Patients › Shoulder
ਡਿਸਟਲ ਕਲੈਵੀਕਲ ਐਕਸੀਜ਼ਨ (distal clavicle excision, ਹੰਸਲੀ ਦੇ ਬਾਹਰਲੇ ਸਿਰੇ ਦਾ ਟੁਕੜਾ ਕੱਢਣਾ; ਮਮਫ਼ੋਰਡ ਪ੍ਰਕਿਰਿਆ)
A Mumford procedure (distal clavicle excision) removes the small worn outer tip of the collarbone to ease shoulder pain at the AC joint. What the keyhole operation involves and what recovery looks like.
ਇਹ ਓਪਰੇਸ਼ਨ ਕਿਉਂ ਸੁਝਾਇਆ ਗਿਆ ਹੈ¶
ਡਾ. ਕੀਰਨ ਹਿਰਪਰਾ, ਮਾਟਰ ਪ੍ਰਾਈਵੇਟ ਹਸਪਤਾਲ ਰੌਕਹੈਂਪਟਨ ਵਿੱਚ ਉੱਪਰਲੇ ਅੰਗ (ਮੋਢੇ ਤੋਂ ਹੱਥ ਤੱਕ ਦੀ ਬਾਂਹ) ਦੇ ਸਰਜਨ, ਤੁਹਾਡੀ ਸਥਿਤੀ ਲਈ ਢੁਕਵੇਂ ਸਭ ਤੋਂ ਘੱਟ ਚੀਰ-ਫਾੜ ਵਾਲੇ ਵਿਕਲਪਾਂ ਤੋਂ ਸ਼ੁਰੂਆਤ ਕਰਦੇ ਹਨ। ਮਰੀਜ਼ਾਂ ਨੂੰ ਆਮ ਤੌਰ 'ਤੇ ਉਹਨਾਂ ਦਾ ਜੀਪੀ (ਫ਼ੈਮਿਲੀ ਡਾਕਟਰ) ਸਾਡੇ ਕਲੀਨਿਕ ਵਿੱਚ ਭੇਜਦਾ ਹੈ; ਜੇ ਕਿਸੇ ਫਿਜ਼ੀਓਥੈਰੇਪਿਸਟ ਨੇ ਤੁਹਾਨੂੰ ਸਾਡੇ ਕੋਲ ਆਉਣ ਦੀ ਸਲਾਹ ਦਿੱਤੀ ਹੈ, ਤਾਂ ਵੀ ਮੈਡੀਕੇਅਰ ਰਿਬੇਟ (Medicare rebate) ਦੇ ਯੋਗ ਹੋਣ ਲਈ ਤੁਹਾਨੂੰ ਆਪਣੇ ਜੀਪੀ ਤੋਂ ਰੈਫ਼ਰਲ ਦੀ ਲੋੜ ਪਵੇਗੀ। ਸਾਡੀ ਜਾਂਚ, ਜਿਸ ਵਿੱਚ ਤੁਹਾਡੀ ਤਕਲੀਫ਼ ਦਾ ਵੇਰਵਾ, ਸਰੀਰਕ ਜਾਂਚ ਅਤੇ ਲੋੜ ਪੈਣ 'ਤੇ ਸਕੈਨ ਸ਼ਾਮਲ ਹਨ, ਇਹ ਪਤਾ ਲਗਾਉਂਦੀ ਹੈ ਕਿ ਤੁਹਾਡਾ ਦਰਦ ਕਿਸ ਕਾਰਨ ਹੋ ਰਿਹਾ ਹੈ। ਜੋੜ ਦੀ ਇਸ ਤਰ੍ਹਾਂ ਦੀ ਲੰਬੇ ਸਮੇਂ ਤੋਂ ਚੱਲੀ ਆ ਰਹੀ ਘਿਸਾਈ ਲਈ, ਅਸੀਂ ਆਮ ਤੌਰ 'ਤੇ ਪਹਿਲਾਂ ਬਿਨਾਂ ਓਪਰੇਸ਼ਨ ਵਾਲਾ ਇਲਾਜ ਅਜ਼ਮਾਉਂਦੇ ਹਾਂ, ਜਿਵੇਂ ਤੁਹਾਡੀਆਂ ਸਰਗਰਮੀਆਂ ਵਿੱਚ ਬਦਲਾਅ ਅਤੇ ਫਿਜ਼ੀਓਥੈਰੇਪੀ, ਅਤੇ ਜਦੋਂ ਉਸ ਨਾਲ ਕਾਫ਼ੀ ਸੁਧਾਰ ਨਾ ਹੋਵੇ ਤਾਂ ਸਰਜਰੀ ਬਾਰੇ ਸੋਚਦੇ ਹਾਂ।
ਇਹ ਓਪਰੇਸ਼ਨ ਤੁਹਾਡੀ ਹੰਸਲੀ (collarbone) ਦੇ ਬਾਹਰਲੇ ਸਿਰੇ ਤੋਂ ਹੱਡੀ ਦਾ ਇੱਕ ਛੋਟਾ ਟੁਕੜਾ ਕੱਢਦਾ ਹੈ, ਉਸ ਜੋੜ ਉੱਤੇ ਜਿੱਥੇ ਹੰਸਲੀ ਤੁਹਾਡੇ ਮੋਢੇ ਦੇ ਉੱਪਰਲੇ ਹਿੱਸੇ ਨਾਲ ਮਿਲਦੀ ਹੈ। ਇਹ ਉਹਨਾਂ ਲੋਕਾਂ ਨੂੰ ਪੇਸ਼ ਕੀਤਾ ਜਾਂਦਾ ਹੈ ਜਿਨ੍ਹਾਂ ਦਾ ਦਰਦ ਉਸ ਜੋੜ ਦੀ ਘਿਸਾਈ ਕਾਰਨ, ਜਾਂ ਵਾਰ-ਵਾਰ ਭਾਰੀ ਭਾਰ ਚੁੱਕਣ ਤੋਂ ਬਾਅਦ ਹੱਡੀ ਦੇ ਖੁਰਨ ਕਾਰਨ ਹੁੰਦਾ ਹੈ, ਅਤੇ ਸਿਰਫ਼ ਉਦੋਂ ਜਦੋਂ ਜੋੜ ਨੂੰ ਸਥਿਰ ਰੱਖਣ ਵਾਲੇ ਲਿਗਾਮੈਂਟ (ligaments, ਹੱਡੀ ਨੂੰ ਹੱਡੀ ਨਾਲ ਜੋੜਨ ਵਾਲੇ ਬੰਧਨ) ਸਹੀ-ਸਲਾਮਤ ਹੋਣ। ਹੱਡੀ ਦਾ ਉਹ ਛੋਟਾ ਟੁਕੜਾ ਕੱਢਣ ਨਾਲ ਖੁਰਦਰੀਆਂ ਸਤਹਾਂ ਦਾ ਇੱਕ-ਦੂਜੇ ਉੱਤੇ ਰਗੜ ਖਾਣਾ ਬੰਦ ਹੋ ਜਾਂਦਾ ਹੈ। ਮਕਸਦ ਘੱਟ ਦਰਦ ਅਤੇ ਤੁਹਾਡੇ ਮੋਢੇ ਦੀ ਵਧੇਰੇ ਖੁੱਲ੍ਹੀ ਹਿਲਜੁਲ ਹੈ, ਅਤੇ ਇਸ ਓਪਰੇਸ਼ਨ ਦੇ ਦੋਵੇਂ ਰੂਪ, ਦੂਰਬੀਨ ਵਾਲਾ (ਆਰਥਰੋਸਕੋਪਿਕ) ਅਤੇ ਖੁੱਲ੍ਹੇ ਚੀਰੇ ਵਾਲਾ, 1 ਸਾਲ 'ਤੇ ਦਰਦ ਵਿੱਚ ਕਾਫ਼ੀ ਕਮੀ ਲਿਆਉਂਦੇ ਹਨ।
ਓਪਰੇਸ਼ਨ ਤੋਂ ਪਹਿਲਾਂ¶
ਤੁਹਾਡਾ ਸਰਜਨ ਤੁਹਾਡੇ ਪਹਿਲਾਂ ਤੋਂ ਹੋਏ ਸਕੈਨਾਂ ਦੀ ਮਦਦ ਨਾਲ ਓਪਰੇਸ਼ਨ ਦੀ ਯੋਜਨਾ ਬਣਾਏਗਾ, ਜਿਵੇਂ ਮੋਢੇ ਦਾ ਐਕਸ-ਰੇ, MRI ਜਾਂ ਅਲਟਰਾਸਾਊਂਡ। ਇਹ ਜੋੜ ਨੂੰ ਸਾਫ਼ ਦਿਖਾਉਂਦੇ ਹਨ ਅਤੇ ਇਹ ਤੈਅ ਕਰਨ ਵਿੱਚ ਮਦਦ ਕਰਦੇ ਹਨ ਕਿ ਕਿੰਨੀ ਹੱਡੀ ਕੱਢਣ ਦੀ ਲੋੜ ਹੈ। ਓਪਰੇਸ਼ਨ ਵਾਲੇ ਦਿਨ, ਆਪਣੇ ਓਪਰੇਸ਼ਨ ਤੋਂ ਸੱਤ ਘੰਟੇ ਪਹਿਲਾਂ ਖਾਣਾ-ਪੀਣਾ ਬੰਦ ਕਰ ਦਿਓ। ਅਸੀਂ ਛੇ ਦੀ ਬਜਾਏ ਸੱਤ ਘੰਟੇ ਇਸ ਲਈ ਮੰਗਦੇ ਹਾਂ ਤਾਂ ਜੋ ਜੇ ਓਪਰੇਸ਼ਨਾਂ ਦੀ ਸੂਚੀ ਜਲਦੀ ਚੱਲ ਰਹੀ ਹੋਵੇ ਤਾਂ ਤੁਹਾਡਾ ਓਪਰੇਸ਼ਨ ਪਹਿਲਾਂ ਕੀਤਾ ਜਾ ਸਕੇ। ਤੁਹਾਡਾ ਸਰਜਨ ਦੱਸੇਗਾ ਕਿ ਤੁਹਾਡੀਆਂ ਆਮ ਦਵਾਈਆਂ ਵਿੱਚੋਂ ਕਿਹੜੀਆਂ ਛੱਡਣੀਆਂ ਹਨ ਅਤੇ ਕਿਹੜੀਆਂ ਲੈਣੀਆਂ ਹਨ। ਜੋ ਕੁਝ ਵੀ ਤੁਸੀਂ ਲੈਂਦੇ ਹੋ ਉਸਦੀ ਲਿਖਤੀ ਸੂਚੀ ਨਾਲ ਲਿਆਓ। ਬਾਅਦ ਵਿੱਚ ਤੁਹਾਨੂੰ ਗੱਡੀ ਚਲਾ ਕੇ ਘਰ ਲਿਜਾਣ ਲਈ ਕਿਸੇ ਦਾ ਪ੍ਰਬੰਧ ਕਰੋ। ਢਿੱਲੇ, ਆਰਾਮਦਾਇਕ ਕੱਪੜੇ ਪਾਓ ਜੋ ਆਸਾਨੀ ਨਾਲ ਪਹਿਨੇ ਅਤੇ ਉਤਾਰੇ ਜਾ ਸਕਣ। ਜੇ ਤੁਹਾਨੂੰ ਹੋਰ ਬਿਮਾਰੀਆਂ ਹਨ, ਤਾਂ ਤੁਹਾਨੂੰ ਖ਼ੂਨ ਦੇ ਟੈਸਟਾਂ ਜਾਂ ਅਨੱਸਥੀਟਿਸਟ (ਬੇਹੋਸ਼ੀ ਵਾਲਾ ਡਾਕਟਰ) ਨਾਲ ਮੁਲਾਕਾਤ ਦੀ ਲੋੜ ਪੈ ਸਕਦੀ ਹੈ।
ਓਪਰੇਸ਼ਨ ਵਾਲੇ ਦਿਨ¶
ਤੁਸੀਂ ਹਸਪਤਾਲ ਦੇ ਸਰਜੀਕਲ ਦਾਖ਼ਲਾ ਵਿਭਾਗ ਵਿੱਚ ਪਹੁੰਚਦੇ ਹੋ, ਜਿੱਥੇ ਤੁਹਾਡਾ ਦਾਖ਼ਲਾ ਕੀਤਾ ਜਾਂਦਾ ਹੈ ਅਤੇ ਤੁਹਾਨੂੰ ਓਪਰੇਸ਼ਨ ਥੀਏਟਰ ਲਈ ਤਿਆਰ ਕੀਤਾ ਜਾਂਦਾ ਹੈ। ਅਨੱਸਥੀਟਿਸਟ ਓਪਰੇਸ਼ਨ ਤੋਂ ਪਹਿਲਾਂ ਤੁਹਾਨੂੰ ਮਿਲੇਗਾ ਅਤੇ ਦੋਵਾਂ ਹਿੱਸਿਆਂ ਬਾਰੇ ਸਮਝਾਏਗਾ। ਇਹ ਓਪਰੇਸ਼ਨ ਜਨਰਲ ਅਨੱਸਥੀਸੀਆ (ਬੇਹੋਸ਼ੀ ਵਾਲੀ ਦਵਾਈ) ਦੇ ਨਾਲ ਰੀਜਨਲ ਨਰਵ ਬਲਾਕ (ਨਸ ਨੂੰ ਸੁੰਨ ਕਰਨ ਵਾਲਾ ਟੀਕਾ) ਦੇ ਕੇ ਕੀਤਾ ਜਾਂਦਾ ਹੈ। ਫਿਰ ਤੁਹਾਨੂੰ ਓਪਰੇਸ਼ਨ ਥੀਏਟਰ ਵਿੱਚ ਲਿਜਾਇਆ ਜਾਂਦਾ ਹੈ, ਜਿੱਥੇ ਓਪਰੇਸ਼ਨ ਕੀਤਾ ਜਾਂਦਾ ਹੈ।
ਤੁਸੀਂ ਰਿਕਵਰੀ ਵਾਲੀ ਥਾਂ ਵਿੱਚ ਜਾਗਦੇ ਹੋ, ਜਿੱਥੇ ਅਨੱਸਥੀਸੀਆ ਦਾ ਅਸਰ ਖ਼ਤਮ ਹੋਣ ਤੱਕ ਨਰਸਾਂ ਤੁਹਾਡੀ ਨਿਗਰਾਨੀ ਕਰਦੀਆਂ ਹਨ। ਜਦੋਂ ਤੁਹਾਡੀ ਹਾਲਤ ਸਥਿਰ ਹੋ ਜਾਂਦੀ ਹੈ, ਤਾਂ ਓਪਰੇਸ਼ਨ ਅਤੇ ਤੁਹਾਡੇ ਠੀਕ ਹੋਣ ਦੇ ਹਿਸਾਬ ਨਾਲ ਤੁਸੀਂ ਜਾਂ ਤਾਂ ਵਾਰਡ ਵਿੱਚ ਜਾਂਦੇ ਹੋ ਜਾਂ ਘਰ ਜਾਂਦੇ ਹੋ।
ਓਪਰੇਸ਼ਨ ਵਿੱਚ ਕੀ ਕੀਤਾ ਜਾਂਦਾ ਹੈ¶
ਇਹ ਦੂਰਬੀਨ ਵਾਲੀ (ਆਰਥਰੋਸਕੋਪਿਕ) ਸਰਜਰੀ ਹੈ। ਤੁਹਾਡਾ ਸਰਜਨ ਤੁਹਾਡੇ ਮੋਢੇ ਦੇ ਆਲੇ-ਦੁਆਲੇ ਕੁਝ ਛੋਟੇ ਚੀਰੇ ਲਾਉਂਦਾ ਹੈ, ਜਿਨ੍ਹਾਂ ਵਿੱਚੋਂ ਘੱਟੋ-ਘੱਟ ਇੱਕ ਪਿਛਲੇ ਪਾਸੇ ਹੁੰਦਾ ਹੈ, ਅਤੇ ਜੋੜ ਦੇ ਅੰਦਰ ਇੱਕ ਛੋਟੇ ਕੈਮਰੇ ਨਾਲ ਕੰਮ ਕਰਦਾ ਹੈ। ਕੈਮਰਾ ਜੋੜ ਨੂੰ ਇੱਕ ਸਕਰੀਨ ਉੱਤੇ ਦਿਖਾਉਂਦਾ ਹੈ, ਇਸ ਲਈ ਇਸ ਨੂੰ ਦੇਖਣ ਲਈ ਕਿਸੇ ਵੱਡੇ ਚੀਰੇ ਦੀ ਲੋੜ ਨਹੀਂ ਪੈਂਦੀ।
ਇਹਨਾਂ ਛੋਟੇ ਚੀਰਿਆਂ ਰਾਹੀਂ, ਤੁਹਾਡਾ ਸਰਜਨ ਤੁਹਾਡੀ ਹੰਸਲੀ ਦੇ ਬਾਹਰਲੇ ਸਿਰੇ ਤੋਂ ਲਗਭਗ 5 ਮਿਲੀਮੀਟਰ ਹੱਡੀ ਕੱਢਦਾ ਹੈ। ਇਹ ਜੋੜ ਦੀਆਂ ਖੁਰਦਰੀਆਂ, ਘਿਸੀਆਂ ਹੋਈਆਂ ਸਤਹਾਂ ਦਾ ਇੱਕ-ਦੂਜੇ ਉੱਤੇ ਰਗੜ ਖਾਣਾ ਬੰਦ ਕਰਨ ਲਈ ਕਾਫ਼ੀ ਹੁੰਦਾ ਹੈ। ਤੁਹਾਡਾ ਸਰਜਨ ਧਿਆਨ ਰੱਖਦਾ ਹੈ ਕਿ ਹੱਡੀ ਦੀ ਇੱਕ ਮਿਣੀ-ਤੋਲੀ ਮਾਤਰਾ ਹੀ ਕੱਢੀ ਜਾਵੇ, ਜੋ ਦਰਦ ਤੋਂ ਰਾਹਤ ਲਈ ਕਾਫ਼ੀ ਹੋਵੇ ਅਤੇ ਨਾਲ ਹੀ ਜੋੜ ਨੂੰ ਸਥਿਰ ਰੱਖਣ ਵਾਲੇ ਲਿਗਾਮੈਂਟ ਅਤੇ ਕੈਪਸੂਲ (capsule, ਜੋੜ ਦੁਆਲੇ ਦੀ ਥੈਲੀ) ਬਚੇ ਰਹਿਣ। ਇਹਨਾਂ ਬਣਤਰਾਂ ਨੂੰ ਬਚਾਉਣਾ ਮਹੱਤਵਪੂਰਨ ਹੈ, ਕਿਉਂਕਿ ਬਹੁਤ ਜ਼ਿਆਦਾ ਹੱਡੀ ਕੱਢਣ ਨਾਲ ਹੰਸਲੀ ਅਸਥਿਰ ਹੋ ਸਕਦੀ ਹੈ।
ਛੋਟੇ ਚੀਰਿਆਂ ਨੂੰ ਟਾਂਕਿਆਂ ਨਾਲ ਬੰਦ ਕੀਤਾ ਜਾਂਦਾ ਹੈ। ਉੱਪਰ ਪੱਟੀ ਲਗਾਈ ਜਾਂਦੀ ਹੈ, ਅਤੇ ਤੁਸੀਂ ਉਹ ਪੱਟੀ ਲਗਭਗ 10 ਦਿਨ ਲੱਗੀ ਰੱਖਦੇ ਹੋ।
ਓਪਰੇਸ਼ਨ ਤੋਂ ਬਾਅਦ¶
ਇਸ ਓਪਰੇਸ਼ਨ ਤੋਂ ਬਾਅਦ ਜ਼ਿਆਦਾਤਰ ਮਰੀਜ਼ ਇੱਕ ਰਾਤ ਹਸਪਤਾਲ ਵਿੱਚ ਰਹਿੰਦੇ ਹਨ, ਹਾਲਾਂਕਿ ਕੁਝ ਉਸੇ ਦਿਨ ਘਰ ਜਾ ਸਕਦੇ ਹਨ। ਕਿਰਪਾ ਕਰਕੇ ਘਰ ਪਹੁੰਚਣ ਤੋਂ ਬਾਅਦ ਪਹਿਲੇ 24 ਘੰਟਿਆਂ ਲਈ ਕਿਸੇ ਦੇ ਆਪਣੇ ਕੋਲ ਰਹਿਣ ਦਾ ਪ੍ਰਬੰਧ ਕਰੋ। ਪਹਿਲੇ ਇੱਕ-ਦੋ ਦਿਨ ਤੁਹਾਨੂੰ ਦਰਦ ਹੋਵੇਗਾ; ਇਸ ਨੂੰ ਕਾਬੂ ਵਿੱਚ ਰੱਖਣ ਲਈ ਅਸੀਂ ਤੁਹਾਨੂੰ ਦਵਾਈ ਦੇਵਾਂਗੇ, ਅਤੇ ਨਰਵ ਬਲਾਕ ਕਾਰਨ ਮੋਢਾ ਕੁਝ ਸਮੇਂ ਲਈ ਸੁੰਨ ਮਹਿਸੂਸ ਹੋ ਸਕਦਾ ਹੈ। ਨਰਵ ਬਲਾਕ ਤੋਂ ਬਾਅਦ ਪਹਿਲੇ 24 ਘੰਟਿਆਂ ਵਿੱਚ ਸੁੰਨਪਨ ਅਤੇ ਕਮਜ਼ੋਰੀ ਹੋਣਾ ਆਮ ਗੱਲ ਹੈ। ਜੇ ਲਗਭਗ 24 ਘੰਟਿਆਂ ਬਾਅਦ, ਨਰਵ ਬਲਾਕ ਦਾ ਅਸਰ ਖ਼ਤਮ ਹੋਣ 'ਤੇ, ਤੁਸੀਂ ਆਪਣੀ ਬਾਂਹ, ਹੱਥ ਜਾਂ ਉਂਗਲਾਂ ਨੂੰ ਮਹਿਸੂਸ ਨਹੀਂ ਕਰ ਸਕਦੇ ਜਾਂ ਹਿਲਾ ਨਹੀਂ ਸਕਦੇ, ਤਾਂ ਕਲੀਨਿਕ ਨੂੰ ਫ਼ੋਨ ਕਰੋ। ਆਰਾਮ ਲਈ ਤੁਹਾਡੀ ਬਾਂਹ ਇੱਕ ਸਾਧਾਰਨ ਸਲਿੰਗ (ਬਾਂਹ ਨੂੰ ਸਹਾਰਾ ਦੇਣ ਵਾਲੀ ਪੱਟੀ) ਵਿੱਚ ਟਿਕੀ ਰਹਿੰਦੀ ਹੈ, ਜੋ ਕਸਰਤਾਂ ਅਤੇ ਨਹਾਉਣ-ਧੋਣ ਲਈ ਉਤਾਰੀ ਜਾਂਦੀ ਹੈ। ਅਸੀਂ ਪੱਟੀ ਲਗਭਗ 10 ਦਿਨ ਲੱਗੀ ਰਹਿਣ ਦਿੰਦੇ ਹਾਂ; ਕਿਰਪਾ ਕਰਕੇ ਉਸਤੋਂ ਪਹਿਲਾਂ ਇਸਨੂੰ ਨਾ ਉਤਾਰੋ, ਜਦ ਤੱਕ ਅਸੀਂ ਤੁਹਾਨੂੰ ਨਾ ਕਹੀਏ। ਜਦੋਂ ਅਸੀਂ ਤੁਹਾਨੂੰ ਦੇਖਦੇ ਹਾਂ ਤਾਂ ਅਸੀਂ ਇਸਨੂੰ ਬਦਲਦੇ ਜਾਂ ਉਤਾਰਦੇ ਹਾਂ।
ਸਿਹਤਯਾਬੀ¶
ਪਹਿਲੇ ਇੱਕ-ਦੋ ਦਿਨ ਤੁਹਾਡਾ ਮੋਢਾ ਦੁਖੇਗਾ ਅਤੇ ਸੁੱਜਿਆ ਹੋਇਆ ਮਹਿਸੂਸ ਹੋ ਸਕਦਾ ਹੈ। ਜੋ ਦਰਦ ਦੀ ਦਵਾਈ ਅਸੀਂ ਤੁਹਾਨੂੰ ਦਿੰਦੇ ਹਾਂ ਉਹ ਇਸ ਨੂੰ ਕਾਬੂ ਵਿੱਚ ਰੱਖਦੀ ਹੈ, ਅਤੇ ਸ਼ੁਰੂ ਵਿੱਚ ਨਰਵ ਬਲਾਕ ਦਾ ਸੁੰਨਪਨ ਵੀ ਮਦਦ ਕਰਦਾ ਹੈ। ਬਾਂਹ ਨੂੰ ਸਹਾਰਾ ਦੇ ਕੇ ਆਰਾਮ ਕਰਨਾ ਅਤੇ ਆਪਣੀਆਂ ਕਸਰਤਾਂ ਹੌਲੀ-ਹੌਲੀ ਕਰਨਾ ਆਮ ਤੌਰ 'ਤੇ ਤਕਲੀਫ਼ ਨੂੰ ਸ਼ਾਂਤ ਕਰ ਦਿੰਦਾ ਹੈ। ਜ਼ਿਆਦਾਤਰ ਲੋਕਾਂ ਨੂੰ ਲੱਗਦਾ ਹੈ ਕਿ ਪਹਿਲੇ ਦੋ-ਕੁ ਹਫ਼ਤਿਆਂ ਦੌਰਾਨ ਦੁਖਣ ਲਗਾਤਾਰ ਘਟਦੀ ਜਾਂਦੀ ਹੈ।
ਆਰਾਮ ਲਈ ਤੁਹਾਡੀ ਬਾਂਹ ਇੱਕ ਸਾਧਾਰਨ ਸਲਿੰਗ ਵਿੱਚ ਟਿਕੀ ਰਹਿੰਦੀ ਹੈ। ਤੁਸੀਂ ਇਸਨੂੰ ਆਪਣੀਆਂ ਕਸਰਤਾਂ ਅਤੇ ਨਹਾਉਣ-ਧੋਣ ਲਈ ਉਤਾਰਦੇ ਹੋ, ਅਤੇ ਤੁਹਾਡਾ ਫਿਜ਼ੀਓਥੈਰੇਪਿਸਟ ਤੁਹਾਨੂੰ ਦਿਖਾਏਗਾ ਕਿ ਕਿਹੜੀਆਂ ਹਿਲਜੁਲਾਂ ਨਾਲ ਸ਼ੁਰੂਆਤ ਕਰਨੀ ਹੈ। ਇਹ ਹਲਕੇ ਢੰਗ ਨਾਲ ਸ਼ੁਰੂ ਹੁੰਦੀਆਂ ਹਨ ਅਤੇ ਦਰਦ ਘਟਣ ਦੇ ਨਾਲ-ਨਾਲ ਵਧਦੀਆਂ ਜਾਂਦੀਆਂ ਹਨ। ਜਦੋਂ ਤੁਸੀਂ ਆਪਣੇ ਆਪ ਨੂੰ ਸੰਭਲਿਆ ਹੋਇਆ ਮਹਿਸੂਸ ਕਰੋ, ਤਾਂ ਤੁਸੀਂ ਘਰ ਵਿੱਚ ਹਲਕੇ ਕੰਮਾਂ ਲਈ ਆਪਣਾ ਹੱਥ ਵਰਤ ਸਕਦੇ ਹੋ, ਜਿਵੇਂ ਖਾਣਾ ਖਾਣਾ ਜਾਂ ਲਿਖਣਾ। ਕੋਈ ਵੀ ਭਾਰੀ ਚੀਜ਼ ਨਾ ਚੁੱਕੋ ਅਤੇ ਦਰਦ ਦੇ ਬਾਵਜੂਦ ਜ਼ੋਰ ਨਾ ਲਾਓ।
ਜਿਵੇਂ-ਜਿਵੇਂ ਹਿਲਜੁਲ ਵਾਪਸ ਆਉਂਦੀ ਹੈ, ਰੋਜ਼ਾਨਾ ਦੇ ਕੰਮ ਸੌਖੇ ਹੁੰਦੇ ਜਾਂਦੇ ਹਨ। ਕੱਪੜੇ ਪਾਉਣਾ, ਸਿਰ ਤੋਂ ਉੱਪਰ ਹੱਥ ਪਹੁੰਚਾਉਣਾ ਅਤੇ ਉਸ ਪਾਸੇ ਸੌਣਾ, ਇਹ ਸਭ ਹੌਲੀ-ਹੌਲੀ ਬਿਹਤਰ ਹੁੰਦੇ ਹਨ। ਸ਼ੁਰੂਆਤੀ ਦਿਨਾਂ ਵਿੱਚ ਵਾਧੂ ਸਿਰਹਾਣਿਆਂ ਦਾ ਢੋਅ ਲਾ ਕੇ ਸੌਣਾ ਵਧੇਰੇ ਆਰਾਮਦਾਇਕ ਹੋ ਸਕਦਾ ਹੈ। ਜਦੋਂ ਤੁਹਾਡਾ ਸਰਜਨ ਤੁਹਾਨੂੰ ਗੱਡੀ ਚਲਾਉਣ ਦੀ ਇਜਾਜ਼ਤ ਦੇ ਦੇਵੇ, ਆਮ ਤੌਰ 'ਤੇ ਛੇ ਹਫ਼ਤਿਆਂ ਵਾਲੀ ਜਾਂਚ ਵੇਲੇ, ਤਾਂ ਤੁਸੀਂ ਮੁੜ ਗੱਡੀ ਚਲਾ ਸਕਦੇ ਹੋ; ਵਧੇਰੇ ਜਾਣਕਾਰੀ ਲਈ ਉੱਪਰਲੇ ਅੰਗ ਦੀ ਸਰਜਰੀ ਤੋਂ ਬਾਅਦ ਗੱਡੀ ਚਲਾਉਣਾ ਦੇਖੋ। ਦਫ਼ਤਰੀ ਕੰਮ ਅਤੇ ਰੋਜ਼ਾਨਾ ਦੇ ਹਲਕੇ ਕੰਮ ਆਮ ਤੌਰ 'ਤੇ 2 ਤੋਂ 6 ਹਫ਼ਤਿਆਂ ਦੇ ਅੰਦਰ ਮੁੜ ਹੋਣ ਲੱਗਦੇ ਹਨ, ਅਤੇ ਖੇਡਾਂ ਜਾਂ ਜਿੰਮ ਵਰਗੀਆਂ ਭਾਰੀ ਸਰਗਰਮੀਆਂ ਵਿੱਚ ਵਧੇਰੇ ਸਮਾਂ ਲੱਗਦਾ ਹੈ, 3 ਤੋਂ 6 ਮਹੀਨੇ।
ਹਰ ਕੋਈ ਆਪਣੀ ਰਫ਼ਤਾਰ ਨਾਲ ਠੀਕ ਹੁੰਦਾ ਹੈ, ਇਸ ਲਈ ਤੁਹਾਡਾ ਸਮਾਂ ਵੱਖਰਾ ਹੋ ਸਕਦਾ ਹੈ। ਤੁਹਾਡਾ ਸਰਜਨ ਅਤੇ ਫਿਜ਼ੀਓਥੈਰੇਪਿਸਟ ਹਰ ਜਾਂਚ ਵੇਲੇ ਤੁਹਾਡੀ ਅਗਵਾਈ ਕਰਨਗੇ।
ਕੀ ਗ਼ਲਤ ਹੋ ਸਕਦਾ ਹੈ¶
ਜ਼ਿਆਦਾਤਰ ਮਰੀਜ਼ ਠੀਕ ਰਹਿੰਦੇ ਹਨ, ਪਰ ਕਦੇ-ਕਦਾਈਂ ਸਮੱਸਿਆਵਾਂ ਹੋ ਸਕਦੀਆਂ ਹਨ। ਤੁਹਾਡਾ ਸਰਜਨ ਅਤੇ ਟੀਮ ਕਿਸੇ ਵੀ ਸਮੱਸਿਆ ਨੂੰ ਛੇਤੀ ਫੜਨ ਲਈ ਤੁਹਾਡੀ ਨੇੜਿਓਂ ਨਿਗਰਾਨੀ ਕਰਦੇ ਹਨ।
ਕਈ ਵਾਰ ਓਪਰੇਸ਼ਨ ਤੋਂ ਬਾਅਦ ਦਰਦ ਜਾਰੀ ਰਹਿੰਦਾ ਹੈ। ਇਸ ਸਰਜਰੀ ਨਾਲ ਇਹ ਸਭ ਤੋਂ ਆਮ ਸਮੱਸਿਆ ਹੈ। ਇਹ ਉਦੋਂ ਹੋ ਸਕਦਾ ਹੈ ਜੇ ਥੋੜ੍ਹੀ ਜ਼ਿਆਦਾ ਜਾਂ ਥੋੜ੍ਹੀ ਘੱਟ ਹੱਡੀ ਕੱਢੀ ਗਈ ਹੋਵੇ, ਜਾਂ ਜੇ ਹੱਡੀ ਦਾ ਕੋਈ ਛੋਟਾ ਟੁਕੜਾ ਮੁੜ ਵਧ ਆਵੇ। ਜੇ ਤੁਹਾਡਾ ਮੋਢਾ ਅਜੇ ਵੀ ਪਹਿਲਾਂ ਵਾਂਗ ਦੁਖਦਾ ਹੈ, ਜਾਂ ਕੁਝ ਸਮਾਂ ਆਰਾਮ ਰਹਿਣ ਤੋਂ ਬਾਅਦ ਦਰਦ ਵਾਪਸ ਆ ਜਾਂਦਾ ਹੈ, ਤਾਂ ਆਪਣੀ ਅਗਲੀ ਜਾਂਚ ਵੇਲੇ ਇਸ ਬਾਰੇ ਦੱਸੋ। ਕਈ ਵਾਰ ਇਸ ਨੂੰ ਠੀਕ ਕਰਨ ਲਈ ਇੱਕ ਹੋਰ ਓਪਰੇਸ਼ਨ ਦੀ ਲੋੜ ਪੈਂਦੀ ਹੈ।
ਬਹੁਤ ਜ਼ਿਆਦਾ ਹੱਡੀ ਕੱਢਣ ਨਾਲ ਇੱਕ ਵੱਖਰੀ ਸਮੱਸਿਆ ਹੋ ਸਕਦੀ ਹੈ। ਹੰਸਲੀ ਨੂੰ ਸਥਿਰ ਰੱਖਣ ਵਾਲੇ ਲਿਗਾਮੈਂਟ ਅਤੇ ਕੈਪਸੂਲ ਛੇੜੇ ਜਾ ਸਕਦੇ ਹਨ, ਜਿਸ ਨਾਲ ਜੋੜ ਢਿੱਲਾ ਜਾਂ ਅਸਥਿਰ ਰਹਿ ਜਾਂਦਾ ਹੈ। ਤੁਹਾਨੂੰ ਲੱਗ ਸਕਦਾ ਹੈ ਕਿ ਹੰਸਲੀ ਖਿਸਕਦੀ ਹੈ ਜਾਂ ਕਲਿੱਕ ਕਰਦੀ ਹੈ, ਜਾਂ ਬਾਂਹ ਹਿਲਾਉਣ ਵੇਲੇ ਇਹ ਅਹਿਸਾਸ ਹੋ ਸਕਦਾ ਹੈ ਕਿ ਜੋੜ ਸੁਰੱਖਿਅਤ ਢੰਗ ਨਾਲ ਟਿਕਿਆ ਹੋਇਆ ਨਹੀਂ ਹੈ। ਜੇ ਜੋੜ ਸਰਜਰੀ ਤੋਂ ਪਹਿਲਾਂ ਹੀ ਢਿੱਲਾ ਸੀ, ਤਾਂ ਇਹ ਖ਼ਤਰਾ ਵੱਧ ਹੁੰਦਾ ਹੈ। ਅਸਥਿਰ ਜੋੜ ਲਈ ਲਿਗਾਮੈਂਟਾਂ ਨੂੰ ਮੁੜ ਬਣਾਉਣ ਵਾਸਤੇ ਹੋਰ ਸਰਜਰੀ ਦੀ ਲੋੜ ਪੈ ਸਕਦੀ ਹੈ। ਜੇ ਜੋੜ ਢਿੱਲਾ ਮਹਿਸੂਸ ਹੋਵੇ ਜਾਂ ਕਿਸੇ ਨਵੇਂ ਢੰਗ ਨਾਲ ਹਿੱਲੇ, ਤਾਂ ਆਪਣੀ ਅਗਲੀ ਜਾਂਚ ਵੇਲੇ ਆਪਣੇ ਸਰਜਨ ਨੂੰ ਦੱਸੋ।
ਹੋਰ ਸਮੱਸਿਆਵਾਂ ਘੱਟ ਹੀ ਹੁੰਦੀਆਂ ਹਨ, ਪਰ ਇਹਨਾਂ ਬਾਰੇ ਜਾਣਨਾ ਚੰਗਾ ਹੈ। ਇਹਨਾਂ ਵਿੱਚ ਲਾਗ (ਇਨਫੈਕਸ਼ਨ), ਅਕੜਾਅ, ਫ੍ਰੈਕਚਰ (ਹੱਡੀ ਦਾ ਟੁੱਟਣਾ), ਜੋੜ ਦੀਆਂ ਹੱਡੀਆਂ ਦਾ ਆਪਣੇ ਆਪ ਆਪਸ ਵਿੱਚ ਜੁੜ ਜਾਣਾ, ਅਤੇ ਕੰਪਲੈਕਸ ਰੀਜਨਲ ਪੇਨ ਸਿੰਡਰੋਮ (complex regional pain syndrome) ਨਾਂ ਦੀ ਲੰਮੇ ਸਮੇਂ ਤੱਕ ਰਹਿਣ ਵਾਲੇ ਦਰਦ ਦੀ ਸਥਿਤੀ ਸ਼ਾਮਲ ਹਨ। ਲਾਗ ਦੀਆਂ ਜਿਨ੍ਹਾਂ ਨਿਸ਼ਾਨੀਆਂ ਉੱਤੇ ਨਜ਼ਰ ਰੱਖਣੀ ਹੈ ਉਹ ਹਨ ਬੁਖ਼ਾਰ, ਜ਼ਖ਼ਮ ਦੇ ਆਲੇ-ਦੁਆਲੇ ਫੈਲਦੀ ਲਾਲੀ, ਜਾਂ ਜ਼ਖ਼ਮ ਵਿੱਚੋਂ ਤਰਲ ਜਾਂ ਪਾਕ ਦਾ ਰਿਸਣਾ। ਜੇ ਤੁਸੀਂ ਇਹਨਾਂ ਵਿੱਚੋਂ ਕੁਝ ਵੀ ਦੇਖਦੇ ਹੋ, ਤਾਂ ਉਸੇ ਦਿਨ ਕਲੀਨਿਕ ਨੂੰ ਫ਼ੋਨ ਕਰੋ। ਜੇ ਦਰਦ ਦੀਆਂ ਦਵਾਈਆਂ ਦੇ ਬਾਵਜੂਦ ਦਰਦ ਵਧਦਾ ਹੀ ਜਾਵੇ, ਤਾਂ ਉਸ ਲਈ ਵੀ ਉਸੇ ਦਿਨ ਕਲੀਨਿਕ ਨੂੰ ਫ਼ੋਨ ਕਰੋ। ਦੂਰਬੀਨ ਵਾਲੀ ਸਰਜਰੀ ਤੋਂ ਬਾਅਦ ਜੋੜ ਦਾ ਆਪਣੀ ਥਾਂ ਤੋਂ ਉਤਰ ਜਾਣਾ ਵੀ ਦਰਜ ਕੀਤਾ ਗਿਆ ਹੈ। ਜੇ ਕਿਸੇ ਟੱਕਰ ਜਾਂ ਡਿੱਗਣ ਤੋਂ ਬਾਅਦ ਤੁਹਾਡੇ ਮੋਢੇ ਦੀ ਸ਼ਕਲ ਅਚਾਨਕ ਬਦਲ ਜਾਵੇ, ਮੋਢਾ ਅੱਗੇ ਵੱਲ ਢਲਕ ਜਾਵੇ, ਜਾਂ ਬਹੁਤ ਦਰਦ ਭਰਿਆ ਅਤੇ ਅਸਥਿਰ ਮਹਿਸੂਸ ਹੋਵੇ, ਤਾਂ ਤੁਰੰਤ ਕਲੀਨਿਕ ਨਾਲ ਸੰਪਰਕ ਕਰੋ।
ਜੇ ਤੁਸੀਂ ਖ਼ਾਸ ਅੰਕੜੇ ਜਾਣਨਾ ਚਾਹੁੰਦੇ ਹੋ, ਤਾਂ ਇਸ ਪੰਨੇ ਉੱਤੇ ਪੇਚੀਦਗੀਆਂ ਵਾਲੀ ਸਾਰਣੀ ਵਿੱਚ ਆਮ ਦਰਾਂ ਦਿੱਤੀਆਂ ਗਈਆਂ ਹਨ।
ਸਾਨੂੰ ਕਦੋਂ ਫ਼ੋਨ ਕਰਨਾ ਹੈ¶
ਜਦੋਂ ਤੁਸੀਂ ਸਾਨੂੰ ਦੱਸਦੇ ਹੋ ਤਾਂ ਜ਼ਿਆਦਾਤਰ ਸਮੱਸਿਆਵਾਂ ਛੇਤੀ ਫੜੀਆਂ ਜਾਂਦੀਆਂ ਹਨ। ਜੇ ਤੁਹਾਨੂੰ ਬੁਖ਼ਾਰ ਹੈ, ਜ਼ਖ਼ਮ ਦੇ ਆਲੇ-ਦੁਆਲੇ ਲਾਲੀ ਫੈਲ ਰਹੀ ਹੈ, ਜਾਂ ਜ਼ਖ਼ਮ ਵਿੱਚੋਂ ਤਰਲ ਜਾਂ ਪਾਕ ਰਿਸ ਰਹੀ ਹੈ, ਤਾਂ ਉਸੇ ਦਿਨ ਕਲੀਨਿਕ ਨੂੰ ਫ਼ੋਨ ਕਰੋ। ਜੇ ਦਰਦ ਦੀਆਂ ਦਵਾਈਆਂ ਦੇ ਬਾਵਜੂਦ ਦਰਦ ਵਧਦਾ ਹੀ ਜਾ ਰਿਹਾ ਹੈ, ਤਾਂ ਵੀ ਉਸੇ ਦਿਨ ਕਲੀਨਿਕ ਨੂੰ ਫ਼ੋਨ ਕਰੋ। ਜੇ ਤੁਹਾਡੀ ਪਿੰਨੀ (ਲੱਤ ਦੀ ਪਿੰਨੀ, calf) ਵਿੱਚ ਸੋਜ ਜਾਂ ਦਰਦ ਹੈ, ਜਾਂ ਤੁਹਾਨੂੰ ਸਾਹ ਚੜ੍ਹਦਾ ਹੈ ਜਾਂ ਛਾਤੀ ਵਿੱਚ ਦਰਦ ਹੈ, ਤਾਂ ਐਮਰਜੈਂਸੀ ਵਿਭਾਗ ਜਾਓ। ਇਹ ਖ਼ੂਨ ਦੇ ਗਤਲੇ ਦੀਆਂ ਨਿਸ਼ਾਨੀਆਂ ਹੋ ਸਕਦੀਆਂ ਹਨ। ਜੇ ਤੁਹਾਡੀਆਂ ਉਂਗਲਾਂ ਜਾਂ ਹੱਥ ਫਿੱਕੇ, ਠੰਢੇ, ਸਫ਼ੈਦ, ਨੀਲੇ ਜਾਂ ਗੂੜ੍ਹੇ ਰੰਗ ਦੇ ਪੈ ਜਾਣ, ਤਾਂ ਵੀ ਐਮਰਜੈਂਸੀ ਵਿਭਾਗ ਜਾਓ। ਜੇ ਲਗਭਗ 24 ਘੰਟਿਆਂ ਬਾਅਦ, ਨਰਵ ਬਲਾਕ ਦਾ ਅਸਰ ਖ਼ਤਮ ਹੋਣ 'ਤੇ, ਤੁਸੀਂ ਆਪਣੀ ਬਾਂਹ, ਹੱਥ ਜਾਂ ਉਂਗਲਾਂ ਨੂੰ ਮਹਿਸੂਸ ਨਹੀਂ ਕਰ ਸਕਦੇ ਜਾਂ ਹਿਲਾ ਨਹੀਂ ਸਕਦੇ, ਤਾਂ ਕਲੀਨਿਕ ਨੂੰ ਫ਼ੋਨ ਕਰੋ। ਜੇ ਤੁਸੀਂ ਕਲੀਨਿਕ ਨਾਲ ਸੰਪਰਕ ਨਹੀਂ ਕਰ ਸਕਦੇ, ਤਾਂ ਆਪਣੇ ਸਭ ਤੋਂ ਨੇੜਲੇ ਐਮਰਜੈਂਸੀ ਵਿਭਾਗ ਜਾਓ।
ਇਸ ਸਥਿਤੀ ਬਾਰੇ ਹੋਰ ਕਿੱਥੇ ਪੜ੍ਹੀਏ¶
ਇਹ ਪੰਨਾ ਆਪਣੇ ਆਪ ਓਪਰੇਸ਼ਨ ਬਾਰੇ ਹੈ। ਜਿਨ੍ਹਾਂ ਦੋ ਸਥਿਤੀਆਂ ਦਾ ਇਹ ਇਲਾਜ ਕਰਦਾ ਹੈ, ਉਹਨਾਂ ਦੇ ਆਪਣੇ ਪੰਨੇ ਹਨ, ਅਤੇ ਹਰ ਪੰਨਾ ਦੱਸਦਾ ਹੈ ਕਿ ਸਬੂਤ ਕੀ ਦਿਖਾਉਂਦੇ ਹਨ ਕਿ ਸਰਜਰੀ ਕਦੋਂ ਮਦਦ ਕਰਦੀ ਹੈ ਅਤੇ ਕਦੋਂ ਨਹੀਂ: ਜੋੜ ਦੀ ਘਿਸਾਈ ਬਾਰੇ AC ਜੋੜ ਦਾ ਓਸਟੀਓਆਰਥਰਾਈਟਿਸ (ਜੋੜਾਂ ਦਾ ਘਿਸਣਾ) ਵਾਲੇ ਪੰਨੇ ਉੱਤੇ ਦੱਸਿਆ ਗਿਆ ਹੈ, ਅਤੇ ਭਾਰ ਚੁੱਕਣ ਵਾਲਿਆਂ ਵਿੱਚ ਹੋਣ ਵਾਲੇ ਰੂਪ ਬਾਰੇ, ਜਿਸ ਵਿੱਚ ਹੰਸਲੀ ਦਾ ਸਿਰਾ ਖੁਰਨ ਲੱਗਦਾ ਹੈ, ਡਿਸਟਲ ਕਲੈਵੀਕਲ ਓਸਟੀਓਲਾਈਸਿਸ (Distal Clavicle Osteolysis) ਵਾਲੇ ਪੰਨੇ ਉੱਤੇ।
Evidence & references
This is the clinical evidence summary written for health professionals. It is technical, and it lists the research this page was built from. You do not need to read it to understand your treatment or to make a decision about it.
Overview¶
- Simple excision of the outer end of the clavicle has yielded satisfactory results in patients with complete dislocation and subluxation of the acromioclavicular joint, with no residual upward displacement disturbing the patients [2].
- Excision of the outer end of the clavicle is preferred for old dislocations, while open reduction and internal fixation are not recommended due to complications and poor functional results [16].
- Open distal clavicle resection yields good to excellent results in properly selected patients and does not create significant subjective or objective weakness [3].
- In appropriately selected patients, open or arthroscopic distal clavicle resection is necessary to relieve symptoms of painful conditions of the acromioclavicular joint [7].
- Arthroscopic distal clavicle resection has provided more 'good or excellent' results than the open procedure, but is comprised of low-level evidence [6].
- Arthroscopic and open distal clavicle excisions both provide significant pain reduction at 1 year with no significant difference in outcome measures between groups, except for VAS pain score improvement [8].
- Among patients undergoing distal clavicle excision for acromioclavicular joint pathology, those having an arthroscopic procedure, specifically through the direct approach, can expect a faster return to activities while obtaining similar long-term outcomes compared with the open procedure [9].
- A well-performed distal clavicle excision will likely perform better than a poorly performed one, regardless of whether an open or arthroscopic approach is chosen [5].
- In carefully selected patients with isolated ACJ pathology, arthroscopic distal clavicle excision results in statistically and clinically significant improvements in range of motion and patient-reported outcome measures [18].
- Both the direct superior approach and the indirect subacromial approach to the arthroscopic distal clavicle resection result in successful clinical outcome with clinically insignificant difference at final follow-up [19].
- Incomplete excision and regrowth of the distal clavicle are the most common causes of revision [12].
- Regeneration of the excised portion of clavicle occurs frequently and may produce an unacceptable result, and may be more likely to occur in the younger patient population [13].
- Horizontal instability of the clavicle is evident with distal clavicle resection of greater than 10 mm [15].
- Although distal clavicle excision with 2.5 mm of bone was successful in many specimens, a 5 mm resection guaranteed no bone-to-bone abutment [17].
- Routine distal clavicle resection in the setting of rotator cuff repair does not result in improved outcomes for patients with no difference being observed at 24 months post surgery [11].
- A records review found that 10 of 894 (1.1%) rotator cuff repairs underwent subsequent distal clavicle resection [40].
- Regardless of the technique chosen for distal clavicle resection, portal placement remains paramount in both facilitating surgery and avoiding injury to adjacent extra-articular structures [1].
- The use of intraoperative ultrasound and cannulated dilators allows surgeons to perform distal clavicle excisions in a more efficient, reproducible and safer manner [4].
- A novel anterior portal technique for arthroscopic distal clavicle excision yields a safe corridor for placement of instruments in a reliable manner that does not disrupt the important stabilizers of the glenohumeral or AC joints [20].
- Clavicular reconstruction may be the treatment of choice in patients with excess resection of the clavicle [14].
Anatomy & Pathophysiology¶
Bony Anatomy¶
- The clavicle is the first bone to ossify, occurring at the fifth week of gestation [59].
- The clavicle is the only long bone to ossify by intramembranous ossification [59, 65].
- The medial (sternal) epiphysis of the clavicle is the last ossification center to fuse, occurring at age 20 to 25 years [59].
- The primary blood supply to the clavicle is periosteal, and no nutrient artery is present [59, 65].
- The distal clavicle is flat in the anteroposterior plane [65].
- The scapula has only one true diarthrodial articulation, the acromioclavicular joint [59].
- The acromion has three ossification centers: the metacromion (base), the mesoacromion (middle), and the preacromion (tip) [59].
- Failure of fusion of the acromial ossification centers results in os acromiale [59].
- The coracoid process serves as an attachment site for the coracoacromial ligament, coracoclavicular ligaments, conjoined tendon, and pectoralis minor muscle [70].
Ligaments and Joint Structures¶
- The acromioclavicular joint is a small diarthrodial joint with an interposed fibrocartilaginous disk [59].
- The acromioclavicular joint is a planar diarthroidal joint that couples scapular and sternoclavicular motion [32].
- A fibrocartilaginous load-bearing disk cushions the high contact stress of the acromioclavicular joint when load is placed across the small articular surface area [32].
- The superior and posterior acromioclavicular ligaments are the primary stabilizers to anterior and posterior (horizontal) translation of the clavicle [59].
- The coracoclavicular ligaments consist of the conoid (medial) and trapezoid (lateral) components [59, 65].
- The coracoclavicular ligaments are the primary stabilizers to superior (vertical) translation of the distal clavicle [59, 65].
- The trapezoid ligament is located approximately 25 mm from the acromioclavicular joint [70].
- The conoid ligament is located approximately 45 mm from the acromioclavicular joint and is the stronger of the two coracoclavicular ligaments [70].
- The superior shoulder suspensory complex is composed of the glenoid, coracoid process, coracoclavicular ligaments, distal clavicle, acromioclavicular joint, and acromion [59].
- The superior shoulder suspensory complex provides a stable connection between the scapula and the axial skeleton [59].
Pathophysiology and Biomechanics¶
- The acromioclavicular joint articulation helps provide a stable base for the glenohumeral joint to position the arm in space [32].
- Distal clavicle resection does not address instability and may accentuate it when horizontal or vertical instability exists [23].
- Distal clavicle resection must be reserved for patients in whom the coracoclavicular ligaments are intact and there is no concomitant instability [23].
- Kinematic changes resulting from acromioclavicular joint dislocation could be a potential source of pain and dysfunction in the shoulder [87].
- A combined injury of the acromioclavicular and coracoclavicular ligaments significantly alters glenohumeral kinematics during abduction [117].
- Large kinematic differences exist between the intact state and a Rockwood V lesion during both humerothoracic and scapulothoracic movements [118, 126].
- The distal clavicle has a wide range of motion during shoulder abduction, which does not support the concept of synchronous motion with the scapula [123].
- The trapezoid and conoid ligaments have unique functions in normal shoulder kinematics due to their anatomic attachments [86].
- Scapular and clavicular kinematics are affected in acromioclavicular separation models [89].
- Type I and II acromioclavicular joint disruptions impair long-term shoulder function in about half of patients 10 years after injury [101].
- The normal coracoclavicular distance measures approximately 1.1 to 1.3 cm [150].
- Injury to the acromioclavicular ligaments in a type II injury causes an increase of 3.6 mm in anterior and 6.4 mm in posterior translation [150].
Classification¶
- The Rockwood classification system groups similar diagnoses, provides prognostic information, and guides treatment options [147].
- Studies have shown fair to moderate reliability in the use of the Rockwood classification for classification and surgical decision making [147].
- The ISAKOS Upper Extremity Committee suggests adding grade IIIA and grade IIIB injuries to a modified Rockwood classification to distinguish between stable type III injuries and unstable grade III injuries with therapy-resistant scapular dysfunction and overriding clavicle [154].
- In the Rockwood classification, type I is established when 0% to <10% superior displacement of the distal clavicle is found [144].
- In the Rockwood classification, type II is present when the affected side differs by 10% to ≤25% superior displacement of the distal clavicle [144].
- In the Rockwood classification, type III dislocation is defined as a coracoclavicular distance difference of >25% to ≤100% compared with the contralateral side [144].
- In the Rockwood classification, a coracoclavicular distance difference of >100% compared with the contralateral side indicates a type V separation [144].
- A new classification of AC joint instability defines Group 1 as having a coracoclavicular distance difference ≤30%, which includes all Rockwood type I, type II, and borderline low-grade type III patients [144].
- A new classification of AC joint instability defines Group 2 as having a coracoclavicular distance difference >30%, which represents high-grade AC joint dislocations including all Rockwood type V patients and the majority of Rockwood type III patients [144].
- The Rockwood type IV AC injury includes disruption of AC ligaments, disruption of coracoclavicular ligaments, and posterior translation of the clavicle [33].
- Methods to diagnose both superior and posterior translation of the clavicle need further debate [34].
- Fractures of the clavicle may be divided into three groups: Group I (middle third), Group II (distal to the coracoclavicular ligament), and Group III (proximal end) [24].
- Neer classified fractures of the distal end of the clavicle into two types [24].
- Robinson classified clavicular injuries and defined the lateral one-fifth of the clavicle as Type 3 [52].
Clinical Presentation¶
Indications and Selection¶
- In appropriately selected patients, open or arthroscopic distal clavicle resection is necessary to relieve symptoms [7].
- Distal clavicle excision must be reserved for patients in whom the coracoclavicular ligaments are intact and there is no concomitant instability [23].
- When horizontal or vertical instability exists, results of distal clavicle excision are compromised because the technique does not address instability and may accentuate it [23].
- Operation for acromioclavicular dislocation should be considered only in thin patients with a prominent clavicle, those doing heavy work, or those whose work requires frequent shoulder abduction and flexion [49].
- For chronic symptomatic acromioclavicular injuries, partial claviculectomy is believed to be the best procedure, offering negligible morbidity and rapid return to function [35].
- Clavicular resection reliably produced significant improvement in patients with persistent pain or posttraumatic arthritis following acromioclavicular joint dislocation [22].
- Simple excision of the outer end of the clavicle has yielded satisfactory results in patients with complete dislocation and subluxation, with no residual upward displacement disturbing the patients [2].
- Routine distal clavicle resection in the setting of rotator cuff repair does not result in improved outcomes for patients, with no difference observed at 24 months post-surgery [11].
Diagnostic Considerations¶
- There may be misdiagnosis due to associated or underlying superior labral detachment causing symptoms similar to those of acromioclavicular joint pathology [127].
- Clinical examination and surgical treatment should address anatomic restoration of individual structures to optimize the mechanical capability of the claviscapular segment [25].
Investigations¶
Radiographic Evaluation¶
- The Zanca view is a special radiographic view indicated for the acromioclavicular joint, performed as an AP with 10° cephalic tilt centered over the AC joint [83].
- The Zanca view technique requires the patient to be supine and uses only one-half the voltage of a routine shoulder AP view to create a soft-tissue view [83].
- Weighted stress radiographs significantly increase the measured elevation of the clavicle and the coracoclavicular distance compared to non-weighted views [155].
- The normal coracoclavicular distance is 1.1 to 1.3 cm [83].
- Methods to diagnose both superior and posterior translation of the clavicle require further debate [34].
- Plain radiographs can observe arthritis, calcific tendinitis, and osteolysis of the distal clavicle [82].
- The axillary view provides good visualization of the coracoid process, acromion, and distal clavicle [83].
Advanced Imaging¶
- CT imaging is frequently used to evaluate fractures of the shoulder, assess for bony lesions in recurrent instability cases, or for preoperative templating for shoulder arthritis [82].
- MRI is the modality of choice for evaluating the rotator cuff, biceps, and subacromial/subdeltoid bursa [82].
- Ultrasonography is a low-cost alternative to MRI and arthrography for evaluating both skeletal and soft-tissue structures of the shoulder [82].
- Ultrasonography can provide immediate, real-time visualization of the rotator cuff, biceps tendon, and calcific deposits [82].
- Ultrasonography is highly operator dependent and is not as useful for evaluating labral tears or rotator cuff tears that are very small or larger than 3 cm [82].
- Intraoperative ultrasound allows surgeons to safely identify and access the acromioclavicular joint for distal clavicle excision [4].
- The cross-sectional A-frame morphology of the superior cortex of the distal clavicle provides a reproducible landmark that is eliminated approximately 1.0 cm medial to the distal, lateral end of the clavicle, which can be used intraoperatively to determine when adequate resection has been completed [28].
Treatment¶
Indications and Contraindications¶
- Distal clavicle resection is indicated for symptomatic acromioclavicular joint pathology in appropriately selected patients [7].
- The procedure is reserved for patients with intact coracoclavicular ligaments and no concomitant instability [23].
- Results are compromised when horizontal or vertical instability exists because the technique does not address instability and may accentuate it [23].
- Clavicular resection reliably produced significant improvement in patients with persistent pain or posttraumatic arthritis following dislocation [22].
- Routine distal clavicle excision is not absolutely necessary, even in patients with symptomatic acromioclavicular joint osteoarthritis [136].
Outcomes and Efficacy¶
- Simple excision of the outer end of the clavicle has yielded satisfactory results with no residual upward displacement disturbing the patients [2].
- Patients undergoing arthroscopic distal clavicle excision through the direct approach can expect a faster return to activities while obtaining similar long-term outcomes compared with the open procedure [9].
- Both the direct superior approach and the indirect subacromial approach to arthroscopic distal clavicle resection result in successful clinical outcome with clinically insignificant difference at final follow-up [19].
Surgical Technique and Landmarks¶
- Portal placement remains paramount in both facilitating surgery and avoiding injury to adjacent extra-articular structures regardless of the technique chosen for distal clavicle resection [1].
- Intraoperative use of ultrasound and cannulated dilators allows surgeons to perform distal clavicle excisions in a more efficient, reproducible and safer manner [4].
- Beveling the inferior 20% to 25% of the clavicle to make it co-planar with the decompressed acromion is safe and is not an etiologic factor in acromioclavicular joint pain or instability for appropriate clinical indications [139].
Complications and Revision¶
- A 5-mm distal clavicle resection guaranteed no abutment but decreased joint stiffness [29].
- The early results of clavicular reconstruction after failure of partial excision of the lateral end of the clavicle are encouraging and may be the treatment of choice in patients with excess resection of the clavicle [14].
Complications¶
Resection-Related Complications¶
- Incomplete excision and regrowth of the distal clavicle are the most common causes of revision surgery [12].
- Regeneration of the excised portion of the clavicle occurs frequently and may produce an unacceptable result, with a higher likelihood in younger patients [13].
- The most common complication of distal clavicle resection is persistent pain, which can result from over- or under-resection [140].
- Incomplete resection can occur due to poor visualization [140].
- Overexuberant resection of the clavicle or disruption of the acromioclavicular and coracoclavicular ligamentous system can result in iatrogenic instability of the acromioclavicular joint [140].
- Posterior translation of the acromioclavicular joint is increased by 32% after a distal clavicle resection with an acromioclavicular capsular incision [140].
- Posterior translation can be reduced to 13% if the distal clavicle resection is completed with a coracoacromial ligament augmentation procedure [140].
- Postoperative iatrogenic instability may require revision surgery or coracoclavicular ligament reconstruction [140].
- Other complications of distal clavicle resection include infection, stiffness, fracture, spontaneous fusion, and complex regional pain syndrome [140].
- A 5-mm distal clavicle resection guaranteed no bone-to-bone abutment but decreased joint stiffness [29].
- Distal clavicle excision with 2.5 mm of bone was successful in many specimens, whereas a 5 mm resection guaranteed no bone-to-bone abutment [17].
- The high failure rate in patients with even subtle acromioclavicular instability is 42% [167].
- When horizontal or vertical instability exists, results of distal clavicle resection are compromised because the technique does not address instability and may accentuate it [23].
Instability and Dislocation¶
- Acromioclavicular dislocation can occur after arthroscopic distal clavicle resection [1].
- Portal placement is paramount in avoiding injury to adjacent extra-articular structures during distal clavicle resection [1].
- Distal clavicle resection should be reserved for patients with intact coracoclavicular ligaments and no concomitant instability [23].
- Clavicular resection reliably produced significant improvement in patients with persistent pain or posttraumatic arthritis following late loss of reduction [22].
- Simple excision of the outer end of the clavicle yielded satisfactory results with no residual upward displacement disturbing patients [2].
Fractures and Bony Complications¶
- Fracture of the distal clavicle or coracoid process after coracoclavicular ligament repair or reconstruction is a rare but serious complication that can occur independent of bone tunnels created during the index procedure [100].
- Clavicle and coracoid fractures occurred in 1.9 out of 100 cases in a review of operative acromioclavicular joint separations in an active population [161].
- Retaining the clavicular hook-plate indefinitely carries a potential risk of developing osteolysis and fracture around the implant [51].
- Subacromial osteolysis is a complication associated with hook plate fixation for acromioclavicular dislocation [163].
- Hook plates used for lateral clavicle fractures can have complications including rotator cuff tear, impingement pain, and need for removal [52].
- Clavicular reconstruction after failure of partial excision of the lateral end of the clavicle has encouraging early results and may be the treatment of choice in patients with excess resection [14].
Infection and Other Complications¶
- Older patients and females were more likely to experience postoperative complications requiring reoperations, including revision acromioclavicular joint reconstruction, distal clavicle excision, and irrigation and debridement [37].
- The incidence of complications in operative acromioclavicular joint separations in an active population was 1.35 per 100 person-years [161].
Recovery¶
Outcomes and Functional Improvement¶
- Arthroscopic distal clavicle excision results in statistically and clinically significant improvements in range of motion and patient-reported outcome measures in carefully selected patients with isolated ACJ pathology [18].
- For chronic symptomatic injuries, partial claviculectomy is believed to be the best procedure, offering negligible morbidity and rapid return to function [35].
- Clavicular resection reliably produced significant improvement in patients with persistent pain or posttraumatic arthritis [22].
- Open and arthroscopic distal clavicle excision are both effective surgeries to treat recalcitrant acromioclavicular joint pain, providing similarly good to excellent results regarding patient satisfaction and shoulder function at intermediate-term follow-up [166].
- Arthroscopic distal clavicle resection has provided more 'good or excellent' results than has the open procedure, but is comprised of low-level evidence [6].
- Less residual pain was found using the arthroscopic technique compared to the open technique [166].
Return to Activity¶
- More than 90% of patients manage to return to driving within 4 weeks and to work within 6 weeks following arthroscopic subacromial decompression and acromioclavicular joint excision [97].
Complications and Revision¶
- Older patients and females were more likely to experience postoperative complications requiring reoperations, including revision ACJR, distal clavicle excision, and irrigation and debridement [37].
Key Evidence¶
- [Case_report] Regardless of the technique chosen for distal clavicle resection, portal placement remains paramount in both facilitating surgery and avoiding injury to adjacent extra-articular structures. [1] (10.1016/j.jse.2010.08.032)
- [L4] Open distal clavicle resection yields good to excellent results in properly selected patients and does not create significant subjective or objective weakness. [3] (10.1016/s1058-2746(10)80006-0)
- [L5] The technique will allow surgeons to perform distal clavicle excisions in a more efficient, reproducible and safer manner. [4] (10.1016/j.eats.2024.103331)
- [L5] A well-performed distal clavicle excision will likely perform better than a poorly performed one, regardless of whether an open or arthroscopic approach is chosen. [5] (10.1016/j.arthro.2018.03.004)
- [L3] Arthroscopic distal clavicle resection has provided more 'good or excellent' results than has the open procedure, but is comprised of low-level evidence. [6] (10.1097/blo.0b013e31802f5450)
- [L5] In appropriately selected patients, open or arthroscopic distal clavicle resection is necessary to relieve symptoms. [7] (10.5435/00124635-199905000-00004)
- [L1] Arthroscopic and open distal clavicle excisions both provide significant pain reduction at 1 year with no significant difference in outcome measures between groups, except for VAS pain score improvement. [8] (10.1016/j.jse.2006.10.006)
- [L3] Among patients undergoing distal clavicle excision for acromioclavicular joint pathology, those having an arthroscopic procedure, specifically through the direct approach, can expect a faster return to activities while obtaining similar long-term outcomes compared with the open procedure. [9] (10.1016/j.arthro.2009.12.007)
- [L2] Routine distal clavicle resection in the setting of rotator cuff repair does not result in improved outcomes for patients with no difference being observed at 24 months post surgery. [11] (10.1177/1758573217741124)
- [L4] Incomplete excision and regrowth of the distal clavicle are the most common causes of revision. [12] (10.1016/j.arthro.2009.06.010)
- [L4] Regeneration of the excised portion of clavicle occurs frequently and may produce an unacceptable result, and may be more likely to occur in the younger patient population. [13] (10.1016/s1058-2746(05)80049-7)
- [L4] The early results are encouraging and may be the treatment of choice in patients with excess resection of the clavicle. [14] (10.1016/s1058-2746(95)80128-6)
- [L4] Horizontal instability of the clavicle is evident with distal clavicle resection of greater than 10 mm. [15] (10.1016/j.xrrt.2021.05.003)
- [L4] Excision of the outer end of the clavicle is preferred for old dislocations, while open reduction and internal fixation are not recommended due to complications and poor functional results. [16] (10.2106/00004623-196345080-00024)
- [Abstract] Although distal clavicle excision with 2.5 mm of bone was successful in many specimens, a 5 mm resection guaranteed no bone-to-bone abutment. [17] (10.1016/j.jse.2007.02.105)
- [L4] In carefully selected patients with isolated ACJ pathology, arthroscopic distal clavicle excision results in statistically and clinically significant improvements in range of motion and patient-reported outcome measures. [18] (10.1016/j.jseint.2023.07.014)
- [L2] Both the direct superior approach and the indirect subacromial approach to the arthroscopic distal clavicle resection result in successful clinical outcome with clinically insignificant difference at final follow-up. [19] (10.1177/0363546506294855)
- [L4] The technique was validated using cadaveric dissection and yields a method of establishing the anterior portal for distal clavicle excision with a safe corridor for placement of instruments in a reliable manner that does not disrupt the important stabilizers of the glenohumeral or AC joints. [20] (10.1097/bte.0000000000000033)
- [L3] Late loss of reduction was common, and clavicular resection reliably produced significant improvement in patients with persistent pain or posttraumatic arthritis. [22] (10.2106/00004623-198769070-00013)
- [L5] [23] (10.5435/00124635-200904000-00002)
- [L4] [24] (10.2106/00004623-196749040-00024)
- [L5] Clinical examination and surgical treatment should address anatomic restoration of individual structures to optimize the mechanical capability of the claviscapular segment. [25] (10.5435/jaaos-d-24-00360)
- [L5] The cross-sectional A-frame morphology of the superior cortex of the distal clavicle provides a reproducible landmark that is eliminated approximately 1.0 cm medial to the distal, lateral end of the clavicle, which can be used intraoperatively to determine when adequate resection has been completed. [28] (10.1016/j.jse.2021.10.013)
- [L5] A 5-mm distal clavicle resection guaranteed no abutment but decreased joint stiffness. [29] (10.1016/j.arthro.2007.07.004)
- [Paper] [32] (10.1097/bte.0000000000000044)
- [L4] [33] (10.1016/j.arthro.2016.06.013)
- [L4] Methods to diagnose both superior and posterior translation of the clavicle need further debate. [34] (10.1016/j.jseint.2019.11.006)
- [L4] Older patients and females were more likely to experience postoperative complications requiring reoperations, including revision ACJR, distal clavicle excision, and irrigation and debridement. [37] (10.1007/s00167-016-4206-y)
- [L3] This records review found that 10 of 894 (1.1%) rotator cuff repairs underwent subsequent distal clavicle resection. [40] (10.1177/2325967119844295)
- [L1] Operation should be considered only in thin patients with a prominent clavicle, those doing heavy work, or those whose work requires frequent shoulder abduction and flexion. [49] (10.2106/00004623-198668040-00011)
- [L5] Retaining the clavicular hook-plate indefinitely carries a potential risk of developing osteolysis and fracture around the implant. [51] (10.1016/j.injury.2004.08.010)
- [L4] [52] (10.1177/1758573214536535)
- [L5] The trapezoid and conoid ligaments have unique functions in normal shoulder kinematics because of their anatomic attachments. [86] (10.1016/j.arthro.2009.12.031)
- [L5] The kinematic changes could be a potential source of pain and dysfunction in the shoulder with AC joint dislocation. [87] (10.1177/0363546512458571)
- [L5] Scapular and clavicular kinematics were affected in AC separation models. [89] (10.1016/j.jse.2013.01.004)
- [L3] The results obtained in the present study suggest that more than 90% of the patients manage to return to driving within 4 weeks and to work within 6 weeks following arthroscopic subacromial decompression and acromio-clavicular joint excision. [97] (10.1111/j.1758-5740.2010.00048.x)
- [L4] Fracture of the distal clavicle or coracoid process after CC ligament repair or reconstruction is a rare but serious complication that can occur independent of bone tunnels created during the index procedure. [100] (10.1177/03635465211036713)
- [L4] Type I and II acromioclavicular joint disruptions impair long-term shoulder function in about half of patients 10 years after injury. [101] (10.1177/0363546508319047)
- [L5] A combined injury of the AC and CC ligaments significantly alters GH kinematics during abduction. [117] (10.1186/s12891-016-1330-2)
- [L5] There are large kinematic differences between the intact state and a Rockwood V lesion not only during humerothoracic, but also during scapulothoracic movements. [118] (10.1016/j.jse.2022.01.096)
- [L5] The distal clavicle had a wide range of motion during shoulder abduction, which did not support the concept of synchronous motion with the scapula. [123] (10.1016/j.arthro.2012.04.001)
- [L5] Large kinematic differences were seen between the intact state and a Rockwood V lesion not only during humerothoracic movements but also during scapulothoracic movements in the cadaveric model. [126] (10.1177/03635465211053016)
- [L4] The successful treatment of 15 patients by SLAP lesion repair after initial distal clavicle resection indicates that there may be misdiagnosis due to associated or underlying superior labral detachment causing similar symptoms. [127] (10.1016/s1058-2746(96)80319-3)
- [L2] Routine distal clavicle excision is not absolutely necessary, even in patients with symptomatic ACJ osteoarthritis. [136] (10.1007/s00167-020-06098-y)
- [L4] We conclude that for appropriate clinical indications, beveling the inferior 20% to 25% of the clavicle to make it co-planar with the decompressed acromion is safe and is not an etiologic factor in acromioclavicular joint pain or instability. [139] (10.1067/mse.2000.109560)
- [L5] [140] (10.1177/0363546513485359)
- [L1] [144] (10.1016/j.jse.2020.10.026)
- [L5] The Rockwood classification system groups similar diagnoses, provides prognostic information, and guides treatment options, though studies have shown fair to moderate reliability in its use for classification and surgical decision making. [147] (10.1007/s11999-016-5079-6)
- [L5] [150] (10.1016/j.jse.2010.10.030)
- [L5] The ISAKOS Upper Extremity Committee suggests adding grade IIIA and grade IIIB injuries to a modified Rockwood classification to distinguish between stable type III injuries and unstable grade III injuries with therapy-resistant scapular dysfunction and overriding clavicle. [154] (10.1016/j.arthro.2013.11.005)
- [L4] Weighted stress radiographs significantly increased the measured elevation of the clavicle and the coracoclavicular distance compared to non-weighted views. [155] (10.1016/j.jseint.2023.06.011)
- [L3] This review demonstrated an incidence of 1.35 complications per 100 person-years, with clavicle and coracoid fractures occurring in 1.9 out of 100 cases. [161] (10.1177/2325967121s00330)
- [L1] The current analysis suggests coracoclavicular ligament reconstruction as an effective surgical approach for decreasing the incidence of subacromial osteolysis. [163] (10.1016/j.jse.2024.03.018)
- [L3] Open and arthroscopic distal clavicle excision are both effective surgeries to treat recalcitrant acromioclavicular joint pain, providing similarly good to excellent results regarding patient satisfaction and shoulder function at intermediate-term follow-up, though less residual pain was found using the arthroscopic technique. [166] (10.1177/0363546511419633)
- [L4] The high failure rate in patients with even subtle acromioclavicular instability (42%) suggests that in these cases formal stabilization with ligament reconstruction should be considered in addition to resection of the distal clavicle. [167] (10.1016/s1058-2746(10)80007-2)
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