:10.​1038/​sc.​2014.​195 CrossRef PubMed
    4.Ditor DS, Kamath MV, Macdonald MJ, Bugaresti J, McCartney N, Hicks AL (2005) Reproducibility of heart rate variability and blood pressure variability in individuals with spinal cord injury. Clin Auton Res 15(6):387–93
    5.Oh YM, Eun JP (2015) Cardiovascular dysfunction due to sympathetic hypoactivity after complete cervical spinal cord injury: a case report and literature review. Medicine 94(12):e686. doi:10.​1097/​MD.​0000000000000686​ CrossRef PubMed PubMedCentral
    6.Jan Y-K, Anderson M, Soltani J, Burns S, Foreman RD (2013) Comparison of changes in heart rate variability and sacral skin perfusion in response to postural changes in people with spinal cord injury. J Rehabil Res Dev (JRRD) 50(2):203–14. http://​dx.​doi.​org/​10.​1682/​JRRD.​2011.​08.​0138
    7.Caldeira JB, Sancho AG, Manoel F, Almeida Júnior N, Faria D, Rosa JLS, Nemer SN (2012) Avaliação da função autonômica cardiovascular em portadores de lesão medular através dos índices de Valsalva e da arritmia sinusal respiratória. Rev Bras Cardiol 25(2):118–125
    8.Krassioukov A (2009) Autonomic function following cervical spinal cord injury. Respir Physiol Neurobiol 169(2):157–64. doi:10.​1016/​j.​resp.​2009.​08.​003
    9.Inoue K, Ogata H, Hayano J, Miyake S, Kamada T, Kuno M, Kumashiro M (1995) Assessment of autonomic function in traumatic quadriplegic and paraplegic patients by spectral analysis of heart rate variability. J Auton Nerv Syst 54(3):225–234CrossRef PubMed
    10.Inoue K, Miyake S, Kumashiro M, Ogata H, Yoshimura O (1990) Power spectral analysis of heart rate variability in traumatic quadriplegic humans. Am J Physiol 258(6Pt2):H1722–6
    11.Claydon VE, Krassioukov AV (2008) Clinical correlates of frequency analyses of cardiovascular control after spinal cord injury. Am J Physiol Heart Circ Physiol 294:H668–H678. doi:10.​1152/​ajpheart.​00869.​2007 CrossRef PubMed
    12.Rosado-Rivera D, Radulovic M, Handrakis JP, Cirnigliaro CM, Jensen AM, Kirshblum S et al (2011) Comparison of 24-hour cardiovascular and autonomic function in paraplegia, tetraplegia, and control groups: implications for cardiovascular risk. J Spinal Cord Med 34(4):395–403. doi:10.​1179/​2045772311Y.​0000000019 CrossRef PubMed PubMedCentral
    13.Serra-Año P, Montesinos LL, Morales J, López-Bueno L, Gomis M, García-Massó X et al (2015) Heart rate variability in individuals with thoracic spinal cord injury. Spinal Cord 53(1):59–63. doi:10.​1038/​sc.​2014.​207 CrossRef PubMed
    14.Uhlíř P, Opavský J, Zaatar A, Betlachová M (2010) Spectral analysis of heart rate variability in patients with spinal cord injury. Acta Univ Palacki Olomuc Gymn 40(2):55–62
    15.Merati G, Di Rienzo M, Parati G, Veicsteinas A, Castiglioni P (2006) Assessment of the autonomic control of heart rate variability in healthy and spinal-cord injured subjects: contribution of different complexity-based estimators. IEEE Trans Biomed Eng 53(1):43–52. doi:10.​1109/​TBME.​2005.​859786 CrossRef PubMed
    16.Myers JN, Hsu L, Hadley D, Kiratli BJ (2010) Post-exercise heart rate recovery in individuals with spinal cord injury. Spinal Cord 48(8):639–44. doi:10.​1038/​sc.​2009.​196
    17.Botelho RV, Abgussen CMB, Furtado GC, Machado P, Elias AJR, Benedito-Silva AA et al (2001) Epidemiologia do trauma raquimedular cervical na zona norte da cidade de São Paulo. Arq Bras Neurocir 20(3–4):64–76. doi:10.​1590/​S0100-6991200800020000​5
    18.Salomão AF, Soares PN, Lucareli PRG, Freitas STT, Lima FPS, Lima MO. Estudo epidemiológico dos pacientes com traumatismo raquimedular atendidos na Clínica de Fisioterapia da UNIVAP. Anais do VI Encontro Latino Americano de Iniciação Científica da UNIVAP. 2006. http://​www.​inicepg.​UNIVAP.​br/​cd/​INIC_​2006/​inic/​inic/​03/​INIC0001290.​pdf
    19.Scelsi R (2001) Skeletal muscle pathology after spinal cord injury: our 20 year experience and results on skeletal muscle changes in paraplegics, related to functional rehabilitation. Basic Appl Myol 11(2):75–85
    20.Hiersemenzel LP, Curt A, Dietz V (2000) From spinal shock to spasticity: neuronal adaptations to a spinal cord injury. Neurology 54(8):1574–82. doi:http://​dx.​doi.​org/​10.​1212/​WNL.​54.​8.​1574
    21.Yildirir A, Kabakci G, Akgul E, Tokgozoglu L, Oto A (2002) Effects of menstrual cycle on cardiac autonomic innervation as assessed by heart rate variability. Ann Noninvasive Electrocardiol 7(1):60–63CrossRef PubMed
    22.Sato N, Miyake S, Akatsu J, Kumashiro M (1995) Power spectral analysis of heart rate variability in healthy young women during the normal menstrual cycle. Psychosom Med 57(4):331–335CrossRef PubMed
    23.Santos L, Barroso JJ, Macau EE, Godoy MF (2013) Application of an automatic adaptive filter for Heart Rate Variability analysis. Med Eng Phys 35(12):1778–85. doi:10.​1016/​j.​medengphy.​2013.​07.​009 . (Epub 2013 Aug 18)
    24.Pumprla J, Howorka K, Groves D, Chester M, Nolan J (2002) Functional assessment of heart rate variability: physiological basis and practical applications. Int J Cardiol 84(1):1–14CrossRef PubMed
    25.Malliani A (1999) The Pattern of sympathovagal balance explored in the frequency domain. News Physiol Sci 14:111–117PubMed
    26.Zaza A, Lombardi F (2001) Autonomic indexes based on the analysis of heart rate variability: a view from the sinus node. Cardiovasc Res 50(3):434–442CrossRef PubMed
    27.Piskorski J, Guzik P (2007) Geometry of the poincar plot of RR intervals and its asym-metry in healthy adults. Physiol Meas 28:287–300CrossRef PubMed
    28.Millar PJ, Rakobowchuk M, Adams MM, Hicks AL, McCartney N, MacDonald MJ (2009) Effects of short-term training on heart rate dynamics in individuals with spinal cord injury. Auton Neurosci 150(1–2):116–21
    29.Lake DE, Richman JS, Griffin MP, Moorman JR (2002) Sample entropy analysis of neonatal heart rate variability. Am J Physiol Integr Comp Physiol 283(3):R789–97
    30.Task Force of the European Society of Cardiology and the North America Society of Pacing and Electrophysiology (1996) Heart rate variability—standarts of measurement, physiological interpretation, and clinical use. Eur Heart J 17(3):354–381CrossRef
    31.Delaney JP, Leong KS, Watkins A, Brodie D (2002) The short-term effects of myofascial trigger point massage therapy on cardiac autonomic tone in healthy subjects. J Adv Nurs 37(4):364–371CrossRef PubMed
    32.Claydon VE, Steeves JD, Krassioukov AV (2006) Orthostatic hypotension following spinal cord injury: understanding clinical pathophysiology. Spinal Cord. 44(6):341–51
    33.Schmidt K, Chan C (1992) Thermoregulation and fever in normal persons and in those with spinal cord injuries. Mayo Clin Proc 67(5):469–75
    34.Claydon VE, Steeves JD, Krassioukov AV (2006) Orthostatic hypotension following spinal cord injury: understanding clinical pathophysiology. Spinal Cord 44:341–351. doi:10.​1038/​sj.​sc.​3101855 CrossRef PubMed
    35.Mathias CJ, Christensen NJ. (1980) Rennin release during head–up tilt occurs independently of sympathetic nervous activity in tetraplegic man. Clin Sci 59(4):251–56. doi: 10.​1042/​cs0590251
    36.Mathias CJ, Christensen NJ (1975) Orthostatic hypotension and autonomic pathways after spinal cord injury. Clin Sci Mol Med 49(4):291–99
    37.Kawasaki T, Nakamura T, Sasaki Y, Sakamoto K, Ito T, Goto M et al. (2012) Renal function and endocrine responses to arm exercise in euhydrated individuals with spinal cord injury. Eur J Appl Physiol 112(4):1537–47. doi 10.​1007/​s00421-011-2105-y
    38.Karlsson AK, Krassioukov A, Alexander MS, Donovan W, Biering-Sørensen F (2012) International spinal cord injury skin and thermoregulation function basic data set. Spinal Cord 50(7):512–6. doi:10.​1038/​sc.​2011.​167
    39.Krassioukov AV, Karlsson AK, Wecht JM, Wuermser LA, Mathias CJ, Marino RJ (2007) Joint Committee of American Spinal Injury Association and International Spinal Cord Society. Assessment of autonomic dysfunction following spinal cord injury: rationale for additions to International Standards for Neurological Assessment. J Rehabil Res Dev 44(1):103–12. doi:10.​1682/​JRRD.​2005.​10.​0159
    40.Agiovlasitis S, Heffernan KS, Jae SY, Ranadive SM, Lee M, Mojtahedi MC et al (2010) Effects of paraplegia on cardiac autonomic regulation during static exercise. Am J Phys Med Rehabil 89:817–823CrossRef PubMed
    41.Aysin B, Aysin E (2006) Effect of respiration in heart rate variability (HRV) Analysis. Conf Proc IEEE Eng Med Biol Soc 1:1776–1779PubMed
    42.Bunten DC, Warner AL, Brunnemann SR, Segal JL (1998) Heart rate variability is altered following spinal cord injury. Clin Auton Res 8(6):329–34
    43.Cragg JJ, Noonan VK, Krassioukov A, Borisoff JF. (2013) Cardiovascular disease and spinal cord injury: results from a national population health survey. Neurology 81(8):723–8
    44.Cragg JJ, Noonan VK, Dvorak M, Mancini GBJ, Borisoff J. (2013) Spinal cord injury and Type 2 Diabetes: results from a population health survey. Neurology 81(21):1864–8
    45.Nash MS, Bilsker S, Marcillo AE, Isaac SM, Botelho LA, John Klose K. (1991) Reversal atrophy exercise of adaptive left ventricular following electrically-stimulated training in human tetraplegics. Paraplegia 29:590–99
  • 作者单位:Elizângela Márcia de Carvalho Abreu (1)
    Lucas Pinto Salles Dias (1)
    Fernanda Pupio Silva Lima (1)
    Alderico Rodrigues de Paula Júnior (2)
    Mário Oliveira Lima (1)

    1. Sensory Motor Rehabilitation Engineering Laboratory, Universidade do Vale do Paraíba (UNIVAP), Avenida: Shishima Hifumi, 2911, Urbanova, São José dos Campos, SP, 12244-000, Brazil
    2. Instituto Nacional de Pesquisa Espacial (INPE), São José dos Campos, Brazil
  • 刊物类别:Medicine
  • 刊物主题:Medicine & Public Health
    Neurology
    Diabetes
    Endocrinology
    Gastroenterology
    Ophthalmology
    Urology and Andrology
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1619-1560
文摘
Introduction Spinal cord injury (SCI) is commonly associated with devastating paralysis. This condition also results in cardiovascular autonomic dysfunction associated with increased mortality from cardiovascular disease. The purpose of this study was to explore the differences in cardiovascular autonomic modulation in individuals with and without SCI.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700