Background: There is a clear relationship between the neurological level of spinal cord injury (SCI) and cardiovascular function; however, the relationship between completeness of injury and cardiovascular function is less straightforward. Traditionally completeness of injury has referred to neurological (motor/sensory) completeness. Recently, a number of studies have started to investigate autonomic completeness of injury. Objective: To investigate the relationships between cardiovascular function and neurological and autonomic completeness of injury. Methods: A literature search was conducted in November 2012 through MEDLINE, Embase, and CINAHL. Twenty-one studies were included in this review. Results: In acute SCI, there is no clear consensus about whether resting heart rate (HR), blood pressure (BP), or prevalence of BP abnormalities differs between neurologically complete and incomplete SCI. In chronic SCI, there is limited evidence that there is less prevalence of autonomic dysreflexia and improved heart rate variability in response to provocation in neurologically incomplete SCI; however, resting HR and BP appear similar between neurologically complete and incomplete SCI. There is growing evidence that BP and HR at rest and during orthostasis is enhanced in autonomically incomplete SCI. Numerous studies report that neurological completeness does not agree with autonomic completeness of injury. Conclusions: For acute SCI, there is no clear consensus whether cardiovascular function differs between complete and incomplete. For chronic SCI, the studies to date suggest that autonomic completeness of SCI is more strongly related to cardiovascular function than neurological completeness of injury. Thus, clinicians and scientists should account for autonomic completeness of injury when assessing cardiovascular function in SCI.

Kraus JF, Franti CE, Riggins RS, Richards D, Borhani NO. Incidence of traumatic spinal cord lesions. J Chronic Dis. 1975;28(9):471–492.
,
Incidence of traumatic spinal cord lesions
,
J Chronic Dis.
, vol.
28
(pg.
471
-
492
)
National Spinal Cord Injury Statistical C. Spinal cord injury. Facts and figures at a glance. J Spinal Cord Med. 2005;28(4):379–380.
,
National Spinal Cord Injury Statistical C. Spinal cord injury. Facts and figures at a glance
,
J Spinal Cord Med.
, vol.
28
(pg.
379
-
380
)
Garshick E, Kelley A, Cohen SA, et al. A prospective assessment of mortality in chronic spinal cord injury. Spinal Cord. 2005;43(7):408–416.
,
A prospective assessment of mortality in chronic spinal cord injury
,
Spinal Cord.
, vol.
43
(pg.
408
-
416
)
West CR, Mills P, Krassioukov AV. Influence of the neurological level of spinal cord injury on cardiovascular outcomes in humans: A meta-analysis. Spinal Cord. 2012;50(7):484–492.
,
Influence of the neurological level of spinal cord injury on cardiovascular outcomes in humans: A meta-analysis
,
Spinal Cord.
, vol.
50
(pg.
484
-
492
)
Krassioukov A. Autonomic function following cervical spinal cord injury. Respir Physiol Neurobiol. 2009;169(2):157–164.
,
Autonomic function following cervical spinal cord injury
,
Respir Physiol Neurobiol.
, vol.
169
(pg.
157
-
164
)
Curt A, Nitsche B, Rodic B, Schurch B, Dietz V. Assessment of autonomic dysreflexia in patients with spinal cord injury. J Neurol Neurosurg Psychiatry. 1997;62(5):473–477.
,
Assessment of autonomic dysreflexia in patients with spinal cord injury
,
J Neurol Neurosurg Psychiatry.
, vol.
62
(pg.
473
-
477
)
Ho CP, Krassioukov AV. Autonomic dysreflexia and myocardial ischemia. Spinal Cord. 2010;48(9):714–715.
,
Autonomic dysreflexia and myocardial ischemia
,
Spinal Cord.
, vol.
48
(pg.
714
-
715
)
Pan SL, Wang YH, Lin HL, Chang CW, Wu TY, Hsieh ET. Intracerebral hemorrhage secondary to autonomic dysreflexia in a young person with incomplete C8 tetraplegia: A case report. Arch Phys Med Rehabil. 2005;86(3):591–593.
,
Intracerebral hemorrhage secondary to autonomic dysreflexia in a young person with incomplete C8 tetraplegia: A case report
,
Arch Phys Med Rehabil.
, vol.
86
(pg.
591
-
593
)
Eltorai I, Kim R, Vulpe M, Kasravi H, Ho W. Fatal cerebral hemorrhage due to autonomic dysreflexia in a tetraplegic patient: Case report and review. Paraplegia. 1992;30(5):355–360.
,
Fatal cerebral hemorrhage due to autonomic dysreflexia in a tetraplegic patient: Case report and review
,
Paraplegia.
, vol.
30
(pg.
355
-
360
)
Kirshblum SC, Burns SP, Biering-Sorensen F, et al. International standards for neurological classification of spinal cord injury (revised 2011). J Spinal Cord Med. 2011;34(6):535–546.
,
International standards for neurological classification of spinal cord injury (revised 2011)
,
J Spinal Cord Med.
, vol.
34
(pg.
535
-
546
)
Krassioukov A, Biering-Sorensen F, Donovan W, et al. International standards to document remaining autonomic function after spinal cord injury. J Spinal Cord Med. 2012;35(4):201–210.
,
International standards to document remaining autonomic function after spinal cord injury
,
J Spinal Cord Med.
, vol.
35
(pg.
201
-
210
)
Piepmeier JM, Lehmann KB, Lane JG. Cardiovascular instability following acute cervical spinal cord trauma. Cent Nerv Syst Trauma. 1985;2(3):153–160.
,
Cardiovascular instability following acute cervical spinal cord trauma
,
Cent Nerv Syst Trauma.
, vol.
2
(pg.
153
-
160
)
Lehmann KG, Lane JG, Piepmeier JM, Batsford WP. Cardiovascular abnormalities accompanying acute spinal cord injury in humans: Incidence, time course and severity. J Am Coll Cardiol. 1987;10(1):46–52.
,
Cardiovascular abnormalities accompanying acute spinal cord injury in humans: Incidence, time course and severity
,
J Am Coll Cardiol.
, vol.
10
(pg.
46
-
52
)
Gonzalez F, Chang JY, Banovac K, Messina D, Martinez-Arizala A, Kelley RE. Autoregulation of cerebral blood flow in patients with orthostatic hypotension after spinal cord injury. Paraplegia. 1991;29(1):1–7.
,
Autoregulation of cerebral blood flow in patients with orthostatic hypotension after spinal cord injury
,
Paraplegia.
, vol.
29
(pg.
1
-
7
)
Levi L, Wolf A, Belzberg H. Hemodynamic parameters in patients with acute cervical cord trauma: Description, intervention, and prediction of outcome. Neurosurgery. 1993;33(6):1007–1016; discussion 1016-1007.
,
Hemodynamic parameters in patients with acute cervical cord trauma: Description, intervention, and prediction of outcome.
,
Neurosurgery.
, vol.
33
(pg.
1007
-
1016
)
Huang YH, Bih LI, Chen GD, Lin CC, Chen SL, Chen WW. Autonomic dysreflexia during urodynamic examinations in patients with suprasacral spinal cord injury. Arch Phys Med Rehabil. 2011;92(9):1450–1454.
,
Autonomic dysreflexia during urodynamic examinations in patients with suprasacral spinal cord injury
,
Arch Phys Med Rehabil.
, vol.
92
(pg.
1450
-
1454
)
Tuli S, Tuli J, Coleman WP, Geisler FH, Krassioukov A. Hemodynamic parameters and timing of surgical decompression in acute cervical spinal cord injury. J Spinal Cord Med. 2007;30(5):482–490.
,
Hemodynamic parameters and timing of surgical decompression in acute cervical spinal cord injury
,
J Spinal Cord Med.
, vol.
30
(pg.
482
-
490
)
Vale FL, Burns J, Jackson AB, Hadley MN. Combined medical and surgical treatment after acute spinal cord injury: Results of a prospective pilot study to assess the merits of aggressive medical resuscitation and blood pressure management. J Neurosurg. 1997;87(2):239–246.
,
Combined medical and surgical treatment after acute spinal cord injury: Results of a prospective pilot study to assess the merits of aggressive medical resuscitation and blood pressure management
,
J Neurosurg.
, vol.
87
(pg.
239
-
246
)
Sidorov EV, Townson AF, Dvorak MF, Kwon BK, Steeves J, Krassioukov A. Orthostatic hypotension in the first month following acute spinal cord injury. Spinal Cord. 2008;46(1):65–69.
,
Orthostatic hypotension in the first month following acute spinal cord injury
,
Spinal Cord.
, vol.
46
(pg.
65
-
69
)
Illman A, Stiller K, Williams M. The prevalence of orthostatic hypotension during physiotherapy treatment in patients with an acute spinal cord injury. Spinal Cord. 2000;38(12):741–747.
,
The prevalence of orthostatic hypotension during physiotherapy treatment in patients with an acute spinal cord injury
,
Spinal Cord.
, vol.
38
(pg.
741
-
747
)
Rosado-Rivera D, Radulovic M, Handrakis JP, et al. Comparison of 24-hour cardiovascular and autonomic function in paraplegia, tetraplegia, and control groups: Implications for cardiovascular risk. J Spinal Cord Med. 2011;34(4):395–403.
,
Comparison of 24-hour cardiovascular and autonomic function in paraplegia, tetraplegia, and control groups: Implications for cardiovascular risk
,
J Spinal Cord Med.
, vol.
34
(pg.
395
-
403
)
Grimm DR, De Meersman RE, Almenoff PL, Spungen AM, Bauman WA. Sympathovagal balance of the heart in subjects with spinal cord injury. Am J Physiol. 1997;272(2 Pt 2):H835–842.
,
Sympathovagal balance of the heart in subjects with spinal cord injury
,
Am J Physiol.
, vol.
272
(pg.
H835
-
842
)
Sahota IS, Ravensbergen HR, McGrath MS, Claydon VE. Cerebrovascular responses to orthostatic stress after spinal cord injury. J Neurotrauma. 2012;29(15):2446–2456.
,
Cerebrovascular responses to orthostatic stress after spinal cord injury
,
J Neurotrauma.
, vol.
29
(pg.
2446
-
2456
)
Helkowski WM, Ditunno JF, Jr., Boninger M. Autonomic dysreflexia: Incidence in persons with neurologically complete and incomplete tetraplegia. J Spinal Cord Med. 2003;26(3):244–247.
,
Autonomic dysreflexia: Incidence in persons with neurologically complete and incomplete tetraplegia
,
J Spinal Cord Med.
, vol.
26
(pg.
244
-
247
)
Carvalho DC, de Cassia Zanchetta M, Sereni JM, Cliquet A. Metabolic and cardiorespiratory responses of tetraplegic subjects during treadmill walking using neuromuscular electrical stimulation and partial body weight support. Spinal Cord. 2005;43(7):400–405.
,
Metabolic and cardiorespiratory responses of tetraplegic subjects during treadmill walking using neuromuscular electrical stimulation and partial body weight support
,
Spinal Cord.
, vol.
43
(pg.
400
-
405
)
Sisto SA, Lorenz DJ, Hutchinson K, Wenzel L, Harkema SJ, Krassioukov A. Cardiovascular status of individuals with incomplete spinal cord injury from 7 NeuroRecovery Network rehabilitation centers. Arch Phys Med Rehabil. 2012;93(9):1578–1587.
,
Cardiovascular status of individuals with incomplete spinal cord injury from 7 NeuroRecovery Network rehabilitation centers
,
Arch Phys Med Rehabil.
, vol.
93
(pg.
1578
-
1587
)
Grimm DR, DeMeersman RE, Garofano RP, Spungen AM, Bauman WA. Effect of provocative maneuvers on heart rate variability in subjects with quadriplegia. Am J Physiol. 1995;268(6 Pt 2):H2239–2245.
,
Effect of provocative maneuvers on heart rate variability in subjects with quadriplegia
,
Am J Physiol.
, vol.
268
(pg.
H2239
-
2245
)
Ravensbergen HJ, Walsh ML, Krassioukov AV, Claydon VE. Electrocardiogram-based predictors for arrhythmia after spinal cord injury. Clin Auton Res. 2012;22(6):265–273.
,
Electrocardiogram-based predictors for arrhythmia after spinal cord injury
,
Clin Auton Res.
, vol.
22
(pg.
265
-
273
)
Curt A, Weinhardt C, Dietz V. Significance of sympathetic skin response in the assessment of autonomic failure in patients with spinal cord injury. J Auton Nerv Syst. 1996;61(2):175–180.
,
Significance of sympathetic skin response in the assessment of autonomic failure in patients with spinal cord injury
,
J Auton Nerv Syst.
, vol.
61
(pg.
175
-
180
)
Cariga P, Catley M, Mathias CJ, Savic G, Frankel HL, Ellaway PH. Organisation of the sympathetic skin response in spinal cord injury. J Neurol Neurosurg Psychiatry. 2002;72(3):356–360.
,
Organisation of the sympathetic skin response in spinal cord injury
,
J Neurol Neurosurg Psychiatry.
, vol.
72
(pg.
356
-
360
)
Claydon VE, Hol AT, Eng JJ, Krassioukov AV. Cardiovascular responses and postexercise hypotension after arm cycling exercise in subjects with spinal cord injury. Arch Phys Med Rehabil. 2006;87(8):1106–1114.
,
Cardiovascular responses and postexercise hypotension after arm cycling exercise in subjects with spinal cord injury
,
Arch Phys Med Rehabil.
, vol.
87
(pg.
1106
-
1114
)
Claydon VE, Krassioukov AV. Orthostatic hypotension and autonomic pathways after spinal cord injury. J Neurotrauma. 2006;23(12):1713–1725.
,
Orthostatic hypotension and autonomic pathways after spinal cord injury
,
J Neurotrauma.
, vol.
23
(pg.
1713
-
1725
)
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