Cerebral Perfusion Pressure, Autoregulation and the PVI Reflection Point: Pathological ICP

1989 ◽  
pp. 829-833 ◽  
Author(s):  
Y. El-Adawy ◽  
M. J. Rosner
Neurosurgery ◽  
2011 ◽  
Vol 68 (3) ◽  
pp. 714-722 ◽  
Author(s):  
Ulf Johnson ◽  
Pelle Nilsson ◽  
Elisabeth Ronne-Engström ◽  
Tim Howells ◽  
Per Enblad

Abstract BACKGROUND: Cerebral pressure autoregulation (CPA) is defined as the ability of the brain vasculature to maintain a constant blood flow over a range of different systemic blood pressures by means of contraction and dilatation. OBJECTIVE: To study CPA in relation to physiological parameters, treatment, and outcome in a series of traumatic brain injury patients. METHODS: In this prospective observational study, 44 male and 14 female patients (age, 15–72 years; mean, 38.7 years; Glasgow Coma Scale score, 4-13; median, 7) were analyzed. Patients were divided into groups on the basis of status of CPA (more pressure active vs more pressure passive) and level of cerebral perfusion pressure (CPP; low vs high CPP). The proportions of favorable outcome in the groups were assessed. Differences in physiological variables in the different groups were analyzed. RESULTS: Patients with more impaired CPA treated at CPP levels below median had a significantly higher proportion of favorable outcome compared with patients with more impaired CPA treated at CPP levels above median. No significant difference in outcome was seen between patients with more intact CPA when divided by level of CPP. In patients with more impaired CPA, CPP < 50 mm Hg and CPP < 60 mm Hg were associated with favorable outcome, whereas CPP > 70 mm Hg and CPP > 80 mm Hg were associated with unfavorable outcome. In patients with more intact CPA, no difference in physiological variables was seen between patients with favorable and unfavorable outcomes. CONCLUSION: Our results support that in traumatic brain injury patients with impaired CPA, CPP should not be elevated.


1988 ◽  
Vol 68 (5) ◽  
pp. 745-751 ◽  
Author(s):  
Werner Hassler ◽  
Helmuth Steinmetz ◽  
Jan Gawlowski

✓ Transcranial Doppler ultrasonography was used to monitor 71 patients suffering from intracranial hypertension with subsequent brain death. Among these, 29 patients were also assessed for systemic arterial pressure and epidural intracranial pressure, so that a correlation between cerebral perfusion pressure and the Doppler ultrasonography waveforms could be established. Four-vessel angiography was also performed in 33 patients after clinical brain death. With increasing intracranial pressure, the transcranial Doppler ultrasonography waveforms exhibited different characteristic high-resistance profiles with first low, then zero, and then reversed diastolic flow velocities, depending on the relationship between intracranial pressure and blood pressure (that is, cerebral perfusion pressure). This study shows that transcranial. Doppler ultrasonography may be used to assess the degree of intracranial hypertension. This technique further provides a practicable, noninvasive bedside monitor of therapeutic measures.


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