The Effects of Prolonged Head-Down Tilt Lithotomy Position on Lower Limb Haemodynamics in Adults Undergoing Minimally Invasive Abdominopelvic Surgery: An Intraoperative Observational Study
Trial Snapshot
- Phase
- Not Applicable
- Status
- Completed
- Sponsor
- University of Portsmouth
- Enrollment
- 26
- Locations
- 2
- Primary Endpoint
- Cutaneous blood flow
Study Overview
Brief Summary
During certain bowel surgeries for cancer (colorectal surgery), individuals frequently have to be placed in a head-down position to enable surgeons have optimal access to the cancer site. This position usually also involves bending the hips and knees while supporting the legs in stirrups. However, lying in this position for long periods of time can lower the flow of blood to the legs, which can potentially cause injury. This rare but severe consequence is called Well-Leg Compartment Syndrome (WLCS). If WLCS is not diagnosed quickly, it can lead to other difficult complications and a significant delay in recovery. Unfortunately, because the individual is under anaesthesia, diagnosis is delayed in many cases. There is very little information in the medical literature about how this damage to the legs progresses over the course of the surgery. To better understand how WLCS, how well blood vessels work during surgery will be assessed. The flow of blood and oxygen in the calf muscle will be assessed in 25 individuals placed in a head-down position during colorectal surgery. Likewise, blood samples will be obtained in order to measure the biological markers that may contribute to the development of WLCS.
Detailed Description
The development of lower limb compartment syndrome in the absence of trauma (known as well-leg compartment syndrome, WLCS) is a severe complication reported during prolonged pelvic surgery. WLCS is characterised by muscular ischaemia and secondary necrosis from the increase in hydrostatic pressure in a closed fascial compartment.
The aetiology of WLCS appears to be primarily related to ischaemia of the lower limbs after a prolonged period in the head-down tilt lithotomy (HDTL) position, which is commonly used to access the pelvis and perineum during urological, colorectal, and gynaecological surgery. Elevation of the lower limbs above the heart results in a ~2 mmHg drop in mean arterial pressure at the mid-calf for every 2.5 cm that the limbs are raised. These hemodynamic changes are accompanied by an increase in compartment pressures associated with limb elevation and are further exacerbated by a steep (>15°) head-down tilt. The outcome of these changes ultimately leads to the development of significant and (often unrecognised) intraoperative ischemia in the lower limbs.
Prolonged reductions in lower limb perfusion during HDTL can cause the development of localised tissue oedema, leading to marked intracompartmental hypertension, which is further exacerbated once the limbs are lowered and reperfusion of ischemic muscle occurs. This is a consequence known as ischaemic-reperfusion injury (IRI), a phenomenon where reperfusion per se may result in a local and systemic inflammatory response that may augment tissue injury in excess of that produced by ischaemia alone.
Microvascular injury is considered one of the major determinants of IRI, particularly due to increased permeability of capillaries and arterioles that lead to an increase in diffusion and fluid filtration across the tissues. Subsequently, activated endothelial cells produce more reactive oxygen species and less nitric oxide, and this imbalance results in a corresponding inflammatory response and increased oxidative stress, which if sufficiently severe lead to further lower limb muscle and nerve injury.
The incidence of WLCS is unpredictable and as the individual is anaesthetised, the diagnosis is delayed in many cases, so the residual motor-sensory deficit may be severe, even after fasciotomy. Although there are many published case reports of this condition, it is likely that many cases of WLCS go unreported, and some may be mild and escape clinical detection. However, in cases that have been reported, the incidence of permanent disability after the development of WLCS ranges from ≈30% to ≈100%.
Study Design
- Study Type
- Observational
- Observational Model
- Case Only
- Time Perspective
- Cross Sectional
Eligibility Criteria
- Ages
- 18 Years to — (Adult, Older Adult)
- Sex
- All
- Accepts Healthy Volunteers
- No
Inclusion Criteria
- •Adults scheduled to undergo colorectal surgery in the HDTL position
Exclusion Criteria
- •History of myocardial infarction or cerebro-vascular events in the last 12 months
- •Previous revascularisation procedure in their lower limbs
- •BMI > 40 kg/m2
- •Inability to give informed consent
- •Other serious medical conditions, which in the opinion of study investigators, would interfere with safety or data interpretation
Arms & Interventions
Colorectal surgery
Individuals scheduled for colorectal surgery in the HDTL position
Intervention: NIRS monitoring (Device)
Colorectal surgery
Individuals scheduled for colorectal surgery in the HDTL position
Intervention: Laser Doppler flowmetry (Device)
Colorectal surgery
Individuals scheduled for colorectal surgery in the HDTL position
Intervention: Inflammatory and Oxidative stress biomarkers (Other)
Outcomes
Primary Outcomes
Cutaneous blood flow
Time Frame: baseline, during the surgery
Change over time in cutaneous blood flow in the legs relative to a vascular occlusion test (VOT) during surgery in the HDTL position.
Secondary Outcomes
- Muscle tissue oxygenation(baseline, during the surgery)
- Plasma interleukin-6 (IL-6) concentration(baseline, during the surgery)
- Plasma Superoxide Dismutase (SOD) concentration(baseline, during the surgery)
- Plasma nitrate concentration(baseline, during the surgery)
- Plasma nitrite concentration(baseline, during the surgery)
- Mean arterial pressure (MAP)(baseline, during the surgery)
- Plasma Tumour Necrosis Factor Alpha (TNF-α) concentration(baseline, during the surgery)
- Plasma Protein Carbonyl concentration(baseline, during the surgery)
- Skin temperature(baseline, during the surgery)
- Brain tissue oxygenation(continuous measurement during the surgery)
Investigators
Maria Perissiou
Senior Lecturer
University of Portsmouth
