Completed

Goal Directed Therapy for Patients Undergoing Major Vascular Surgery

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What is being tested

Fluid titrated with the use of arterial pulse contour cardiac output monitor if SVV >13%

+ Fluid titrated at the discretion of the attending anesthesiologist

Other
Who is being recruted

From 18 to 85 Years
+7 Eligibility Criteria
See all eligibility criteria
How is the trial designed

Treatment Study

Phase 1
Interventional
Study Start: August 2010
See protocol details

Summary

Principal SponsorUniversity of Manitoba
Last updated: November 11, 2013
Sourced from a government-validated database.Claim as a partner

Study start date: August 1, 2010

Actual date on which the first participant was enrolled.

The management and delivery of intravenous fluids during surgical operations is one of the important duties for anesthesiologists. There is a growing body of evidence that fluid overload in surgical patients is associated with decreased wound healing, slower return of gut function, anastomotic breakdown, pulmonary edema and post-operative visual changes. In the United States, abdominal aortic aneurysms are diagnosed in 190,000 people per year, and over 50,000 of those have the aneurysm repaired5. Recent advances in endovascular techniques have allowed many of these patients to forego an open repair. However, because of technical difficulties, many patients still require an open repair. The most common cause of morbidity in these patients is related to post-operative gastrointestinal tract dysfunction. This usually involves an adynamic ileus that the patients develop on the fourth post-operative day. This delays their tolerance of enteral foods and lengthens their hospital stay and hospital costs. It also has the potential of causing more morbidity in that patients may require total parenteral nutrition while awaiting return of bowel function. There are several causes of this gastrointestinal morbidity including direct mechanical trauma to the bowel during surgery and activation of the inflammatory cascade. These factors are unfortunately not modifiable by the team caring for the patient. One factor that is modifiable is the amount and type of intravenous fluids administered to the patient. Typically, anesthesiologists decide on the amount of fluid to administer to patients based on parameters such as heart rate, blood pressure and urine output. These are unfortunately unreliable in determining a patient's volume status, as these parameters can be within the normal range, and a patient might still have inadequate perfusion to their vital organs. Further, clinician's reliance on blood pressure as a target for fluid administration ignores the fact that organs require blood flow as well as pressure to function optimally. Until recently, the only way to measure blood flow was with the insertion of a pulmonary artery catheter. Based on several studies showing a lack of benefit of this invasive procedure, it has fallen out of favor in the non-cardiac arena. Newer monitors of cardiac output that can be attached to a patients arterial catheter (commonly placed for major surgical procedures) offer an alternative method for clinicians to measure cardiac output. One of these monitors, the FloTrac system (Edwards Life Sciences, Irvine CA), utilizes the arterial pulse contour to calculate cardiac output (CO) and the stroke volume variation (SVV) as a monitor of volume status. In patients who are mechanically ventilated there is a phasic variation in CO and stroke volume based on the ventilatory cycle. Large changes in stroke volume during the ventilatory cycle may indicate hypovolemia in patients. The administration of intravenous fluid to these patients results in a decrease in the SVV. Thus, the SVV can be use a volume monitor and used to titrate intravenous therapy. There have been several trials (mostly in colonic resection surgery) that have looked at such goal directed therapy with this and similar devices and have found a decrease in patient morbidity and length of stay. All of these studies have in common the use of a minimally invasive CO monitor and a reliance on colloids as the predominant fluid utilized during the case. The utilization of SVV to determine volume status is a novel approach to fluid management in surgical patients. As stated above, clinicians' historical reliance on pressures (such as as blood pressure and central venous pressure) to estimate intravascular volume status is based on an incomplete understanding on the factors that govern organ blood flow. To this end, the investigators will also assess several parameters during this study in an attempt to ascertain which is the best at predicting fluid responsiveness. Fluid responsiveness is defined as the ability to predict if a given patient will increase their CO to a fluid bolus. To date this has not been looked at in a systematic fashion. There is also evidence to suggest that such goal directed therapy reduces the degree of inflammation that invariably occurs after operations of this magnitude. It is hypothesized that by resuscitating the endothelium more effectively with intravenous fluids that remain in the intravascular space longer, there is less endothelial damage and thus less inflammation.

Principal SponsorUniversity of Manitoba
Last updated: November 11, 2013
Sourced from a government-validated database.Claim as a partner

Protocol

This section provides details of the study plan, including how the study is designed and what the study is measuring.
Design Details

40 patients to be enrolled

Total number of participants that the clinical trial aims to recruit.

Treatment Study

These studies test new ways to treat a disease, condition, or health issue. The goal is to see if a new drug, therapy, or approach works better or has fewer side effects than existing options.



Eligibility

Researchers look for people who fit a certain description, called eligibility criteria: person's general health condition or prior treatments.
Criteria

Any sex

Biological sex of participants that are eligible to enroll.

From 18 to 85 Years

Range of ages for which participants are eligible to join.

Healthy volunteers not allowed

If individuals who are healthy and do not have the condition being studied can participate.

Criteria

2 inclusion criteria required to participate
American Society of Anesthesiologists physical class I-III patients over the age of 18 years

Presenting for elective open repair of abdominal aortic aneurysms

5 exclusion criteria prevent from participating
Active congestive heart failure

Known or suspected valvular aortic insufficiency

Pre-existing bowel dysfunction

Renal Dysfunction (serum creatinine > 150 μmol/l)

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Study Plan

Find out more about all the medication administered in this study, their detailed description and what they involve.
Treatment Groups
Study Objectives

2 intervention groups are designated in this study

This study does not include a placebo group 

Treatment Groups

Group I

Experimental
Fluid titrated with the use of arterial pulse contour cardiac output monitor if SVV >13%

Group II

Active Comparator
Fluid titrated at the discretion of the attending anesthesiologist.

Study Objectives

Primary Objectives

Secondary Objectives

Study Centers

These are the hospitals, clinics, or research facilities where the trial is being conducted. You can find the location closest to you and its status.

This study has 1 location

University of Manitoba

Winnipeg, CanadaOpen University of Manitoba in Google Maps
CompletedOne Study Center