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Not yet recruitingNCT06529393Updated Feb 24, 2025

The Analgesic Effect of (SHAC) Block Versus Suprascapular Nerve Block in Arthroscopic Shoulder Surgeries

An interventional study of SHAC block and suprascapular nerve block in Shoulder Pain and Postoperative Pain, sponsored by Assiut University. Not yet recruiting at 1 site in Egypt. Open to participants aged 18 Years to 65 Years. Per ClinicalTrials.gov, last updated 2025-02-24.

Sponsored by Assiut University · Not applicable, Interventional, and Prevention

From the registry’s dates

  • Primary completion was expected by Dec 2025, 10 months ago, but the record still lists the study as not yet recruiting.
Phase
Not applicable
Study type
Interventional
Enrollment
50
Allocation
Randomized
Ages
18 Years to 65 Years
Sex
All
01

Study summary

The aim of the study is to compare the post-operative analgesic effect of Shoulder anterior capsule (SHAC) block with Suprascapular nerve block for arthroscopic shoulder surgery with a hypothesis that both Shoulder anterior capsule (SHAC) block and Suprascapular nerve block are effective in providing postoperative analgesia for arthroscopic shoulder surgery.

Read the detailed description

The role of shoulder arthroscopy in the diagnosis and treatment of shoulder disorders is evolving .

Advances in modern arthroscopy have contributed significantly to greater flexibility and efficacy in addressing shoulder pathology.Advantages of arthroscopy include less invasive approaches, improved visualization, decreased risk of many postoperative complications ,and faster recovery.

Shoulder surgery is well recognised as having the potential to cause severe postoperative pain.The aim of this review is to assess critically the evidence relating to the effectiveness of regional anaesthesia techniques commonly used for postoperative analgesia following shoulder surgery opioid analgesics are commonly used for analgesia when nerve block are not used. opoids are effective in relieving postoperative pain at rest but may increase postoperative nausea and vomiting (PONV),somnolence,constipation,urinary retention,respiratory depression ,and sleep disturbances.

supplementing general anesthesia (GA) with a regional nerve block might improve the quality of postoperative relief pain .

Throughout intraoperative and postoperative period, nerve blocks have been used more populary than others because of efficacy.For the regional nerve block,local anesthetic should be infiltrated close to the nerve for maximum effect.

Shoulder anterior capsule block (SHAC):is combination of two different blocks .the first block is the interfascial space between the deep layer of the deltoid fascia and the superficial layer of the subscapularis fascia , anterior to the subscapularis myotendinous junction . Thanks to this interfascial space,we can reach both the axillary nerve and the subscapular nerves,the lateral pectoral nerve and the musculocutaneous nerve.

Suprascapular nerve block(SSB) :The suprascabular nerve (SSN) originates from the nerve roots and provides sensation for the posterior shoulder capsule, acromioclavicular joint,subacromial bursa,and coracoclavicular ligament .Blocking it provides pre-emptive anesthesia , decreased intraoperative pain ,and postoperative pain relief in shoulder arthroscopy.

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Conditions studied

  • Shoulder Pain
  • Postoperative Pain

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Keywords

  • SHAC Block
03

In context

Shoulder Pain

707 studies on the registry are indexed under Shoulder Pain; 152 are open to participants now.

This study's planned enrollment of 50 is below the median of 60 across 561 interventional studies indexed under Shoulder Pain.

Browse Shoulder Pain studies →

Lead sponsor

Assiut University is the lead sponsor of 4,901 studies on the registry; 2,098 are open to participants now.

Of its 13 completed or terminated interventional studies of FDA-regulated products, 0 (0%) have results posted.

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

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Who can participate

Ages eligible
18 Years to 65 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • -Age between 18-65 years.
  • Body mass index (BMI)of 18-35Kg /m2.
  • Patients with American society of anesthesiologist (ASA) physical status \| / \|\|.
  • Patients scheduled for elective Arthroscopic Shoulder Surgery.
  • Both sexes, males and females.

Exclusion criteria

Exclusion Criteria:

  • -Patient refusal.
  • Allergy to local anaesthetics.
  • Infection at the site of injection .
  • Coagulopathy.
  • Chronin pain syndromes.
  • Prolonged opioid medication

    .-Patients who received any analgesia 24 h before surgery.

  • pregnancy
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Study design

Phase
Not applicable
Primary purpose
Prevention
Allocation
Randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
50 participants (estimated)

Study arms

  • Active comparator
    SHAC block group

    For the SHAC block, with the patient in a beach-chair position and with the arm in extension, the subscapularis muscle is stretched posteriorly and becomes easily visible. With external rotation and abduction, the coracobrachialis and the biceps brachii muscles are displaced, allowing the visualization of the interfascial space between the deep lamina of the deltoid muscle fascia and the superficial lamina of the subscapularis fascia.Once the injection into the fascial space is achieved, the investigators can proceed towards the glenohumeral pericapsular space by crossing the subscapularis muscle with the needle. By injecting the pericapsular space, the investigators reach the terminal articular branches indistinctly from their origin. Furthermore, through the Weitbrecht foramen, a natural capsular foramen between the upper and middle glenohumeral ligaments, we also reach the intra-articular space .

    Procedure: SHAC block

  • Active comparator
    Suprascapular nerve block group

    Patients will be placed in lateral position by using A high - frequency linear ultrasound probe will be placed approximately 2 cm medial to the medial border of the acromion and about 2 cm cranial to the superior margin of the scapular spine until supraspinatus or infraspinatus muscle contractions were elicited. Following negative aspiration,A 21G 10-cm needle will be inserted using an in-plane approach .The tip of the needle will be placed at the floor of the supraspinatus fossa where the nerve has passed .A volume of 15 mL of a mixture of 2% lidocaine (5 mL) and 0.5% levobupivacaine (10 mL) was injected.

    Procedure: suprascapular nerve block

Interventions

  • ProcedureSHAC block

    with the patient in a beach-chair position and with the arm in extension, the subscapularis muscle is stretched posteriorly and becomes easily visible. With external rotation and abduction, the coracobrachialis and the biceps brachii muscles are displaced, allowing the visualization of the interfascial space between the deep lamina of the deltoid muscle fascia and the superficial lamina of the subscapularis fascia.Once the injection into the fascial space is achieved, the investigators can proceed towards the glenohumeral pericapsular space by crossing the subscapularis muscle with the needle. By injecting the pericapsular space, the investigators reach the terminal articular branches indistinctly from their origin. Furthermore, through the Weitbrecht foramen, a natural capsular foramen between the upper and middle glenohumeral ligaments, the investigators also reach the intra-articular space .

    Also known as: shoulder anterior capsule block

  • Proceduresuprascapular nerve block

    Patients will be placed in lateral position by using A high - frequency linear ultrasound probe will be placed approximately 2 cm medial to the medial border of the acromion and about 2 cm cranial to the superior margin of the scapular spine until supraspinatus or infraspinatus muscle contractions were elicited. Following negative aspiration,A 21G 10-cm needle will be inserted using an in-plane approach .The tip of the needle will be placed at the floor of the supraspinatus fossa where the nerve has passed .A volume of 15 mL of a mixture of 2% lidocaine (5 mL) and 0.5% levobupivacaine (10 mL) was injected.

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What researchers measure

Primary outcomes

  1. effect on postopeartive pain after shoulder arthrscopy

    the pain intensity assessment at rest and on coughing using Numerical Rating Scale (NRS) This will measure pain intensity from 0 to 10 , 0: no pain 3:mild pain 7:moderate pain 10:severe pain

    Time frame: baseline

Secondary outcomes

  1. -inceidence of (POVN) 24 hours postoperatively -Block related complications during and after block procedure till 24 hours postoperatively (LAST, pneumohorax and vascular puncture during block procedure)

    patients complaint from occurrence of nausea and vomiting

    Time frame: first 24 hours

  2. -Time of the first opioid request

    time of the first opioid request , concentration and occurrence of complications (hypotension,bradycardia,itching,urinary retention.) all over 24 hours postoperatively

    Time frame: first 24 hour

  3. -Block related complications during and after block procedure till 24 hours postoperatively (LAST, pneumohorax and vascular puncture during block procedure)

    occurrence of any complications from technical errors

    Time frame: first 24 hours

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Study locations

1 site
  • New Trauma Hospital
    Assiut, Egypt
08

References and documents

Publications

  • Fredrickson MJ, Krishnan S, Chen CY. Postoperative analgesia for shoulder surgery: a critical appraisal and review of current techniques. Anaesthesia. 2010 Jun;65(6):608-624. doi: 10.1111/j.1365-2044.2009.06231.x. PubMed 20565394 ↗
  • Paxton ES, Backus J, Keener J, Brophy RH. Shoulder arthroscopy: basic principles of positioning, anesthesia, and portal anatomy. J Am Acad Orthop Surg. 2013 Jun;21(6):332-42. doi: 10.5435/JAAOS-21-06-332. PubMed 23728958 ↗
  • Singelyn FJ, Lhotel L, Fabre B. Pain relief after arthroscopic shoulder surgery: a comparison of intraarticular analgesia, suprascapular nerve block, and interscalene brachial plexus block. Anesth Analg. 2004 Aug;99(2):589-92, table of contents. doi: 10.1213/01.ANE.0000125112.83117.49. PubMed 15271745 ↗
  • Basat HC, Ucar DH, Armangil M, Guclu B, Demirtas M. Post operative pain management in shoulder surgery: Suprascapular and axillary nerve block by arthroscope assisted catheter placement. Indian J Orthop. 2016 Nov-Dec;50(6):584-589. doi: 10.4103/0019-5413.193474. PubMed 27904211 ↗
  • Brenner W, Bohuslavizki KH, Wolf H, Sippel C, Clausen M, Henze E. Radiotherapy with iodine-131 in recurrent malignant struma ovarii. Eur J Nucl Med. 1996 Jan;23(1):91-4. doi: 10.1007/BF01736995. PubMed 8586108 ↗

Individual participant data

Plan to share: No — method outcome

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Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Feb 24, 2025, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
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Registry details

Key details

Study ID
NCT06529393
Lead sponsor
Assiut University
Responsible party
Rana El-sayed Ali Ibrahim (doctor, Assiut University) — Principal investigator
First posted
Jul 31, 2024
Start date
Mar 2025 (estimated)
Primary completion
Dec 2025 (estimated)
Completion
Feb 2026 (estimated)
Last update
Feb 24, 2025

Study contacts

Rana EA Ibrahim, Resident
Contact
relsayed324@gmail.com
00201069626195
Ayman M Abdel Khalek, Ass professor
Contact
Aymanglala@aun.edu.eg
00201025675901
Mohamed S Hassanen, professor
study chair · Assuit university Hospital
Rana EA Ibrahim, Resident
principal investigator · Assuit university Hospital
Ayman Abdel Khalek, Ass professor
study director · Assuit university Hospital

Oversight

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

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This study is not yet recruiting, as verified in Feb 2025. You cannot join it, but the record below documents what was studied.

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