Nutrition support and treatment of motility disorders in critically ill patients - Results of a survey on German intensive care units

2008 ◽  
Vol 25 (1) ◽  
pp. 58-66 ◽  
Author(s):  
K. D. Röhm ◽  
T. Schöllhorn ◽  
J. Boldt ◽  
M. Wolf ◽  
M. Papsdorf ◽  
...  
2020 ◽  
Vol 13 (9) ◽  
pp. 550-556
Author(s):  
Minal Karavadra ◽  
Ricky Bell

The intensive care department may seem a long way from the GP's consulting room, but every year tens of thousands of critically ill patients are admitted to intensive care units (ICUs) across the UK. Patients are often left with long term sequelae that may require GP input. Physical weakness, psychiatric disturbance and cognitive decline are not uncommon after an illness that requires a stay in an ICU. These hinder a patient’s return to their previous level of function and impact caregivers after discharge. This article aims to highlight the chronic symptoms patients can acquire during ICU admission that may come to the attention of GPs for their advice and treatment.


2020 ◽  
Vol 10 (4) ◽  
pp. 72
Author(s):  
Mohamed E. Abdelgawad ◽  
Nadia T. Ahmed ◽  
Ahmed M. Elmenshawy

Background and objective: Electrolyte disturbances remain a common lifesaving issue in the intensive care units. They are associated with increased morbidity and mortality. They are mostly resulted secondary to critical illness itself or associated treatment modalities. Therefore, electrolytes repletion should be done effectively and timely. This could be ensured using nurse driven protocols rather than traditional methods of repletion. These protocols are nurse initiated and collaboratively developed. They have been shown to improve patient care outcomes through the provision of high quality care. They are increasingly being used in the critical care setting. Objective: Determine the effect of applying nurses driven electrolytes repletion protocol on electrolytes disturbance control among critically ill patients.Methods: Quasi experimental research design was used. Sixty two critically ill patients with electrolytes loss were enrolled in the study at Alexandria Main University Hospital intensive care units, Egypt. All episodes of electrolyte loss were evaluated. Repletion of electrolyte loss was done according to unit routine for the control group and nurses driven electrolytes repletion protocol for the study group. Episodes of electrolyte disturbances, adverse events and timing of repletion were evaluated.Results: Neurological disorders represent the most encountered diagnosis. The most common cause of electrolyte loss in was the use of diuretics. Furthermore, there was a highly statistical difference between the two groups as regard electrolytes levels, effectiveness and timing of replacement.Conclusions: Application of nurses driven electrolyte repletion protocol resulted in improvements in the effectiveness and timeliness of electrolyte replacement.


2009 ◽  
Vol 16 (10) ◽  
pp. 1527-1528 ◽  
Author(s):  
Rafael Zaragoza ◽  
Javier Pemán ◽  
Guillermo Quindós ◽  
Jose R. Iruretagoyena ◽  
María S. Cuétara ◽  
...  

ABSTRACT The influence of kinetic patterns of Candida albicans germ tube antibodies (CAGTA) on mortality was analyzed in six intensive care units. Statistically significant lower mortality rates were found in patients with patterns of increasing CAGTA titers who had been treated with antifungal agents. Thus, antifungal treatment should be considered when CAGTA titers are increasing in critically ill patients.


2020 ◽  
Vol 49 (8) ◽  
pp. 573-581
Author(s):  
Charles CH Lew ◽  
Chengsi Ong ◽  
Amartya Mukhopadhyay ◽  
Andrea Marshall ◽  
Yaseen M Arabi

Introduction: Number of recently published studies on nutritional support in the intensive care unit (ICU) have resulted in a paradigm shift of clinical practices. This review summarises the latest evidence in four main topics in the ICU, namely: (1) function of validated nutrition screening/assessment tools, (2) types and validity of body composition measurements, (3) optimal energy and protein goals, and (4) delivery methods. Methods: Recent studies that investigated the above aims were outlined and discussed. In addition, recent guidelines were also compared to highlight the similarities and differences in their approach to the nutrition support of critically ill patients. Results: Regardless of nutritional status and body composition, all patients with >48 hours of ICU stay are at nutrition risk and should receive individualised nutrition support. Although a recent trial did not demonstrate an advantage of indirect calorimetry over predictive equations, it was recommended that indirect calorimetry be used to set energy targets with better accuracy. Initiation of enteral nutrition (EN) within 24–48 hours was shown to be associated with improved clinical outcomes. The energy and protein goals should be achieved gradually over the first week of ICU stay. This practice should be protocolised and regularly audited as critically ill patients receive only part of their energy and protein goals. Conclusions: Metabolic demands of critically ill patients can be variable and nutrition support should be tailored to each patient. Given that many nutrition studies are on-going, we anticipate improvements in the individualisation of nutrition support in the near future. Key words: Critical care, Critical illness, Intensive care, Nutrition, Nutritional intake, Nutrition support


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