Renal Calculi, Ureteral Calculi
Conditions
Brief summary
Burst Wave Lithotripsy (BWL) is a novel method of urinary stone fragmentation that uses multi-cycle bursts of low amplitude ultrasound to induce stone fracture. This is in contrast to traditional extracorporeal shock wave lithotripsy (SWL), which employs a brief single compression/tensile cycle of high amplitude (shock) waves to achieve stone fracture. This is a single-arm feasibility study to test the ability of BWL to comminute (fragment) stones in humans.
Detailed description
This is a two-center, single-arm, feasibility study. The two centers are located within the US and include: University of Washington (UW) School of Medicine and Indiana University (IU) Health Urology Clinic. The investigative study will be performed in the operating room prior to a standard-of-care (SoC) ureteroscopic (URS) laser lithotripsy procedure. The subject will already be under anesthesia. Stones will be limited to ≤ 12 mm. The study has one (treatment) arm and is approved to enroll up to 40 subjects (with the intent to treat 20 subjects). All subjects will be treated with the same output parameters for up to a maximum of 10 minutes per stone. The output parameters are nominally defined as: * 350 kil0Hertz (kHz) acoustic frequency * 7 MegaPascals (MPa) peak negative pressure * 20 cycle pulse duration * 17 Hz pulse repetition frequency A maximum of 3 stones can be treated per subject. Safety will be monitored by visual observation of the tissue with an ureteroscopic camera, the self-reported occurrences of adverse events, and occurrences of unplanned emergency department or clinic visits. Fragmentation will be measured by visual observation with an ureteroscopic camera and direct measure of stones removed by basket after the procedure.
Interventions
Fragment upper urinary tract stones
Sponsors
Study design
Masking description
Some outcomes assessors will be blinded to the treatment conditions. This will include review of video data for tissue injury.
Eligibility
Inclusion criteria
* Individuals presenting with at least one kidney stone apparent on CT * Individuals scheduled for clinical stone removal via ureteroscopy (URS)
Exclusion criteria
* Individuals under 18 years of age * Individuals belonging to a vulnerable group (pregnant, mentally disabled, prisoner, etc.) * Individuals with uncorrected bleeding disorders or coagulopathies * Individuals taking a clinically significant anticoagulant dose at the time of the procedure * Individuals with a calcified abdominal aortic aneurysm or calcified renal artery aneurysm * Individuals with a solitary kidney * Individuals with a comorbidity risks which, at the discretion of the physician, would make the patient a poor candidate for the BWL procedure
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Safety - Area of Tissue Injury | Day 0 - the day of the experimental procedure immediately following the acoustic procedure. | The primary safety endpoint is the area of hemorrhage observed through direct visualization with the ureteroscope. |
| Effectiveness - Volume of Fragments < 2 mm | Day 0 - the day of the experimental procedure immediately following the acoustic procedure. | The primary effectiveness endpoint is the volume fraction of stone fragments less than 2 mm relative to the original stone volume. |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Safety - Adverse Event Assessment | out to 120 days post-procedure | The secondary safety outcome is the documented occurrence of all adverse events and comparison of the incidence (rate of occurrence) to the adverse events typically associated with shock wave lithotripsy (SWL) and URS |
| Effectiveness - Time to Full Comminution | Day 0 - the day of the experimental procedure immediately following the acoustic procedure. | projected time to full comminution defined as the time at which no fragments would be ≤ 2 mm |
Countries
United States
Contacts
University of Washington