Hemostasis of Arterial Punctures

2

Review clinical trials related to Hemostasis of Arterial Punctures. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Not yet recruiting

Flow Dynamics During Simulated Hemostasis at the Proximal and Distal Radial Arteries

Transradial access (TRA) has been widely adopted for coronary angiography and percutaneous coronary intervention, as it has been shown to significantly reduce bleeding complications, vascular complications, and mortality compared with transfemoral access (TFA). Based on this evidence, recent international guidelines recommend TRA as the preferred access strategy. Radial artery occlusion (RAO), a potential complication following TRA, is often clinically silent and therefore underestimated. However, RAO has important clinical implications, particularly in patients who may require repeated coronary procedures, those in whom the radial artery may be used as a conduit for coronary artery bypass grafting, or patients with chronic kidney disease requiring arteriovenous fistula formation. Therefore, maintaining radial artery patency after the procedure is of considerable clinical importance. Distal radial access (DRA), which utilizes the radial artery at the anatomical snuffbox, is a relatively recent approach. Multiple studies and meta-analyses have demonstrated that DRA provides comparable procedural success rates to TRA while significantly reducing bleeding complications and the incidence of RAO. Notably, despite the generally accepted association between smaller vessel diameter and higher risk of occlusion, DRA paradoxically shows a lower incidence of RAO. The underlying mechanism for this observation remains incompletely understood. Sgueglia et al. evaluated peak systolic velocity using Doppler ultrasonography under conditions of arterial compression and reported that antegrade blood flow was better preserved during distal radial artery compression compared with proximal radial artery compression. This finding suggests a potential mechanistic explanation for the lower incidence of RAO observed with DRA. However, there is a paucity of studies that systematically evaluate hemodynamic changes under simulated real-world hemostatic conditions at both proximal and distal radial arteries. Therefore, the aim of this study is to quantitatively assess hemodynamic changes induced by simulated occlusive hemostasis at the proximal and distal radial arteries using Doppler ultrasonography, and to elucidate the mechanisms underlying the lower incidence of RAO observed with DRA.

Participants needed: 220
Trial details
Biological sex: AllType: ObservationalSponsor: Wonju Severance Christian HospitalUpdated: Jul 6, 2026Locations: 1
Eligibility criteria

Not listed

Status: Not yet recruiting

Clinical Use Study of SAPH Device for Patent Hemostasis After a Transradial Procedure

This is a prospective, multicenter study intended to provide supportive clinical information on the use of the SAPH device to achieve radial artery patent hemostasis after a transradial procedure.

Participants needed: 50
Trial details
Age: 21+Biological sex: AllType: InterventionalSponsor: Transradial Technologies, LLCUpdated: Jul 15, 2025
Eligibility criteria

Patient is 21 years or older. [+4]

Patient had a prior ipsilateral TRA procedure [+10]