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CompletedNCT04458467Updated Jun 30, 2022Results posted

Perineural Local Anesthetic Administration With a Continuous Infusion Versus Automatic Intermittent Boluses

An interventional study of Continuous Infusion and Automated Intermittent Boluses in Pain, Acute, Anesthesia, Local and Trauma Injury, sponsored by University of California, San Diego. Completed at 1 site in United States. Open to participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2022-06-30.

Sponsored by University of California, San Diego · Not applicable, Interventional, and Treatment

Phase
Not applicable
Study type
Interventional
Enrollment
71
Allocation
Randomized
Ages
18 Years and older
Sex
All
01

Study summary

This will be a randomized comparison of continuous local anesthetic infusion with patient controlled boluses (PCA) to automated boluses with PCA for continuous popliteal sciatic nerve blocks. The goal will be to determine the relationship between method of local anesthetic administration (continuous with PCA initiated at discharge vs. intermittent dosing with PCA with a 5-hour delay) for continuous peripheral nerve block and the resulting pain control and duration of analgesia.

Read the detailed description

Specific Aim: To determine the relationship between method of local anesthetic administration (continuous with PCA vs. intermittent dosing with PCA) for continuous peripheral nerve block and the resulting pain control.

Hypothesis: The investigators hypothesize that, compared with a traditional fixed, continuous basal infusion initiated prior to discharge, perineural local anesthetic administered with variable automated boluses at a lower dose and a 5-hour delay following discharge will (1) provide at least noninferior analgesia during the period that both techniques are functioning; and, (2) will result in a longer overall duration of administration [dual primary end points].

Enrollment: Patients 18 years and older undergoing painful foot and/or ankle surgery will be offered enrollment.

Block placement: The nerve block site will be cleaned with chlorhexidine gluconate and isopropyl alcohol (ChloraPrep One-Step, Medi-Flex Hospital Products, Inc., Overland Park, KS, USA), and a clear, sterile, fenestrated drape applied. The ultrasound probe will be readied for use and placed to visualize the short-axis (cross-section) of the target nerve. A skin wheal will be raised at the catheter-placement needle's anticipated point of entry. An 8.9 cm, 17-gauge, insulated needle (FlexTip, Arrow International, Reading, PA, USA) will be used to place all perineural catheters. The catheter-placement 17G needle will be inserted through the skin wheal, advanced in-plane beneath the US transducer and directed toward the target nerve. Normal saline (1-2 mL) will be administered via the needle to open the space around the nerve.

A flexible non-stimulating perineural catheter (FlexTip, Arrow International, Reading, PA, USA) will be inserted 2-3 cm past the needle tip. After catheter insertion, Ropivacaine 0.5% (20 mL) will be administered via the catheter under ultrasound visualization. Sensation in the tibial and peroneal nerve distributions will be checked for anesthetic effect up to 15 minutes following initial local anesthetic bolus. A "successful" regional block will be defined as sensory- and motor-block onset in all expected nerve distributions within the 15 minutes following the local anesthetic injection.

The initial local anesthetic bolus may provide complete surgical anesthesia for the procedure. Patients who desire a general anesthetic or experience a partial block that is not adequate for surgical anesthesia will receive a general anesthetic. Additional boluses of Ropivacaine 0.5% and epinephrine may be given, if needed, via the perineural catheter.

Randomization: Subjects will be randomized to one of two treatment groups: (1) automated regular boluses (ARB) with a 5-hour delay or (2) continuous infusion initiated at discharge in a 1:1 ratio using computer generated lists sealed in opaque envelopes not opened until after the nerve has been identified and deemed appropriate for catheter placement.

Postoperative Procedures: Following completion of the procedure in the operating room, an infusion pump (Infutronix, Natick, Massachusetts) with a 500 mL ropivacaine 0.2% reservoir will be attached to the patient's perineural catheter. For patients in the continuous infusion group, the pump will provide a 6 mL/h basal infusion and a 4 mL patient-controlled bolus with a 30-minute lockout (standard at UCSD). For patients in the automated intermittent bolus group, the pump will provide an automatic 8 mL bolus once every 2 hours and have a 4 mL patient-controlled bolus with a 30 minute lockout. In addition, for those in the automated intermittent bolus group, the infusion pump will be set in a "pause" mode that delays initiation of the automated bolus doses by 5 hours (this can be over-ridden by patients if they would like to initiate their perineural infusion earlier than 5 hours).

Data Collection: Data will be gathered from the patients' electronic medical record, by telephone follow-up, and from the infusion pumps memory. Subjects will be contacted via phone for the six days following surgery to collect information regarding surgical pain (Numeric Rating Scale of 0 to 10, with "0" being no pain and "10" being the worst pain ever experienced), analgesic use, number of sleep disturbances due to pain, and satisfaction with pain control.

Statistics: This study will be powered for two primary end points: (1) the average NRS queried on postoperative day 1; and (2) the duration of treatment from when the infusion pump was initially turned on until the local anesthetic reservoir was exhausted. The dual hypotheses will be tested with a serial testing strategy, such that Hypothesis 2 will not be formally tested unless the conclusion of Hypothesis 1 is at least "noninferiority". Noninferiority will be assessed by comparing the lower limit of the 95% confidence interval for the difference on the NRS (range: 0 to 10) to a pre-specified noninferiority margin of 1.7 NRS units. This will provide evidence that the analgesia provided by the novel automated boluses is no worse than 1.7 NRS units compared to Continuous Basal infusion.

Baseline characteristics of the randomized groups will be summarized with means, standard deviations, and quartiles. Balance between groups will be assessed. Specifically, standardized differences will be calculated using Cohen's d whereby the difference in means or proportions is divided by the pooled standard deviation estimates. Any key variables (age, sex, height, weight, and BMI) with an absolute standardized difference >0.47 (with 1.96×√(2/n)=0.47) will be noted and included in a linear regression model to obtain an estimate of the treatment group differences adjusted for the imbalanced covariate(s). If residuals from the linear regression indicate violations of key assumptions (i.e. homoscedasticity or Guassian distribution), data transformations and/or alternative generalized linear models will be applied as appropriate.

Secondary outcomes will also be analyzed by Wilcoxon-Mann-Whitney test, or linear models (or generalized linear models) as appropriate with covariates for any imbalanced covariates. No multiplicity adjustments will be applied for these analyses.

Sample size estimate: Power is simulated based on the distribution of pain measured with the Numeric Rating Scale (NRS) observed in previous studies. Specifically, the investigators simulate NRS scores from a discrete distribution. This results in an expected interquartile range 1 to 4, and a median of 3 NRS units. 1000 trials were simulated in which the two groups, n=35 per group, were assumed to follow the same discrete distribution, submitted each trial to a Wilcoxon-Mann-Whitney test, and derived 95% confidence intervals. Out of the 1000 trials, 792 (79.2%) correctly resulted in a conclusion of non-inferiority; suggesting that the probability that the trial correctly concludes non-inferiority is about 80% when the groups follow exactly equivalent distributions.

If the test for Hypothesis 1 concludes noninferiority (scenario A, B, or C in Figure 1), the investigators will test for a difference in overall duration of administration again using the Wilcoxon-Mann-Whitney test.

Power is approximated by a two-sample t-test calculation. Assuming a standard deviation of SD=37 hours (corresponding to an interquartile range of 50 to 100 hours), the investigators expect that a sample size of n=35 provides 80% power to detect a mean group difference of 25 hours with a two-sided alpha of 5%.

Total enrollment: 70 subjects plus 30 for misplaced catheters or subjects otherwise unable to be randomized; and subjects who withdraw. This allows for a possible total of 100 subjects.

02

Conditions studied

  • Pain, Acute
  • Anesthesia, Local
  • Trauma Injury

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03

In context

Acute Pain

876 studies on the registry are indexed under Acute Pain; 154 are open to participants now.

This study's enrollment of 71 is below the median of 90 across 732 interventional studies indexed under Acute Pain.

Browse Acute Pain studies →

Lead sponsor

University of California, San Diego is the lead sponsor of 958 studies on the registry; 191 are open to participants now.

Of its 110 completed or terminated interventional studies of FDA-regulated products, 70 (64%) have results posted.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years and older
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • patients undergoing painful foot and/or ankle surgery with a planned popliteal sciatic perineural catheter for postoperative analgesia
  • age 18 years or older.

Exclusion criteria

Exclusion Criteria:

  • Current daily opioid use within the previous 4 weeks
  • Clinical neuro-muscular deficit of either the sciatic nerve and its branches and/or innervating muscles
  • Morbid obesity [weight > 35 kg/m2]; surgery outside of ipsilateral sciatic and saphenous nerve distributions
  • Pregnancy [as determined by a urine pregnancy test prior to any study interventions]
  • Incarceration.
05

Study design

Phase
Not applicable
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Quadruple (Participant, Care provider, Investigator, Outcomes assessor)
Enrollment
71 participants (actual)

Study arms

  • Active comparator
    Continuous Infusion

    Patients will receive a continuous infusion of Ropivacaine 0.2% (6 mL/hr, 4 mL patient controlled bolus with 30-minute lockout).

    Device: Continuous Infusion

  • Experimental
    Automated Boluses

    Patients will receive intermittent boluses of Ropivacaine 0.2% (8 mL automated bolus every 120 minutes, 4 mL patient controlled bolus with 30-minute lockout).

    Device: Automated Intermittent Boluses

Interventions

  • DeviceContinuous Infusion

    A continuous infusion of ropivacaine 0.2% (6 mL/hr, 4 mL patient controlled bolus with 30-minute lockout) will be initiated in the recovery room.

  • DeviceAutomated Intermittent Boluses

    Administration of automated intermittent boluses of ropivacaine 0.2% (8 mL every 2 hr with 4 mL patient controlled bolus with 30-minute lockout) will be initiated in the recovery room, but with a 5-hour delay for the first bolus (can be overridden by patients if they would like to initiate their perineural infusion earlier than 5 hours).

06

What researchers measure

Primary outcomes

  1. Average Pain Queried on First Postoperative Day

    Rated 0-10 on numeric rating scale the average pain from the recovery room until the data collection call. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

    Time frame: postoperative day 1

  2. Duration of Infusion

    Number of hours from the time the pump is initiated until local anesthetic reservoir exhaustion

    Time frame: 6 days postoperatively

Secondary outcomes

  1. Worst Pain

    Rated 0-10 on numeric rating scale. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

    Time frame: Each of 6 days postoperatively

  2. Average Pain

    Rated 0-10 on numeric rating scale. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

    Time frame: Each of 6 days postoperatively

  3. Least Pain

    Rated 0-10 on numeric rating scale. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

    Time frame: Each of 6 days postoperatively

  4. Current Pain

    Rated 0-10 on numeric rating scale. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

    Time frame: Each of 6 days postoperatively

  5. Opioid Consumption

    Cumulative opioid consumption during the first 6 days postoperatively

    Time frame: Each of 6 days postoperatively

  6. Sleep Disturbances Due to Pain

    Number of awakenings due to pain during the first 6 nights postoperatively

    Time frame: Each of 6 nights postoperatively

  7. Numbness in Foot and Ankle

    Rate 0 = normal to 10 = insensate

    Time frame: Each of 6 days postoperatively

07

Results

Posted May 18, 2022

Participant flow

Participant flow — Overall Study
MilestoneContinuous InfusionAutomated Boluses
Started3535
Completed3535
Not completed00

Outcome measures

PrimaryAverage Pain Queried on First Postoperative Day

Rated 0-10 on numeric rating scale the average pain from the recovery room until the data collection call. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

Time frame:
postoperative day 1
Reported as:
Median · score on a scale
Average Pain Queried on First Postoperative Day
score on a scaleContinuous InfusionAutomated Boluses
Average Pain Queried on First Postoperative Day3 (1.8 to 4.8)0.0 (0 to 3.0)
Statistical analysis
  • Continuous Infusion vs Automated Boluses · t-test, 2 sided · p = 0.033
PrimaryDuration of Infusion

Number of hours from the time the pump is initiated until local anesthetic reservoir exhaustion

Time frame:
6 days postoperatively
Reported as:
Median · Hours
Duration of Infusion
HoursContinuous InfusionAutomated Boluses
Duration of Infusion74 (57 to 80)119 (109 to 125)
Statistical analysis
  • Continuous Infusion vs Automated Boluses · t-test, 2 sided · p = <0.001
SecondaryWorst Pain

Rated 0-10 on numeric rating scale. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

Time frame:
Each of 6 days postoperatively
Reported as:
Mean · score on a scale
Worst Pain
score on a scaleContinuous InfusionAutomated Boluses
Day 15.3 ± 3.43.3 ± 3.7
Day 26.9 ± 2.44.6 ± 3.2
Day 34.9 ± 2.73.6 ± 3.0
Day 46.1 ± 2.63.0 ± 3.1
Day 55.1 ± 2.83.3 ± 3.2
Day 64.3 ± 3.23.7 ± 3.0
SecondaryAverage Pain

Rated 0-10 on numeric rating scale. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

Time frame:
Each of 6 days postoperatively
Reported as:
Mean · score on a scale
Average Pain
score on a scaleContinuous InfusionAutomated Boluses
Day 13.0 ± 2.41.6 ± 2.0
Day 24.1 ± 2.02.0 ± 1.8
Day 33.0 ± 2.01.6 ± 1.6
Day 44.0 ± 2.01.5 ± 1.8
Day 53.1 ± 1.71.7 ± 1.8
Day 62.4 ± 2.01.8 ± 1.7
SecondaryLeast Pain

Rated 0-10 on numeric rating scale. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

Time frame:
Each of 6 days postoperatively
Reported as:
Mean · score on a scale
Least Pain
score on a scaleContinuous InfusionAutomated Boluses
Day 10.2 ± 0.80.1 ± 0.5
Day 21.1 ± 1.50.7 ± 1.2
Day 31.0 ± 1.70.4 ± 0.7
Day 41.8 ± 1.80.5 ± 1.1
Day 51.4 ± 1.50.7 ± 1.3
Day 61.2 ± 1.50.8 ± 1.4
SecondaryCurrent Pain

Rated 0-10 on numeric rating scale. "0" represents no pain and "10" represents worst imaginable pain. Thus, a lower pain score corresponds to less pain.

Time frame:
Each of 6 days postoperatively
Reported as:
Mean · score on a scale
Current Pain
score on a scaleContinuous InfusionAutomated Boluses
Day 12.8 ± 2.81.7 ± 2.5
Day 22.4 ± 2.31.6 ± 2.0
Day 31.9 ± 2.01.2 ± 1.4
Day 42.9 ± 2.21.4 ± 2.0
Day 52.0 ± 1.91.9 ± 2.3
Day 62.1 ± 2.11.9 ± 2.1
SecondaryOpioid Consumption

Cumulative opioid consumption during the first 6 days postoperatively

Time frame:
Each of 6 days postoperatively
Reported as:
Mean · Tablets
Opioid Consumption
TabletsContinuous InfusionAutomated Boluses
Day 11.4 ± 1.60.7 ± 1.2
Day 22.0 ± 1.90.9 ± 1.3
Day 31.7 ± 1.70.7 ± 1.4
Day 42.3 ± 1.90.5 ± 1.3
Day 51.3 ± 1.50.5 ± 1.2
Day 60.8 ± 1.70.5 ± 1.2
SecondarySleep Disturbances Due to Pain

Number of awakenings due to pain during the first 6 nights postoperatively

Time frame:
Each of 6 nights postoperatively
Reported as:
Mean · Number of sleep disturbances
Sleep Disturbances Due to Pain
Number of sleep disturbancesContinuous InfusionAutomated Boluses
Day 11.0 ± 1.20.4 ± 0.7
Day 21.5 ± 1.60.5 ± 1.0
Day 30.8 ± 1.50.2 ± 0.5
Day 41.5 ± 1.60.2 ± 0.5
Day 51.1 ± 1.80.3 ± 0.8
Day 60.8 ± 1.50.4 ± 0.5
SecondaryNumbness in Foot and Ankle

Rate 0 = normal to 10 = insensate

Time frame:
Each of 6 days postoperatively
Reported as:
Mean · score on a scale
Numbness in Foot and Ankle
score on a scaleContinuous InfusionAutomated Boluses
Day 17.5 ± 2.88.9 ± 1.8
Day 25.1 ± 3.47.9 ± 1.8
Day 34.5 ± 3.77.4 ± 2.4
Day 40.6 ± 1.87.2 ± 2.8
Day 50 ± 05.4 ± 3.6
Day 60.0 ± 0.01.5 ± 3.2

Adverse events

Collected over 9 months. Non-serious events are listed at a 0% frequency threshold.

Adverse event summary by group
GroupDeathsSeriousOther
Continuous Infusion0/35 (0%)0/35 (0%)0/35 (0%)
Automated Boluses0/35 (0%)0/35 (0%)0/35 (0%)

Baseline characteristics

Age, Continuous
Age, Continuous(years)Continuous InfusionAutomated BolusesTotal
Mean52 ± 1848 ± 1750 ± 17
Sex: Female, Male
Sex: Female, Male(Participants)Continuous InfusionAutomated BolusesTotal
Female221941
Male131629
Race and Ethnicity Not Collected
Race and Ethnicity Not Collected(Participants)Continuous InfusionAutomated BolusesTotal
Count of participants——0
08

Study locations

1 site
  • UCSD Medical Center (Hillcrest and Thornton)
    San Diego, California 92103, United States
09

References and documents

Study documents

  • Protocol and statistical analysis plan · May 16, 2022

Documents are hosted by the registry — open the source record to download them.

Individual participant data

Plan to share: No

10

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Jun 30, 2022, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
11

Registry details

Key details

Study ID
NCT04458467
Lead sponsor
University of California, San Diego
Responsible party
Brian M. Ilfeld, MD, MS (Professor in Residence, University of California, San Diego) — Principal investigator
First posted
Jul 7, 2020
Start date
Jul 15, 2020
Primary completion
Mar 12, 2021
Completion
Mar 16, 2021
Results posted
May 18, 2022
Last update
Jun 30, 2022

Study contacts

Brian M Ilfeld, MD, MS
principal investigator · University California San Diego

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
Yes
View the source record on ClinicalTrials.gov ↗

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