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The Venous Distension Reflex and Orthostatic Hypertension

The Venous Distension Reflex and Orthostatic Hypertension

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03496792
Acronym
OH
Enrollment
30
Registered
2018-04-12
Start date
2020-03-10
Completion date
2027-11-01
Last updated
2026-07-09

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Blood Pressure

Keywords

venous distension reflex

Brief summary

This research is being done to find out whether distension of veins in legs will cause a rise in blood pressure (orthostatic hypertension).

Detailed description

In humans, two-thirds of the blood volume is contained within the venous vasculature. Because of this, changes in peripheral blood volume and alterations in the mechanical properties of peripheral veins can greatly impact cardiac filling, cardiac output and blood pressure (BP) responses to physiologic stress. Work from our laboratory over the past seven years has shown that local upper limb venous distension via volume infusion into an occluded arm (i.e. volume infusion model) or applying negative pressure to an occluded leg (limb suction experimental model) leads to an acute and dramatic increase in Muscle Sympathetic Nerve Activity (MSNA; an index of sympathetic activity directed to skeletal muscle) and BP in humans. Since this venous distension reflex (VDR) differs physiologically from the other reflex systems, and since this system may play a critical role in orthostatic BP control, we believe that it is a significant area of study. The investigators speculate that VDR from lower limbs contributes to the autonomic adjustment to orthostatic stress. To examine the VDR in lower limbs, an arterial occlusion cuff on the mid-thigh was inflated (250 mm mercury; Hg). Then, limb suction (-100 mmHg) was applied \ 10-15 cm below the level of arterial occlusion (i.e. below the knee). MSNA was measured in the opposite control limb. When suction was applied below the level of arterial occlusion (i.e. occlusion + suction), both MSNA and mean arterial BP (MAP) increased. In control trials, arterial occlusion without limb suction (i.e. occlusion alone) did not increase MSNA. Plethysmographic data showed calf circumference increased without detectable arterial pulsations. Pilot data suggest that the fluid shifts from the occluded but non-depressurized zone of the limb (i.e. between the cuff and knee) into the occluded and depressurized region of the limb within the tank. Thus, the results suggest that the VDR was engaged with this limb suction experimental model. These experimental models "selectively" alter peripheral venous volume as the investigators measure sympathetic reflex responses. This approach is innovative and allows examination of a previously overlooked autonomic reflex in conscious humans. If these studies confirm the hypotheses, the obtained data would challenge the present teaching regarding how the sympathetic nervous system is engaged in humans during postural stress. In \ 2.5-10% of the population, BP rises as the person stands. This has been termed orthostatic hypertension, and is different from the "normal" sustained BP response when a person stands. The incidence of orthostatic hypertension may increase with aging (\ 2.4% for 45-64 years old and \ 8.7% for \>70 years old). Orthostatic hypertension is a risk factor for the development of stroke, left ventricular hypertrophy, and chronic kidney disease. It is unclear why BP rises with standing in some individuals. Some investigators have speculated that orthostatic hypertension is due to exaggerated baroreceptor withdrawal with standing. Others have speculated that this response is due to an increase in sympathetic output. It has been noted that some patients with orthostatic hypertension have increased venous pooling in their lower legs. Based these data, the investigators postulate that heightened engagement of the VDR reflexly increases MSNA and also serves to reset the aortic baroreflex. In this protocol, the investigators will determine if the MSNA response to leg suction is heightened in the individuals with elevated standing BP, and examine if the baroreflex is altered in these individuals. The investigators will also examine if external pressure on lower limbs, which limits the venous pooling in the lower limbs, will attenuate the increase in BP during standing in those individuals.

Interventions

OTHERTilt + external pressure

In Visit 1, the anti-shock trousers will be inflated to 20, 40, or 60 mmHg. BP will be measured 3 times from the brachial artery. Then the table will be tilted head up to a maximum of 70o for up to 10 min, while BP will be measured from the brachial artery at 1 min intervals. The tilt table is returned to 0o and the resting supine baseline BP will be collected. Then, the anti-shock trousers will be inflated to a different pressure (20, 40, or 60 mmHg) and the head up tilt will be repeated. Repetitions at the various pressures will be performed in a random order with suitable resting intervals in between the tilting bouts.

OTHERTilt + no external pressure.

In Visit 1, the anti-shock trousers will NOT be inflated. Auscultatory BP will be measured 3 times from the brachial artery. Thereafter, the table will be tilted head up to a maximum of 70o for up to 10 min, while BP will be measured from the brachial artery at 1 min intervals.

OTHERLimb occlusion + negative pressure

In Visit 2, a cuff will be placed on the thigh of a leg that is sealed in an airtight pressure tank. After the cuff is inflated to 250 mmHg, the pressure in the tank will be reduced to -100mmHg for 2 minutes. The application of negative pressure creates a suction effect on the leg, and leads to an overall increase in pressure gradient across the blood vessel wall and induces vascular distension.

OTHERLimb occlusion + no negative pressure

In Visit 2, a cuff will be placed on the thigh of a leg that is sealed in an airtight pressure tank. The cuff is inflated to 250 mmHg for 2 minutes, but the pressure in the tank is not changed.

Sponsors

Milton S. Hershey Medical Center
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
SINGLE (Outcomes Assessor)

Masking description

Outcomes assessor will not know trial intervention prior to data analysis.

Intervention model description

The investigators will examine if individuals with elevated standing blood pressure have a heightened VDR. Two groups of subjects, "BP elevated with standing" group and "BP maintained with standing" group will be examined for this experiment. The tilt + external pressure and tilt + no external pressure, or the limb occlusion + negative pressure and limb occlusion + no negative pressure trials will be performed in random order using a Latin Square design. Because the nature of the interventions, neither the subjects nor the investigators can be blinded to the interventions

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Are capable of giving informed consent * Are of any race or ethnicity * Are fluent in written and spoken English * Whose history and physical exam did not uncover any

Exclusion criteria

* Are 18 years of age For subjects with elevated standing BP * Systolic BP (SBP) during standing is at least 10 mmHg \> the supine SBP * Patients with a diagnosis of stage I hypertension without other chronic diseases may be INCLUDED For normal subjects without elevated standing BP * The change in SBP by standing is within ± 5 mmHg from the supine SBP * Matched gender, similar age and BMI (within 10%) to participants with elevated standing BP * Free of acute or chronic medical conditions

Design outcomes

Primary

MeasureTime frameDescription
Muscle Sympathetic Nerve Activity (MSNA) in bursts/min or arbitrary units/minRecorded continuously during Visit 2, the 4-5 hr Negative Pressure study visit.MSNA provides direct recordings of sympathetic nerve activity directed to blood vessels in skeletal muscle.

Secondary

MeasureTime frameDescription
Blood pressure in mmHgRecorded continuously during the 4-5 hr visit.Cuffs placed on a finger and arm will monitor blood pressure.
Heart rate in beats per minuteRecorded continuously during the 4-5 hr visit.Electrocardiogram (ECG) patches attached to a Cardiocap will monitor heart rate.

Countries

United States

Contacts

CONTACTJian Cui, PhD
jcui@pennstatehealth.psu.edu717-531-1799
CONTACTKris Gray
kgray1@pennstatehealth.psu.edu717-531-4589
PRINCIPAL_INVESTIGATORJian Cui

Penn State College of Medicine

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jul 10, 2026