为何建议进行此手术¶
Mater Private Hospital Rockhampton 的上肢外科医生 Kieran Hirpara 医生会根据您的感染所处阶段来匹配治疗方案。指头疖(felon)是指指尖肉垫处积聚的脓液或肿胀。在早期,当疼痛表现为刺痛感而非搏动性疼痛时,仅使用抗生素可能就足够了。一旦指尖变得紧绷且伴有搏动性疼痛(通常在夜间加重),内部压力需要得到释放。这正是切开引流术的作用:通过一个小切口让感染物排出,从而缓解指尖血供所承受的压力。
患者通常由其全科医生(GP)转诊至我们的诊所;如果物理治疗师建议您就诊,您仍需获得全科医生的转诊,才有资格享受 Medicare 报销。我们会评估您的手指,并在必要时使用影像学检查。当感染处于早期时,我们通常先尝试使用抗生素,并进行密切随访以确认感染正在消退。当这些措施未能带来足够的改善,或指尖已经变得紧绷时,我们建议进行手术。目标是尽早引流感染、缓解您的疼痛,并保护手指免受永久性损伤。
术前¶
您的外科医生会在手术当天之前为您提供明确的指示。您需要提前七小时停止进食和饮水。我们要求七小时而非六小时,以便如果手术室排班提前,您可以被提前安排。某些药物可能需要暂停服用,您的外科医生会告知您具体是哪些药物以及何时暂停。请携带一份您正在服用的所有药物的书面清单,安排他人驾车送您回家,并穿着宽松舒适的衣物。可能会使用X射线检查您指尖的骨骼,当诊断不明确时,超声或MRI检查可提供帮助。如果您有其他健康状况,可能需要进行血液检查或接受麻醉医生的评估。大多数患者无需进行这些检查。
手术当日¶
您将抵达医院的手术入院单元,在此办理入院手续并进行术前准备。随后,您将与麻醉师见面,麻醉师负责让您进入睡眠状态并在手术期间照料您。该手术在全身麻醉下进行。有时会追加区域神经阻滞以缓解术后疼痛;麻醉师将在手术当日就此与您讨论。
随后,您将被带入手术室进行手术。术后,您将在复苏区苏醒,护士会在此监测您的情况,直至麻醉药效消退。待您的生命体征稳定后,根据手术类型及您的恢复情况,您将被转入病房或直接回家。
手术内容¶
该手术称为切开引流术。外科医生会在您肿胀紧绷的指尖指腹上做一个小切口。这可以释放内部积聚的压力,并让感染物排出。
一旦指尖被打开,外科医生会用液体冲洗该空间,并清除任何受感染或坏死的组织。这被称为清创术。如果仅是简单的脓液积聚,通常彻底的引流就足够了。如果肿胀已扩散至指甲根部皮肤褶皱下方,外科医生可能会掀起或切除该褶皱的一小部分新月形组织,以便感染物排出并彻底冲洗该区域。
在大多数情况下,切口会进行包扎而非缝合,因为手术的核心目的是在感染消退过程中保持一条引流通道。您将带着包扎好的伤口回家,我们的团队会告知您如何护理。
抗生素也是治疗的一部分,与手术相辅相成。通常会取感染样本送往实验室,以便针对引起感染的特定病原体选择合适的抗生素。如果感染发现得早且引流彻底,术后可能完全不需要使用抗生素。如果感染严重、扩散迅速,或者您有其他健康状况,则会使用较长疗程的抗生素。
切口的具体形状和位置取决于您手指的具体情况。外科医生会根据压力积聚的位置以及术中观察到的情况,在手术过程中做出决定。
术后¶
您将在复苏区苏醒,护士会密切观察您,直至麻醉药效消退。您的手部将被抬高并用软敷料包扎,指尖保持外露,以便您观察其活动情况。镇痛药物将根据需要给予,护士会定期查看您的状况。回家后,前24小时内需有人陪伴。您的医疗团队会告知您是当天出院还是住院观察一晚。敷料通常保留约10天;除非我们指示,否则请勿提前拆除。我们将在复诊时为您更换或拆除敷料。
恢复¶
导致您接受手术的搏动性疼痛在压力解除后应会明显缓解。您的手指在一段时间内仍会感到压痛和肿胀,随着情况稳定,部分液体可能继续从切口处渗出。将手抬高放在枕头上,即使在坐着或睡觉时也是如此,有助于减轻肿胀并缓解不适。按处方服用的止痛药也有助于您保持舒适。
您的敷料将保留约10天,我们在复诊时会为您更换或拆除。敷料拆除后,您可以观察指尖自由活动。术后手部治疗由Extend康复中心的Ruby Doolan负责。她将指导您的锻炼并为您制作所需的夹板。随着肿胀消退,轻柔的活动有助于手指重新弯曲和伸直。只要可能将手抬高,您可以在家进行大多数轻度的日常活动。
愈合是分阶段进行的。首先切口闭合,然后压痛感消退,接着抓握能力和精细动作恢复。起初指尖垫可能感觉坚硬或轻微麻木,这会随时间软化。如果指甲受累,它会重新生长并覆盖该区域。一旦您能够无痛抓握且肿胀消退,您的外科医生将与您讨论恢复日常活动,包括驾驶。
恢复情况因人而异。您的时间表可能有所不同,您的外科医生和治疗师将在整个过程中为您提供指导。
何时联系我们¶
大多数感染在引流后会好转,但出现某些迹象意味着您应尽早与我们联系。如果您出现发热或寒战,伤口发红或渗出液加重,或疼痛持续加重而非缓解,请致电我们。如果您出现小腿肿胀、呼吸困难或突然的剧烈疼痛,请前往急诊。如果您的手指失去感觉,或无法活动,请立即致电我们。
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 forearm muscles as it has intrinsic muscles [2].
- The hand functions as an organ designed to obtain information and an organ of execution [2].
- The 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 which flex toward the palm [2].
- The thumb has a more proximal and lateral position than the four fingers, allowing movement inward and outward from the palm [2].
- The web space of the thumb is the largest and deepest of the digital web spaces [2].
Cutaneous Anatomy¶
- The dorsal cutaneous unit extends from the wrist to the proximal interphalangeal joints of the fingers and the interphalangeal joint of the thumb [3].
- The dorsal covering of the interphalangeal articulations forms a unique cutaneous unit characterized by considerable excess of skin when 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 [3].
- The skin of the radial portion of the palm covers the thenar eminence and is relatively well vascularized and mobile [3].
- The skin of the ulnar and distal portion of the palm covers the hypothenar eminence and has poor mobility [3].
- The central triangular part of the palm has fixed, 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 flexion and extension movements [3].
- Incisions made along the lines of the diamond-shaped cutaneous contact zones present a minimal chance of retraction [3].
- The dorsal slope of the web spaces has a gradual incline and its supple skin is not adherent to the subjacent region [3].
- The palmar surface of the web spaces is flat and precipitously interrupted, with skin densely adherent to the commissural skeleton [3].
- The commissural skeleton of the web spaces 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 and 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 and 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 and is inserted deeply by a medial tendon onto the lateral tubercle of the base of the proximal phalanx [4].
- The superficial head of the dorsal interosseous muscles abducts and weakly flexes the proximal phalanx [4].
- The deep head of each dorsal interosseous muscle forms a lateral tendon, or lateral band, at the level of the metacarpophalangeal joint [4].
- The deep head of the dorsal interosseous muscles flexes and weakly abducts the proximal phalanx while extending the middle and distal phalanges [4].
- Transverse fibers arch dorsally from each lateral band to join each other over the dorsum of the finger, flexing 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 proximal interphalangeal 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, forming the ulnar lateral band of the little finger [4].
- Each volar interosseous muscle has only one muscle head and none of them 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 arises from the pisohamate ligament and the hook of the hamate and 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 "princeps pollicis" artery is the terminal branch of the radial artery and 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 metacarpophalangeal joint level, 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 the subtendinous arcade enter the "vincula" and irrigate the flexor tendon [8].
- In anatomical studies, only 15% of dissections fall into the category of the classical layout of palmar arteries of the thumb [8].
- In the second segment of the thumb, the two arteries run alongside the flexor tendon and behind the collateral nerves [8].
- In the second segment of the thumb, 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 [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 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 [8].
- The ulnar dorso-collateral artery generally stems from the "princeps pollicis" onto the medial border of the neck of the first metacarpal [8].
Surgical Anatomy Considerations¶
- Distal palmar incisions are transverse, while proximal palmar incisions tend to be more longitudinal with the distal end curving radially [9].
- Proximal palmar incisions should parallel the thenar crease [9].
- When extended proximal to the wrist, palmar incisions should not cross the flexor wrist creases at a right angle [9].
- The most important structure in the thenar area is the recurrent branch (motor) of the median nerve [9].
- Anatomic studies have shown that there is no single longitudinal incision in the proximal palm that completely avoids the palmar cutaneous branches of the median and ulnar nerves [9].
- In the distal palm, structures lying between the metacarpal heads are not protected by the palmar fascia [9].
- The superficial volar neurovascular arch should be protected when deeper exposure is required in the palm [9].
- Midlateral incisions described for the fingers are also suitable for the thumb [9].
- The radial side of the thumb is more accessible for midlateral incisions [9].
- Care should be taken to avoid the dorsal branch of the superficial radial nerve to the radial side of the thumb during midlateral incisions [9].
Investigations¶
- Clinical evaluation of the injured or dysfunctional hand and wrist requires combining patient history with a careful physical examination to pinpoint or narrow the scope of possible pathologic processes [1].
- Diagnostic tests such as imaging and serum laboratory studies are useful in determining pathology but can be expensive, time consuming, and often nonspecific [1].
- A careful physical examination is essential to direct care and future testing if indicated [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 for identifying neurovascular bundles [11].
- Doppler imaging is a promising improvement for visualizing palmar structures, but higher resolution imaging technology is needed [11].
- MR assessment of Dupuytren’s disease is hindered by the resolution of current equipment, orientation issues due to multiplanar deformities of the fingers, and lack of intraoperative availability [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.
[8] Exam Of The Hand Wrist 2Ed. Techniques of investigation of the arterial supply by J P Melki > Vascularization of the thumb > Palmar aspect.
[9] Campbell S Operative Orthopaedics 4 Volume Set. RESULTS OF SUTURE OF THE SCIATIC NERVE > PALMAR INCISIONS.
[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.
