扳机指 资料 In-depth

本页面由机器翻译,尚未经临床医生审核。英文版本为权威版本。

您的感受

扳机指通常始于手掌疼痛和压痛,位于受累手指或拇指的基部。许多人还会感到指根关节(掌指关节)背面或手指中间关节酸痛,这可能让人感觉问题出在关节本身。您可能会注意到手掌上有一个小肿块或结节。这是肌腱或其腱鞘的增厚区域,并会随着手指弯曲而移动。

主要症状是卡顿或弹响。这通常发生在您用力抓握某物或握紧拳头之后。手指可能会犹豫,然后突然弹开。在更严重的情况下,手指会锁定在弯曲状态,您需要用另一只手将其伸直。有些人醒来时手指卡在卷曲状态,必须慢慢将其展开。如果病情发展到非常严重的程度,手指会保持弯曲,无法自行伸直。

需要反复抓握的日常任务会变得困难:握方向盘、提购物袋、拧干布料,或使用剪刀或开罐器。卡顿在活动后和早晨起床时往往更严重。

还有一些其他值得了解的事情。扳机指很常见,大约3%的人一生中会受到影响。女性比男性更常见,尤其是50岁以上的女性。中指是最常受累的手指。如果不止一根手指出现扳机指,可能与糖尿病有关。扳机指也常与腕管综合征同时发生,后者会导致手部刺痛或麻木。

儿童也可能出现扳机拇指。它通常出现在幼儿期而非出生时,拇指末端关节会锁定在弯曲状态。有时会影响双侧拇指。

实际发生了什么

弯曲手指的肌腱就像绳索。它们从您的前臂延伸,穿过手掌,并附着在指骨上。一个被称为滑车的软组织隧道将每根绳索紧贴骨骼固定,使其在抓握时不会像弓弦一样偏离。

在扳机指中,该隧道的入口,即A1滑车,会增厚并变得紧绷。肌腱本身也可能形成小的增厚结节。现在,绳索上有一个结试图通过狭窄的闸门。当您弯曲手指时,结在滑车下方滑动。当您伸直手指时,它在入口处卡住,然后弹过。这就是您感觉到的咔哒声和弹响。如果它完全无法通过,手指会锁定在弯曲状态。

增厚是组织中的磨损性改变,而非感染或肿瘤。它与反复用力抓握有关,在糖尿病和某些炎症性疾病患者中更为常见。隧道变窄,肌腱在每次手指运动时穿过隧道摩擦的部位受到刺激。

医生将病情进展描述为四个阶段。在第一阶段,手掌指根部有疼痛和压痛,但尚无卡顿。在第二阶段,手指开始出现卡顿或弹响。在第三阶段,手指锁定在弯曲状态,但您可以将其伸直,通常需要用另一只手帮助。在第四阶段,手指卡在弯曲状态,即使有帮助也无法伸直。早期阶段通常可以通过更简单的治疗缓解,如夹板或皮质类固醇注射,这是一种放置在肌腱附近的强效抗炎药物。后期阶段,即手指锁定或保持弯曲的情况,通常需要一个小手术来打开狭窄的隧道。

这也解释了为什么问题感觉像是在指根关节(掌指关节)或手指中间关节。卡顿发生在手掌,但牵拉和弹响的感觉在手指更远的部位。

我们如何处理该问题

Mater Private Hospital Rockhampton 的上肢外科医生 Kieran Hirpara 医生会从适合您病情的最微创方案开始。患者通常由其全科医生(GP)转诊至我们的诊所;如果理疗师建议您就诊,您仍需获得全科医生的转诊才能符合 Medicare 报销资格。在您的首次就诊时,我们会采集病史,检查您的手部,并仅在必要时安排影像学检查。由于扳机指是一种长期的劳损问题,我们通常先进行非手术治疗,然后再考虑手术。

最简单的步骤是改变您使用手部的方式。减少反复的用力抓握,可以让受刺激的肌腱有机会恢复平静。夹板也有帮助,它通过保持手指静止,使肌腱在每次移动时不再经过狭窄的隧道摩擦。手部治疗旨在缓解疼痛并保持手指活动顺畅。我们通常会给这些措施数周的充分尝试期,然后再考虑下一步。

如果自我管理未能解决问题,注射通常是下一步。皮质类固醇注射是一种强效抗炎药物,放置在手掌中肌腱附近。它通过减轻肿胀发挥作用,使肌腱能更自由地滑过隧道。大约 60% 的人在注射后扳机指症状得到缓解。糖尿病患者对注射的反应通常较差,因此我们在制定您的护理计划时会考虑这一点。有些人需要在手术成为下一步之前接受第二次注射。

当注射和夹板固定未能带来足够的改善,或者手指已进入出现锁定或持续弯曲的后期阶段时,就需要考虑手术。手术是一种小型松解术:我们打开隧道狭窄的入口,即 A1 滑车,使肌腱能够顺畅滑动而不被卡住。这是一个短小的手术,旨在永久消除弹响和锁定。我们将与您讨论手术是否适合您的具体情况,并共同做出决定。

预期情况

对于许多人来说,扳机指(弹响指)不会自行缓解。卡顿和锁定症状往往持续存在,如果手部持续进行相同的用力抓握动作,这些症状可能在数月内逐渐加重。在早期阶段,即有疼痛但弹响较少的情况下,通过夹板固定或休息等简单护理,症状缓解的可能性最大。一旦手指开始出现锁定,若不经治疗,通常会保持该状态或进一步恶化。

经过精心选择的治疗,大多数人可获得持久的缓解。单独使用夹板固定即可奏效,且这是侵入性最小的选择。糖皮质激素注射可使许多人的症状得到控制,约39%的第二和第三次注射能带来长期缓解。当上述措施效果不足时,小型松解手术可消除卡顿和锁定。大多数接受该手术的人都对此感到满意,尽管术后出现轻微、短暂的不适较为常见:约1/20的手指会出现疼痛、僵硬或肿胀等轻微且暂时的问题,约1/200的人需要接受第二次手术。

治疗后的恢复通常较为顺利。松解手术后,手指或拇指很快即可正常活动,僵硬是最可能延缓恢复的因素,影响约8.6%的患者。扳机指症状本身的复发率较低,约为2.2%。关于长期预后,有两点值得了解。部分患者手指中间关节(近端指间关节)会持续存在酸痛感,尤其是如果问题在治疗前已存在较长时间,这种酸痛可能无法完全消失。此外,接受手术松解的患者日后发生杜普伊特伦病(掌腱膜挛缩症)的风险高于其他人群,该病表现为手掌组织收紧并牵拉手指弯曲。

放任不治也有其自身风险。手指长时间处于锁定弯曲状态可能导致该位置的永久性僵硬,且症状存在时间越长,治疗效果往往越差。如果您患有糖尿病,注射治疗的效果通常较差,因此手术可能是更可靠的选择。以上所述并非对您个人结果的承诺,但客观反映了通常发生的情况。

何时就医

如果您在手指或拇指基部的掌侧感到疼痛和压痛,或有一个随手指弯曲而移动的小肿块,请咨询您的全科医生。如果手指开始出现卡顿、弹响或锁定,尤其是需要另一只手才能将其伸直时,请要求专科医生评估。如果手指持续弯曲且无法自行伸直,或症状影响抓握、工作或睡眠,同样适用。如果不止一根手指出现弹响,请提及这一点,因为这可能与糖尿病有关,值得检查。拇指持续锁定弯曲的儿童也应接受评估,而不是等待观察。

深入探讨

Advanced reading: the deeper science (optional)

本节内容超出了您自身治疗决策所需的范围。扳机指值得额外阅读,因为一线治疗的成功率仅略高于一半,而这一数据很少被引用;此外,在儿童中,相同的临床表现意味着不同的情况,足以改变检查方案。

注射有效,且真实数据为57%

皮质类固醇注射是标准的一线干预措施,通常被简单描述为有效。I级和II级研究的汇总数据更为具体:皮质类固醇注射对57%的扳机指患者有效。尽管所纳入的研究存在局限性,但基于其简便性及症状缓解效果,它仍被推荐作为一线治疗 [1]。

在接受注射前了解57%这一数据至关重要。它将第二次注射或决定进行手术重新定义为相当一部分患者的预期路径,而非意味着出现了问题。

夹板固定是一种切实可行的替代方案,且其持续时间通常长于多数人的预期

在注射治疗不适用时(例如在糖尿病患者中,注射可能干扰血糖控制),矫形器管理具有合理的循证依据。各项研究的一致发现是,无论固定哪个关节,疗效均相似,并建议将单个关节固定6至10周 [2]。

这一持续时间正是人们容易低估的部分。仅佩戴两周的夹板并不能作为夹板固定疗效的试验。

手术松解:技术之争已定,入路问题未决

A1滑车松解可采用开放手术(经小切口直视下操作)或经皮穿刺(使用针或刀片)进行。汇总548例患者的数据显示,开放技术与经皮技术在翻修需求、并发症或术后疼痛方面无显著差异,因此两者均适用 [3]。

一项涵盖2,114个手指的经皮松解大型分析发现该技术有效且安全,并补充了两个有用的细节:超声引导可能提高成功率,而成功率不受所用器械或是否联合使用皮质类固醇的影响 [4]。2025年一项针对685例患者的综述发现,将经皮松解与皮质类固醇注射联合应用耐受性良好,并发症发生率低 [5]。

综上所述:滑车需要被切断,如何实现这一目标的重要性低于是否完全实现。器械并不决定结果。

在儿童中,相同的发现需要不同的应对

儿童扳机指并非成人疾病提前出现。若存在双侧或多指扳机指,或并发腕管综合征,应警惕黏多糖贮积症等非典型潜在病理 [6]。

这是本节中临床意义最重大的要点。若儿童出现多指扳机指,或扳机指伴神经症状,应进行系统性贮积症的相关检查,而非直接行松解术,因为手部表现可能是某种诊断的首发体征,其影响远超手部本身。而在其他方面健康的儿童中,单个拇指出现扳机指是另一种情况,且远为常见。

参考文献

[1] Fleisch SB, Spindler KP, Lee DH. 皮质类固醇注射治疗扳机指:I级和II级系统评价。J Am Acad Orthop Surg. 2007;15(3):166-71. https://doi.org/10.5435/00124635-200703000-00006

[2] Lunsford D, Valdes K, Hengy S. 扳机指的保守治疗:系统评价。J Hand Ther. 2019;32(2):212-21. https://doi.org/10.1016/j.jht.2017.10.016

[3] Casey JC, Daher M, Dworkin M, Cusano J, Garavito J, Gil JA. 扳机指开放手术与经皮固定术:临床结局荟萃分析。J Hand Surg Am. 2024;49(6):570-5. https://doi.org/10.1016/j.jhsa.2024.03.010

[4] Zhao J, Kan S, Zhao L, Wang Z, Long L, Wang J, et al. 经皮第一环状滑车松解术治疗扳机指:当前证据的系统评价和荟萃分析。J Hand Surg Am. 2014;39(11):2192-202. https://doi.org/10.1016/j.jhsa.2014.07.044

[5] Wen J, Syed B, Khalil R, Shehabat M, Alam M, Sedighi R, et al. 经皮A1滑车联合皮质类固醇注射治疗扳机指:系统评价和荟萃分析。J Orthop Surg Res. 2025;20(1). https://doi.org/10.1186/s13018-025-05776-2

[6] Wong AL, Wong MJ, Parker R, Wheelock ME. 儿童扳机指的临床表现与病因:系统评价。J Hand Surg Eur Vol. 2021;47(2):192-6. https://doi.org/10.1177/17531934211035642


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

Non-Operative Management

  • Female patients presenting with their first trigger finger have the highest rate of long-term treatment success after a single corticosteroid injection [1].
  • Management of trigger finger with 2 steroid injections before surgery is the least costly treatment strategy [14].
  • 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].
  • 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 [36].

Operative Management

  • Open trigger finger release is generally a low-risk procedure, although there is potential for complications, some requiring reoperation [2].
  • 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 [43].
  • 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 [30].
  • Local anesthetic infiltration in the palm proximal to the incision site is preferred for open trigger finger release [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 about 2 cm long 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].
  • The digital nerves 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 during trigger thumb release [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, the surgeon should 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].
  • 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].
  • Other fingers can be found to trigger at the same surgical setting and can be managed at the same time [6].
  • The compression dressing is removed after 48 hours [6].
  • Sutures are removed at 10 to 14 days [6].
  • Normal use of the finger or thumb is encouraged after surgery [6].

Percutaneous Management

  • The study confirms the efficacy and safety of percutaneous trigger finger release but shows no clinical advantage in using pre- or postoperative ultrasonography [15].
  • Percutaneous release is permanent, safe, and cost-effective and should be considered as first-line treatment for demonstrable trigger fingers [18].
  • 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 [21].

General Clinical Guidance

  • The manuscript aims to provide an updated practical guide for clinicians and surgeons reviewing the state-of-art of both the assessment and the treatments of patients with trigger finger to plan tailored rehabilitation management taking advantage of the matching of traditional and novel techniques [3].

Anatomy & Pathophysiology

Demographics and Epidemiology

  • Trigger finger occurs in 2% to 3% of the general population [10].
  • Women are more commonly affected than men [10].
  • The most common demographic group is women older than 50 years of age [7, 8].
  • Middle and ring finger involvement is most common in adults [7, 8].
  • The order of decreasing prevalence for affected digits is 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].
  • 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].
  • The average age of female patients with trigger finger was 62 years and of male patients was 64.5 years [70].

Etiology and Risk Factors

  • The precise etiology of trigger finger has not been elucidated [77].
  • Repetitive finger movements and local trauma are proposed causes of trigger finger [77].
  • Stress and degenerative force account for an increased incidence of trigger finger in the dominant hand [77].
  • Trigger finger is possibly associated with repetitive grasping activities [7, 8].
  • Repetitive power grip and flexion involved in rowing increase the prevalence of trigger finger [90].
  • Patients with greater volar migration of the flexor tendons after carpal tunnel release are at a higher risk of developing trigger finger [88].
  • Concomitant trigger finger and carpal tunnel syndrome occurs in 40% to 60% of patients [7, 8].

Pathology and Histology

  • Trigger finger is defined as stenosing tenosynovitis of the flexor tendons with 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].
  • Histology shows fibrocartilaginous metaplasia of the pulley and/or FDS tendon [7, 8].
  • Thickening and hypervascularization of the A1 pulley are the hallmarks of trigger fingers on sonography [52].
  • In the thumb, the flexor tendon and A1 pulley thickened significantly only after patients exhibited triggering [92].
  • A nodule or thickening in the flexor tendon becomes trapped proximal to the pulley, making finger extension difficult [10].
  • The lump palpable in the palm may be the thickened area in the first annular pulley or a nodule or fusiform swelling of the flexor tendon just distal to it [20].
  • The tendon nodule usually is just proximal to the anulus at the metacarpophalangeal joint level [20].
  • In a rheumatoid patient, a nodule distal to the metacarpophalangeal joint level may cause triggering [20].

Clinical Presentation

  • Patients present with 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].
  • Triggering is often more pronounced in the morning than later in the day [9].
  • Pain and tenderness in the distal palm progress to mechanical catching or locking, and may become fixed [7, 8].
  • A common complaint is referred pain at the dorsal MCP/PIP area [7, 8].
  • Physical examination findings include tenderness to palpation of the flexor tendon at the level of the A1 pulley [10].
  • Physical examination findings include palpable triggering or pain with flexion and extension of the finger [10].
  • Physical examination findings 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 a fixed flexion deformity of the proximal interphalangeal (PIP) joint [10].
  • Local tenderness may be present but is not a prominent complaint [20].
  • Pressure accentuates the apparent snapping or triggering of the more distal joints [20].
  • Patients frequently state that the problem is in the proximal interphalangeal joint with trigger finger or in the proximal interphalangeal joint with trigger thumb [20].

Anatomical Variations and Associations

  • Newer evidence has found a fourth pulley (variable annular pulley) in 75% of patients, which may contribute to stenosis in the thumb [7, 8].
  • Concurrent appearance of Dupuytren’s disease and trigger finger was observed in 16% of trigger finger cases [70].
  • When considering middle and ring fingers only, Dupuytren’s disease and trigger finger were present in 25% of cases [70].
  • The percentage of patients with combined trigger finger and Dupuytren’s disease strongly increases with age [84].
  • In the "80+" age group, 50% of trigger finger patients are suffering from both trigger finger and Dupuytren’s disease [84].
  • In more progressed stages of Dupuytren’s contracture (Stages II or III), the concomitant appearance of trigger finger and Dupuytren’s contracture is rarely seen [85].
  • Advanced extension deficit reduces the range of motion of the tendon and thus causes less mechanical irritation at the A1 pulley [85].
  • The tendon becomes slightly thinner distal to the chiasm of the deep and superficial flexor tendon [85].

Classification

  • Green Classification Grade I is defined as pain and tenderness at the A1 pulley [7, 8].
  • Green Classification Grade II is defined as catching of the finger [7, 8].
  • Green Classification Grade III is defined as locking of the finger that is passively correctable [7, 8].
  • Green Classification Grade IV is defined as a fixed, locked finger [7, 8].
  • 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].

Classification

  • The Green classification of trigger finger includes four grades: Grade I (pain and tenderness at the A1 pulley), Grade II (catching of finger), Grade III (locking of finger; passively correctable), and Grade IV (fixed, locked finger) [7].
  • Clinical presentation of trigger finger involves pain or tenderness in the distal palm that progresses to mechanical catching or locking, and may become fixed [7].
  • A common complaint associated with trigger finger is referred pain at the dorsal MCP/PIP area [7].
  • In a retrospective review of 90 trigger digits, severity was graded according to Green's classification, with Grade I and II grouped as mild triggering and Grade III and IV grouped as severe triggering [74].
  • Percutaneous release for trigger finger is not indicated for Type I triggers because the procedure requires active demonstration of flexion-extension activity, which may not occur sporadically in Type I cases [50].

Clinical Presentation

Epidemiology and Risk Factors

  • Women are more commonly affected by trigger finger than men [10].
  • The lifetime risk for a trigger finger in the general population is approximately 3% [40].
  • Trigger finger is more common in patients with systemic diseases such as diabetes mellitus, hypothyroidism, sarcoidosis, rheumatoid arthritis, and septic tenosynovitis [10].
  • Diabetes mellitus is associated with a 10% to 20% lifetime incidence of trigger finger [10].
  • Trigger finger is seen in patients with gout, calcific tendinitis, pseudogout, and amyloidosis [10].
  • In patients with calcific tendinitis causing triggering, males are affected five times more frequently than females [10].
  • 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 [24].

Clinical Findings

  • Flexor tenosynovitis is characterized by pain and tenderness in the palm at the proximal edge of the digital A1 pulley [9].
  • 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 fixed flexion deformity of the proximal interphalangeal (PIP) joint [10].
  • Patients may note a lump or knot in the palm, which may be a thickened area in the first annular pulley or a nodule of the flexor tendon [20].
  • The tendon nodule can be palpated by the examiner’s fingertip and moves with the tendon [20].
  • Patients frequently state that the problem is in the proximal interphalangeal joint with trigger finger or trigger thumb [20].
  • Proximal interphalangeal joint pain in trigger finger patients results from long symptom duration and consequent joint pathology [22].

Classification

  • The Green classification for trigger finger includes Grade I: Pain over the A1 pulley [10].
  • The Green classification for trigger finger includes Grade II: Mechanical catching of the digit without locking [10].
  • The Green classification for trigger finger includes Grade III: Mechanical locking of the digit which is passively correctable [10].
  • The Green classification for trigger finger includes Grade IV: Fixed locked finger [10].

Differential Diagnosis and Associated Conditions

  • Other conditions such as intraarticular disorders (e.g., loose bodies, degenerative joint disease, and fractures) and common extensor tendon subluxation can cause similar symptoms to idiopathic trigger finger [20].
  • There is a predisposition for carpal tunnel syndrome and trigger finger to present in the same hand [54].
  • Carpal tunnel release does not cause new incidence of trigger finger in the operative hand [54].
  • Pediatric trigger finger is a distinct ailment from adult trigger finger [33].
  • A secondary cause must be sought whenever long fingers are affected in pediatric trigger finger [33].

Investigations

Clinical Examination and Classification

  • Trigger finger is characterized by pain and tenderness in the palm at the proximal edge of the digital A1 pulley [9].
  • The Green classification Grade I is defined as pain over the A1 pulley [7, 8, 10].
  • The Green classification Grade II is defined as catching of the finger or mechanical catching of the digit without locking [7, 8, 10].
  • The Green classification Grade III is defined as locking of the finger or mechanical locking of the digit which is passively correctable [7, 8, 10].
  • The Green classification Grade IV is defined as a fixed, locked finger [7, 8, 10].
  • Observing the triggering of the digit guides the patient's treatment and assists in diagnosing trigger finger [23].

Imaging

  • Ultrasound can detect various lesions in clinical trigger fingers, and some ultrasound findings correlated with clinical findings [66].
  • Advanced imaging is critical for identifying bony prominences causing locking when common etiologies are absent [71].
  • Metacarpal head osteochondroma is an atypical cause of "trigger finger" that supports the inclusion of this condition in the differential diagnosis [71].
  • Volar wrist ganglion can present as trigger finger and has been treated with interventional radiological measures rather than open surgery [68].

Treatment

Non-Operative Management

  • Corticosteroid injections are effective in 57% of patients with trigger finger [12].
  • Corticosteroid injections are effective in 60% of patients with trigger finger [20].
  • Corticosteroid injections are effective in 65% to 90% of patients without diabetes who receive one or two injections [10].
  • Steroid injections were an effective first-line intervention for the treatment of trigger finger [27].
  • The current evidence supports the use of corticosteroid injection as a first-line treatment for trigger finger [41].
  • A single corticosteroid injection for trigger finger has a 45% long-term success rate [29].
  • Diabetic patients are generally less responsive to corticosteroid injection for trigger finger [7, 8].
  • There is no difference in efficacy between soluble and insoluble corticosteroid preparations for trigger finger injection [7, 8].
  • Splinting is an effective short-term conservative treatment for trigger finger, offering symptom relief and functional improvement comparable to corticosteroid injections [28].
  • Initiating conservative treatment with the MCP joint blocking splint has positive outcomes in 77% of subjects with trigger finger [57].
  • Use of the DIP joint splint was effective in about half of subjects with trigger finger [57].
  • Orthoses are effective for non-surgical management of pediatric and adult trigger finger using various orthotic options [58].
  • A randomized 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 [56].
  • The authors of a trial comparing splint, steroid, and combination treatments recommend splinting alone as the least invasive option [56].
  • The use of an injection without lidocaine is recommended to treat trigger finger [55].

Operative Management

  • Surgical release of the A1 pulley provides satisfactory results in >90% of patients with trigger finger [10].
  • Approximately 97% of patients have complete resolution after operative treatment for trigger finger [20].
  • 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 [61].
  • In patients with rheumatoid arthritis, the preference is to excise a slip of the FDS tendon rather than to release the A1 pulley because these patients are at risk for ulnar drift at the MCP joint [7, 8].
  • The radial digital nerve is at risk of iatrogenic injury during thumb trigger finger release given its superficial location [7, 8].
  • Minor complications of open trigger finger release include wound dehiscence, scar tenderness, and decreased ROM [7, 8].
  • 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% [64].
  • Procedure room-based treatment of trigger finger is less costly than release in the operating room [63].
  • Comparing patients and hand surgeons, there were some differences in treatment preferences and perceived advantages and disadvantages regarding idiopathic trigger finger [36].
  • 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].

Complications

Surgical Complications

  • Approximately 1 in 20 fingers will experience a mild, transient adverse event after surgical release of the A1 pulley for idiopathic trigger finger [49].
  • Approximately 1 in 200 patients have a second surgery after open A1 pulley release for idiopathic trigger finger [49].
  • Minor complications of trigger finger release are relatively high and include wound dehiscence, scar tenderness, and decreased range of motion [7].
  • Incomplete pulley release and damage to the flexor tendons and digital nerves remain of some concern, especially with limited exposure techniques [20].
  • Preoperative hypoglycemia increases infection risk after trigger finger injection and release [5].
  • There were no significant differences in scar quality or improvement in patient-reported disability with transverse or longitudinal incisions for trigger finger release [44].

Postoperative Outcomes and Recurrence

  • Persistence of triggering is more common than recurrence after operative treatment [20].
  • Subsequent release or injection in the same or another digit was common following an initial trigger finger release [51].
  • Patients with more lifetime trigger fingers and/or prior trigger finger releases for other fingers are more likely to need ulnar superficialis slip resection [48].
  • 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 [22].
  • 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 [13].
  • 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 [47].

Non-Operative Complications and Risks

  • Corticosteroid injections may elevate serum glucose levels for 5 days or more [20].

Recovery

Non-Operative

  • Steroid injections are an effective first-line intervention for the treatment of trigger finger [27].
  • Success beyond two years following a single corticosteroid injection is likely to predict lasting symptom relief [29].
  • Long-term success rates for corticosteroid injections vary by sex and number of affected digits [29].
  • Thirty-nine percent of second and third corticosteroid injections for trigger finger yield long-term relief [38].
  • Splinting is an effective short-term conservative treatment for trigger finger [28].
  • Splinting offers symptom relief and functional improvement comparable to corticosteroid injections [28].

Operative

  • Open trigger finger release is generally a low-risk procedure [2].
  • Open trigger finger release has potential for complications, some requiring reoperation [2].
  • Percutaneous trigger finger release is an effective and safe procedure [15].
  • There is no clinical advantage in using pre- or postoperative ultrasonography for percutaneous trigger finger release [15].
  • Simultaneous steroid injection at the time of surgical release provides greater subjective improvement in the early period after percutaneous trigger finger release [89].
  • Open surgery for trigger finger and trigger thumb yields excellent long-term results with no recurrence [30].
  • Open surgery for trigger finger and trigger thumb yields excellent long-term results with no serious complications such as nerve transection or bowstringing [30].
  • About 1 in 20 fingers will experience a mild, transient adverse event after surgical release of the A1 pulley for idiopathic trigger finger [49].
  • About 1 in 200 fingers have a second surgery after surgical release of the A1 pulley for idiopathic trigger finger [49].
  • There are no significant differences in scar quality between transverse or longitudinal incisions for trigger finger release [44].
  • There are no significant differences in improvement in patient-reported disability between transverse or longitudinal incisions for trigger finger release [44].

Prognostic Factors and Complications

  • Physicians should consider the duration of preoperative symptoms when deciding timing of surgery for trigger finger patients [13].
  • Physicians should consider preoperative flexion contracture of the PIP joint when deciding timing of surgery for trigger finger patients [13].
  • Proximal interphalangeal joint pain is incompletely resolved after A1 pulley release [22].
  • Proximal interphalangeal joint pain leads to worse surgical outcomes than expected [22].
  • The incidence and treatment outcome of trigger finger occurring in conjunction with Dupuytren's disease appear less predictable than that of ordinary trigger finger [47].
  • Patients with more lifetime trigger fingers are more likely to need ulnar superficialis slip resection during trigger finger release [48].
  • Patients with prior trigger finger releases for other fingers are more likely to need ulnar superficialis slip resection during trigger finger release [48].
  • Patients requiring ulnar superficialis slip resection may benefit from hand therapy [48].

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)
  • [L5] The manuscript aims to provide an updated practical guide for clinicians and surgeons reviewing the state-of-art of both the assessment and the treatments of patients with trigger finger to plan tailored rehabilitation management taking advantage of the matching of traditional and novel techniques. [3] (10.1186/s12891-024-08192-5)
  • [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)
  • [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. [13] (10.1016/j.jhsa.2018.06.023)
  • [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)
  • [L3] Percutaneous release is permanent, safe, and cost-effective and should be considered as first-line treatment for demonstrable trigger fingers. [18] (10.5435/jaaosglobal-d-25-00445)
  • [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. [21] (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. [22] (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. [23] (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. [24] (10.1016/j.jhsa.2016.07.091)
  • [L4] Steroid injections were an effective first-line intervention for the treatment of trigger finger. [27] (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. [28] (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. [29] (10.2106/jbjs.n.00832)
  • [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. [30] (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. [33] (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. [36] (10.1016/j.jhsa.2014.08.010)
  • [L4] Thirty-nine percent of second and third corticosteroid injections for trigger finger yield long-term relief. [38] (10.1016/j.jhsa.2017.02.001)
  • [L2] [40] (10.1016/j.jhsa.2024.05.016)
  • [L4] The current evidence supports the use of corticosteroid injection as a first-line treatment for trigger finger. [41] (10.1177/175899830701200304)
  • [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. [43] (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. [44] (10.1177/1753193419859375)
  • [Textbook] 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. [47] (10.1007/978-3-642-22697-7_31)
  • [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. [48] (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. [49] (10.1016/j.jhsa.2012.05.014)
  • [L1] [50] (10.1093/rheumatology/ker315)
  • [L4] Subsequent release or injection in the same or another digit was common following an initial trigger finger release. [51] (10.1016/j.jhsa.2025.02.009)
  • [L4] Thickening and hypervascularization of the A1 pulley are the hallmarks of trigger fingers on sonography. [52] (10.7863/jum.2008.27.10.1407)
  • [L4] There is a predisposition for carpal tunnel syndrome and trigger finger to present in the same hand; however, patients can be counseled that CTR does not cause new incidence of trigger finger in the operative hand. [54] (10.1016/j.jhsa.2018.10.003)
  • [L1] We recommend the use of an injection without lidocaine to treat trigger finger. [55] (10.1016/j.jhsa.2018.06.090)
  • [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. [56] (10.1097/corr.0000000000002726)
  • [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. [57] (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. [58] (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. [61] (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. [63] (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%. [64] (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. [66] (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. [68] (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. [71] (10.1016/j.jhsg.2023.03.010)
  • [L4] [74] (10.4055/cios.2012.4.4.263)
  • [L5] [77] (10.1007/s12178-007-9012-1)
  • [L3] Patients with greater volar migration of the flexor tendons after CTR are at a higher risk of developing trigger finger. [88] (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. [89] (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. [90] (10.1177/1558944720918321)
  • [L4] In the thumb, the flexor tendon and A1 pulley thickened significantly only after patients exhibited triggering. [92] (10.1016/j.jhsa.2012.06.027)

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