Our Ultrasound Guided Brachial Plexus Block Experiences for Upper Extremity Surgeries in Pediatric Patients

Mustafa Altinay1, Hacer Sebnem Turk1, Naim Ediz1

  • 1Department of Anesthesiology and Reanimation, Sisli Hamidiye Etfal Training and Research Hospital, Istanbul, Turkey.

Sisli Etfal Hastanesi Tip Bulteni
|July 4, 2020
PubMed

Insights

Ultrasound-guided brachial plexus block is a safe and effective pain management technique for pediatric upper extremity surgeries. This method offers longer pain relief and fewer complications compared to traditional approaches.

Area of Science:

  • Anesthesiology
  • Pediatric Surgery
  • Regional Anesthesia

Background:

  • Brachial plexus block is crucial for pediatric upper extremity surgery analgesia and anesthesia.
  • Ultrasound guidance enhances safety by reducing complications like pneumothorax and nerve damage.
  • Research on pediatric brachial plexus blocks, especially ultrasound-guided, is limited.

Purpose of the Study:

  • To evaluate the efficacy and safety of ultrasound-guided brachial plexus block in pediatric patients.
  • To analyze complication rates and analgesia duration in pediatric patients undergoing these procedures.

Main Methods:

  • Retrospective review of pediatric patients undergoing ultrasound-guided brachial plexus block (January 2015-January 2017).
  • Data collected included demographics, procedure details, medications, and block durations.
  • Both supraclavicular and infraclavicular approaches were analyzed.

Main Results:

  • 24 pediatric patients received ultrasound-guided brachial plexus blocks.
  • Mean motor block duration was 7.5±2 hours and sensorial block duration was 10.5±1.7 hours.
  • No complications were observed during or after the procedures.

Conclusions:

  • Ultrasound-guided brachial plexus block is a safe and effective anesthetic technique for pediatric patients.
  • The procedure is associated with prolonged analgesia and minimal complications.
  • Further prospective studies with larger cohorts are recommended.
Abstract

Related Concept Videos

Spinal Nerves: Plexus I01:22

Spinal Nerves: Plexus I

Nerve plexuses are networks of interlacing nerves that serve as communication hubs to distribute and organize nerve action across various body regions. The nerve plexuses are organized into the cervical plexus located in the neck region, brachial plexus in the shoulder area, lumbar plexus found in the lower back, sacral plexus situated in the pelvis, and coccygeal plexus located in the coccygeal region.
The Cervical Plexus
The cervical plexus, formed by the anterior rami of the first four...
2.1K
Local Anesthetics: Clinical Application as Intravenous Regional Anesthesia01:16

Local Anesthetics: Clinical Application as Intravenous Regional Anesthesia

Intravenous regional anesthesia or the Bier block technique is used to anesthetize a specific limb or extremity. It uses exsanguinated or blood-drained vessels to transport local anesthetics or LAs to the peripheral nerve trunks. Lidocaine without vasoconstrictors like epinephrine is most commonly used for this technique. Other drugs used are prilocaine, ropivacaine, and chloroprocaine. Bupivacaine is not recommended for this technique due to its high cardiac toxicity.
One of the advantages of...
969
Arteries of the Upper Limbs01:12

Arteries of the Upper Limbs

The subclavian artery transitions into the axillary artery as it exits the chest and enters the axillary region. This artery is critical for supplying blood to the shoulder area, including the head of the humerus, through the humeral circumflex arteries. As the vessel continues into the upper arm or brachium, it becomes the brachial artery. This artery plays a key role in vascularizing the brachial region and bifurcates at the elbow into several branches. These branches include the deep...
1.8K
Depolarizing Blockers: Pharmocokinetics01:19

Depolarizing Blockers: Pharmocokinetics

Depolarizing blockers are administered through intravenous injection. Succinylcholine is the most common choice of depolarizing blockers in emergency clinical practices. Although they have a rapid onset, they readily diffuse away from the motor end plate into the extracellular fluid. They are metabolized by enzymes such as liver butyrylcholinesterase and plasma pseudocholinesterases. This produces a short duration of action, typically 5-10 minutes long, unlike nondepolarizing blockers, which...
509