扳机指 资料
您的感受
您可能会注意到手指或拇指根部、手掌处的疼痛和压痛。该位置正是腱鞘起始处。您可能还会在此处摸到一个小结节或肿块。有时,疼痛会放射至手指的中节指间关节。这是因为该关节长期承受应力所致。
弯曲手指或拇指时,可能会出现卡顿或交锁现象。这种感觉通常类似橡皮筋弹断。症状通常在早晨更为严重。您可能在醒来时发现手指处于弯曲状态无法伸直,需要使用另一只手将其掰直。随着一天时间的推移,僵硬感通常会改善,但过度使用后卡顿感可能会再次出现。
日常活动可能变得困难。简单的动作如握拳、握住方向盘或塞衬衫下摆可能会引起疼痛或感觉受阻。将手伸至背后扣内衣或系衬衫纽扣时可能会感到疼痛。如果您患有糖尿病,这些症状可能更为持久,且初始治疗难以缓解。
在严重情况下,手指会持续保持弯曲的交锁状态。您可能完全无法自行将其伸直,需要他人帮助。这种交锁可能在用力握持后突然发生。如果您注意到手指频繁卡顿,或无法完全伸直,您的外科医生将评估严重程度。早期迹象包括疼痛和轻度卡顿。晚期阶段则涉及需要手法矫正的交锁。
实际发生了什么
您的手指之所以能够活动,是因为被称为肌腱的长条状组织在手掌内的保护性通道中滑动。该通道由被称为滑车(pulleys)的强韧带固定。可以将这些滑车想象为鱼竿上的导线环。它们使肌腱紧贴手指,以便在屈曲手部时能够顺畅地牵拉。
在扳机指(trigger finger)中,该通道内的第一个滑环发生增厚和变紧。同时,肌腱本身常出现一个小隆起或结节。该结节通常由瘢痕样组织构成。当您尝试屈曲或伸直手指时,该结节在试图通过狭窄的通道时会发生卡压。
这种机械性阻塞导致了您所感受到的症状。您可能会注意到手掌侧手指基底部出现疼痛或压痛。当肌腱强行通过狭窄部位时,您可能会听到或感觉到弹响、卡顿或爆裂感。这就是“扳机”感。在早晨,由于组织已静止数小时,这种锁定现象通常更为明显。
在严重病例中,结节完全无法通过通道。您的手指可能会锁定在屈曲位置。您可能需要使用另一只手手动将其伸直。若未接受治疗,这可能导致关节出现难以矫正的固定屈曲畸形。
该病症在50岁以上女性中更为常见,且常累及中指或环指。糖尿病或类风湿关节炎患者中也更为多见。在这些情况下,炎症和组织结构的改变使肌腱和滑车更容易发生肿胀和增厚。其结果是一个简单的机械性问题:一根肿胀的绳索试图通过一个狭窄且僵硬的环。
我们能采取的措施
我们诊所采用的方法反映了 Mater Private Hospital Rockhampton 的上肢外科医生 Kieran Hirpara 医生对该病症的管理方式。我们从侵入性最小的选项开始。您可以尝试改变手部使用方式,以避免重复性抓握。轻柔的拉伸和强化练习可能有助于减轻僵硬。我们通常建议佩戴夹板以保持手指伸直,尤其是在夜间。请给予这些措施几周时间以发挥作用。如果弹响或卡顿持续存在,我们将进入下一步。
药物治疗侧重于减少腱鞘内的炎症。我们可能会开具止痛药或抗炎药以帮助缓解不适。最常见的药物治疗是将皮质类固醇注射到屈肌腱鞘中。这可以减少肿胀并允许肌腱平滑滑动。约 60% 的患者在一次注射后获得缓解。对于非糖尿病患者,多达 90% 的患者通过一次或两次注射获得缓解。如果第一次注射不能提供持久的帮助,可能会提供第二次注射。在某些情况下,缓解可持续一年或更长时间。请注意,如果您患有糖尿病,注射的效果可能较差,并可能在五天或更长时间内暂时升高血糖水平。在继续治疗之前,我们会与您讨论这些风险。
当非手术治疗未带来足够的改善,或您的手指被卡住时,会考虑手术。该手术涉及释放束缚肌腱的紧绷带(A1 滑车)。这是一个简短、安全的手术,在局部麻醉下进行。总体风险较低,并发症发生率与医院手术室相似。约 97% 的患者在手术治疗后完全康复。我们将其作为共同决策进行,确保您了解益处以及小风险,如伤口愈合问题或神经刺激。对于类风湿关节炎患者,我们可能会切除一小束肌腱以保护手指排列。如果您患有不稳定的糖尿病,我们可能会建议直接手术而不是注射,以避免血糖波动和感染风险。
预期情况
您的手指或拇指在弯曲时可能会感到卡住或卡顿。这是因为腱鞘变得狭窄。如果不进行治疗,这种卡顿可能会持续存在或反复发作。如果症状已经严重,很少能自行缓解。
如果您选择手术,预后通常良好。开放性扳机指腱鞘切开术是一种低风险的手术。它能有效消除卡顿和锁定现象。大多数患者在术后日常手部功能得到显著改善。您的外科医生将指导您完成整个过程,以确保肌腱能够再次自由滑动。
并发症并不常见,但有可能发生。大约每 20 个手指中就有 1 个在术后会出现轻微的、暂时性的问题。这些问题可能包括轻微的手术伤口问题或轻微的僵硬。严重并发症非常罕见。大约每 200 个手指中就有 1 个需要二次手术来修复问题。如果您近期接受过类固醇注射,感染风险会略微增加。您的外科医生会在手术前与您讨论这一点。
恢复过程通常很简单。您通常可以在手术后不久就恢复正常使用手部。有些人在最初几周可能会注意到疤痕压痛或轻微僵硬。这些症状通常会随着时间的推移而改善。如果您患有类风湿关节炎,关节排列可能会发生轻微改变,这种情况发生的几率较小。您的外科医生会对此进行监测。
如果手术不适合您,类固醇注射是一个选择。它们能为许多人提供缓解。大约 39% 的第二和第三次注射能提供长期缓解。然而,如果症状复发,有些人可能需要进一步注射或最终接受手术。扳机指有时后来也会发生在其他手指上。这很常见,如果发生是可以管理的。
总体而言,目标是恢复平滑的运动并减轻疼痛。大多数患者通过注射或手术都能实现这一目标。您的外科医生将帮助您选择最适合您需求的治疗方案。
何时就诊
如果您注意到手掌疼痛或出现肿块,或在弯曲手指时出现卡顿或锁定现象,请就诊于全科医生。症状通常在早晨更为严重。如果手指卡在弯曲位置且无法伸直,或疼痛影响睡眠或工作,请要求专科医生评估。扳机指影响2%至3%的人群,在女性和45岁以上人群中更为常见。如果您患有糖尿病或类风湿性关节炎,患病风险也更高。早期评估有助于在症状恶化前进行管理。
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
- Female patients presenting with their first trigger finger have the highest rate of long-term treatment success after a single corticosteroid injection [1].
- Open trigger finger release is generally a low-risk procedure, although there is potential for complications, some requiring reoperation [2].
- Management of trigger finger with 2 steroid injections before surgery is the least costly treatment strategy [14].
- Percutaneous trigger finger release is confirmed to be efficacious and safe, with no clinical advantage shown for using pre- or postoperative ultrasonography [15].
- The use of ultrasound guidance in percutaneous trigger finger release raises questions regarding its safety and efficacy, although the clinical significance of these findings is unclear [19].
- Open surgery for trigger finger and trigger thumb is recommended due to excellent long-term results, no recurrence, and no serious complications such as nerve transection or bowstringing [28].
- Patients' preferences for trigger finger treatment often change after consulting with a hand surgeon and during treatment, but these choices do not affect treatment satisfaction [4].
- There are differences in treatment preferences and perceived advantages and disadvantages regarding idiopathic trigger finger between patients and hand surgeons, which might be addressed by a decision aid [35].
- There are no differences in patient-reported outcomes for pain or function or in reduction of trigger finger severity at 52 weeks among splint alone, steroid alone, and combination treatments [36].
- The trial comparing splint alone, steroid alone, and combination treatments recommends splinting alone as the least invasive option [36].
- Patients who undergo open trigger finger release surgery in the clinic have complication rates similar to reported complication rates of surgery performed in the operating room [37].
Anatomy & Pathophysiology
- Trigger finger (stenosing tenosynovitis) is characterized by mechanical impingement of the flexor tendons at the A1 pulley [10].
- Pathologic examination of affected pulleys demonstrates a proliferation of chondrocytes and increased type III collagen [10].
- The flexor digitorum profundus tendon often demonstrates a pathologic nodule, while the flexor digitorum superficialis is often unaffected [10].
- Fibrocartilaginous metaplasia occurs in the pulley and/or flexor digitorum superficialis tendon [7].
- Trigger finger occurs in 2% to 3% of the general population [10].
- Women are more commonly affected than men [10].
- Trigger finger is more common in patients with diabetes mellitus, with a 10% to 20% lifetime incidence in this population [10].
- Trigger finger is associated with hypothyroidism, sarcoidosis, rheumatoid arthritis, and septic tenosynovitis [10].
- The digits are affected in decreasing order of prevalence: thumb, ring, long, little, and index [10].
- Middle and ring finger involvement is most common in adults [7].
- Trigger finger is possibly associated with repetitive grasping activities [7].
- Triggering is often more pronounced in the morning than later in the day [9].
- Patients frequently note referred pain at the dorsal metacarpophalangeal or proximal interphalangeal area [7].
- Concomitant trigger finger and carpal tunnel syndrome occur in 40% to 60% of patients [7].
- In the thumb, a fourth pulley (variable annular pulley) is found in 75% of patients and may contribute to stenosis [7].
- Sonographic hallmarks of trigger finger include thickening and hypervascularization of the A1 pulley [43].
- In the thumb, the flexor tendon and A1 pulley thicken significantly only after patients exhibit triggering [77].
- Triggering in patients with rheumatoid arthritis is treated by tenosynovectomy and excision of one slip of the flexor digitorum superficialis rather than A1 pulley release to prevent ulnar drift [9].
- In patients with rheumatoid arthritis, the entire annular pulley system should be preserved to prevent further ulnar drift of the fingers [9].
- Concurrent Dupuytren’s disease is present in 16% of trigger finger cases, rising to 25% when considering only the middle and ring fingers [62].
- The incidence of concurrent trigger finger and Dupuytren’s disease increases with age, reaching 50% in patients aged 80 and older [70].
- Dupuytren’s disease may drive the development of trigger finger through mechanical irritation of the tendon at the A1 pulley by pretendinous fibers [71].
- In advanced Dupuytren’s contracture (Stages II or III), concomitant trigger finger is rarely seen, potentially due to reduced range of motion and less mechanical irritation at the A1 pulley [71].
- Patients with greater volar migration of the flexor tendons after carpal tunnel release are at a higher risk of developing trigger finger [73].
- Repetitive power grip and flexion, such as those involved in ocean rowing, increase the prevalence of trigger finger [75].
Classification
- The Green classification of trigger finger includes Grade I, defined as pain and tenderness at the A1 pulley [7].
- The Green classification of trigger finger includes Grade II, defined as catching of the finger [7].
- The Green classification of trigger finger includes Grade III, defined as locking of the finger that is passively correctable [7].
- The Green classification of trigger finger includes Grade IV, defined as a fixed, locked finger [7].
Clinical Presentation
- Trigger finger is the common term for stenosing tenosynovitis of the flexor tendons with mechanical impingement of the flexor tendons at the A1 pulley [10].
- Women are more commonly affected by trigger finger than men [10].
- The digits are affected in the following order of decreasing prevalence: thumb, ring, long, little, and index [10].
- Trigger finger is more common in patients with systemic diseases such as diabetes mellitus (10% to 20% lifetime incidence), hypothyroidism, sarcoidosis, rheumatoid arthritis, and septic tenosynovitis [10].
- Gout can mimic infectious tenosynovitis with initial presentation of marked pain, erythema, swelling, and warmth due to monosodium urate precipitation eliciting a fulminant inflammatory reaction in the tenosynovium [10].
- Calcific tendinitis can resemble an infection and result in triggering due to calcium salt deposition in the tenosynovium, with males affected five times more frequently than females [10].
- Pseudogout involves calcium pyrophosphate dihydrate crystal deposition, often localized to the triangular fibrocartilage or within the carpal tunnel, with rhomboid-shaped crystals showing positive birefringence [10].
- Amyloidosis is characterized by the deposition of beta-2-microglobulin in thick, plaque-like accumulations along the flexor tendons and is most commonly seen in patients with renal failure undergoing peritoneal or hemodialysis [10].
- Physical examination findings may include tenderness to palpation of the flexor tendon at the level of the A1 pulley [10].
- Physical examination findings may include palpable triggering or pain with flexion and extension of the finger [10].
- Physical examination findings may include nodularity of the flexor tendon just proximal to the A1 pulley [10].
- Physical examination findings may include the presence of a volar retinacular ganglion cyst between the A1 and A2 pulleys [10].
- Physical examination findings may include the presence of a fixed flexion deformity of the proximal interphalangeal (PIP) joint [10].
- Flexor tenosynovitis is characterized by pain and tenderness in the palm at the proximal edge of the digital A1 pulley [9].
- Patients frequently note catching or triggering of the affected finger or thumb after forceful flexion [9].
- In more severe cases, the opposite hand must be used to force the finger or thumb passively into extension [9].
- In the most severe cases, the finger becomes locked in a flexed position [9].
- Stenosing tenosynovitis is more common in diabetic patients than in nondiabetic patients [9].
- When multiple digits are involved, the possibility of diabetes should be considered [9].
- Green classification Grade I is defined as pain over the A1 pulley [10].
- Green classification Grade II is defined as mechanical catching of the digit without locking [10].
- Green classification Grade III is defined as mechanical locking of the digit which is passively correctable [10].
- Green classification Grade IV is defined as a fixed locked finger [10].
- Trigger thumb in adults is a distinctly separate entity from congenital trigger thumb [18].
- Stenosing tenosynovitis leading to inability to extend the flexed digit or flex the extended digit often produces a palpable triggering and is usually seen in individuals older than 45 years of age [18].
- When associated with a collagen disease, several fingers may be involved, most often the long and ring fingers [18].
- Patients may note a lump or knot in the palm, which may be the thickened area in the first annular pulley or a nodule or fusiform swelling of the flexor tendon just distal to it [18].
- The tendon nodule is usually just proximal to the anulus at the metacarpophalangeal joint level [18].
- In a rheumatoid patient, a nodule distal to the metacarpophalangeal joint may cause triggering [18].
- Patients may experience triggering after operative release because of catching of the tendon on the palmar aponeurosis transverse fibers, which usually resolves with time [18].
- Occasionally, a partially lacerated flexor tendon at this level heals with a nodule sufficiently large to cause triggering [18].
- Local tenderness may be present but is not a prominent complaint [18].
- Pressure accentuates the apparent snapping or triggering of the more distal joints [18].
- Patients frequently state that the problem is in the proximal interphalangeal joint with trigger finger or in the proximal interphalangeal joint with trigger thumb [18].
- Other conditions such as intraarticular disorders (e.g., loose bodies, degenerative joint disease, and fractures) and common extensor tendon subluxation can cause similar symptoms and must be considered to determine effective treatment for idiopathic trigger finger [18].
- Proximal interphalangeal joint pain in trigger finger patients results from long symptom duration and consequent joint pathology [20].
- Proximal interphalangeal joint pain is incompletely resolved after A1 pulley release, leading to worse surgical outcomes than expected [20].
- Pediatric trigger finger is a distinct ailment from adult trigger finger [31].
- A secondary cause must be sought whenever long fingers are affected in pediatric trigger finger cases [31].
Investigations
- Trigger finger is characterized by pain and tenderness in the palm at the proximal edge of the digital A1 pulley [9].
- Physical examination may reveal tenderness to palpation of the flexor tendon at the level of the A1 pulley [10].
- Physical examination may reveal palpable triggering or pain with flexion and extension of the finger [10].
- Physical examination may reveal nodularity of the flexor tendon just proximal to the A1 pulley [10].
- Physical examination may reveal the presence of a volar retinacular ganglion cyst between the A1 and A2 pulleys [10].
- Physical examination may reveal the presence of a fixed flexion deformity of the proximal interphalangeal (PIP) joint [10].
- The Green classification grades trigger finger severity: Grade I is pain over the A1 pulley; Grade II is mechanical catching without locking; Grade III is mechanical locking which is passively correctable; Grade IV is a fixed locked finger [10].
- Thickening and hypervascularization of the A1 pulley are the hallmarks of trigger fingers on sonography [43].
- Ultrasound (US) can detect various lesions in clinical trigger fingers, and some US findings correlate with clinical findings [58].
- Observing the triggering of the digit guides the patient's treatment and assists in diagnosing the condition [21].
- Advanced imaging is critical for identifying bony prominences causing locking when common etiologies are absent, such as in cases of metacarpal head osteochondroma presenting as "trigger finger" [63].
- A volar wrist ganglion can present as trigger finger and may be treated with interventional radiological measures [60].
Treatment
Non-Operative Management
- Corticosteroid injection is an effective first-line intervention for the treatment of trigger finger [24].
- Corticosteroid injections are effective in 57% of patients with trigger finger [12].
- One or two local injections of 1 ml triamcinolone acetonide 10 mg/ml is an effective and safe method of treatment for trigger fingers compared to placebo injection [47].
- Corticosteroid injection is effective, with 60% of patients achieving success after one injection [18].
- Injection is “curative” in about 60% of patients initially [7].
- 65% to 90% of patients who do not have diabetes obtain relief of symptoms with one or two injections [10].
- Diabetic patients are generally less responsive to corticosteroid injection [7].
- In patients with diabetes, relief of symptoms after injection is less reliable and may depend on chronic glucose levels (hemoglobin A1c levels) [10].
- Patients with metabolic syndrome are at risk of poorer functional outcomes and treatment failure after a single corticosteroid injection than age- and sex-matched controls [22].
- A single corticosteroid injection for trigger finger has a 45% long-term success rate [26].
- Success beyond two years likely predicts lasting symptom relief, though results vary by sex and number of affected digits [26].
- Thirty-nine percent of second and third corticosteroid injections for trigger finger yield long-term relief [27].
- Repeat injections provided symptomatic relief for a year or more in 50% of patients [18].
- There is no difference in effectiveness between soluble and insoluble steroid preparations [7].
- We recommend the use of an injection without lidocaine to treat trigger finger [46].
- Splinting is an effective short-term conservative treatment for trigger finger, offering symptom relief and functional improvement comparable to corticosteroid injections [25].
- The trial authors recommend splinting alone as the least invasive option given the lack of difference in outcomes [36].
- Initiating conservative treatment with the MCP joint blocking splint has value for patients with trigger finger and positive outcomes in 77% of subjects [48].
- Use of the DIP joint splint was effective in about half of subjects [48].
- Orthoses are effective for non-surgical management of pediatric and adult trigger finger using various orthotic options [50].
- Nonoperative methods include stretching, night splinting, and combinations of heat and ice [18].
Surgical Management
- Surgical release of the A1 pulley is curative in digits refractory to steroid injection [9].
- Surgical release of the A1 pulley provides satisfactory results in >90% of patients [10].
- Approximately 97% of patients have complete resolution after operative treatment [18].
- Minor complications (relatively high) include wound dehiscence, scar tenderness, and decreased ROM [7].
- Open release is an effective treatment for trigger finger with limited need for nonprescription drugs, since almost all patients reported full resolution of triggering within 6 weeks, and analgesic use was minimal [51].
- The safety and effectiveness of percutaneous trigger finger release using a needle or a push knife have literature support [18].
- The study confirms the efficacy and safety of percutaneous trigger finger release but shows no clinical advantage in using pre- or postoperative ultrasonography [15].
- Incomplete pulley release and damage to the flexor tendons and digital nerves, especially in the index finger and thumb, remain of some concern with limited exposure techniques [18].
- Trigger release should be done with a local block so that the cessation of triggering of a particular finger can be evaluated [18].
- Some adjacent finger triggering may become obvious only after a given finger is released; both can be released at the same surgical setting [18].
- Persistence of triggering is more common than recurrence [18].
- Procedure room-based treatment of trigger finger is less costly than release in the OR [55].
- Management of diabetic trigger finger with immediate surgical release in the clinic is the most cost-effective treatment strategy, assuming a corticosteroid injection failure rate of at least 34% [56].
- Database review found that preoperative hypoglycemia increased infection risk after both injection and release procedures [18].
Surgical Technique
- Local anesthetic infiltration in the palm proximal to the incision site is preferred for open release [6].
- The use of a pneumatic arm tourniquet may be helpful, although a high forearm Esmarch wrap usually is sufficient [6].
- A transverse incision about 2 cm long several millimeters distal to the distal palmar crease is used for middle, ring, and small trigger finger releases [6].
- A transverse incision several millimeters distal to the proximal palmar crease is used for index trigger finger releases [6].
- Trigger thumb releases can be done through incisions either distal or proximal to the metacarpophalangeal joint flexion crease [6].
- Alternative incisions for the fingers can be made obliquely or longitudinally between the metacarpophalangeal and distal palmar creases [6].
- Alternative incisions for the thumb can be made obliquely across the thumb metacarpophalangeal flexion crease [6].
- The digital nerves must be avoided, which on the thumb are more palmar and closer to the flexor sheath than might be anticipated [6].
- The thumb radial digital nerve is especially vulnerable [6].
- Subcutaneous tissues are spread away from the underlying annular pulley system to safely protect the digital nerves [6].
- Trigger thumbs require release of only the A1 pulley, whereas trigger digits require division of the A1 and A0, or proximal palmar pulley [6].
- Pulley division is usually accomplished with an initial opening of the pulley with a No. 15 knife blade and a pair of tenotomy scissors [6].
- For trigger thumb release, care must be taken to avoid cutting too far distally and disrupting the oblique pulley [6].
- The sheath is incised from proximal to distal, approximately 1 cm, and reassessed for triggering [6].
- The patient should actively flex and extend the digit; persistent triggering implies that either the A1 and palmar pulleys are incompletely released or an alternate site of triggering is present [6].
- When the distal A1 pulley edge is released, the divided pulley leaves are parallel rather than ending in a V-shaped pattern [6].
- After the tendon sheath has been released, the patient is encouraged to actively flex and extend the digit to ensure that the release is complete [6].
- The skin is closed and a small, dry compression dressing is applied [6].
- The compression dressing is removed after 48 hours for open release [6].
- Sutures are removed at 10 to 14 days for open release [6].
- Normal use of the finger or thumb is encouraged after open release [6].
- For percutaneous release, it is helpful to have the patient understand that the procedure might fail and that subsequent open release may be necessary [30].
- Local anesthetic is injected into the palmar skin and more deeply proximal to the intended release site [30].
- For middle, ring, and small fingers, the injection site is between the proximal and distal palmar creases; for the index finger, it is proximal to the proximal palmar crease [30].
- Orientation should be maintained along the flexor tendon sheaths in the midline of the digit being released [30].
- An 18- or 19-gauge needle may suffice for percutaneous release [30].
- The palm is turned up, resting the hand on a folded towel to permit slight hyperextension of the metacarpophalangeal joint [30].
- The needle is inserted onto the A1 pulley and oriented so that the bevel is longitudinally aligned parallel to the flexor tendons [30].
- The needle is moved proximally and distally along the A1 pulley, pressing firmly, to feel for a scraping or grating sensation as the sheath is incised [30].
- When the grating is eliminated, the needle is removed and triggering is checked as the patient flexes and extends the digit [30].
- Additional needle passes might be needed for percutaneous release [30].
- Injection of corticosteroid is optional during percutaneous release [30].
- The needle entry site is covered with an adhesive bandage or light nonrestrictive dressing after percutaneous release [30].
- Active hand and finger use is encouraged with stretching exercises after percutaneous release [30].
- Normal use of the finger or thumb is encouraged after percutaneous release [30].
Special Populations and Considerations
- In patients with rheumatoid arthritis (RA), preference is to excise a slip of the FDS tendon rather than to release the A1 pulley [7].
- In patients with RA, excision of an FDS slip is preferred because these patients are at risk for ulnar drift at the MCP joint, and release of the A1 pulley can exacerbate this drift [7].
- In patients with RA, the entire annular pulley system should be preserved to prevent further ulnar drift of the fingers [9].
- Triggering in RA patients is treated by tenosynovectomy and excision of one slip of the flexor digitorum superficialis [9].
- In case of trigger finger combined with Dupuytren’s disease, an isolated opening of the pulley without touching the Dupuytren tissue, followed by corticosteroid application in the area of the opened pulley, is a recommended strategy to avoid recurrence and faster recovery [64].
- In women with a trigger finger, the choice of treatment should take into account whether there are also one or more patient- or trigger-related factors that increase the risk of conversion to surgery [11].
- Comparing patients and hand surgeons, there were some differences in treatment preferences and perceived advantages and disadvantages regarding idiopathic trigger finger [35].
Complications
Non-Operative Treatment Complications
- Corticosteroid injections may elevate serum glucose levels for 5 days or more in patients with diabetes mellitus [18].
- Patients with unstable diabetes may be better treated without corticosteroid injection due to the risk of hyperglycemia [18].
- Preoperative hypoglycemia increases infection risk after both trigger finger injection and release procedures [6, 18].
Operative Treatment Complications
- About 1 in 20 fingers will experience a mild, transient adverse event after surgical release of the A1 pulley for idiopathic trigger finger [42].
- About 1 in 200 patients require a second surgery after open A1 pulley release for idiopathic trigger finger [42].
- Minor complications after surgical release are relatively high and include wound dehiscence, scar tenderness, and decreased range of motion [7, 8].
- Persistence of triggering is more common than recurrence after surgical release [18].
- Incomplete pulley release remains a concern with limited exposure techniques [18].
- Damage to the flexor tendons and digital nerves remains a concern with limited exposure techniques, especially in the index finger and thumb [18].
- The radial digital nerve is at risk of iatrogenic injury during thumb trigger finger release due to its superficial location [7, 8].
- The thumb radial digital nerve is more palmar and closer to the flexor sheath than might be anticipated, making it especially vulnerable during release [6].
- Triggering may persist after operative release due to catching of the tendon on the palmar aponeurosis transverse fibers, although this usually resolves with time [18].
- Occasionally, a partially lacerated flexor tendon at the release level heals with a nodule sufficiently large to cause triggering [18].
- Release of the A1 pulley in patients with rheumatoid arthritis carries a chance of exacerbating ulnar drift at the metacarpophalangeal joint [7, 8].
- Patients with more lifetime trigger fingers and/or prior trigger finger releases for other fingers are more likely to need ulnar superficialis slip resection during surgery [41].
- The incidence and treatment outcome of cases in which trigger finger occurred in conjunction with Dupuytren's disease appeared less predictable than that of ordinary trigger finger [40].
- Proximal interphalangeal joint pain in trigger finger patients results from long symptom duration and consequent joint pathology, and is incompletely resolved after A1 pulley release, leading to worse surgical outcomes than expected [20].
Recovery
- Success beyond two years after a single corticosteroid injection likely predicts lasting symptom relief [26].
- Long-term success rates for corticosteroid injections vary by sex and number of affected digits [26].
- Steroid injections are an effective first-line intervention for the treatment of trigger finger [24].
- About 1 in 200 fingers have a second surgery after surgical release of the A1 pulley for idiopathic trigger finger [42].
- Open surgery for trigger finger and trigger thumb yields excellent long-term results with no recurrence and no serious complications such as nerve transection or bowstringing [28].
- Percutaneous trigger finger release is effective and safe, with no clinical advantage in using pre- or postoperative ultrasonography [15].
- Simultaneous steroid injection at the time of surgical release provides greater subjective improvement in the early period after percutaneous trigger finger release [74].
- There were no significant differences in scar quality or improvement in patient-reported disability with transverse or longitudinal incisions for trigger finger release [38].
- Physicians should consider the duration of preoperative symptoms and preoperative flexion contracture of the PIP joint when deciding timing of surgery for trigger finger patients [23].
- Patients with more lifetime trigger fingers and/or prior TFRs for other fingers are more likely to need ulnar superficialis slip resection (USSR) during trigger finger release [41].
- Patients requiring USSR may benefit from hand therapy [41].
Key Evidence
- [L4] Female patients presenting with their first trigger finger have the highest rate of long-term treatment success after a single corticosteroid injection. [1] (10.2106/jbjs.n.00004)
- [L3] Open trigger finger release is generally a low-risk procedure, although there is potential for complications, some requiring reoperation. [2] (10.1007/s11552-014-9716-9)
- [Paper] Patients' preferences for trigger finger treatment often change after consulting with a hand surgeon and during treatment, but these choices do not affect treatment satisfaction. [4] (10.1007/s12593-015-0203-5)
- [L3] In women with a trigger finger, the choice of treatment should take into account whether there are also one or more patient- or trigger-related factors that increase the risk of conversion to surgery. [11] (10.1302/0301-620x.104b10.bjj-2022-0058.r3)
- [L1] Corticosteroid injections are effective in 57% of patients with trigger finger. [12] (10.5435/00124635-200703000-00006)
- [L2] Management of trigger finger with 2 steroid injections before surgery is the least costly treatment strategy. [14] (10.1016/j.jhsa.2009.02.029)
- [L4] The study confirms the efficacy and safety of percutaneous trigger finger release but shows no clinical advantage in using pre- or postoperative ultrasonography. [15] (10.1177/1753193413517992)
- [L5] While the clinical significance of these findings is unclear, it raises questions regarding the safety and efficacy of percutaneous trigger finger release, even when adding ultrasound guidance. [19] (10.1007/s11552-008-9137-8)
- [L4] Proximal interphalangeal joint pain in trigger finger patients results from long symptom duration and consequent joint pathology, and is incompletely resolved after A1 pulley release, leading to worse surgical outcomes than expected. [20] (10.1177/1753193418809771)
- [L4] Observing the triggering of the digit guides the patient's treatment, and the outlined technique assists in diagnosing and treating one of the most common hand conditions seen in practice. [21] (10.1016/j.jhsa.2011.12.014)
- [L3] Trigger finger patients with metabolic syndrome are at risk of poorer functional outcomes and treatment failure after a single corticosteroid injection than age- and sex-matched controls. [22] (10.1016/j.jhsa.2016.07.091)
- [L4] Physicians should consider the duration of preoperative symptoms and preoperative flexion contracture of the PIP joint when deciding timing of surgery for trigger finger patients. [23] (10.1016/j.jhsa.2018.06.023)
- [L4] Steroid injections were an effective first-line intervention for the treatment of trigger finger. [24] (10.1016/j.jhsa.2014.09.006)
- [L2] Splinting is an effective short-term conservative treatment for trigger finger, offering symptom relief and functional improvement comparable to corticosteroid injections. [25] (10.1016/j.jhsg.2025.100881)
- [L5] This commentary highlights that a single corticosteroid injection for trigger finger has a 45% long-term success rate, with success beyond two years likely predicting lasting symptom relief, though results vary by sex and number of affected digits. [26] (10.2106/jbjs.n.00832)
- [L4] Thirty-nine percent of second and third corticosteroid injections for trigger finger yield long-term relief. [27] (10.1016/j.jhsa.2017.02.001)
- [L4] The authors recommend open surgery for trigger finger and trigger thumb, citing excellent long-term results with no recurrence and no serious complications such as nerve transection or bowstringing. [28] (10.1007/s00402-008-0802-8)
- [L4] Pediatric trigger finger is a distinct ailment from adult trigger finger, and a secondary cause must be sought whenever long fingers are affected. [31] (10.1177/1558944715627634)
- [L4] Comparing patients and hand surgeons, there were some differences in treatment preferences and perceived advantages and disadvantages regarding idiopathic trigger finger—differences that might be addressed by a decision aid. [35] (10.1016/j.jhsa.2014.08.010)
- [L5] The author notes that the referenced trial found no differences in patient-reported outcomes for pain or function or in reduction of trigger finger severity at 52 weeks among splint alone, steroid alone, and combination treatments, leading the trial authors to recommend splinting alone as the least invasive option. [36] (10.1097/corr.0000000000002726)
- [L4] Patients who undergo open trigger finger release surgery in the clinic have complication rates similar to reported complication rates of surgery performed in the operating room. [37] (10.1016/j.jhsg.2022.01.008)
- [L2] There were no significant differences in scar quality or improvement in patient-reported disability with transverse or longitudinal incisions for trigger finger release. [38] (10.1177/1753193419859375)
- [L3] Patients with more lifetime trigger fingers and/or prior TFRs for other fingers are more likely to need USSR, and these patients may benefit from hand therapy. [41] (10.1016/j.jhsa.2024.08.013)
- [L4] This large retrospective series suggests that about 1 in 20 fingers will experience a mild, transient adverse event after surgical release of the A1 pulley for idiopathic trigger finger and that about 1 in 200 have a second surgery. [42] (10.1016/j.jhsa.2012.05.014)
- [L4] Thickening and hypervascularization of the A1 pulley are the hallmarks of trigger fingers on sonography. [43] (10.7863/jum.2008.27.10.1407)
- [L1] We recommend the use of an injection without lidocaine to treat trigger finger. [46] (10.1016/j.jhsa.2018.06.090)
- [L1] One or two local injections of 1 ml triamcinolonacetonide 10 mg/ml is an effective and safe method of treatment for trigger fingers compared to placebo injection. [47] (10.1136/ard.2007.073106)
- [L1] Initiating conservative treatment with the MCP joint blocking splint has value for patients with trigger finger and positive outcomes in 77% of subjects, whereas use of the DIP joint splint was effective in about half of subjects. [48] (10.1016/j.jhsa.2011.10.038)
- [L1] Orthoses are effective for non-surgical management of pediatric and adult trigger finger using various orthotic options. [50] (10.1016/j.jht.2023.05.016)
- [L2] Open release is an effective treatment for trigger finger with limited need for nonprescription drugs, since almost all patients reported full resolution of triggering within 6 weeks, and analgesic use was minimal. [51] (10.1016/j.jhsa.2025.12.006)
- [L4] The study demonstrates that procedure room-based treatment of trigger finger is less costly than release in the OR. [55] (10.1097/gox.0000000000002509)
- [L3] Management of diabetic trigger finger with immediate surgical release in the clinic is the most cost-effective treatment strategy, assuming a corticosteroid injection failure rate of at least 34%. [56] (10.1016/j.jhsa.2016.08.007)
- [L4] US can detect various lesions in clinical trigger fingers, and some US findings correlated with clinical findings. [58] (10.1007/s00296-009-1165-3)
- [L4] This is the first reported case of triggering pathology at the wrist to be treated with interventional radiological measures rather than open surgery and demonstrates the efficacy of the technique. [60] (10.1177/1753193412453699)
- [L4] This case supports the inclusion of metacarpal head osteochondroma in the differential diagnosis of a 'trigger finger.' Advanced imaging is critical for identifying bony prominences causing locking when common etiologies are absent. [63] (10.1016/j.jhsg.2023.03.010)
- [L3] Patients with greater volar migration of the flexor tendons after CTR are at a higher risk of developing trigger finger. [73] (10.1177/1753193413479506)
- [L1] Simultaneous steroid injection at the time of surgical release provides greater subjective improvement in the early period after percutaneous trigger finger release. [74] (10.1177/1753193418813771)
- [L3] This study provides new conclusive evidence that the repetitive power grip and flexion involved in rowing increase the prevalence of trigger finger. [75] (10.1177/1558944720918321)
- [L4] In the thumb, the flexor tendon and A1 pulley thickened significantly only after patients exhibited triggering. [77] (10.1016/j.jhsa.2012.06.027)
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