Palmaris profundus in the carpal tunnel

2021 ◽  
Vol 14 (8) ◽  
pp. e241328
Author(s):  
Theodore Paul Pezas ◽  
Rajive Jose

Carpal tunnel release is a routinely performed operation to relieve pressure caused by compression on the median nerve. In the majority of cases, the causation of the compression will be idiopathic. Among the secondary causes of median nerve compression is the palmaris profundus, a rare anatomical variant separate to the palmaris longus tendon. It has been suggested that it may cause carpal tunnel syndrome as it courses underneath the flexor retinaculum with the contents of the carpal tunnel reducing the space available to the median nerve. Several cases have found it intimately associated with the median nerve within the carpal tunnel. Raising awareness of this anatomical variant is therefore important for those undertaking carpal tunnel decompression in order to avoid unintended damage.

2021 ◽  
Vol 12 ◽  
pp. 37
Author(s):  
Emanuele La Corte ◽  
Clarissa A. E. Gelmi ◽  
Nicola Acciarri

Background: Carpal tunnel syndrome (CTS) is the most common entrapment peripheral neuropathy. Median nerve may present several anatomical variations such as a high division or bifid median nerve (BMN). A thorough knowledge of the normal anatomy and variations of the median nerve at the wrist are fundamental to reduce complications during carpal tunnel release. Case Description: A 63-year-old man with CTS underwent preoperative ultrasound that showed the entrapment of the median nerve and disclosed a BMN Lanz IIIA Type anatomical variation at the carpal tunnel. During the surgery, the anatomical variant of a BMN at the wrist has been visualized. Both nervous rami entirely occupied the carpal canal and this may have predisposed to the development of the entrapment syndrome. Nor persistent median artery, or other associated abnormalities, have been identified. At the 6 months follow-up control, the patient referred a good surgical recovery with complete resolution of the preoperative symptoms of the median nerve entrapment. Conclusion: A rare case of Lanz IIIA BMN Type at the wrist has been encountered in a patient with a CTS and a systematic review and practical considerations have been presented with the aim of raising awareness to the neurosurgical community of a such rare variant that could be encountered during carpal tunnel release procedures. CTS may be caused by the entrapment of a BMN Lanz IIIA Type anatomical variant of median nerve. Preoperative US would help to identify such patients to reduce risk of iatrogenic injuries.


2020 ◽  
Vol 9 (06) ◽  
pp. 493-497
Author(s):  
Andrew D. Boltuch ◽  
Michael A. Marcotte ◽  
Christopher M. Treat ◽  
Anthony L. Marcotte

Abstract Background The palmaris tendon inserts into the palmar fascia and is positioned in close association with the transverse carpal ligament. Loading of this tendon has been demonstrated to increase carpal tunnel pressures. Purpose The purpose of this study was to determine if a relationship exists between the palmaris tendon, carpal tunnel syndrome (CTS), and handedness. The sensitivity, specificity, positive predictive value, and negative predictive value for Schaeffer's test were calculated. Methods A retrospective review of patient charts undergoing endoscopic carpal tunnel release was performed. Rates of palmaris longus agenesis (PLA) were compared to a population matched data set. Statistical analysis was performed using a one-proportion z-test. Schaeffer's test for the palmaris longus tendon was performed on all patients and compared to intraoperative confirmation. Results A total of 520 carpal tunnel releases were performed in 389 consecutive patients. The frequency of PLA in this surgical cohort was significantly lower compared to the population matched dataset. No correlation between handedness and laterality of CTS or PLA was found. Schaeffer's test was evaluated to yield sensitivity (93.6%), specificity (100%), positive predictive value (100%), and negative predictive value (50.8%). Conclusion The palmaris tendon was more prevalent in a population of patients undergoing carpal tunnel release. These findings can be used to provide further insight into the pathophysiology of CTS. While Schaeffer's test was accurate in detecting the palmaris longus tendon, a negative test was frequently incorrect. Further imaging is recommended in patients with a negative Schaeffer's test when the palmaris longus is desired for surgical utilization. Level of Evidence This is a Level III, prognostic study.


2005 ◽  
Vol 30 (4) ◽  
pp. 412-414 ◽  
Author(s):  
O. RACASAN ◽  
TH. DUBERT

Steroid injections are routinely performed for carpal tunnel syndrome. Direct needle injury of the median nerve is the major complication of these injections. The safest location of the injection remains controversial. The purpose of this study is to define safe guidelines to avoid nerve injury. The distances between the Median nerve, Palmaris Longus, Flexor Carpi Ulnaris and Flexor Carpi Radialis tendons were measured preoperatively, 1 cm proximal to the distal wrist crease in 93 endoscopic carpal tunnel releases. We found that the median nerve extended ulnarly beyond the Palmaris Longus tendon in 82 hands (88%). It is concluded that the median nerve is at risk if the injection is performed within 1 cm on either the ulnar or radial side of the Palmaris Longus tendon. More ulnarly, there is risk to the ulnar pedicle. The safest location is to inject through the FCR tendon.


2021 ◽  
pp. 175319342110017
Author(s):  
Saskia F. de Roo ◽  
Philippe N. Sprangers ◽  
Erik T. Walbeehm ◽  
Brigitte van der Heijden

We performed a systematic review on the success of different surgical techniques for the management of recurrent and persistent carpal tunnel syndrome. Twenty studies met the inclusion criteria and were grouped by the type of revision carpal tunnel release, which were simple open release, open release with flap coverage or open release with implant coverage. Meta-analysis showed no difference, and pooled success proportions were 0.89, 0.89 and 0.85 for simple open carpal tunnel release, additional flap coverage and implant groups, respectively. No added value for coverage of the nerve was seen. Our review indicates that simple carpal tunnel release without additional coverage of the median nerve seems preferable as it is less invasive and without additional donor site morbidity. We found that the included studies were of low quality with moderate risk of bias and did not differentiate between persistent and recurrent carpal tunnel syndrome.


Hand ◽  
2018 ◽  
Vol 15 (1) ◽  
pp. 64-68
Author(s):  
Gideon Nkrumah ◽  
Alan R. Blackburn ◽  
Robert J. Goitz ◽  
John R. Fowler

Background: Increasing severity of carpal tunnel syndrome (CTS), as graded by nerve conduction studies (NCS), has been demonstrated to predict the speed and completeness of recovery after carpal tunnel release (CTR). The purpose of this study is to compare the cross-sectional area (CSA) of the median nerve in patients with severe and nonsevere CTS as defined by NCS. Methods: Ultrasound CSA measurements were taken at the carpal tunnel inlet at the level of the pisiform bone by a hand fellowship–trained orthopedic surgeon. Severe CTS on NCS was defined as no response for the distal motor latency (DML) and/or distal sensory latency (DSL). Results: A total of 274 wrists were enrolled in the study. The median age was 51 years (range: 18-90 years), and 72.6% of wrists were from female patients. CSA of median nerve and age were comparatively the best predictors of severity using a linear regression model and receiver operator curves. Using cutoff of 12 mm2 for severe CTS, the sensitivity and specificity are 37.5% and 81.9%, respectively. Conclusions: Ultrasound can be used to grade severity in younger patients (<65 years) with a CTS-6 score of >12.


2020 ◽  
Vol 15 (01) ◽  
pp. e1-e4
Author(s):  
Amgad S. Hanna ◽  
Zhikui Wei ◽  
Barbara A. Hanna

AbstractMedian nerve anatomy is of great interest to clinicians and scientists given the importance of this nerve and its association with diseases. A rare anatomical variant of the median nerve in the distal forearm and wrist was discovered during a cadaveric dissection. The median nerve was deep to the flexor digitorum superficialis (FDS) in the carpal tunnel. It underwent a 360-degree spin before emerging at the lateral edge of FDS. The recurrent motor branch moved from medial to lateral on the deep surface of the median nerve, as it approached the distal carpal tunnel. This variant doesn't fall into any of Lanz's four groups of median nerve anomalies. We propose a fifth group that involves variations in the course of the median nerve. This report underscores the importance of recognizing variants of the median nerve anatomy in the forearm and wrist during surgical interventions, such as for carpal tunnel syndrome.


2006 ◽  
Vol 31 (6) ◽  
pp. 608-610 ◽  
Author(s):  
M. M AL-QATTAN

During open carpal tunnel release in patients with severe idiopathic carpal tunnel syndrome, an area of constriction in the substance of the median nerve is frequently noted. In a prospective study of 30 patients, the central point of the constricted part of the nerve was determined intraoperatively and found to be, on average, 2.5 (range 2.2–2.8) cm from the distal wrist crease. This point always corresponded to the location of the hook of the hamate bone. These intraoperative findings were compared with the “narrowest” point of the carpal canal as determined by anatomical and radiological studies in the literature.


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