Clarke J P
Department of Anaesthesia, Royal Adelaide Hospital, South Australia.
Intensive Care Med. 1997 Jan;23(1):106-9. doi: 10.1007/s001340050298.
To determine the effects of pressure control inverse ratio ventilation [PC-IRV], as compared with volume controlled normal ratio ventilation [VC], on the intracranial pressure [ICP] of patients with severe head injury.
A prospective study with unblinded intervention.
The Intensive Therapy Unit of a base hospital.
Nine cases of head injury requiring mechanical ventilation and intracranial pressure monitoring were studied.
Patients were twice transferred from VC (1:E ratio 1:2) to PC-IRV (1:E ratio 2:1). Firstly, tidal volume was maintained at an equal value. Secondly, end tidal CO2 was maintained at an equal value. No other changes were made to ventilation, vasopressor therapy or ICP control.
Measurements were taken of ICP, mean arterial pressure (MAP) end tidal CO2 and respiratory parameters. In the first observation, there were significant changes in peak inspiratory pressure (PIP), mean airway pressure (Paw) and intrinsic positive end expiratory pressure (PEEP) but not for ICP, end tidal CO2, MAP and cerebral perfusion pressure (CPP). The correlation between change in ICP and change in end tidal CO2 was r = -0.74. In the second observation there were significant changes in tidal volume, PIP, Paw and intrinsic PEEP but not for ICP, MAP and CPP. The correlation between the change in ICP and the change in Paw was insignificant.
PC-IRV has a minimal net effect on ICP. Changes in ICP correlate more strongly with changes in CO2 than changes in Paw.
与容量控制常规比例通气(VC)相比,确定压力控制反比通气(PC-IRV)对重型颅脑损伤患者颅内压(ICP)的影响。
一项无盲法干预的前瞻性研究。
一家基层医院的重症治疗病房。
对9例需要机械通气和颅内压监测的颅脑损伤患者进行了研究。
患者两次从VC(吸呼比1:2)转换为PC-IRV(吸呼比2:1)。首先,潮气量维持在相等的值。其次,呼气末二氧化碳维持在相等的值。通气、血管升压药治疗或ICP控制未作其他改变。
测量了ICP、平均动脉压(MAP)、呼气末二氧化碳和呼吸参数。在第一次观察中,吸气峰压(PIP)、平均气道压(Paw)和内源性呼气末正压(PEEP)有显著变化,但ICP、呼气末二氧化碳、MAP和脑灌注压(CPP)没有变化。ICP变化与呼气末二氧化碳变化之间的相关性r = -0.74。在第二次观察中,潮气量、PIP、Paw和内源性PEEP有显著变化,但ICP、MAP和CPP没有变化。ICP变化与Paw变化之间的相关性不显著。
PC-IRV对ICP的净影响最小。ICP的变化与二氧化碳变化的相关性比与Paw变化的相关性更强。