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C Attinger

Publications and source records attributed to C Attinger.

9 recordsLinked to original sources

Candida fasciitis following renal transplantation.

BACKGROUND: We describe a rare case of necrotizing fasciitis involving Candida albicans, an organism that has been reported to have a minimal potential for invasive soft tissue infection. In this case, immunosuppression, chronic renal failure, and a history of diabetes mellitus were predisposing factors. METHODS: The medical record and histopathologic material were examined. The clinical literature was reviewed for previous cases of C albicans necrotizing fasciitis. RESULTS: A review of the literature showed that in solid organ transplant recipients, localized fungal soft tissue infection is infrequent, with only 35 cases reported between 1974 and 1992. Necrotizing fasciitis caused by C albicans is extremely rare in the modern era of solid organ transplantation. CONCLUSIONS: The management of transplant patients at risk for invasive fungal infection warrants a high index of suspicion for fungal necrotizing fasciitis in the setting of wound infection and merits a thorough investigation for atypical pathogens.

Candidiasis↗

Soft tissue reconstruction for calcaneal fractures or osteomyelitis.

A systematic approach of the surgical management of a calcaneal fracture can minimize the potential of soft tissue complications. When reducing a closed calcaneal fracture, the incision used affects the postoperative complications. The L-shaped incision with the horizontal limb lying on the lateral glabrous junction ensures maximum blood flow to either side of the incision. Whether or not the wound can be closed primarily depends on the preexisting edema, the lost calcaneal height, and the delay between the fracture and reduction (Fig. 20). The wrinkle test is a good indicator that the incision can be closed primarily if the amount of height restored is minimal. If the edema is too great, steps should be taken to reduce it sufficiently to allow successful wound closure. If the wound, after reduction, is too wide to allow primary closure, an ADM flap laterally or an AHM flap medially should be used. For larger defects, a free flap should be considered. The three important steps to reconstruction of soft tissue defects around the calcaneus include good blood supply, a infection-free wound, and the simplest soft tissue reconstructive option that covers the wound successfully. Adequate blood supply can be determined by the use of Doppler. If the supply is inadequate, revascularization is necessary before proceeding. Achieving a clean wound requires aggressive debridement, intravenous antibiotics, and good wound care. Adjuncts that can help in achieving a clean wound include topical antibiotics (silver sulfadiazine), the VAC, and hyperbaric oxygen. Osteomyelitis has to be treated aggressively. Any suspicious bone has to be removed. Only clean, healthy, bleeding bone is left behind. Antibiotic beads can be useful when there is doubt as to whether the cancellous bone is infection-free. The beads are not a substitute for good debridement, however. Soft tissue reconstruction ranges from delayed primary closure to the use of microsurgical free flaps (Fig. 21). When bone or hardware is exposed, a muscle flap should cover the wound because of the extra blood supply it carries with it. The soft tissue option depends on the width of the wound. For wounds 1 cm wide or less, the options include allowing the wound to close by secondary intention (VAC), delayed primary closure, or a local muscle flap. For wounds 2 cm wide or less, allowing the wound to close by secondary intention (VAC) and a local muscle flap are the best options. For wider wounds, one has to assess whether the local muscle flap has sufficient bulk to close the defect. If it does, it is the simplest solution. If the local muscle is inadequate, a microsurgical free flap has to be used. The VAC sometimes can convert a large wound to a smaller wound so that a local muscle flap can be used. This procedure takes time, however, and adds to the cost of the repair.

Ankle↗

The safest surgical incisions and amputations applying the angiosome principles and using the Doppler to assess the arterial-arterial connections of the foot and ankle.

Knowing the arterial anatomy of the foot and ankle in addition to understanding the angiosome concept provides the basis for careful and safe planning of incisions. The Doppler allows the surgeon to map out the actual vascular anatomy that exists preoperatively and therefore allows for appropriate adjustment to the planned incisions. If the vascular flow is inadequate for the planned surgery, then the vascular surgeon has to intervene to improve the existing blood flow. If the vascular tree is so compromised that successful revascularization of the affected angiosome is impossible, then the revascularization is likely to fail. Serious consideration to a below-knee amputation should then enter the decision tree at that time. Most of the time, however, the blood flow is adequate or can be sufficiently augmented with vascular surgery. The foot and ankle surgeon can then perform preoperative mapping of the arterial blood supply with the Doppler. By making the necessary adjustments to the planned incision, surgery can proceed safely with uneventful healing.

Amputation, Surgical↗

Local flaps.

Local flap reconstruction of pedal defects can be accomplished with a variety of techniques. Multiple geometric constructs have been described for closure of foot defects. Each has its own unique principles which can be adapted to certain locations and premorbid conditions. Local flaps considered for closure of foot defects should lie within the higher level of any algorithm, due to their versatility, reproducibility, and long term functional outcomes. In addition, hospitalization, length of anesthesia, and perioperative care can be much less with the use of local flaps.

Algorithms↗

Prosthetic bypass with a distal vein patch for limb salvage.

BACKGROUND: Certain patients require tibial bypass for limb salvage without adequate vein available as the conduit. Polytetrafluoroethylene (PTFE) bypasses result in decreased patency prompting the addition of venous tissue at the distal anastomosis as cuffs, collars, and boots. We assessed feasibility and graft patency of a distal vein patch (DVP) interposed between PTFE and the tibial artery. METHODS: Between 7/93 and 7/96, 148 tibial bypasses were performed with 25 (17%) using PTFE/DVP as the conduit. Patient demographics (n = 24) were 11 males and 13 females, mean age of 67, diabetes (n = 15, 57%), renal failure (n = 8, 31%), and excessive cardiac risk (n = 20, 83%). All patients had limb-threatening ischemia with rest pain in 14 (58%) and gangrene/nonhealing ulcer in 10 (42%). Lack of vein was due to previous failed bypass (15,63%), cardiac surgery (5,21%), and unsuitable vein (4,21%). Patients were discharged on coumadin with follow-up at 1 month, 6 months, and annually. RESULTS: PTFE/DVP bypasses originated from the CFA (13,48%), the SFA (3,11 %) and the external iliac artery due to previous groin dissection (9,41 %). Recipient arteries included anterior tibial (7), posterior tibial (8), and peroneal (10). Follow-up ranged from 1 to 36 months. Cumulative graft patency at 6 months and 3 years was 91% and 78%, respectively, by life table analysis. Limb salvage was 91%. CONCLUSION: These early data indicate that tibial bypass with PTFE/DVP as the conduit results in acceptable patency and limb salvage. In the patient without adequate vein, PTFE bypasses to tibial arteries for limb salvage may be improved with a distal vein patch.

Anastomosis, Surgical↗

Salvage of traumatic below-knee amputation stumps utilizing the filet of foot free flap: critical evaluation of six cases.

Over a 12-year period between 1979 and 1991, 27 patients were operated on at the New York University Medical Center for salvage of below-knee amputation stumps utilizing free flaps. Six different donor sites were used. In 6 patients, the amputated foot was the donor site for a free flap to cover the tibial stump. There were 3 males and 3 females in this group. Five of the patients underwent immediate filet of foot reconstructions, while 1 patient had a reconstruction performed 69 days after injury, electively, when it was determined that below-knee amputation was the best option. All foot flaps survived and ultimately provided the major soft-tissue coverage for the below-knee amputation stump. The length of hospitalization ranged from 24 to 118 days. The time required from foot filet procedure to ambulation was 2, 4, 6, 7, 9, and 12 months in the 6 patients. Five of the 6 patients have resumed work or school after their injury. Foot flaps were based on the posterior tibial artery, anterior tibial artery, or both vessels. Nerve anastomosis of the posterior tibial nerve was performed in 5 patients. In 1 patient it was possible to maintain the continuity of the posterior tibial nerve. Five of the 6 patients were tested over a year after the flap, and all have good cold, pressure, and vibration sensation. Two of the 5 patients have heat sensation, and all 5 patients have at least protective pressure sensation. All the patients ambulate well with a below-knee prosthesis.

Adolescent↗

Use of skin grafting in the foot.

Skin grafting is a useful adjunct to treating open wounds. It not only provides rapid wound coverage, but also eliminates the pain and the risk of further infection associated with open wounds. A successful skin graft take requires a well vascularized and relatively sterile bed, as well as complete resolution of any surrounding infection. The author reviews the indications and techniques for obtaining a successful skin graft take.

Foot Injuries↗

Soft-tissue coverage for lower-extremity trauma.

In summary, a rational approach to soft-tissue coverage in the ankle and foot should help lower osteomyelitis and bone nonunion rates and yield an excellent functional result. In addition to adequate fixation, it is crucial to first obtain a clean healthy wound by doing as many debridements as necessary. The goal should be to achieve coverage within the first week of injury to avoid the sequelae of a later closure; i.e., a potentially much higher infection rate and nonunion rate. The reconstructive options range from secondary intention, to primary closure, to skin grafts, to local flaps, to microsurgical free flaps. The choice should be dictated by the health of the patient, the existing bony and neurovascular anatomy, and the desired ultimate objective. Given the currently available orthopedic and plastic surgical techniques, it is possible to salvage almost any foot or ankle; however, we should not be carried away by our surgical armamentorium. If the salvaged extremity will take more than a year to heal, will be barely functional, and will be a constant source of pain, then a below-knee amputation should strongly be considered. The challenge in the coming decade comes both in picking the correct extremity to salvage and in applying the techniques described previously to restore it to its preinjury state.

Debridement↗

Selected benefits of thoracotomy and chemotherapy for sarcoma metastatic to the lung.

To determine the benefit of aggressive surgical therapy, we studied 77 consecutive patients presenting to our sarcoma registry with pulmonary metastases. Detailed follow-up was available on all patients; the median follow-up of the 13 long-term survivors was 72 months from the date of diagnosis of the primary tumor. Survival of these 77 patients with metastatic disease was independent of the size, location, and histology of the primary tumor. Once metastases developed, survival of patients with pulmonary metastases was not influenced by the extent of surgical resection of the primary tumor or by the use of radiation therapy. Pulmonary metastases were initially treated with thoracotomy and metastasectomy in 34 patients. The median survival after thoracotomy was 26 months. Seven patients were alive more than 4 years after their diagnosis. Pulmonary metastases were treated with chemotherapy alone in 43 patients. Although the survival was shorter (median survival 14 months) in patients treated with chemotherapy, an objective response to chemotherapy was obtained in 13 (30%) patients. Four of these patients were alive 4 years after their diagnosis. These data demonstrate that both thoracotomy and chemotherapy are associated with long-term survival of patients with sarcoma metastatic to the lung.

Antineoplastic Combined Chemotherapy Protocols↗