Second Dorsal Metacarpal Artery Flap From the Dorsum of the Middle Finger for Coverage of Volar Thumb Defect.

J Hand Surg Am. 2009 Aug 14; Zhang X, He Y, Shao X, Li Y, Wen S, Zhu HPURPOSE: The second dorsal metacarpal artery flap from the middle finger is a reconstructive technique that can be used to repair extensive volar defects in a normal-length thumb. However, few reports advocate using it for coverage of volar thumb defects. In this article, an anatomic study of 9 flaps used for resurfacing thumb defects is presented along with the clinical experience of the authors. METHODS: From 2004 to 2006, 9 patients (6 men and 3 women; mean age, 33 years; range, 18-51 years) with extensive volar defects of their normal-length thumbs had reconstruction using the described technique. In all cases, the first dorsal metacarpal artery flap technique was unable to be used because of injury. Donor sites were covered using full-thickness skin grafts. After surgery, the thumb was immobilized with a splint, followed by rehabilitation. During the follow-up period, which lasted 24 to 30 months, flap-site skin quality, scar contractures, and finger mobility were assessed. The range of motion of the hand was measured by a goniometer. Sensibility was evaluated by the 2-point discrimination test and the Semmes-Weinstein monofilament test. Cold intolerance was also assessed. RESULTS: Patient postoperative courses were uneventful, and all flaps survived completely without complication. Good coverage was obtained in all cases. Full active range of motion was observed in all patients in both the donor finger and the thumb. The mean Semmes-Weinstein sensitivity and 2-point discrimination scores of the flap were 4.02 g and 8.4 mm, respectively. Mild cold intolerance was observed in all of the thumbs. CONCLUSIONS: The second dorsal metacarpal artery flap from the middle finger is a single-stage flap that produces good results. Although its pedicle length is limited, it is reliable and can be used as an alternative for reconstruction of extensive thumb-pulp defects, especially when the first dorsal metacarpal artery flap cannot be used. TYPE OF STUDY/LEVEL OF EVIDENCE: Therapeutic IV.

Morbidity of en bloc resections in the spine.

Eur Spine J. 2009 Aug 19; Boriani S, Bandiera S, Donthineni R, Amendola L, Cappuccio M, De Iure F, Gasbarrini AThe morbidity of surgical procedures for spine tumors can be expected to be worse than for other conditions. This is particularly true of en bloc resections, the most technically demanding procedures. A retrospective review of prospective data from a large series of en bloc resections may help to identify risk factors, and therefore to reduce the rate of complications and to improve outcome. A retrospective study of 1,035 patients affected by spine tumors-treated from 1990 to 2007 by the same team-identified 134 patients (53.0% males, age 44 +/- 18 years) who had undergone en bloc resection for primary tumors (90) and bone metastases (44). All clinical, histological and radiological data were recorded from the beginning of the period in a specifically built database. The study was set up to correlate diagnosis, staging and treatment with the outcome. Oncological and functional results were recorded for all patients at periodic, diagnosis-related controls, until death or the latest follow-up examination (from 0 to 211 months, median 47 months, 25th-75th percentile 22-85 months). Forty-seven on the 134 patients (34.3%) suffered a total of 70 complications (0.86 events per 100 patient-years); 32 patients (68.1%) had one complication, while the rest had 2 or more. There were 41 major and 29 minor complications. Three patients (2.2%) died from complications. Of the 35 patients with a recurrent or contaminated tumor, 16 (45.7%) suffered at least one complication; by contrast, complications arose in 31 (31.3%) of the 99 patients who had had no previous treatment and who underwent the whole of their treatment in the same center (P = 0.125). The risk of major complications was seen to be more than twice as high in contaminated patients than in non-contaminated ones (OR = 2.52, 95%CI 1.01-6.30, P = 0.048). Factors significantly affecting the morbidity are multisegmental resections and operations including double contemporary approaches. A local recurrence was recorded in 21 cases (15.7%). The rate of deep infection was higher in patients who had previously undergone radiation therapy (RT), but the global incidence of complications was lower. Re-operations were mostly due to tumor recurrences, but also to hardware failures, wound dehiscence, hematomas and aortic dissection. En bloc resection is able to improve the prognosis of aggressive benign and low-grade malignant tumors in the spine; however, complications are not rare and possibly fatal. The rate of complication is higher in multisegmental resections and when double combined approach is performed, as it can be expected in more complex procedures. Re-operations display greater morbidity owing to dissection through scar/fibrosis from previous operations and possibly from RT. The treatment of recurrent cases and planned transgression to reduce surgical aggressiveness are associated with a higher rate of local recurrence, which can be considered the most severe complication. In terms of survival and quality of life, late results are worse in recurrent cases than in complicated cases. Careful treatment planning and, in the event of uncertainty, referral to a specialty center must be stressed.

Electromechanical Delay of the Knee Flexor Muscles Is Impaired After Harvesting Hamstring Tendons for Anterior Cruciate Ligament Reconstruction.

Am J Sports Med. 2009 Aug 14; Ristanis S, Tsepis E, Giotis D, Stergiou N, Cerulli G, Georgoulis ADBACKGROUND: Changes in electromechanical delay during muscle activation are expected when there are substantial alterations in the structural properties of the musculotendinous tissue. In anterior cruciate ligament reconstruction, specific tendons are being harvested for grafts. Thus, there is an associated scar tissue development at the tendon that may affect the corresponding electromechanical delay. PURPOSE: This study was conducted to investigate whether harvesting of semitendinosus and gracilis tendons for anterior cruciate ligament reconstruction will affect the electromechanical delay of the knee flexors. STUDY DESIGN: Case-control study; Level of evidence, 3. METHODS: The authors evaluated 12 patients with anterior cruciate ligament reconstruction with a semitendinosus and gracilis autograft, 2 years after the reconstruction, and 12 healthy controls. Each participant performed 4 maximally explosive isometric contractions with a 1-minute break between contractions. The surface electromyographic activity of the biceps femoris and the semitendinosus was recorded from both legs during the contractions. RESULTS: The statistical comparisons revealed significant increases of the electromechanical delay of the anterior cruciate ligament-reconstructed knee for both investigated muscles. Specifically, the electromechanical delay values were increased for both the biceps femoris (P = .029) and the semitendinosus (P = .005) of the reconstructed knee when compared with the intact knee. Comparing the anterior cruciate ligament-reconstructed knee against healthy controls revealed similar significant differences for both muscles (semitendinosus, P = .011; biceps femoris, P = .024). CONCLUSION: The results showed that harvesting the semitendinosus and gracilis tendons for anterior cruciate ligament reconstruction significantly increased the electromechanical delay of the knee flexors. Increased hamstring electromechanical delay might impair knee safety and performance by modifying the transfer time of muscle tension to the tibia and therefore affecting muscle response during sudden movements in athletic activities. However, further investigation is required to identify whether the increased electromechanical delay of the hamstrings can actually influence optimal sports performance and increase the risk for knee injury in athletes with anterior cruciate ligament reconstructions.

[Muscle indications in breast reconstruction and applications sparing latissimus dorsi flap. Vascular anatomy.]

Ann Chir Plast Esthet. 2009 Aug 12; Mojallal A, Saint-Cyr M, Wong C, Veber M, Braye F, Rohrich RBACKGROUND: The muscle-sparing latissimus dorsi flap pedicled on descending branch presents distinct advantages in breast reconstruction, specially when there is a transversely oriented skin paddle, including reduced donor site morbidity, sparing muscle function and greater freedom of orientation of the skin paddle. This study reports the anatomical basis, surgical technique, advantages and complications of this technique. Four clinical cases illustrate surgical indications in breast reconstructive surgery. METHODS: An anatomical cadaveric study underwent to University of Texas Southwestern Medical Center, Dallas. The goal was performed to determine the location of the bifurcation of the thoracodorsal artery and the course of its descending branch compare to the anterior side of latissimus dorsi muscle. Four clinical cases illustrated indications of muscle-sparing latissimus dorsi flap pedicled on descending branch in breast reconstruction. These cases showed advantages and complications of the technique, and impact on donor site. RESULTS: Fifteen descending branch muscle-sparing latissimus dorsi flaps were harvested. All flaps had a bifurcation of the thoracodorsal artery. The average was located at 5,1cm from posterior axillary side (from 2,1 to 7,5cm) and average of 2,2cm from the anterior side of latissimus dorsi muscle (from 1,3 to 3,1cm). To 5, 10 and 15cm from posterior axillary side, the descending branch was located at respectively an average of 2,0cm (from 1,4 to 2,5), 2,4cm (from 1,3 to 3,3), and 2,9cm (from 2,0 to 3,8) behind the anterior side of latissimus dorsi muscle. The average length of descending branch was measured at 15,2cm (from 13,2 to 19,0). None clinical cases paddle suffering was observed. Donor site morbidity was less than classical or extended adipomuscular technique. Latissimus dorsi muscle function is spared. CONCLUSIONS: The muscle-sparing latissimus dorsi flap, pedicled on descending branch, is versatile and reproducible. It results in minimal functional deficit of the donor site, absence of seroma, large freedom of orientation of the skin paddle, low rate of flap complications, and a cosmetically acceptable scar. There are a lot of indications in breast reconstruction.