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Continuous Adductor Canal Nerve Blocks: Relative Effects of a Basal Infusion v. Hourly Bolus Doses

2021年3月18日 更新者:Brian M. Ilfeld, MD, MS、University of California, San Diego

Patients usually experience moderate-to-severe pain following the knee replacement that is often treated with a femoral nerve block (injection of numbing medicine placed around the main nerve of the knee joint). To make the nerve block last longer, a tiny tube is often placed next to the nerve and numbing medicine is infused for multiple days. However, while the numbing medicine takes away pain, it also decreases sensations, muscle strength, and proprioception (knowing where the leg is in space without looking at it) which greatly increases the risk of falling. Since falling can be catastrophic following major surgery, a femoral nerve blocks are being phased out by surgeons and anesthesiologists. The most-promising replacement is called an adductor canal nerve block. For this new type of block, a perineural catheter is inserted into a small canal in the middle of the upper leg. This canal contains the sensory nerve fibers leading to the knee, and only a single nerve that serves a relatively small muscle. Multiple studies have demonstrated a dramatic increase in muscle strength using the new adductor canal block compared with the traditional femoral block. However, practitioners perceptions of the new block is that it provides insufficient pain control following knee arthroplasty, even though all of the sensory nerves affected with the femoral block are also-theoretically-affected with the adductor canal block. One reason for this difference may be the small canal of the latter which is a relatively tight area in which the numbing medicine might not spread particularly well (due to pressure from surrounding tissues). One way to possibly counter this issue is by providing repeated boluses of the numbing medicine that will improve the medicine's spread relative to a more-traditional slow, continuous ("basal") infusion. This study seeks to compare these two techniques of medication administration through perineural adductor canal catheters:

Our primary aim is to test the hypothesis that, for continuous adductor canal blocks, providing local anesthetic as repeated, hourly bolus doses results in an increased sensory block compared with providing local anesthetic as a continuous basal infusion at an equivalent hourly dose.

As a secondary aim, we hypothesize that, for continuous adductor canal blocks, providing local anesthetic as repeated, hourly bolus doses results in either equivalent or less motor block compared with providing local anesthetic as a continuous basal infusion at an equivalent hourly dose.

調査の概要

詳細な説明

This investigation will be a randomized, observer-masked, controlled, split-body, human-subjects clinical trial. Of note, we will be using standard-of-care local anesthetics under their FDA approved purpose and do not plan to research a possible change of indication or use of these drugs as part of this research project.

Enrollment. Subjects will be volunteers of both sexes, age 18 and older. Volunteers will be solicited using newspaper advertisements, fliers, the CTRI Research Match, and an existing database of volunteers (IRB approved). If a volunteer meets inclusion/exclusion criteria and desires study participation, written, informed consent will be obtained. Selection for inclusion will not be based on race or socioeconomic status. The study population of interest includes men and women of all races and socioeconomic status. A urine pregnancy test will be administered to all women of childbearing age following written informed consent but before any study interventions. This urine test will be administered by CTRI nursing staff using standard, FDA-approved urine pregnancy testing devices.

Inclusion and Exclusion Criteria. See section #10 below.

Perineural catheter insertion. Following written, informed consent, subjects will be admitted to the UCSD CTRI Center for Clinical Research Services (CCR) inpatient unit and have demographic/morphometric data recorded (e.g., age, weight, height). An intravenous line will be placed in an upper extremity, followed by external monitors (pulse oximeter, blood pressure, and EKG), and oxygen by nasal cannula. Sedation will be provided with intravenous fentanyl (50 μg) and/or midazolam (1 mg), or oral valium (10 mg) and/or dilaudid (4 mg), as necessary. Subjects will then have bilateral adductor canal perineural catheters placed using standard UC San Diego techniques.

Treatment Group Assignment. Subjects will act as their own controls: The dominant side (left or right) will be randomized to one of two treatment groups: ropivacaine 0.2% administration as either a basal infusion (8 mL/h) or bolus doses (8 mL administered hourly). The non-dominant contralateral side will receive the other possible treatment. Randomization will be based on computer-generated codes. Randomization will be in blocks of two, and stratified by sex. An infusion pump with study infusate will be attached to each of the perineural catheters and initiated at Hour 0. The basal rate and bolus volume will depend upon the treatment group (note that the basal rate and bolus volume differ for each treatment group, but the total dose of local anesthetic is the same for each):

Treatment Group Basal Rate (mL/h) Basal Dose (mg/h) Bolus Volume (mL) Bolus Dose (mg) Total Dose (mg/h) Basal Infusion 8 16 0 0 16 Bolus Doses 0 0 8 16 16

The tubing from the pumps to the subjects will be gently wound at least 5 rotations and covered with opaque tape, masking which perineural catheter is receiving which treatment (ropivacaine is clear, so the flow through the clear tubing from the tape to the perineural catheters will not be visually distinguishable).

Local Anesthetic Administration. The infusion pump administering the basal infusion will be initiated at Hour 0. The infusion pump administering bolus doses will administer a 8 mL bolus dose each hour beginning at Hour 0. Perineural catheters will be removed after 8 hours.

To check the perineural catheter placement accuracy, the adductor canal nerve block will be evaluated 8 hours after local anesthetic initiation and considered successful when subjects experience a decreased sensation to cold of the skin in the saphenous nerve distribution as compared with their ipsilateral upper extremity. Subjects will be deemed non-responders if both extremities failed to exhibit any increase in tolerance to cutaneous electrical current by Hour 8. For unsuccessful perineural catheter insertion, non-responders, or if a perineural catheter is inadvertently dislodged prior to the measurement of the primary endpoint, the data will not be included in the analyses and the subject dropped from the study.

Food and Drink: Both food and accompanying beverages/water will be provided by the hospital and served by the nursing staff immediately following catheter insertion. Meals will be provided without charge to the study subjects. There is no restriction on oral intake following catheter insertion. Subjects will remain within the CTRI-CCR until the following morning for the final measurement.

Outcome Measurements. We have selected measures that have established reliability and validity. Staff blinded to treatment group assignment will perform all measures and assessments. Measurements will be performed prior to local anesthetic administration initiation ("baseline"; Hour 0); as well as hourly following local anesthetic infusion/bolus initiation through Hour 14 (and one final measurement set prior to discharge the following morning at approximately Hour 22; see Table below). For all measurements, the dominant side will always be tested first, followed by the contralateral side.

Tolerance of transcutaneous electrical stimulation: Evaluated in the seated position using transcutaneous electrical stimulation (TES) in the same manner as described throughout the anesthesia literature (this is a "gold standard" for regional anesthesia studies). EKG pads will be positioned over the proximal patella and quadriceps tendon 1 cm medial of midline and attached to a nerve stimulator. The current will be increased from 0 mA until the subject reports slight discomfort (or, up to a maximum of 80 mA), at which time the current is recorded as the TES value and the nerve stimulator turned off.

Quadriceps femoris muscle strength: Evaluated using a portable isometric force dynamometer to measure the maximum voluntary isometric contraction (MVIC) in a seated position. The primary end point will be the quadriceps femoris maximum voluntary isometric contraction (MVIC) expressed as a percentage of the pre-ropivacaine (baseline) MVIC: post / pre x 100; with the two sides of each subject compared with each other at Hour 8.

Statistical Analysis Plan. We will assess the noninferiority of the bolus method (hourly 8 mL ropivacaine 0.2% bolus doses) compared to basal infusion (ropivacaine 0.2% 8 mL/h continuous basal infusion) on the primary endpoint of tolerance to cutaneous current at 8 hours using a 1-tailed t-test at the 0.025 significance level with an a priori-specified noninferiority delta of 10 mA. A value of 10 mA is determined a priori to be the smallest difference that would be clinically important between groups. This value is considered the minimally clinically-relevant current since it approximates the tolerated electrical current range at baseline of the general population-in other words, natural variability and therefore a relatively small amount of current to detect. A positive test for noninferiority will be accompanied by the 95% confidence interval (0.025 in the hypothesized direction) for the difference in means not including the noninferiority delta.

Secondary analysis will assess noninferiority of the bolus to the basal infusion method on mean tolerance to cutaneous current across all time points measured, using a noninferiority delta of 10 mA as above. In this repeated measures setting, noninferiority will be assessed in the context of a linear mixed model adjusting for the within-subject correlation (using an auto-regressive correlation structure). If the time-by-group interaction is non-significant (P>0.20) we will assess noninferiority collapsing over time and constructing a 1-tailed t-test (using noninferiority delta of 10 mA) based on the model-based treatment effect for bolus versus basal infusion. In presence of a group-time interaction noninferiority will be assessed separately at each time point and a Holm-Bonferroni correction made for multiple comparisons to maintain the hypothesis-wise type I error at 0.025.

We will also assess noninferiority of bolus to basal infusion on the secondary endpoint of quadriceps femoris MVIC (22 hours total) using a mixed effects model as described above.

The rejection region for a noninferiority test includes superiority, by definition (i.e., "not worse" implies either equivalent or better). Therefore, if bolus is found to not only be noninferior, but also superior, we will be able to claim superiority. This will be evidenced by the 95% CI for the difference between means falling above zero.

Although we hypothesize that the bolus method will be noninferior to basal infusion, it is possible that basal infusion would be noninferior to bolus. Therefore, we will also conduct the above tests assessing noninferiority of basal infusion to bolus. If noninferiority is found in both directions, we will claim equivalence at ±10mA. SAS software 9.3 (SAS Institute, Cary, NC, USA) and R software versions 2.15.3 (The R Foundation for Statistical Computing, Vienna, Austria) will be used for all analyses.

Sample Size Estimation. Sample size calculations are based on the primary aim of determining the relationship between perineural ropivacaine delivery technique (basal vs. bolus) and continuous adductor canal nerve block effects. To this end, we will perform a noninferiority trial with the primary endpoint designated as the maximum tolerance to transcutaneous electrical stimulation at Hour 8. With 24 subjects we will have approximately 90% power (88%) at the 0.025 significance level to detect noninferiority of bolus ropivacaine to basal infusion ropivacaine on mean tolerance to transcutaneous electrical stimulation at Hour 8 using an a priori noninferiority delta of 10 mA. Based on previously-published data, this conservatively assumes a standard deviation of tolerance difference between legs of 15 mA.

We will apply the same analysis of percent change from baseline at Hour 0 to the secondary outcome measures. We will also examine the time profiles of the responses over time with spaghetti and mean plots. Further secondary analyses will include mixed-effects modeling of the repeated hourly measures to confirm the analysis of percent change at 8 hours. These models will account for the hierarchical correlation of paired measures from each subject over time. We will use these models to test the effects of subject characteristics, including handedness, sex, height, weight, body mass index, and age.

研究の種類

介入

入学 (実際)

24

段階

  • フェーズ 4

連絡先と場所

このセクションには、調査を実施する担当者の連絡先の詳細と、この調査が実施されている場所に関する情報が記載されています。

研究場所

    • California
      • San Diego、California、アメリカ、92103
        • University California San Diego

参加基準

研究者は、適格基準と呼ばれる特定の説明に適合する人を探します。これらの基準のいくつかの例は、人の一般的な健康状態または以前の治療です。

適格基準

就学可能な年齢

18年歳以上 (大人、高齢者)

健康ボランティアの受け入れ

はい

受講資格のある性別

全て

説明

Inclusion Criteria:

  • (1) age ≥ 18 years; and (2) willing to have bilateral adductor canal perineural catheters placed with subsequent ropivacaine administration and motor/sensory testing for 14 hours, requiring an overnight stay in the UCSD CTRI-CCR to allow dissipation of local anesthetic infusion effects by the following morning.

Exclusion Criteria:

  • (1) current daily analgesic use; (2) opioid use within the previous 4 weeks; (3) any neuro-muscular deficit of either femoral nerves and/or quadriceps muscles; (4) morbid obesity [weight > 35 kg/m2]; (5) pregnancy (as determined by a urine pregnancy test prior to any study interventions); and (6) incarceration. We expect to recruit a maximum of 30 healthy volunteers; with a target goal of 24 for the analysis. Selection for inclusion will not be based on gender, race, or socioeconomic status. The study population of interest includes men and women of all races and socioeconomic status. There will be no participants from vulnerable populations, such as pregnant women, children, or prisoners.

研究計画

このセクションでは、研究がどのように設計され、研究が何を測定しているかなど、研究計画の詳細を提供します。

研究はどのように設計されていますか?

デザインの詳細

  • 主な目的:処理
  • 割り当て:ランダム化
  • 介入モデル:並列代入
  • マスキング:4倍

武器と介入

参加者グループ / アーム
介入・治療
実験的:RIGHT side BOLUS and left side basal
Bilateral adductor canal catheters were inserted and ropivacaine 0.2% administered concurrently. For the right catheter, the ropivacaine was administered as hourly bolus doses of 8 mL each a total of 8 times: one at time point zero and 1 on the hour for the following 7 hours. For the left catheter, the ropivacaine was administered as a continuous basal infusion (8 mL/h) from time point zero for the following 8 hours
An adductor canal catheter was inserted and ropivacaine 0.2% administered as hourly bolus doses of 8 mL each: one at time point zero and then on the hour for 7 additional doses.
他の名前:
  • hourly bolus doses
An adductor canal catheter was inserted and ropivacaine 0.2% administered as a continuous basal infusion (8 mL/h) from time point zero for a total of 8 hours.
他の名前:
  • 持続基礎点滴
アクティブコンパレータ:RIGHT side BASAL and left side bolus
Bilateral adductor canal catheters were inserted and ropivacaine 0.2% administered concurrently. For the right catheter, the ropivacaine was administered as a continuous basal infusion (8 mL/h) from time point zero for the following 8 hours. For the left catheter, the ropivacaine was administered as hourly bolus doses of 8 mL each a total of 8 times: one at time point zero and 1 on the hour for the following 7 hours.
An adductor canal catheter was inserted and ropivacaine 0.2% administered as hourly bolus doses of 8 mL each: one at time point zero and then on the hour for 7 additional doses.
他の名前:
  • hourly bolus doses
An adductor canal catheter was inserted and ropivacaine 0.2% administered as a continuous basal infusion (8 mL/h) from time point zero for a total of 8 hours.
他の名前:
  • 持続基礎点滴

この研究は何を測定していますか?

主要な結果の測定

結果測定
メジャーの説明
時間枠
Tolerance to Cutaneous Electrical Current
時間枠:After 8 h of infusion
Evaluated in the seated position using transcutaneous electrical stimulation (TES) in the same manner as described throughout the anesthesia literature (this is a "gold standard" for regional anesthesia studies). EKG pads will be positioned over the proximal patella and quadriceps tendon 1 cm medial of midline and attached to a nerve stimulator. The current will be increased from 0 mA until the subject reports slight discomfort (or, up to a maximum of 80 mA), at which time the current is recorded as the TES value and the nerve stimulator turned off.
After 8 h of infusion

二次結果の測定

結果測定
メジャーの説明
時間枠
Tolerance to Transcutaneous Electrical Current
時間枠:baseline through Hour 14 (except Hour 8 which is the primary outcome) and then again at Hour 22
Evaluated in the seated position using transcutaneous electrical stimulation (TES) in the same manner as described throughout the anesthesia literature (this is a "gold standard" for regional anesthesia studies). EKG pads will be positioned over the proximal patella and quadriceps tendon 1 cm medial of midline and attached to a nerve stimulator. The current will be increased from 0 mA until the subject reports slight discomfort (or, up to a maximum of 80 mA), at which time the current is recorded as the TES value and the nerve stimulator turned off.
baseline through Hour 14 (except Hour 8 which is the primary outcome) and then again at Hour 22
Maximum Voluntary Isometric Contraction of the Quadriceps
時間枠:Baseline and then every hour through Hour 14, as well as Hour 22
Strength of the quadriceps muscle was assessed by measurement of maximum voluntary isometric contraction. In the sitting position, without using accessory muscle groups, subjects performed maximum forceful knee extension against an electromechanical dynamometer (MicroFET2, Lafayette Instrument Company, Lafeyette, IN). The subject sat at the side of the bed with their legs dangling. The device was placed against the anterior tibia just above the malleoli between the subject and a nonelastic 5 cm-wide fabric band that was affixed to the gurney to stabilize the dynamometer during flexing of the quadriceps femoris muscle. Subjects were instructed to come to maximum force of knee extension over 2 seconds, hold this force for 5 seconds, and then relax. The maximum force was recorded, and results are reported relative to the pre-infusion baseline measurement (i.e., percent of baseline).
Baseline and then every hour through Hour 14, as well as Hour 22

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出版物と役立つリンク

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研究記録日

これらの日付は、ClinicalTrials.gov への研究記録と要約結果の提出の進捗状況を追跡します。研究記録と報告された結果は、国立医学図書館 (NLM) によって審査され、公開 Web サイトに掲載される前に、特定の品質管理基準を満たしていることが確認されます。

主要日程の研究

研究開始 (実際)

2014年8月1日

一次修了 (実際)

2014年12月1日

研究の完了 (実際)

2014年12月1日

試験登録日

最初に提出

2014年8月14日

QC基準を満たした最初の提出物

2014年8月15日

最初の投稿 (見積もり)

2014年8月18日

学習記録の更新

投稿された最後の更新 (実際)

2021年3月19日

QC基準を満たした最後の更新が送信されました

2021年3月18日

最終確認日

2021年3月1日

詳しくは

本研究に関する用語

その他の研究ID番号

  • Adductor Canal Basal vs Bolus

個々の参加者データ (IPD) の計画

個々の参加者データ (IPD) を共有する予定はありますか?

いいえ

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