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A Comparison of Ureteroscopic Treatment of Nephrolithiasis With and Without Moses Technology

Prospective Randomized Double Blind Clinical Trial to Compare Holmium Laser Lithotripsy With and Without Moses Laser Technology for the Ureteroscopic Treatment of Nephrolithiasis

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04505956
Enrollment
171
Registered
2020-08-10
Start date
2021-01-13
Completion date
2023-12-01
Last updated
2024-10-09

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

Conditions

Nephrolithiasis

Keywords

Ureteroscopy, Nephrolithiasis, Kidney Stone, Lithotripsy, Holmium, Moses

Brief summary

Flexible ureteroscopy is characterized as first-line therapy for the treatment of renal stones \< 2 cm in size. This involves passing a flexible endoscope into the renal pelvis through the urethra, bladder and ureter in a retrograde fashion. Holmium: YAG laser remains the preferred energy modality to subsequently break stones of this size into fragments small enough to remove or pass spontaneously through the ureter. Advances in the understanding of laser energy delivery have led to the recent commercialization of the Moses Effect - the creation of vapor bubbles/cavities between the laser fiber tip and the target through which laser energy can more efficiently travel. Lumenis was the first to optimize this laser phenomenon and market it as Moses Technology in their Lumenis Pulse P120H laser system. This system is already FDA approved through the 510K pathway and is commercially available. The purpose of this study is to evaluate the potential of Moses laser technology to reduce operative time compared to non-Moses settings for ureteroscopic treatment of nephrolithiasis.

Detailed description

There is ongoing debate on the optimal means of laser stone fragmentation, and Moses technology is the latest advancement to raise questions regarding clinical utility. Initial preclinical studies demonstrated significantly reduced stone retropulsion and higher stone ablation volume with Moses technology, leading to the conclusion that the system allows more efficient laser lithotripsy. Human studies also showed that laser lithotripsy with Moses technology utilized laser energy in less time for stone fragmentation: 10.0 (2.6-15.0) min without vs 6.0 (2.8-13.0) min with Moses technology. Others have evaluated the cost effectiveness of Moses technology in their own cohort of 40 patients who underwent standard laser lithotripsy by comparing a 35% projected decrease in procedure time against the cost of the Moses laser fiber and machine. Mean stone size was 10.2 mm in this group of patients, and mean lasing time was 3.0 minutes. While a significant positive association was seen between stone size and laser time, cost analysis failed to show a benefit in using Moses technology across sizes. To date, there are limited clinical data obtained through rigorous study methodology. In addition, knowledge gaps remain regarding the effect of Moses technology on other clinically meaningful outcomes such as stone-free rate. Therefore, the investigators propose a multi-center, prospective, randomized, double blind clinical trial to further assess the effect of Moses technology for lithotripsy. The investigators aim to study a broader range of outcomes which will be facilitated by being the largest study to date. The investigators also aim to study novel outcomes such as grading retropulsion and visibility by independent blinded review as well as effects of Moses technology on independently reducing surgeon burnout. Indeed, a randomized, double blind clinical trial evaluating Moses technology in 66 patients undergoing ureteroscopy was presented as a 2018 European Association of Urology abstract. While this single center study demonstrated safety and reduced fragmentation time as well as procedure time using Moses technology, it did not show a significant difference in stone-free rates. This study is also yet to be published as a manuscript.

Interventions

DEVICEHolmium laser lithotripsy with Moses Technology

Holmium laser energy will be delivered for the ureteroscopic fragmenting of kidney stones. Energy will be generated by the commercial available, FDA approved Lumenis PulseTM P120H laser system and Moses laser fiber. Renal stones will be fragmented using a dusting technique. Moses laser settings will be turned on.

DEVICEHolmium laser lithotripsy without Moses Technology

Holmium laser energy will be delivered for the ureteroscopic fragmenting of kidney stones. Energy will be generated by the commercial available, FDA approved Lumenis PulseTM P120H laser system and Moses laser fiber. Renal stones will be fragmented using a dusting technique. Moses laser settings will be turned off.

Sponsors

Vanderbilt University Medical Center
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Caregiver)

Eligibility

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

Inclusion criteria

* Solitary renal stone 8 to 20 mm in size or in the case of multiple stones the conglomerate diameter (additive maximal diameter of all stones on axial imaging of computed tomography) of 8-20 mm is required * Must be a suitable operative candidate for flexible ureteroscopy per urologic guidelines * Must be 18 years or older * Must be able to give consent

Exclusion criteria

* Concomitant stones in the ureter * Prior ipsilateral upper urinary tract reconstructive procedures or history of ipsilateral ureteral stricture * Prior radiotherapy to the abdomen or pelvis * Neurogenic bladder or spinal cord injury * Pregnancy * Untreated UTI

Design outcomes

Primary

MeasureTime frameDescription
Operative TimeBeginning to end of procedure time, assessed up to 2 hoursTotal operative times between Moses holmium laser lithotripsy and non-Moses holmium laser lithotripsy in the ureteroscopic treatment of renal stones using a dusting technique

Secondary

MeasureTime frameDescription
Stone RetropulsionFirst 20 seconds of laser lithotripsyStone movement during laser lithotripsy will be recorded on video and graded on a Likert scale by blinded reviewers. Video could not be taken for all trial patients. Videos were obtained and stored when feasible.

Countries

United States

Participant flow

Participants by arm

ArmCount
Standard Laser Lithotripsy
Patients will have flexible URS performed in standard fashion, without deviation from the standard of care. Laser settings will be at the surgeons' discretion but will be within the range identified as standard for dusting technique (between 0.2-0.5 J and 40-80 Hz). The short pulse setting will be utilized for non-Moses settings. Holmium laser lithotripsy without Moses Technology: Holmium laser energy will be delivered for the ureteroscopic fragmenting of kidney stones. Energy will be generated by the commercial available, FDA approved Lumenis PulseTM P120H laser system and Moses laser fiber. Renal stones will be fragmented using a dusting technique. Moses laser settings will be turned off.
79
Moses Laser Lithotripsy
Patients will have flexible URS performed in standard fashion, without deviation from the standard of care. Laser settings will be at the surgeons' discretion but will be within the range identified as standard for dusting technique using Moses laser technology. Holmium laser lithotripsy with Moses Technology: Holmium laser energy will be delivered for the ureteroscopic fragmenting of kidney stones. Energy will be generated by the commercial available, FDA approved Lumenis PulseTM P120H laser system and Moses laser fiber. Renal stones will be fragmented using a dusting technique. Moses laser settings will be turned on.
74
Total153

Baseline characteristics

CharacteristicTotalStandard Laser LithotripsyMoses Laser Lithotripsy
Age, Continuous61 years59 years61 years
Body mass index (BMI, kg/m2)30.45 kg/m231.14 kg/m230.21 kg/m2
Laterality of stones
Left
83 Participants44 Participants39 Participants
Laterality of stones
Right
70 Participants35 Participants35 Participants
Maximum axial stone size10.0 millimeters9.7 millimeters10.0 millimeters
Race (NIH/OMB)
American Indian or Alaska Native
1 Participants0 Participants1 Participants
Race (NIH/OMB)
Asian
3 Participants1 Participants2 Participants
Race (NIH/OMB)
Black or African American
13 Participants7 Participants6 Participants
Race (NIH/OMB)
More than one race
1 Participants1 Participants0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
135 Participants70 Participants65 Participants
Sex: Female, Male
Female
82 Participants44 Participants38 Participants
Sex: Female, Male
Male
71 Participants35 Participants36 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 790 / 74
other
Total, other adverse events
3 / 793 / 74
serious
Total, serious adverse events
7 / 794 / 74

Outcome results

Primary

Operative Time

Total operative times between Moses holmium laser lithotripsy and non-Moses holmium laser lithotripsy in the ureteroscopic treatment of renal stones using a dusting technique

Time frame: Beginning to end of procedure time, assessed up to 2 hours

ArmMeasureValue (MEDIAN)
Standard Laser LithotripsyOperative Time36 minutes
Moses Laser LithotripsyOperative Time37 minutes
Secondary

Stone Retropulsion

Stone movement during laser lithotripsy will be recorded on video and graded on a Likert scale by blinded reviewers. Video could not be taken for all trial patients. Videos were obtained and stored when feasible.

Time frame: First 20 seconds of laser lithotripsy

Population: Video could not be taken for all trial patients. Videos were obtained and stored when feasible.

ArmMeasureGroupValue (NUMBER)
Standard Laser LithotripsyStone RetropulsionNo retropulsion18 videos (1 video per participant)
Standard Laser LithotripsyStone RetropulsionSome retropulsion32 videos (1 video per participant)
Standard Laser LithotripsyStone RetropulsionSignificant retropulsion11 videos (1 video per participant)
Moses Laser LithotripsyStone RetropulsionNo retropulsion27 videos (1 video per participant)
Moses Laser LithotripsyStone RetropulsionSome retropulsion21 videos (1 video per participant)
Moses Laser LithotripsyStone RetropulsionSignificant retropulsion9 videos (1 video per participant)

Source: ClinicalTrials.gov · Data processed: Feb 8, 2026