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Enteral feeding in the critically ill: comparison between the supine and prone positions: a prospective crossover study in mechanically ventilated patients.

INTRODUCTION: Prone position is effective in mechanically ventilated patients to improve oxygenation. It is unknown if prone position affects gastric emptying and the ability of continued enteral feeding. AIM: To determine tolerance of enteral feeding by measuring gastric residual volumes in enterally fed patients during supine and prone positions. METHODS: Consecutive mechanically ventilated intensive care patients who were turned to prone position were included. All patients were studied for 6 hours in supine position, immediately followed by 6 hours in prone position, or vice versa. The rate of feeding was unchanged during the study period. Gastric residual volume was measured by suctioning the naso-gastric tube after 3 and 6 hours in the same position. Wilcoxon test and regression analysis were used for analysis. RESULTS: The median volume of administered enteral feeds was 95 ml after 6 hours in supine position and 110 ml after 6 hours in prone position (P = 0.85). In 10 patients, a greater gastric residual volume was found in prone position. In eight others a greater volume was found in supine position. In 18 of 19 patients, gastric residual volumes in both positions were > or = 150 ml in 6 hours or < or = 150 ml in 6 hours. Significantly more sedatives were used in prone position. Regression analysis excluded dopamine dose and the starting position as confounders. CONCLUSION: Our results suggest that enteral feeding can be continued when a patient is turned from supine to prone position or vice versa. The results indicate that patients with a clinically significant gastric residual volume in one position are likely to have a clinically significant gastric residual volume in the other position.

Adult↗

Early enteral nutrition in mechanically ventilated patients in the prone position.

OBJECTIVE: To assess the tolerance of early enteral nutrition in critically ill patients receiving invasive mechanical ventilation in the prone position. DESIGN: Prospective, comparative study. SETTING: General intensive care unit in a university-affiliated hospital. PATIENTS: A total of 71 consecutive patients receiving invasive mechanical ventilation with early nasogastric enteral nutrition were studied for 5 days while being treated continuously in the supine position (supine position group, n = 37) or with intermittent prone positioning for severe hypoxemia (prone position group, n = 34). INTERVENTIONS: Inclusion occurred within 24 hrs of mechanical ventilation initiation. Daily 18-hr enteral nutrition via a 14F gastric tube was initiated. Prone position patients were turned every 6 hrs as long as PaO2/FiO2 remained at <150, with a FiO2 of 0.6 and positive end-expiratory pressure of 10; the head was slightly elevated. When supine, patients in both groups were semirecumbent. Residual gastric volume was measured every 6 hrs, and enteral nutrition was discontinued if it exceeded 250 mL or vomiting occurred. MEASUREMENTS AND MAIN RESULTS: The groups were similar for age, sex, Simplified Acute Physiology Score II, mortality, and risk factors for enteral nutrition intolerance. At baseline, PaO2/FiO2 was lower in prone position patients than in supine position patients (127 +/- 55 vs. 228 +/- 102; p <.001). As compared with supine position patients, prone position patients had significantly greater residual gastric volumes on days 1, 2, and 4 and experienced more vomiting episodes (median, 1 [interquartile range, 0-2] vs. 0 [interquartile range, 0-1]; p <.05). Enteral nutrition was stopped in 82% of prone position patients and 49% of supine position patients (p <.01) so that daily enteral nutrition volumes were lower with prone position patients. In the prone position group, vomiting occurred more frequently in the prone than in the supine position (relative risk, 2.5; 95% confidence interval, 1.5-4.0; p <.001). CONCLUSION: In critically ill patients receiving invasive mechanical ventilation in the prone position, early enteral nutrition is poorly tolerated. Prokinetic agents or transpyloric feeding and semirecumbency should be considered to enhance gastric emptying and to prevent vomiting in patients receiving mechanical ventilation in the prone position.

Adult↗

Prone positioning of patients with acute respiratory distress syndrome: a systematic review.

A computerized bibliographic search of published research and a citation review of English-language publications about prone positioning of patients with acute respiratory distress syndrome were done. Information on prone positioning related to technique, patients' responses, complications, and recommendations to prevent complications was extracted. In the 20 pertinent clinical studies found, 297 patients (mean age, 39 years) with acute respiratory failure were positioned prone. Timing from the onset of respiratory failure to when the patient was first positioned prone varied, as did the frequency of prone positioning. Patients spent from 30 minutes to 42 hours prone. In 47% of the studies in which abdominal position was noted, chest and pelvic cushions were used to allow the abdomen to protrude while the patient was prone. Improved oxygenation within 2 hours was reported in 69% of patients, and the improvements were cumulative and persistent. Aside from early intervention, factors predictive of patients' responses were inconsistent, and patients' initial responses were not predictive of subsequent responses. Iatrogenic critical events were rare. Dependent edema of the face was prevalent. Pressure ulcers were reported in studies with longer periods of prone positioning. The most serious complication, corneal abrasion requiring corneal transplantation, was reported in one patient. Clinical knowledge about prone positioning is limited. Phase 1 studies focusing on how to safely turn and care for critically ill patients positioned prone for prolonged periods are needed.

Adult↗

Hypoxia from vasculitic pulmonary haemorrhage improved by prone position ventilation.

Ventilation in the prone position is used in patients with acute respiratory distress syndrome (ARDS), although data supporting this strategy are limited, and benefit for patients with other conditions is unclear. The patient in this report had severe hypoxaemia from diffuse alveolar haemorrhage caused by vasculitis with positive antineutrophil cytoplasmic antibodies (ANCA). Ventilation in the prone position improved oxygenation dramatically. This improvement was initially maintained when returned supine, accompanied by increased ventilation. Prone ventilation was used on three consecutive days for 10, 14 and 15 h, respectively. Prone ventilation could improve oxygenation by better ventilation-perfusion (V/Q) matching and improved drainage of blood from the dorsal lung. The improved oxygenation in this patient should encourage the use of prone ventilation in other patients with pulmonary haemorrhage and severe hypoxia.

Aged↗

Effect of positioning on pulmonary function of newborns: comparison of supine and prone position.

The effect of positioning on pulmonary function has been previously evaluated, and the prone position has been reported to be preferable for neonates with various respiratory diseases. Studies in healthy neonates have yielded conflicting results. Using a crying pulmonary function test, we examined the effect of positioning on pulmonary function in healthy full-term neonates. Thirty-nine infants with a mean birthweight (+/- SD) of 3,140 +/- 379 g and a mean gestational age (+/- SD) of 39.8 +/- 1.6 weeks were investigated during the first 6 hours of life. Measurements were obtained in both supine and prone positions using a computerized volume-flow system. There were statistically significant decreases in crying vital capacity (CVC) and peak expiratory flow rate (PEF) in the prone compared with the supine position. However, there were no significant differences in forced expiratory flow rate at 75% (V(75)), 50% (V(55)), and 25% (V(25)) of vital capacity between the two positions. These results suggest that prone positioning decreases lung volume and increases resistance of upper airways. We conclude that healthy neonates should be in the supine posture for optimal ventilation.

Humans↗

Artificial ventilation in the prone position.

Turning a ventilated patient into the prone position can greatly enhance arterial blood oxygenation independent of ventilator parameters. This article explores the physiology relating to pulmonary ventilation, highlighting an overall improvement in ventilation/perfusion matching as a result of the prone position. A series of small studies seems to suggest that prone positioning can have a dramatic effect on life-threatening hypoxia, including adult respiratory distress syndrome (ARDS) but as yet there have been no large, randomised, multi-centre trials to put beyond doubt the benefits of prone ventilation. Turning the patient prone precipitates many issues in caring for him/her in this position. Many are practical problems and the article goes on to explore a variety of these, including turning and positioning the patient, emergencies and access and the psychological effects of being in the prone position. It is important that nurses understand the physiological basis for any actions, including turning the patient prone, but it is also important that nurses doctors and other professionals appreciate the practical difficulties that this form of management can produce. All team members must work together to ensure a safe, cohesive approach to turning and caring for the ventilated patient in the prone position.

Adult↗

Respiratory effects of the kneeling prone position for low back surgery.

BACKGROUND AND OBJECTIVE: The kneeling prone position is often used for low back surgery in order to decrease intraoperative bleeding and increase the surgical exposure of the vertebral canal. The aim of this study was to assess effects of the kneeling prone position on respiratory gas exchange focusing on oxygen consumption and early changes in oxygenation. METHODS: Thirty ASA I-II patients scheduled for low back surgery in the kneeling prone position were studied. Anaesthesia was maintained with isoflurane, 1.2% end-tidal concentration. Respiratory gas exchange was measured with indirect calorimetry. RESULTS: When the patients were turned into the kneeling prone position their oxygenation was immediately improved--measured by arterial oxygen tension and arterial oxygen saturation. The oxygen uptake rate did not change from a baseline supine level of 76 mL min(-1) m(-2), but the carbon dioxide excretion rate decreased from a baseline supine value of 71 mL min(-1) m(-2) to 66 mL min(-1) m(-2) at 5 and 10 min after the kneeling prone position was adopted. Alveolar ventilation decreased in the kneeling prone position. CONCLUSIONS: The present study demonstrates that the kneeling prone position improves oxygenation and that the mechanisms involved are fast in onset. Furthermore, the prone position does not change oxygen consumption although alveolar ventilation is significantly reduced. The changes in alveolar ventilation could possibly be the result of circulatory changes caused by the prone position, but further studies are needed to clarify that hypothesis.

Adult↗

Hemodynamic evaluation of the prone position by transesophageal echocardiography.

STUDY OBJECTIVE: To evaluate the hemodynamic response in the prone position in surgical patients by measuring the effects of prone positioning on cardiac function using transesophageal echocardiography (TEE). DESIGN: Prospective study. SETTING: Elective surgery at a university hospital. PATIENTS: 15 adult ASA physical status I and II patients free of significant coexisting disease undergoing lumbar laminectomy. INTERVENTIONS AND MEASUREMENTS: Approximately 15 minutes after the induction of general anesthesia, we measured heart rate, blood pressure, and central venous pressure. We also measured left ventricular area (LVA) and fractional area change (FAC) automatically and calculated left ventricular volume (LVV), stroke volume index (SVI), cardiac index (CI), left ventricular ejection fraction (LVEF), left ventricular fractional shortening (LVFS), pulmonary venous flow velocity (PVFV), and pulmonary venous velocity time integral (PVVTI) via TEE. The same measurements were performed approximately 15 minutes after changing to the prone position with longitudinal bolsters. MAIN RESULTS: In the prone position, there was significant reduction in end-systolic and end-diastolic LVA and LVV. There was a significant increase in LVEF, LVFS, and FAC in the prone position. In addition, there was diminishment of systolic PVFV and PVVTI and enhancement of diastolic PVFV and PVVTI. SVI and CI did not change significantly in the prone position. CONCLUSION: The prone position caused LVV to decrease. The prone position also led to decreased systolic PVFV and PVVTI and enhancement of diastolic PVFV and PVVTI. These changes were probably due to a decrease in the venous return due to inferior vena caval compression, and decreased left ventricular compliance due to increased intrathoracic pressure in the prone position.

Adult↗

Prone position in mechanically ventilated patients with reduced intracranial compliance.

BACKGROUND: Prone position has been used for several years to treat acute lung insufficiency, but in previous studies patients with unstable intracranial pressure (ICP) are mostly excluded. The aim of this study was to investigate if prone position is a safe and useful treatment in patients with reduced intracranial compliance. METHODS: A consecutive, prospective pilot study of 11 patients admitted to the neuro intensive care unit (NICU) due to traumatic brain injury or intracerebral haemorrhage. ICP, cerebral perfusion pressure (CPP), heart rate (HR), mean arterial blood pressure (MABP), arterial partial pressure of oxygen (PaO(2)), arterial partial pressure of carbon dioxide (PaCO(2)), arterial oxygen saturation (SaO(2)) and respiratory system compliance were measured before, three times during and two times after the patients were placed in the prone position. RESULTS: No significant changes were demonstrated in ICP, CPP or MABP. PaO(2) and SaO(2) were significantly increased in the prone position. HR was significantly increased in the prone position and after 10 min in the supine post-prone position and the respiratory system compliance was increased after 1 h in the supine post-prone position. CONCLUSION: Turning NICU patients from the supine to the prone position did not influence ICP, CPP or MABP, but significantly improved patient PaO(2), SaO(2) and respiratory system compliance.

Adult↗

Beneficial effect of a prone position for patients with hypoxemia after transthoracic esophagectomy.

OBJECTIVE: Although the prone position has been reported to improve arterial oxygenation in patients with acute respiratory distress syndrome, there have been no reports on its efficacy in patients with hypoxemia after transthoracic esophagectomy with three-field lymphadenectomy. This study was undertaken to assess the efficacy of the prone position on hypoxemia after three-field lymphadenectomy for thoracic esophageal carcinoma. DESIGN: Prospective randomized clinical study. SETTING: General intensive care unit at a university hospital. INTERVENTIONS AND MEASUREMENTS: Sixteen patients who underwent three-field lymphadenectomy and showed hypoxemia (PaO2/FiO2 ratios of <200 under positive end-expiratory pressure of >5 cm H2O) on the fifth postoperative day were randomly assigned to prone (eight patients) and nonprone (eight patients) groups. Prone position for 6 hrs was carried out for four consecutive days. The PaO2/FiO2 ratio, the duration of ventilatory support, and length of stay, were measured. RESULTS: Oxygenation: The PaO2/FiO2 ratio markedly increased by 32% +/- 22% in seven of eight patients (p <.05) when the patients were moved from the supine to the prone position. The PaO2/FiO2 ratio after the fourth prone position (238 +/- 55, p <.05) was significantly higher than that before the first trial of prone position (166 +/- 25) in these seven patients. Duration of ventilatory support and intensive care unit length of stay: Both the ventilation period (11.6 +/- 2.2 vs. 14.0 +/- 1.6 days, p =.0029) and the length of stay in the intensive care unit (12.8 +/- 4.4 vs. 17.2 +/- 3.4 days, p =.0032) were significantly shorter in the prone group compared with the nonprone group. The PaO2/FiO2 ratio at the time of cessation of prone positioning was significantly higher than the corresponding value in the nonprone group. CONCLUSION: In hypoxemic patients after three-field lymphadenectomy, the prone position improved arterial oxygenation without any deleterious effects. The beneficial effect of the prone position is possibly attributable to opening of the bronchi obstructed by secretions.

Aged↗

[Postural technique in prone position: hemodynamic and respiratory parameters and complications].

Therapeutic strategies used in the treatment of adult respiratory distress syndrome (ARDS) recommend placing the patient in prone position as an effective method for optimizing ventilation-perfusion parameters. We evaluated the therapeutic effect of postural treatment in prone position with the following goals: Comparison of hemodynamic and respiratory parameters before and after placing the patient in prone position, while in prone position, and before and after postural treatment. Complications associated with turning and time in prone position. A prospective study was made of 30 turns in 15 patients admitted to the Polyvalent ICU between January 1999 and April 2000 for medical-surgical pathology, mean age 55.4 +/- 16.3 years, diagnosed as ARDS during their stay in the ICU, Lung Injury Score (Murray) > 2.5, and a medical prescription for prone position. Nurses were experienced in postural treatment in prone position in accordance with two protocols, the technique for placing the patient in prone position and nursing care for patients in prone position. Comparison of paired means of the hemodynamic variables MBP, HR and CVP did not disclose any statistically significant difference between the time before turning, while in prone position, and before and after postural treatment. Comparison of paired means of the respiratory variables PaO2/FiO2, Sat O2, tidal volume (TV), PCO2, pH, and PaO2/FiO2 ratio showed a significant increase after placing the patient in prone position, another increase after 2 hours in prone position, and before and after postural treatment. Sat O2 increased significantly 2 hours after turning, and remained raised while the patient was in prone position. TV increased significantly before and after postural treatment. The reduction in PCO2 occurred after 2 hours in prone position. Comparisons before and after postural treatment disclosed a clinically significant difference but no change in pH. Following the protocol for placing the patient in prone position, no complications were associated with the turning procedure (accidental loss of TOT, tracheostomy, SNG, urinary catheter, vascular catheters, chest tubes, and drainage tubes). While patients were in prone position, stage II and III UPP, palpebral and/or conjunctival edema, and intolerance of enteral feeding occurred, but our results do not indicate that these complications appeared solely as a result of prone position.

Hemodynamics↗

Feasibility of Prone Positioning in Patients With Obesity and Acute Respiratory Distress Syndrome.

BACKGROUND: Prone positioning in patients with obesity remains uncommon because of concerns about feasibility, safety, and efficacy. OBJECTIVE: To evaluate the feasibility, safety, and clinical outcomes of manual prone positioning in patients with acute respiratory distress syndrome (ARDS) across different classes of obesity. METHODS: This was a retrospective cohort study involving patients with ARDS who underwent manual prone positioning across 15 hospitals between April 2014 and July 2024. Patients were stratified into 5 groups based on body mass index. Standardized prone positioning protocols were followed across institutions. RESULTS: A total of 1448 patients with ARDS underwent prone positioning. Across all obesity categories, prone positioning was associated with shorter intensive care unit and hospital stays, improved oxygenation, and better clinical outcomes. Notably, patients with class III obesity showed the greatest increase in gas exchange efficiency, with a 37% improvement in ratio of Pao2 to fraction of inspired oxygen, compared with 28% in patients with normal weight (P < .05). Complication rates were low across all groups. CONCLUSIONS: Prone positioning is feasible and safe in patients with ARDS across all obesity classes. Patients with class III obesity showed the greatest improvements in oxygenation. Future prospective studies should further explore the long-term impact of prone positioning in patients with class III obesity to refine clinical guidelines and optimize care.

Humans↗

[Artifical respiration with patient in prone position].

The use of mechanical ventilation in prone position was proposed 20 years ago. Since then several investigations have been made trying to explain the mechanism whereby oxygenation is improved when the patient with ARDS is turned into the prone position. In supine position the lung perfusion is highest in the dorsal regions in normal healthy persons. However, when patients with ARDS are turned prone, the predominant dorsal perfusion is partly preserved, while at the same time the dorsal atelectases partly resolve, thereby improving the ventilation/perfusion ratio. Sixty-five percent of patients with early ARDS will achieve significant improvement in oxygenation in prone position. It is recommended that patients with early ARDS that remain hypoxic on mechanical ventilation with PEEP and inspiratory oxygen concentration above 60% be turned prone for 3-6 hours. If effective, the treatment can be repeated once or twice daily until regression of hypoxia. The possible effects of the prone position in other types of acute lung failure are so far not known.

Animals↗

[Marburg modular prone positioning system (MBS) for positioning therapy].

Despite the many benefits of prone positioning in critically ill patients with respiratory failure and ARDS in the ICU, its technical problems have not yet been adequately resolved. Different approaches with special beds for prone positioning do exist, but these devices are difficult to handle, often not available and involve high costs. With this in mind, we developed an easy handling prone positioning system (MBS) that requires no special beds and runs at low cost. The MBS is a cost-effective device, yielding many benefits for prone positioning in critically ill patients with severe athelectasis and ARDS.

Beds↗

Successful defibrillation in the prone position.

Early defibrillation provides the greatest chance of survival after ventricular fibrillation. Conventional cardiopulmonary resuscitation and defibrillation requires the patient to be in the supine position. Electrical treatment of arrhythmias such as atrial fibrillation by means of a defibrillator back paddle in patients receiving prone ventilation in intensive care has been described. We report a case in which electrical defibrillation was successfully performed in the prone position in a patient undergoing complex spinal surgery. We suggest that, if defibrillation were required in ventilated patients positioned prone, defibrillation should be attempted in the prone position, as turning the patient supine would consume valuable minutes and reduce the chances of successful defibrillation.

Adult↗

Regional ventilation-perfusion distribution is more uniform in the prone position.

The arterial blood PO(2) is increased in the prone position in animals and humans because of an improvement in ventilation (VA) and perfusion (Q) matching. However, the mechanism of improved VA/Q is unknown. This experiment measured regional VA/Q heterogeneity and the correlation between VA and Q in supine and prone positions in pigs. Eight ketamine-diazepam-anesthetized, mechanically ventilated pigs were studied in supine and prone positions in random order. Regional VA and Q were measured using fluorescent-labeled aerosols and radioactive-labeled microspheres, respectively. The lungs were dried at total lung capacity and cubed into 603-967 small ( approximately 1.7-cm(3)) pieces. In the prone position the homogeneity of the ventilation distribution increased (P = 0.030) and the correlation between VA and Q increased (correlation coefficient = 0.72 +/- 0.08 and 0.82 +/- 0.06 in supine and prone positions, respectively, P = 0.03). The homogeneity of the VA/Q distribution increased in the prone position (P = 0.028). We conclude that the improvement in VA/Q matching in the prone position is secondary to increased homogeneity of the VA distribution and increased correlation of regional VA and Q.

Animals↗

Recruitment maneuvers during prone positioning in patients with acute respiratory distress syndrome.

OBJECTIVE: To evaluate the interaction of recruitment maneuvers and prone positioning on gas exchange and venous admixture in patients with early extrapulmonary acute respiratory distress syndrome ventilated with high levels of positive end-expiratory pressure. We hypothesized that a sustained inflation performed after 6 hrs of prone positioning would induce sustained improvement in oxygenation (Pao2/Fio2) and venous admixture. DESIGN: Prospective, interventional study. SETTING: Tertiary care, postoperative intensive care unit. PATIENTS: Fifteen patients with early extrapulmonary acute respiratory distress syndrome. INTERVENTIONS: After 6 hrs of prone positioning, a sustained inflation was performed with 50 cm H2O maintained for 30 secs. Data were recorded in supine position, after 6 hrs of prone positioning, at 3, 30, and 180 mins following the sustained inflation. MEASUREMENTS AND MAIN RESULTS: A response to prone positioning was observed in nine of 15 patients leading to an improvement of Pao2/Fio2 (147 +/- 37 torr vs. 225 +/- 77 torr, p = .005) and venous admixture (35.4 +/- 8.3% vs. 28.9 +/- 9.8%, p = .001). Six patients did not respond to prone positioning. Following the sustained inflation, the responders to prone positioning showed a further increase of Pao2/Fio2 and decrease of venous admixture at 3 mins (Pao2/Fio2, 225 +/- 77 torr vs. 368 +/- 90 torr, p = .018; venous admixture, 28.9 +/- 9.8% vs. 18.9 +/- 6.7%, p = .05). In all six nonresponders to prone positioning, an improvement of Pao2/Fio2 and venous admixture occurred at 3 mins following the sustained inflation (128 +/- 18 torr vs. 277 +/- 59 torr, p = .03; venous admixture, 34.2 +/- 6.0% vs. 23.8 +/- 6.3%, p = .05). The beneficial effects of the sustained inflation remained significantly elevated over 3 hrs in responders and nonresponders to prone positioning. CONCLUSION: In patients with early extrapulmonary acute respiratory distress syndrome, a sustained inflation performed after 6 hrs of prone positioning induced further and sustained improvement of oxygenation and venous admixture in both responders and nonresponders to prone positioning.

Adult↗

Sitting prone position for the posterior surgical approach to the spine and posterior fossa.

The sitting prone position is compared with the standard laminectomy prone position and the sitting up position for posterior fossa surgery. We measured central venous pressure and airway pressure with the patient in different positions to determine the comparative efficacy of the sitting prone position. On a linear average, the central venous pressure increased by 6.83 cm H2O and the airway pressure increased by 3.16 cm H2O when the patient was changed from the supine to the standard prone position under general anesthesia; with a change from the standard prone position to the sitting prone position, the central venous pressure decreased by 10.45 cm H2O and the airway pressure decreased by 3.66 cm H2O. However, comparing the sitting prone position for posterior fossa surgery with the sitting up position, there was no statistically significant difference in central venous or airway pressure.

Airway Resistance↗