Regional Block

Ultrasound-Guided Suprascapular Nerve Block (SSNB)

The suprascapular nerve (C5–C6) supplies the posterior and superior shoulder capsule. It arises from the upper trunk of the brachial plexus, with a variable C4 contribution, passes laterally through the posterior triangle of the neck, enters the supraspinous fossa through the suprascapular notch beneath the transverse scapular ligament, and then runs in the floor of the fossa deep to the supraspinatus muscle accompanied by the suprascapular artery and vein. Distal to the notch it gives articular branches to the posterior and superior joint capsule and the acromioclavicular joint, and motor branches to supraspinatus and infraspinatus. The posterior ultrasound-guided approach deposits local anaesthetic in the fascial plane on the bony floor of the supraspinous fossa, proximal to the notch, where the nerve and vessels are reliably found. Crucially, the suprascapular nerve is not the only nerve supplying the shoulder: the axillary nerve supplies the inferior and anterior capsule and the skin over the deltoid, and the lateral pectoral, subscapular and musculocutaneous nerves contribute variably to the anterior capsule and surrounding soft tissue.

Onset10–20 minutes for useful analgesia
Duration6–12 hours with levobupivacaine or ropivacaine
CoveragePartial shoulder coverage only — posterior and superior glenohumeral joint capsule and AC joint
Clinical Note
A suprascapular nerve block does NOT provide complete shoulder anaesthesia. The shoulder is also supplied by the axillary nerve (inferior and anterior capsule, skin over the deltoid), the lateral pectoral and subscapular nerves, and the supraclavicular nerves. It is an analgesic adjunct: it may reduce sedation and opioid requirement when reducing a shoulder dislocation, but it is not a guaranteed replacement for procedural sedation, and the sedation pathway, staffing, airway equipment and monitoring must remain immediately available. Two further points before you inject: the pleura lies a short distance deep to the floor of the supraspinous fossa, so the needle tip must be visualised continuously and never directed medially off the bony floor; and the cumulative dose from all blocks and infiltration must be calculated for the individual patient and checked against the current BNF and local policy.

Indications

  • Acute severe shoulder pain requiring analgesia in the emergency department — rotator cuff pathology, calcific tendinopathy, acute-on-chronic glenohumeral pain
  • Analgesia for proximal humerus and shoulder girdle injury as part of a multimodal strategy
  • Adjunct analgesia when reducing an anterior shoulder dislocation, to reduce (not replace) sedation and opioid requirement
  • Patients in whom opioids are poorly tolerated or contraindicated
  • Patients at high risk from procedural sedation (frailty, significant comorbidity, recent food intake) where a block may reduce sedation requirement — discuss with a senior clinician and anaesthetics
  • Facilitating positioning for imaging, sling application, dressing changes and early physiotherapy
  • Reducing opioid requirement while awaiting definitive orthopaedic management

Contraindications

  • Patient refusal, or inability to consent or cooperate
  • Infection or cellulitis over the injection site
  • Known allergy to local anaesthetic agents
  • Significant coagulopathy or therapeutic anticoagulation — the suprascapular vessels are not compressible, so assess risk versus benefit and seek senior advice
  • Distorted anatomy, previous scapular surgery or body habitus preventing confident sonographic identification of the fossa floor and nerve
  • Pre-existing suprascapular neuropathy or unexplained shoulder weakness (relative — examine and document the deficit before blocking)
  • Severe respiratory compromise or single functioning lung, where a pneumothorax would be poorly tolerated (relative)
  • Operator not trained and assessed in the technique, or absence of monitoring, resuscitation equipment and 20% lipid emulsion
  • Suspected neurovascular injury of the limb requiring serial neurological assessment (relative — document findings first and discuss with orthopaedics)

Technique

  1. Confirm indication, obtain consent, and complete the Stop Before You Block pause for site and side. Document a pre-block neurovascular examination (axillary nerve sensation over the deltoid, distal pulses, motor function)
  2. Establish IV access and monitoring. Resuscitation equipment and 20% lipid emulsion must be immediately available
  3. Calculate the maximum safe local anaesthetic dose for this patient, including any local anaesthetic already given
  4. Position the patient sitting and leaning slightly forward, or lateral decubitus with the affected side uppermost. Adducting the arm across the chest rotates the scapula laterally and opens the supraspinous fossa. Position the screen in your direct line of sight
  5. Full aseptic technique: skin antisepsis, sterile probe cover and gel, sterile gloves
  6. Use a high-frequency linear probe (10–15 MHz); a curvilinear probe may be needed in larger patients. Set depth to about 3–5 cm and optimise gain on the bony floor
  7. Place the probe in a coronal oblique plane over the scapular spine, then slide and tilt cranially into the supraspinous fossa. Identify trapezius, supraspinatus beneath it, and the continuous hyperechoic floor of the fossa
  8. Track laterally along the floor towards the suprascapular notch to find the nerve and accompanying vessels on the fossa floor
  9. Apply colour Doppler to identify the suprascapular artery and vein and any other vessels in the needle path. Plan a trajectory that avoids them
  10. Infiltrate the skin, then insert a 50–80 mm short-bevel block needle in-plane, medial to lateral, aiming for the fascial plane on the bony floor beside the nerve — not into the nerve
  11. Maintain continuous needle-tip visualisation at all times. If the tip is not clearly seen, stop advancing, adjust the probe or withdraw and realign. Never advance a needle you cannot see
  12. Keep the hyperechoic bony floor in view as a backstop. Do not direct the needle medially past the medial edge of the fossa or allow it to pass off the bone, where the pleura lies only a short distance deep
  13. On gentle bone contact, withdraw 1–2 mm. Aspirate, then hydrodissect with 1–2 mL to confirm the needle tip is in the correct plane and spreading along the fossa floor
  14. Inject 5–10 mL incrementally in 3–5 mL aliquots, aspirating between each aliquot and watching the spread on screen
  15. Stop injecting immediately if there is pain on injection, high injection resistance, paraesthesia, no visible spread, or any suggestion of intraneural or intravascular placement
  16. Remove the needle, apply a dressing, and monitor the patient for at least 30 minutes for signs of local anaesthetic systemic toxicity
  17. Reassess pain score and range of movement at 15–20 minutes before deciding whether analgesia is adequate for the intended procedure. Document drug, concentration, volume, total milligram dose, ultrasound findings, complications and post-block neurovascular status

Drug Doses

AgentConcentrationVolumeTotal DoseNotes
Ropivacaine0.5%5–10 mL25–50 mgReasonable first choice — long acting with a favourable cardiac safety profile. Maximum dose 3 mg/kg (maximum 200 mg) as listed on the LA Drugs page.
Levobupivacaine0.25%5–10 mL12.5–25 mgLow-dose option when other local anaesthetic has already been given or cumulative load is a concern. Maximum dose 2 mg/kg (maximum 150 mg).
Levobupivacaine0.5%5–10 mL25–50 mgDenser, longer block for significant injury pain. Still well inside the 2 mg/kg (maximum 150 mg) limit at these volumes in an average adult.
Bupivacaine0.25%5–10 mL12.5–25 mgUse only where levobupivacaine or ropivacaine is unavailable — the most cardiotoxic of the amides. Maximum dose 2 mg/kg (maximum 150 mg). Never for intravascular use.
Lidocaine (Lignocaine), plain1%5–10 mL50–100 mgRapid onset 2–5 minutes, duration only 1–2 hours. Consider when the block is an adjunct to an imminent reduction attempt, accepting that analgesia will wear off early. Maximum dose 3 mg/kg plain, 7 mg/kg with adrenaline 1:200,000.
Dose Calculation
Volumes of 5–10 mL are sufficient for this block; larger volumes do not improve articular coverage and increase systemic absorption. The milligram figures above are worked examples for an average adult, not patient-specific limits. Calculate the cumulative dose of every local anaesthetic the patient has received — other blocks, top-ups, joint and wound infiltration, and any pre-hospital or ward doses — use lean body weight in obesity, reduce the dose in frailty, low body weight, hepatic impairment, cardiac failure and at the extremes of age, and check the total against the current BNF and your local policy before injecting. Maximum doses quoted here are the same as those on the LA Drugs page.
Onset
10–20 minutes for useful analgesia; up to 30 minutes for maximal effect
Duration
6–12 hours with levobupivacaine or ropivacaine; only 1–2 hours if lidocaine is used alone

Complications

Pneumothorax
The pleura lies a short distance deep to the floor of the supraspinous fossa. Risk is minimised by keeping the hyperechoic bony floor in view as a backstop, avoiding medial angulation past the edge of the fossa, and never advancing a needle tip that is not visualised. Suspect it if the patient develops pleuritic pain, breathlessness or desaturation during or after the block, and image accordingly.
Vascular Puncture and Haematoma
The suprascapular artery and vein accompany the nerve on the fossa floor. Use colour Doppler before every needle pass, aspirate before and between aliquots, and stop if blood is aspirated. Deep haematoma in this compartment is not directly compressible; observe and involve seniors if it occurs.
Nerve Injury
Intraneural injection may cause prolonged or permanent sensory and motor deficit. Inject beside the nerve, not into it. Pain on injection, high resistance, paraesthesia or absent visible spread all mandate immediate cessation and needle repositioning. Document any new deficit and arrange follow-up.
Local Anaesthetic Systemic Toxicity (LAST)
Uncommon with the small volumes used here but possible with intravascular injection or when this block is added to other local anaesthetic already given. Calculate cumulative dose, aspirate and inject incrementally, monitor for at least 30 minutes, and have 20% lipid emulsion immediately available.
Infection
Rare with full aseptic technique. Risk is higher in immunocompromised and diabetic patients, and higher again if a catheter is placed. Avoid injecting through infected or broken skin.
Block Failure or Incomplete Analgesia
Expected in a proportion of patients, because the suprascapular nerve supplies only part of the shoulder. Also caused by injection in the wrong plane, inadequate time before assessment, or anatomical variation. Have an analgesia and sedation plan that does not depend on the block working.
Motor Block of Supraspinatus and Infraspinatus
An expected effect rather than an error: temporary weakness of abduction and external rotation. Warn the patient, provide a sling and safety advice, and take it into account when assessing post-reduction shoulder function.

Landmarks

  • Scapular spine — the first structure to find; a bright hyperechoic line with dense acoustic shadow
  • Supraspinous fossa — the hyperechoic bony floor cranial to the scapular spine, which acts as the deep backstop for the needle
  • Trapezius (superficial) and supraspinatus (deep) muscles, separated by their fascial planes
  • Suprascapular notch and transverse scapular ligament at the lateral end of the fossa
  • Suprascapular nerve — small hypoechoic oval structure on the floor of the fossa, deep to supraspinatus
  • Suprascapular artery and vein adjacent to the nerve — confirm with colour Doppler before every needle pass
  • Acromion, coracoid and clavicle for surface orientation before scanning

Sensory Coverage

Partial shoulder coverage only — posterior and superior glenohumeral joint capsule and AC joint. The suprascapular nerve supplies articular branches to the posterior and superior capsule and the acromioclavicular joint, plus motor supply to supraspinatus and infraspinatus. It does NOT cover the anterior and inferior joint capsule, the skin over the shoulder and deltoid (axillary nerve), the anterior soft tissues supplied by the lateral pectoral and subscapular nerves, or the clavicle and cape of the shoulder (supraclavicular nerves, C3–C4). Analgesia is therefore partial — expect reduced pain and improved tolerance of movement rather than a surgically anaesthetised shoulder. Motor block of supraspinatus and infraspinatus causes temporary weakness of abduction and external rotation.

Clinical Pearls

Find the scapular spine first, then walk the probe cranially into the fossa — bone is the most reliable landmark and gives you the safe deep boundary
Keep the bright bony floor of the fossa on screen throughout as a backstop; if you lose it, stop and re-optimise before advancing
Colour Doppler before every needle pass, not just at the start — the suprascapular vessels sit right next to the target
Low volume is the point: 5–10 mL placed accurately beats a large volume placed hopefully, and keeps you far from maximum doses
Allow the full 15–20 minutes before judging the block. Reduction attempted too early looks like block failure
Set expectations with the patient and the team: this block reduces shoulder pain, it does not anaesthetise the whole shoulder
For dislocation reduction, keep the sedation pathway, staffing and monitoring ready regardless — plan the block as an adjunct, never as the sole plan
Document pre-block axillary nerve sensation and distal neurovascular status before every block in fracture or dislocation — deficits found afterwards are otherwise impossible to attribute
Warn about temporary abduction and external rotation weakness, provide a sling, and give written safety advice on the numb, weak limb
Adding an axillary nerve block improves coverage of the anterior and inferior capsule, but only if you are trained in it — recalculate the cumulative local anaesthetic dose first and involve a senior
Complete the Stop Before You Block pause every time; wrong-site regional anaesthesia is a Never Event

Background & Evidence

The suprascapular nerve has long been targeted for shoulder analgesia in chronic pain, rheumatology and anaesthetic practice, and the ultrasound-guided posterior approach in the supraspinous fossa has since been adopted for acute shoulder pain. It is attractive in the emergency department because it needs only a small volume of local anaesthetic, can be performed with the patient sitting, and keeps the needle well away from the brachial plexus and phrenic nerve — unlike an interscalene block, which commonly causes temporary hemidiaphragmatic paresis and is rarely appropriate in the ED. Its limitation is anatomical rather than technical: because the axillary, lateral pectoral, subscapular and supraclavicular nerves also supply the shoulder, a suprascapular block reduces pain rather than abolishing it, and it should not be described to patients or colleagues as a reliable substitute for procedural sedation when reducing a dislocated shoulder. Published emergency department experience with the block as an analgesic adjunct is limited compared with the established truncal and lower limb blocks on this site, so local practice varies. Agree indications, training, governance and documentation with your emergency department and anaesthetic leads before adopting it, audit your outcomes and failure rate, and confirm all doses against the current BNF and your local regional anaesthesia policy.

Ultrasound Images

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