Education · hand

Drainage of an Acute Paronychia Info Evidence Consent

Reviewed by Dr Kieran Hirpara, Specialist Orthopaedic Surgeon Last reviewed

Why this operation has been suggested

Dr Kieran Hirpara, an upper-limb surgeon at Mater Private Hospital Rockhampton, starts with the least invasive options that suit your condition. An acute paronychia is an infection in the skin beside or under a fingernail. It usually causes redness, warmth, swelling and marked tenderness. Early infections may settle with antibiotics alone. More advanced infections need incision and drainage, which means making a small opening to let the pus out. Antibiotics are often not needed afterwards for straightforward cases in people who are not at risk.

Patients are generally referred to our clinic by their GP; if a physiotherapist has suggested you see us, you will still need a referral from your GP in order to be eligible for the Medicare rebate. We assess your history, examine your finger and arrange imaging where needed. If the infection has already collected pus, or it has kept getting worse while you were taking antibiotic tablets, we will usually recommend drainage. We aim to relieve the pain quickly and stop the infection spreading deeper into the finger, where it can harm the tendon or bone. We will talk through the plan with you before anything happens.

Before the operation

Most of the preparation is simple. You will need to stop eating and drinking for seven hours before surgery. We ask for seven rather than six so we can bring you forward if the theatre list runs early. Your surgeon will tell you which of your regular medicines to skip on the day, and it helps to bring a written list of everything you take. Arrange for someone to drive you home afterwards, and wear loose, comfortable clothing. Imaging such as an X-ray, ultrasound or MRI scan may be used to plan the operation. If you have other medical conditions, you may need blood tests or a review with the anaesthetist, but most people need neither.

On the day

You will arrive at the hospital's surgical admissions unit, where you are checked in and prepared for theatre. You will then meet the anaesthetist, the doctor who puts you to sleep and keeps you safe during the operation. This operation is done under general anaesthetic. A regional nerve block is sometimes added for post-operative pain relief; the anaesthetist will discuss this with you on the day.

After that, you are taken into the operating theatre, where the operation is performed. When it is finished, you will wake up in the recovery area. Nurses will stay with you there while the anaesthetic wears off. Once you are stable, you will either move to a ward or go home the same day, depending on the procedure and how you are recovering.

What the operation involves

The aim of the operation is simple: to make a small opening beside or under your nail so the pus can drain out and the pressure goes away. Your surgeon makes a small cut in the skin next to the nail, at the spot where the infection has collected. The pus is released, and the space is washed out. Most people feel relief from the throbbing pain soon after this.

There is more than one way to open the space, and there is no single agreed technique. Your surgeon will choose the approach that suits your finger. If the infection has spread around to the skin fold on the other side of the nail, a technique may be used that treats both nail folds at once. If the pus has collected under the nail plate itself, a small opening may be made through the nail to let it drain.

If the infection is more severe, or it has grown thickened, lumpy tissue at the nail edge, your surgeon may remove that tissue as well, so the area can settle and heal cleanly. The cut is usually left open or lightly closed so any remaining infection can escape, and a dressing is placed over the finger. You will go home with that dressing in place.

For straightforward infections in people who are not at risk, antibiotics are often not needed after the drainage. If your infection is more complex, your surgeon may prescribe a course of antibiotic tablets afterwards to help clear it fully.

After the operation

You will wake up in the recovery area, where nurses stay with you while the anaesthetic wears off. Your finger will have a dressing on it, and you may have some numbness if a nerve block was used. Pain relief will be arranged so you stay comfortable. You can move around as soon as you feel steady, and you will use your hand gently within the limits of the dressing. Someone should stay with you for the first 24 hours after you get home. Your team will tell you whether you go home the same day or stay one night in hospital. We leave the dressing on for about 10 days; please do not take it off before then unless we tell you to. We change or remove it when we see you.

Recovery

The throbbing pain that brought you in usually settles quickly once the pus has been drained. The finger will still be tender and swollen for a while, and the skin beside the nail may look red as it heals. Keeping your hand raised on a pillow when you rest helps the swelling go down. The pain relief we arrange for you will keep you comfortable while this settles.

You will go home with the dressing on, and we leave it in place for about 10 days. Please do not take it off yourself; we change or remove it when we see you. Until then, use your hand gently within the limits of the dressing. Keep it clean and dry. You can do most light daily tasks at home, but avoid soaking the finger and avoid anything that bumps or squeezes the healing nail fold.

Once the dressing comes off, the aim is to get the finger moving and working normally again. Your rehabilitation after surgery is with Ruby Doolan at Extend Rehabilitation. Ruby is a hand therapist: she will guide your exercises and make any splint you need. She may show you gentle stretching and strengthening so the finger does not stiffen while it heals. As the swelling settles and movement returns, you can gradually do more with the hand. Once you can grip and pinch without pain, most everyday activities feel normal again.

Recovery varies from person to person. Your timeline may differ, and your surgeon and therapist will guide you along the way.

What can go wrong

Most patients do well, but problems can occasionally happen. Your surgeon and the team monitor you closely to spot any issue early.

The main concern with this infection is that it keeps going or comes back. If the swelling, redness and tenderness beside your nail do not settle, or they get worse after treatment, the infection can dig deeper. In time it can wear its way down into the small joint of the finger. You might notice pain that feels deeper than before, a finger that will not bend without sharp pain, or a joint that looks swollen and feels hot. If you notice any of these, call the clinic rather than waiting for your next visit.

Poor healing and slow seeking of care make this more likely. If the wound is not settling the way you expected, or you have put off getting treatment, mention it at your next review so we can look at it properly.

Keeping the finger clean matters while it heals. Good hand hygiene helps the skin recover and lowers the chance of the infection flaring up again. If you are unsure how to care for the finger once the dressing comes off, ask us at your review and we will show you.

Some nail infections are caused by the cold sore virus rather than bacteria, and these can sometimes hold a pocket of pus as well. If that is what you have, drainage is still the treatment. You may worry the virus will return later or cause lasting trouble in the finger. In cases like this, people followed over the long term have had no return of the virus and no lasting problems from the drainage itself. If you notice new blisters or small tender spots near the nail after you have healed, bring it up at your review.

The complications table on this page lists typical rates if you want the specifics.

When to call us

Call us if you get a fever, if the redness or discharge from the finger gets worse, or if the pain suddenly becomes severe. Go to emergency if you have calf swelling, shortness of breath, loss of feeling in the finger, or you cannot move it. These signs need checking straight away. If something about the finger worries you and it is outside clinic hours, go to your nearest emergency department rather than waiting.


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.

Anatomy & Pathophysiology

General Hand Architecture

  • The hand is composed of 19 bones, 17 articulations, and 19 muscles situated entirely within the hand [2].
  • The hand contains approximately the same number of tendons activated by the forearm muscles as it has intrinsic muscles [2].
  • The open hand forms a balanced graceful oval in its longitudinal axis when fingers are extended and in contact [2].
  • The proximal carpometacarpal half of the hand is flattened and presents two faces with unique anatomical and functional significance [2].
  • The posterior or dorsal aspect of the hand is convex, while the anterior, palmar, or volar aspect is concave [2].
  • The distal half of the hand is separated into five digits that flex toward the palm [2].
  • The digits converge in closing by flexing and adducting, and diverge in opening by extending and abducting [2].
  • The thumb has a more proximal and lateral position than the other digits, allowing movement inward and outward from the palm [2].
  • The four fingers are the distal extension of the carpometacarpal part of the hand [2].
  • The hinges for finger movement are located at the thenar crease and at the transverse distal palmar crease, not at the bases of the digits [2].
  • When fingers are extended and separated, their tips lie on the circumference of a circle whose center is the head of the third metacarpal [2].

Cutaneous Units and Skin

  • The dorsal covering of the interphalangeal articulations of the digits forms a unique cutaneous unit characterized by a considerable excess of skin when the digits are in extension [3].
  • The dorsal integument of the distal phalanx is distinct due to the presence of the nail bed with its matrix [3].
  • The palm forms a cutaneous unit extending from the distal transverse crease of the wrist up to the transverse crease at the base of the digits [3].
  • The palmar integument is subdivided into two separate zones by the oppositional crease of the thumb, which constitutes the oblique axis of the hand [3].
  • The skin of the radial portion of the palm covers the thenar eminence and the external part of the palm and is relatively well vascularized and mobile [3].
  • The skin of the ulnar and distal portion covers the hypothenar eminence, where the skin has poor mobility [3].
  • The central triangular part of the palm has fixed and poorly vascularized skin that covers almost directly the superficial palmar aponeurosis [3].
  • The integument of the palmar face of the digits is subdivided into phalangeal units separated by digital flexion folds [3].
  • When a digit is completely flexed, the integument of adjacent phalanges comes into contact in the zones of the flexion creases, establishing areas of cutaneous contact in the form of a diamond [3].
  • The sides of the diamond-shaped cutaneous contact zones do not undergo variations in length during movements of flexion and extension [3].
  • Incisions made along the lines of the diamond-shaped cutaneous contact zones present a minimal chance of retraction [3].
  • The web spaces are formed from the union of two nonsymmetrical cutaneous surfaces [3].
  • The dorsal slope of the web space has a gradual incline and its supple skin is not adherent to the subjacent region [3].
  • The palmar surface of the web space is flat and precipitously interrupted, with skin densely adherent to the commissural skeleton [3].
  • The commissural skeleton is formed by the interdigital palmar (natatory) ligament between the fingers and by the distal transverse ligament at the level of the thumb web [3].

Muscular Anatomy

  • There are seven interosseous muscles in the hand, consisting of four dorsal and three volar muscles [4].
  • The dorsal interossei are abductors [4].
  • The anatomic axis of the hand coincides with the axis of the third metacarpal [4].
  • The dorsal interossei lie to the radial side of the index and middle fingers and the ulnar side of the middle and ring fingers [4].
  • The little finger is abducted by the abductor digiti quinti [4].
  • The volar interossei are adductors [4].
  • The volar interossei lie to the ulnar side of the index finger and the radial side of the ring and little fingers [4].
  • The middle finger has two dorsal interossei (abductors) and no volar interossei (adductors) because the central axis of the hand lies within it [4].
  • Each dorsal interosseous muscle, with the exception of the third, has two muscle heads [4].
  • The superficial head of the dorsal interosseous muscles arises most dorsally from the shaft of the contiguous metacarpals [4].
  • The superficial head is inserted deeply by a medial tendon onto the lateral tubercle of the base of the proximal phalanx [4].
  • The superficial head abducts and weakly flexes the proximal phalanx [4].
  • The superficial head has no direct effect on the middle or distal phalanges [4].
  • The deep head of each dorsal interosseous muscle forms a lateral tendon, or lateral band, at the level of the MP joint [4].
  • The deep head flexes and weakly abducts the proximal phalanx while extending the middle and distal phalanges [4].
  • At the level of the middle of the proximal phalanx, transverse fibers arch dorsally from each lateral band to join each other over the dorsum of the finger [4].
  • These transverse fibers flex the proximal phalanx [4].
  • Oblique fibers (spiral fibers) from the lateral bands sweep over the distal third of the proximal phalanx to insert onto the lateral tubercles at the base of the middle phalanx [4].
  • The oblique fibers extend the middle phalanx at the PIP joint [4].
  • The lateral bands are joined by the lateral slips of the extensor tendon to form the conjoined lateral band [4].
  • The two conjoined lateral bands to each finger unite at the distal third of the middle phalanx to form the terminal tendon [4].
  • The terminal tendon inserts at the base of the distal phalanx to extend it [4].
  • The flexor digiti quinti brevis is structurally and functionally similar to the deep head of the dorsal interossei [4].
  • The flexor digiti quinti brevis forms the ulnar lateral band of the little finger [4].
  • Each volar interosseous muscle has only one muscle head [4].
  • None of the volar interossei insert onto the proximal phalanx [4].
  • The volar interossei form the ulnar lateral band of the index finger and the radial lateral band of the ring and little fingers [4].
  • The abductor digiti quinti and flexor digiti quinti brevis arise from the fifth metacarpal [4].
  • The abductor digiti quinti inserts onto the ulnar lateral tubercle at the base of the proximal phalanx of the little finger [4].
  • The flexor digiti quinti forms the ulnar lateral band [4].
  • The opponens digiti quinti lies deepest among the hypothenar muscles [4].
  • The opponens digiti quinti arises from the pisohamate ligament and the hook of the hamate [4].
  • The opponens digiti quinti inserts onto the ulnar side of the diaphysis of the fifth metacarpal [4].
  • The opponens digiti quinti flexes and supinates the fifth metacarpal [4].

Vascular Anatomy

  • The arteries of the thumb vary in both size and number [8].
  • The palmar aspect of the thumb can be schematized into three segments defined by the metacarpophalangeal and interphalangeal flexion creases [8].
  • In the classical layout, the "princeps pollicis" artery is the terminal branch of the radial artery [8].
  • The "princeps pollicis" artery crosses the first intermetacarpal space [8].
  • The "princeps pollicis" artery runs along the ulnar side of the first metacarpal bone and along the volar surface of the adductor muscle [8].
  • The "princeps pollicis" artery emerges onto the subcutaneous palmar tissue at the level of the cutaneous flexion crease of the metacarpophalangeal joint [8].
  • At the level of the metacarpophalangeal joint crease, the "princeps pollicis" artery divides into two terminal rami, namely the collateral palmar arteries of the thumb [8].
  • The collateral palmar arteries of the thumb run along the digital tunnel symmetrically and are of equal caliber [8].
  • The collateral palmar arteries head distally to finally unite in the pulp arcade [8].
  • During their transit in the digital tunnel, the collateral palmar arteries break off into numerous collateral branches, either cutaneous, articular, or osseous [8].
  • An arcade located deep in the flexor tendon joins together the two arteries at the level of the distal metaphysis of the first phalanx [8].
  • Vessels originating from this arcade enter the "vincula" and irrigate the flexor tendon [8].
  • Only 15% of anatomical dissections fall into the category of the classical description of the palmar arteries of the thumb [8].
  • In the first segment of the thumb (between the opposition crease and the metacarpophalangeal flexion crease), it is rare to find arteries of surgical interest on the volar surface [8].
  • The artery in the first segment is located deeply and is more easily accessible from the dorsal surface [8].
  • In the second segment, the two arteries run alongside the flexor tendon and behind the collateral nerves [8].
  • In the second segment, the main artery is the ulnar collateral artery [8].
  • The subtendinous anastomosis situated at the level of the neck of the first phalanx acts as a "moderator" between the two arteries in the second segment [8].
  • In cases where the palmar ulnar collateral artery is absent, the dorsal artery takes its place by means of a branch through the subtendinous arcade [8].
  • In the third segment (pulp segment), the two arteries are of similar size and run through the thick fatty subcutaneous padding [8].
  • In the pulp segment, the arteries cross over and convert into the ends of the digital nerves at the level of the median axis [8].
  • The posterior area of the thumb is vascularized by two arteries which originate from the palmar arteries at the level of the first metacarpal [8].
  • These dorsal arteries run laterally along the metacarpophalangeal joint and continue obliquely from volar to dorsal [8].
  • At the level of the neck of the first phalanx, an anastomosis can be found which originates from the palmar arteries for the dorsal aspect [8].
  • The dorsal arteries are joined by three arcades: one inconstant arcade located under the extensor tendon at the level of the neck of the first phalanx, the arcade of the nail matrix, and the arcade of the nailbed [8].
  • The ulnar dorso-collateral artery generally stems from the "princeps pollicis" onto the medial border of the neck of the first metacarpal [8].

Skeletal and Ligamentous Architecture

  • The metacarpal arch is endowed with a great deal of adaptability because of the mobility of the peripheral metacarpals [7].
  • The peripheral metacarpals form the sides of the cup or the palmar gutter and can deepen the concavity as they approach each other [7].
  • The thumb metacarpal is independent and articulates with the trapezium [7].
  • The middle metacarpals are united to the carpus by the intrinsic interlocking encasement of the bones themselves [7].
  • The index metacarpal is the most firmly fixed [7].
  • The ring metacarpal is a transitional element to the fifth metacarpal and has about 10 degrees of mobility in flexion and extension [7].
  • The fifth metacarpal is semi-independent and articulates with the hamate [7].
  • The fifth metacarpal is restrained on its radial side by its articulation with the base of the fourth metacarpal [7].
  • The fifth metacarpal has a range of flexion–extension of approximately 20 degrees [7].
  • The second to fifth metacarpals are all bound together by various fibrous structures [7].
  • The most distal fibrous structure binding the second to fifth metacarpals is the deep transverse intermetacarpal ligament [7].
  • The deep transverse intermetacarpal ligament is better named the interglenoid ligament [7].
  • The interglenoid ligament ties together the anterior "glenoid ligaments" of the metacarpophalangeal articulations, known as the "volar plates" [7].
  • The longitudinal arches are composed of a fixed portion, the carpometacarpal, and a mobile portion, the digits [7].
  • For every ray there is a longitudinal arch [7].
  • The keystones of the longitudinal arches are the metacarpophalangeal articulations [7].
  • The thick anterior glenoid capsules, the volar plates, prevent hyperextension at the metacarpophalangeal joints [7].
  • The volar plates are interconnected by the transverse interglenoid ligament [7].
  • The stability of the metacarpophalangeal joints is essential to the support of the longitudinal arch as well as of the transverse metacarpal arch [7].
  • The five rays of the hand differ in mobility and independence [7].
  • Mobility and independence are considerable for the thumb, much less for the fifth ray, and even less for the others [7].
  • The index ray has a certain degree of independence at the phalangeal level, owing to the arrangement of its flexor and extensor muscles [7].

Investigations

  • A careful physical examination is essential to direct care and future testing if indicated [1].
  • Diagnostic tests such as imaging and serum laboratory studies can be expensive, time consuming, and often nonspecific [1].
  • An 8-MHz Doppler tone assessment may be used to identify superficially displaced neurovascular bundles when Dupuytren cords lie beneath soft fleshy prominences [11].
  • False-negatives are possible with 8-MHz Doppler tone assessment [11].
  • MRI is probably most useful in identifying additional pathology such as flexor tendon bowstringing [11].
  • MRI may be helpful in providing a quantitative noninvasive measure of cellularity of affected areas, which is an index of biologic activity [11].

References

[1] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Anatomy, Evaluation, Clinical Examination, and Imaging > Evaluation and Clinical Examination: Current Concepts.

[2] Exam Of The Hand Wrist 2Ed. INTRODUCTION.

[3] Exam Of The Hand Wrist 2Ed. Functional cutaneous units.

[4] Green S Operative Hand Surgery. Interosseous and Hypothenar Muscles.

[7] Exam Of The Hand Wrist 2Ed. The arches of the hand > The metacarpal arch.

[8] Exam Of The Hand Wrist 2Ed. Techniques of investigation of the arterial supply by J P Melki > Vascularization of the thumb > Palmar aspect.

[11] Dupuytren S Disease And Related Hyperproliferative Disorders. 54. The Future of Dupuytren’s Research and Treatment > 54.4 Mechanical Measurements and Procedures > 54.4.4 Imaging.