The Value of Super-resolution Ultrasound Imaging for Peripheral Artery Disease
For patients and families
In plain language
An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.
- What is being studied
- This is an observational study: the protocol does not assign a study treatment.
- Who it may be relevant to
- Registry conditions: Peripheral Artery Disease. Basic parameters: 18 years — 100 years · All.
- What needs checking
- Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
- Where it takes place
- China
- Next step
- Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
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Official title
The Predictive Value of Super-resolution Ultrasound Microvascular Imaging for the Prognosis of Peripheral Artery Disease
Overview
Peripheral artery disease (PAD) is a chronic atherosclerotic disorder characterized by stenosis or occlusion of the extracranial arteries distal to the aortic arch, most commonly affecting the lower extremities. This vascular compromise leads to tissue hypoperfusion, resulting in a spectrum of clinical manifestations ranging from asymptomatic disease to intermittent claudication, critical limb ischemia, and limb loss. The microvascular system comprises arterioles, capillaries, and post-capillary venules with diameters less than or equal to 100 micrometers. Emerging evidence underscores that microvascular dysfunction (MVD)-defined as structural and functional impairment of this microcirculatory network-plays a pivotal pathophysiological role in PAD progression, contributing to impaired perfusion reserve, endothelial dysfunction, inflammation, and tissue fibrosis, independent of macrovascular stenosis severity. Super-resolution ultrasound microvascular imaging (SRUMI) is an advanced contrast-enhanced ultrasound technique that leverages the nonlinear acoustic signatures of intravascular microbubble contrast agents (e.g., SonoVue) under ultra-low mechanical index (MI) pulsing schemes. Implemented on the Verasonics Vantage 256 research platform (Verasonics, Inc., Kirkland, WA, USA), SRUMI achieves in vivo visualization of microvascular architecture at sub-diffraction resolution (approximately 10-20 micrometers), surpassing conventional Doppler and contrast-enhanced ultrasound. Key advantages include absence of ionizing radiation, negligible thermal and mechanical bioeffects, real-time capability, portability, and cost-effectiveness. As such, SRUMI represents a promising noninvasive tool to probe microvascular integrity in PAD, enabling mechanistic investigation of MVD's contribution to disease initiation, progression, and therapeutic response. This study aims to evaluate the diagnostic and prognostic utility of SRUMI for assessing microvascular dysfunction in patients with PAD. The investigators prospectively enrolled patients diagnosed with PAD and admitted to the Department of Interventional Vascular Surgery at Peking University First Hospital. Primary objectives include: Characterizing lower-limb microvascular density, morphology, and perfusion patterns via SRUMI across PAD subgroups stratified by comorbidities-including diabetes mellitus, current or former smoking, hypertension, and chronic kidney disease; Assessing the concordance between SRUMI-derived microvascular parameters and established clinical and paraclinical markers, including symptom severity (Rutherford classification), ankle-brachial index (ABI), urinary albumin-to-creatinine ratio (UACR), and retinal microvascular findings on fundoscopy; Determining the sensitivity, specificity, and predictive value of baseline SRUMI metrics for major adverse limb events (MALE) and cardiovascular outcomes during longitudinal follow-up; and Comparing the incremental prognostic value of SRUMI against conventional modalities-including ABI, duplex ultrasonography, and clinical risk scores-using multivariable Cox regression and time-dependent receiver operating characteristic (ROC) analyses. Collectively, this research seeks to establish SRUMI as a quantitative, translatable biomarker of microvascular health in PAD, thereby advancing precision phenotyping, risk stratification, and monitoring of therapeutic efficacy in this high-morbidity population.
Primary outcome measures
- microvascular density [Time frame: Baseline; Perioperative(before endovascular surgery)]
Eligibility criteria
\*Inclusion Criteria:\*
- Adults aged ≥18 years and ≤100 years;
- Diagnosis of peripheral artery disease (PAD) confirmed by comprehensive clinical assessment-including characteristic symptoms (e.g., intermittent claudication, rest pain), physical findings (e.g., diminished or absent distal pulses, bruits), ankle-brachial index (ABI) < 0.9, and corroborating vascular imaging (e.g., duplex ultrasonography, CTA, or MRA);
- Alternatively, healthy adults without PAD (i.e., ABI ≥ 0.9, absence of suggestive symptoms or signs, and no history of atherosclerotic cardiovascular disease) who meet all other eligibility requirements;
- Willing and able to provide written informed consent.
\*Exclusion Criteria:\*
- Inability to complete study procedures due to:
- Severe involuntary movement disorders (e.g., advanced Parkinson's disease or cerebellar ataxia) interfering with image acquisition;
- Contraindication to contrast-enhanced ultrasound (e.g., documented hypersensitivity to sulfur hexafluoride microbubble contrast agent \[SonoVue®\]);
- Active lower-limb infection (e.g., diabetic foot infection with systemic signs or osteomyelitis), which precludes safe or interpretable data collection;
- Cognitive impairment or legal incapacity precluding autonomous informed consent;
- Refusal-by the participant or their legally authorized representative-to provide informed consent.
Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.
Healthy volunteers: Yes
Study design
- Observational model
- Cohort
Study locations
China · 1 center
- Peking University First Hospital — Beijing
Identifiers
NCT: NCT07374601 · 2025R0004