Incidence and pathophysiologic hemodynamics of postoperative orthostatic intolerance and orthostatic hypotension in patients receiving antihypertensives
Early postoperative mobilization is essential for rapid functional recovery after surgery and it is considered a cornerstone in the so-called fast track multimodal perioperative approach, which includes early ambulation, oral nutrition, multimodal opioid-sparing analgesia and optimized fluid therapy. This strategy has improved patient outcome after surgery and reduced hospital length of stay. Immobilization after surgery is associated with increased risk of complications including venous thromboembolism (deep venous thrombosis, pulmonary embolism), muscle wasting, pneumonia and atelectasis, thereby impending convalescence. However, early postoperative mobilization can be delayed due to failed orthostatic cardiovascular regulation, resulting in postoperative orthostatic hypotension (OH), defined as a decrease in systolic blood pressure \> 20 mmHg or diastolic blood pressure \> 10 mmHg or postoperative orthostatic intolerance (OI), characterized by dizziness, nausea, vomiting, visual disturbances or syncope. Previous studies investigating the incidence and pathophysiology of postoperative OI and OH included mixed patient populations. Hitherto no studies have been performed looking into the incidence and pathophysiologic hemodynamics of postoperative OI and OH specifically in patients receiving angiotensin-converting enzyme inhibitors (ACEIs) and angiotensin II receptor blockers (ARBs), antihypertensive agents with potential effects on cardiovascular compensatory functions. The current study aims therefore to estimate the incidence and gain knowledge on pathophysiological hemodynamics of postoperative OI and OH in patients receiving ACEIs and ARBs.
Study Type
OBSERVATIONAL
Enrollment
24
A standardized mobilization procedure was performed preoperatively \~ 1h before surgery and was repeated 6h and 24h after surgery. The mobilization procedure included patient supine rest (5 minutes), followed by 45° passive leg raise (PLR) (3 minutes), supine rest (5 minutes), sitting on the edge of the bed with feet resting on the floor (3 minutes) followed by standing using a walker while the patient was encouraged verbally to stand on toes and shift body weight from one leg to the other (3 minutes) and finally rest in supine position (5 minutes). The procedure was terminated prematurely in any position if patients experienced unbearable symptoms of OI or upon a decrease of systolic arterial pressure (SAP) \> 30 mmHg.
Hvidovre University Hospital
Copenhagen, Denmark
RECRUITINGIncidence of orthostatic intolerance
Symptoms of orthostatic intolerance: dizziness, nausea, vomiting, blurry vision or syncope during mobilization
Time frame: 6 hours postoperatively
Incidence of orthostatic hypotension
Orthostatic hypotension is defined as a fall in systolic pressure \> 20 mmHg and/or diastolic pressure \> 10 mmHg during mobilization
Time frame: 6 hours postoperatively
Changes in systolic arterial pressure (SAP) during mobilization
Measured in mmHg by non-invasive Lithium Dilution Cardiac Output (LiDCO) measurement
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in diastolic arterial pressure (DAP) during mobilization
Measured in mmHg by non-invasive LiDCO
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in mean arterial pressure (MAP) during mobilization
Measured in mmHg by non-invasive LiDCO
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in systemic vascular resistance (SVR) during mobilization
Measured in dynes s cm-5 by non-invasive LiDCO
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in cardiac output (CO) during mobilization
Measured in L/min by non-invasive LiDCO
Time frame: Preoperatively, 6 and 24 hours postoperatively
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Changes in stroke volume (SV) during mobilization
Measured in mL by non-invasive LiDCO
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in heart rate (HR) during mobilization
Measured in beats min-1 by non-invasive LiDCO
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in pulse pressure (PP) during mobilization
Measured in mmHg
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in cerebral perfusion (ScO2) during mobilization
Measured in % by Root Masimo
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in muscular perfusion (SmO2) during mobilization
Measured in % by Root Masimo
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in peripheral perfusion index (PPI) during mobilization
Measured in % by Root Masimo
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in total blood volume (TBV)
Measured in mL by Carbon Monoxide - rebreathing technique
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in red blood cell volume (RBCV)
Measured in mL by Carbon Monoxide - rebreathing technique
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in plasma volume (PV)
Measured in mL by Carbon Monoxide - rebreathing technique
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in hematocrit
Measured in %
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in total mass of hemoglobin
Measured in grams
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in hemoglobin concentration
Measured in gr/L
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in C-Reactive Protein
Measured in mg/L
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in heart rate variability (HRV) during Valsalva manoeuvre
Measured in ms
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in baroreflex sensitivity - vagal (BRSv) during Valsalva manoeuvre
Measured in ms
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Valsalva ratio (VR) during Valsalva manoeuvre
Measured as index
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Systolic Sympathetic Index 1 (SSI1) during Valsalva manoeuvre
Measured as index
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Systolic Sympathetic Index 2 (SSI2) during Valsalva manoeuvre
Measured as index
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Systolic Sympathetic Index 3 (SSI3) during Valsalva manoeuvre
Measured as index
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Diastolic Sympathetic Index 1 (DSI1) during Valsalva manoeuvre
Measured as index
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Diastolic Sympathetic Index 2 (DSI2) during Valsalva manoeuvre
Measured as index
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Diastolic Sympathetic Index 3 (DSI3) during Valsalva manoeuvre
Measured as index
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Pressure Recovery Time (PRT) during Valsalva manoeuvre
Measured in seconds
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in Baroreceptor Reflex Sensitivity-adrenergic (BRS-a) during Valsalva manoeuvre
Measured in seconds
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in systolic latency during Valsalva manoeuvre
Measured in seconds
Time frame: Preoperatively, 6 and 24 hours postoperatively
Changes in diastolic latency during Valsalva manoeuvre
Measured in seconds
Time frame: Preoperatively, 6 and 24 hours postoperatively