2020PubMedRequires access

[Clinical application of adaptive minute ventilation + IntelliCycle ventilation mode in patients with mild-to-moderate acute respiratory distress syndrome].

Zhihan Liu, Xingwei Di, Lei Zhong, Zichen Su, Bo Xu, Xiaoyu Zhang, Zhuang Liang, Guangming Zhao, Zhansheng Hu

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Abstract

OBJECTIVE: To verify the clinical safety and efficacy of new intelligent ventilation mode adaptive minute ventilation (AMV)+IntelliCycle ventilation in patients with mild-to-moderate acute respiratory distress syndrome (ARDS). METHODS: and PEEP was as the same as that of AMV+IntelliCycle group, the triggering flow was set to 2 L/min. All of the clinical parameters between the two groups were compared. The main outcomes were duration of mechanical ventilation, ventilator alarm times, manual operation times, and the mechanical power; the secondary outcomes were respiratory rate (RR), VE, tidal volume (VT), PIP, mouth occlusion pressure (P0.1), static compliance (Cst), work of breathing (WOB), and time constant at 0, 6, 12, 24, 48, 72, and 120 hours; and the blood gas analysis parameters of patients before and after ventilation were recorded. RESULTS: ) of AMV+IntelliCycle group was significantly higher than that of SIMV+PSV group [mmHg (1 mmHg = 0.133 kPa): 41.58±6.81 vs. 38.45±5.77, P < 0.05]. (2) Results of secondary outcomes: the RR of both groups was improved significantly with the prolongation of ventilation time which showed a time effect (F = 4.131, P = 0.005). Moreover, compared with SIMV+PSV mode, AMV+IntelliCycle mode could maintain a better level of RR, with intervention effect (F = 5.008, P = 0.031), but no interaction effect was found (F = 2.489, P = 0.055). There was no significant difference in VE, PIP, P0.1 or Cst between the two groups, without intervention effect (F values were 3.343, 2.047, 0.496, 1.456, respectively, all P > 0.05), but they were significantly improved with the prolongation of ventilation time in both groups, with time effect (F values were 2.923, 12.870, 23.120, 7.851, respectively, all P < 0.05), but no interaction effect was found (F values were 1.571, 1.291, 0.300, 0.354, respectively, all P > 0.05). The VT, WOB or time constant in both groups showed no significant changes with the prolongation of ventilation time, and no significant difference was found between the two groups, there was neither time effect (F values were 0.613, 1.049, 2.087, respectively, all P > 0.05) nor intervention effect (F values were 1.459, 0.514, 0.923, respectively, all P > 0.05). CONCLUSIONS: in the patients with AMV+IntelliCycle mode is higher than that in the patients with SIMV+PSV mode.

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What this paper is about

OBJECTIVE: To verify the clinical safety and efficacy of new intelligent ventilation mode adaptive minute ventilation (AMV)+IntelliCycle ventilation in patients with mild-to-moderate acute respiratory distress syndrome (ARDS). METHODS: and PEEP was as the same as that of AMV+IntelliCycle group, the triggering flow was set to 2 L/min. All of the clinical parameters between the two groups were compared. The main outcomes were duration of mechanical ventilation, ventilator alarm times, manual operation times, and the mechanical power; the secondary outcomes were respiratory rate (RR), VE, tidal volume (VT), PIP, mouth occlusion pressure (P0.1), static compliance (Cst), work of breathing (WOB), and time constant at 0, 6, 12, 24, 48, 72, and 120 hours; and the blood gas analysis parameters of patients before and after ventilation were recorded. RESULTS: ) of AMV+IntelliCycle group was significantly higher than that of SIMV+PSV group [mmHg (1 mmHg = 0.133 kPa): 41.58±6.81 vs. 38.45±5.77, P < 0.05]. (2) Results of secondary outcomes: the RR of both groups was improved significantly with the prolongation of ventilation time which showed a time effect (F = 4.131, P = 0.005). Moreover, compared with SIMV+PSV mode, AMV+IntelliCycle mode could maintain a better level of RR, with intervention effect (F = 5.008, P = 0.031), but no interaction effect was found (F = 2.489, P = 0.055). There was no significant difference in VE, PIP, P0.1 or Cst between the two groups, without intervention effect (F values were 3.343, 2.047, 0.496, 1.456, respectively, all P > 0.05), but they were significantly improved with the prolongation of ventilation time in both groups, with time effect (F values were 2.923, 12.870, 23.120, 7.851, respectively, all P < 0.05), but no interaction effect was found (F values were 1.571, 1.291, 0.300, 0.354, respectively, all P > 0.05). The VT, WOB or time constant in both groups showed no significant changes with the prolongation of ventilation time, and no significant difference was found between the two groups, there was neither time effect (F values were 0.613, 1.049, 2.087, respectively, all P > 0.05) nor intervention effect (F values were 1.459, 0.514, 0.923, respectively, all P > 0.05). CONCLUSIONS: in the patients with AMV+IntelliCycle mode is higher than that in the patients with SIMV+PSV mode.

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Available abstract

OBJECTIVE: To verify the clinical safety and efficacy of new intelligent ventilation mode adaptive minute ventilation (AMV)+IntelliCycle ventilation in patients with mild-to-moderate acute respiratory distress syndrome (ARDS). METHODS: and PEEP was as the same as that of AMV+IntelliCycle group, the triggering flow was set to 2 L/min. All of the clinical parameters between the two groups were compared. The main outcomes were duration of mechanical ventilation, ventilator alarm times, manual operation times, and the mechanical power; the secondary outcomes were respiratory rate (RR), VE, tidal volume (VT), PIP, mouth occlusion pressure (P0.1), static compliance (Cst), work of breathing (WOB), and time constant at 0, 6, 12, 24, 48, 72, and 120 hours; and the blood gas analysis parameters of patients before and after ventilation were recorded. RESULTS: ) of AMV+IntelliCycle group was significantly higher than that of SIMV+PSV group [mmHg (1 mmHg = 0.133 kPa): 41.58±6.81 vs. 38.45±5.77, P < 0.05]. (2) Results of secondary outcomes: the RR of both groups was improved significantly with the prolongation of ventilation time which showed a time effect (F = 4.131, P = 0.005). Moreover, compared with SIMV+PSV mode, AMV+IntelliCycle mode could maintain a better level of RR, with intervention effect (F = 5.008, P = 0.031), but no interaction effect was found (F = 2.489, P = 0.055). There was no significant difference in VE, PIP, P0.1 or Cst between the two groups, without intervention effect (F values were 3.343, 2.047, 0.496, 1.456, respectively, all P > 0.05), but they were significantly improved with the prolongation of ventilation time in both groups, with time effect (F values were 2.923, 12.870, 23.120, 7.851, respectively, all P < 0.05), but no interaction effect was found (F values were 1.571, 1.291, 0.300, 0.354, respectively, all P > 0.05). The VT, WOB or time constant in both groups showed no significant changes with the prolongation of ventilation time, and no significant difference was found between the two groups, there was neither time effect (F values were 0.613, 1.049, 2.087, respectively, all P > 0.05) nor intervention effect (F values were 1.459, 0.514, 0.923, respectively, all P > 0.05). CONCLUSIONS: in the patients with AMV+IntelliCycle mode is higher than that in the patients with SIMV+PSV mode.

Key concepts: Medicine, Mechanical ventilation, Ventilation (architecture), Pressure support ventilation, ARDS, Peak inspiratory pressure, Anesthesia, Intermittent mandatory ventilation

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[Clinical application of adaptive minute ventilation + IntelliCycle ventilation mode in patients with mild-to-moderate acute respiratory distress syndrome]. — Research Paper | ScholarLens