It is very common to perform nerve blocks for hand and wrist surgery. It allows the surgeon to perform the surgery and helps with pain control after surgery. This also means only light sedation is needed for the procedure instead of a general anesthetic, which speeds up recovery time. There are 2 types of nerve blocks that can be done for hand and/or wrist surgery. The one that is done commonly now is where the whole arm is frozen with local anesthetic. Another option is to have a nerve block where only the arm from the elbow down is frozen. Either of these types of nerve blocks can be chosen to safely accomplish surgery of the hand or wrist. However, the best nerve block for hand and/or wrist surgery has not been decided yet. In order to determine which block is best, the investigators will be looking at patient satisfaction with the experience, as well as the surgical conditions provided and overall safety. It is thought that many patients may prefer the arm block below the elbow as it allows for greater mobility immediately following surgery, and the surgical conditions provided will be very similar to those of the full arm nerve block.
A randomized controlled trial involving adult patients undergoing surgery to the wrist and hand with centralized random allocation of patients to 2 groups: 1)Brachial plexus block and 2)Forearm block. The brachial plexus group will undergo a standard brachial plexus block. The forearm group will undergo a block of the proximal forearm targeting the radial sensory, ulnar, median and lateral antebrachial cutaneous nerves. Group allocation will not be blinded from the treating physicians or patients due to methodological constraints. However, the research assistants performing follow-up assessments will be blinded. Brachial plexus anesthesia provides a reliable sensorimotor block for upper extremity surgery. It is the current gold standard of anesthesia for surgery on the hand. A forearm block is an alternative anesthetic technique. As day surgery for hand procedures is less invasive and has fewer analgesic requirements, it may be that a forearm block, which allows for preservation of upper extremity function, is of benefit for these types of procedures. It is anticipated that patients may appreciate the forearm block as opposed to a brachial plexus block as they will have greater functionality post-operatively upon returning home. This contrasts with a brachial plexus block which causes a flaccid and insensate upper extremity lasting for many hours beyond the surgical procedure longer than the anticipated analgesic requirements which may be detrimental. Conversely, a forearm block may not provide sufficient anesthesia to create a dense motor blockade, which may result in unwanted intra-operative hand movements during surgery. This could pose a significant safety concern. A forearm block has successfully been used as a primary anesthetic in patients undergoing hand surgery, although no information has been published about patient satisfaction and events related to patient safety. The investigators aim to assess patient satisfaction, as well as overall efficacy and safety of the forearm blocks for hand and wrist surgery, as compared to the gold standard of brachial plexus blocks.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
SUPPORTIVE_CARE
Masking
SINGLE
Enrollment
160
Blockade of the arm below the elbow using local anesthetic (0.5% bupivacaine and 2% lidocaine) deposited under ultrasound guidance to facilitate performance of the surgical procedure.
Blockade of the entire arm using local anesthetic (0.5% bupivacaine and 2% lidocaine) deposited under ultrasound guidance to facilitate performance of the surgical procedure.
Toronto Western Hospital
Toronto, Ontario, Canada
RECRUITINGPatient satisfaction with overall block
The impact of surgical and anesthetic interventions on perioperative quality of life will be assessed using the QoR-15 tool (Quality of Recovery -15). The QoR-15 is a patient-based outcome measure in the form of a 15-item validated questionnaire.
Time frame: Study coordinators will assess QoR-15 change between baseline and 24 hours after surgery
Amount of intraoperative sedation required
Intraoperative sedation required by the surgical time in minutes ( from operation room arrival to discharge) for varying surgical durations
Time frame: 6 hours
Supplemental local anesthetic to block
Requirement for additional local anesthetic in the block room from the block room arrival to discharge
Time frame: 2 hours
Supplemental local anesthetic to block in operation room
Requirement for additional local anesthetic intraoperatively (mL) from operation room arrival to discharge
Time frame: 6 hours
Time in PACU
Time spent in the post-operative anesthetic care unit measured in minutes from moment of PACU arrival to discharge
Time frame: 6 hours
Surgical procedure time (minutes)
Time spent completing the surgical procedure measured in minutes from time of incision until time of surgical dressing application
Time frame: 6 hours
Block procedure time (minutes)
Time spent completing the nerve block measured in minutes from time of initial ultrasound probe contact with skin until removal of needle at block completion
Time frame: 2 hours
Analgesia provided by the nerve block
Postoperative pain severity at rest will be assessed using a numerical rating scale (NRS; 0=no pain, 10=worst pain imaginable) score during the post-anesthesia care unit (PACU) stay.
Time frame: 6 hours
Analgesia provided by the nerve block
Postoperative pain severity at rest will be assessed using a numerical rating scale (NRS; 0=no pain, 10=worst pain imaginable) score at 24 hours post-op. Cumulative oral analgesic consumption since hospital discharge will also be measured at this time
Time frame: 24 hours
Number and severity of safety-events as measured by hand movements recorded intraoperatively
Assessing number and severity of intraoperative hand movements from time of incision until time of surgical dressing application
Time frame: 24 hours
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