相关实验视频
Updated: Jul 28, 2025

08:10
A Closed-chest Model to Induce Transverse Aortic Constriction in Mice
Published on: April 5, 2018
19.2K
同热量的营养支持可以减少重创患者的呼吸器持续时间
Ji-Hyun Lee1,2, Mihyang Kim1,2, Donghwan Choi3
1Food Services and Clinical Nutrition Team, Ajou University Hospital, Suwon, Korea.
概括
重症创伤患者获得的能量和蛋白质不足. 与低热量相比,同热量营养与更短的呼吸机使用有关,这表明对改善结果的潜在干预措施.
科学领域:
- 关键护理医学 关键护理医学
- 营养支持营养支持
- 创伤外科 手术 创伤外科
背景情况:
- 适当的营养支持对于重创患者的康复至关重要.
- 营养缺陷在重症创伤患者中很常见,可能会影响临床结果.
研究的目的:
- 评估重症创伤患者的能量和蛋白质供应的充分性.
- 为了确定营养供应和临床结果之间的相关性,特别是呼吸机使用的持续时间.
主要方法:
- 一项对320名重症创伤患者进行的回顾性观察性研究.
- 关于能量和蛋白质摄入量的数据是在治疗后的前10天内收集的.
- 患者被分为同热量 (≥70%的需求) 和低热量 (<70%的需求) 的营养组.
主要成果:
- 平均能量供应为57.5%,蛋白质供应为推摄入量的51.3%.
- 同热量营养组 (n=83) 与低热量组 (n=237,16.0天) 相比,使用呼吸机的持续时间显著更短 (12.7天).
- 亲肠道营养的持续时间在同热量组中也较短.
结论:
- 严重的创伤患者往往获得不足的能量和蛋白质.
- 同热量营养可能与机械通风的持续时间缩短有关.
- 需要进一步的研究来探索同热量营养作为一种干预措施,以减少呼吸机相关肺炎等并发症.
更多相关视频
相关概念视频
Acute Respiratory Failure-V
169
The treatment for acute respiratory failure varies based on factors like the underlying cause, overall health, and severity. A collaborative healthcare team is essential for early detection, often through arterial blood gas analysis. Identifying the cause is the primary goal, with treatment strategies adjusted for ventilation/perfusion (V/Q) mismatch, shunting, or diffusion impairment.
Ensure that patients are monitored continuously for their response to therapy, including changes in...
Ensure that patients are monitored continuously for their response to therapy, including changes in...
169
Mechanical Ventilation II: Invasive Ventilation
186
Ventilators are essential medical equipment used to aid patients with respiratory difficulties. Their primary function is to assist or replace spontaneous breathing by providing mechanical ventilation. There are two general classes of mechanical ventilators: negative-pressure and positive-pressure ventilators.
Negative-Pressure Ventilators
Negative-pressure ventilators create a vacuum around the chest or body to draw air into the lungs, simulating breathing. This method does not require an...
Negative-Pressure Ventilators
Negative-pressure ventilators create a vacuum around the chest or body to draw air into the lungs, simulating breathing. This method does not require an...
186
Mechanical Ventilation III: Noninvasive Ventilation
158
Noninvasive positive-pressure ventilation (NIPPV), continuous positive airway pressure (CPAP), and bilevel positive airway pressure (BiPAP) are essential methods in respiratory care. These ventilation techniques offer unique benefits for patients with various respiratory conditions, providing adequate support without requiring intubation. Let's explore how each method is crucial in improving patient outcomes and enhancing respiratory therapy.
Noninvasive Positive-Pressure Ventilation...
Noninvasive Positive-Pressure Ventilation...
158
Acute Respiratory Failure-II
291
Type I Respiratory Failure, or hypoxemic respiratory failure, occurs when the partial pressure of oxygen (PaO2) in arterial blood falls below 60 mmHg while breathing room air without a corresponding increase in arterial carbon dioxide levels (PaCO2). This condition highlights a significant impairment in the lungs' capacity to oxygenate the blood.
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include:
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include:
291
Acute Respiratory Failure-IV
181
Respiratory failure can manifest suddenly or gradually, characterized by a rapid decline in PaO2 and a rapid rise in PaCO2. This situation indicates a severe respiratory problem that may quickly become a life-threatening emergency. One of the early signs of hypoxemic Acute Respiratory Failure (ARF) is a change in mental status due to the brain's sensitivity to oxygen levels and changes in acid-base balance. Symptoms such as restlessness, confusion, and agitation suggest inadequate oxygen...
181
Acute Respiratory Failure-III
235
Hypercapnic respiratory failure, also known as Type 2 or ventilatory respiratory failure, is a severe condition characterized by the body's inability to effectively remove carbon dioxide (CO2) from the bloodstream. It leads to an arterial CO2 pressure (PaCO2) exceeding 45 mmHg and a blood pH above 7.35. This situation indicates that the body's ventilatory demand, or the ventilation needed to maintain normal PaCO2 levels, surpasses its supply or the maximum gas flow achievable without...
235

