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Biomedical subjects

B A Toth

Publications and source records attributed to B A Toth.

17 recordsLinked to original sources

Temporoparietal fascial flap for orbital and eyelid reconstruction.

The temporoparietal fascial flap is a recognized technique for the transfer of vascularized tissue in the craniofacial region. The flap has a predictable axial vessel, provides thin vascularized tissue, and can be harvested with minimal donor-site morbidity. The temporoparietal fascial flap is well suited for orbital or eyelid reconstruction because of its proximity to the orbit. The flap is useful for reconstruction of anatomic barriers between the orbit, intracranial cavity, and paranasal sinus spaces. We present four patients in whom the temporoparietal fascial flap was used for orbital reconstruction following extirpative surgery for orbital neoplasm and two patients in whom the flap was used for lower eyelid and malar reconstruction.

Adult

Three dimensional imaging and computer-designed prostheses in the evaluation and management of orbitocranial deformities.

Three dimensional images reconstructed from two dimensional CT scans allow improved analysis of complex orbitocranial bony deformities. This evaluation may be useful in patients with defects resulting from trauma, tumor, congenital abnormalities, or developmental disorders. Diagnosis, surgical management, and long-term follow-up evaluation may be aided by improved understanding of bony contour and volume analysis. Computer designed prostheses can be fabricated to precisely match bony defects and may be used as an alloplastic implant or as a model to aid intraoperative contouring of an autogenous bone graft. The limitations of three dimensional imaging include artifacts in the reconstructed images, increased radiation exposure, and increased cost. The technology is still evolving and the indications and benefits remain undefined at the present time.

Adolescent

Split bipedicle transverse rectus abdominis flaps: expanding their uses in breast reconstruction.

A total of 34 breasts were reconstructed in 21 women, with the bipedicle transverse rectus abdominis island flap technique. Thirteen women had bilateral breast reconstructions and 8 had unilateral reconstructions. The indications for using this technique are (1) bilateral breast defects, (2) a radical mastectomy defect, (3) limited donor tissue or tissue compromised by prior abdominal surgery, and (4) a large, remaining breast that requires matching. Four selected women are presented to illustrate each indication. In all but 1 woman, the abdominal islands were bisected and transferred to the chest defects with their respective rectus muscles and vascular pedicles. Complications included 2 women with abdominal wall hernia, 3 women with minimal peripheral skin necrosis of the reconstructed breasts, and 1 woman with Raynaud's disease with partial flap loss. Follow-up ranged from 3 to 57 months. Bipedicle rectus abdominis flaps provide improved vascularity and allow greater flexibility in bilateral and unilateral breast reconstruction.

Abdominal Muscles

Orbital exenteration. The reconstructive ladder.

Following orbital exenteration, there is a spectrum of immediate and delayed options for orbital reconstruction. Goals of reconstruction after exenteration include detection of recurrent disease, restoration of boundaries between the orbit and surrounding structures, and optimal aesthetics. Local solutions to problems of the exenterated orbit, such as healing by granulation or application of split-thickness skin grafts, are advantageous for detecting recurrent disease. Regional solutions, involving transfer of periorbital tissue into the orbit, may mask recurrent disease and create adjacent deformity; however, these solutions can be used to restore orbital boundaries and shallow the orbital cavity. Distant solutions, such as skin-muscle flaps and free tissue grafts, allow for facial reconstruction in patients with extensive orbital and periorbital defects.

Adipose Tissue

A micro system for rigid bony fixation in orbital surgery.

Plates and screws are effective for rigid internal fixation of bone fractures and osteotomies in the midface, orbit, and cranium. We describe our experience with the Luhr Micro System. This is the newest generation of Luhr Systems and is the smallest system available for rigid internal fixation. The self-tapping screws are 0.8 mm in diameter, with lengths of 2-8 mm. The plates have an extremely flat profile. We have used the Micro System for closure of elective osteotomies following resection of orbital neoplasm, bony orbital reconstruction, and repair of congenital craniofacial deformities. Because the orbital bones have minimal functional stress, the Micro System provides adequate support. The plates are not apparent through the thin periorbital skin. For bony fixation in the periorbital region, the Micro System appears superior to larger systems and to wire or nonabsorbable sutures.

Adult

Modified skin incisions for mastectomy: the need for plastic surgical input in preoperative planning.

Skin-sparing mastectomy by definition describes the procedure of mastectomy, either simple or modified radical, with a minimum amount of skin excision. The surgical skin excision must: (1) include the nipple-areola complex, (2) include the biopsy site, and (3) allow for access to the axilla for possible dissection. In 27 mastectomies, the senior author has had direct input in the preoperative skin planning. All patients underwent immediate breast reconstruction. In large-breasted women, the mastectomy was performed to a Wise-type pattern. In small-breasted women, the mastectomy involved minimal skin excision followed by reconstruction. Non-continuous incisions were frequently used in small-breasted women, thereby minimizing breast scarring. When appropriately applied, skin-sparing mastectomy can greatly improve the final aesthetic result of the breast.

Adult

Immediate breast reconstruction with deepithelialized TRAM flaps: techniques for improving breast reconstruction.

In selected patients with lower quadrant breast masses, large breasts, and sufficient abdominal tissue, standard techniques for breast reconstruction can be modified to improve overall results. The transverse abdominal island flap can be deepithelialized and mobilized to reconstruct unilateral or bilateral defects. Furthermore, skin markings prior to mastectomy that conform to a modified Wise pattern will allow for more aesthetic positioning of eventual scars. We present a case report of a patient who underwent immediate breast reconstruction with bilateral deepithelialized lower rectus abdominis myodermal flaps.

Adenocarcinoma, Mucinous

The role of tissue expansion in the treatment of atypical facial clefting.

Tissue expansion can be a valuable tool in the reconstruction of soft-tissue defects in craniofacial clefts. To our knowledge, there have been no reports in the literature of the use of tissue expanders to help solve this problem. We report the case of a child with an atypical Tessier no. 3 craniofacial cleft who had a forehead tissue expander placed, inflated, and thus used to provide sufficient local facial skin for repair of the soft-tissue defect.

Cleft Lip

Aesthetic refinements in reconstructive microsurgery.

The vast array of free tissue options available to reconstructive surgeons plus our knowledge of vascular systems now provide us with the wherewithal to not only fill a defect but to do so aesthetically and with minimal donor site morbidity. The authors discuss setting reconstructive goals that include refined and aesthetic results for deficit and donor site alike and demonstrate how, in many situations, these goals can be achieved.

Esthetics

Orbital surgery. The technique of coronal scalp flap approach to the qateral orbitotomy.

Lateral orbitotomy may be performed using a coronal scalp flap to provide exposure of the lateral orbital wall and rim. A coronal incision is made across the scalp. The scalp flap is developed anteriorly to expose the orbital margin from the superior orbital rim to the zygomatic arch. The temporalis muscle is dissected from its bony attachments and bluntly retracted, providing maximal exposure of the lateral orbital wall. The orbitotomy proceeds as required. The case concludes with a layered closure. In selected patients, the coronal scalp flap provides improved exposure and postoperative aesthetics compared with approaches in which the skin and muscle layer are incised directly over the lateral orbit. Complications are infrequent.

Humans

Multidisciplinary approach to the management of complex bony and soft tissue orbitocranial disorders.

Orbital reconstructive surgery is entering a new age as progress in surgical techniques and diagnostic imaging are applied to the patient with severe acquired orbital and periorbital deformities. The authors present a series of six patients with orbitocranial neoplasms and congenital and traumatic deformities whose management involved a multidisciplinary approach. Particular emphasis is placed on the use of reformatting two-dimensional orbital scans into three-dimensional images and surgical techniques using composite flaps and periorbital microsurgical vascular anastomoses. Advancements in technology and sophisticated reconstructive surgical techniques have exciting potential. Ophthalmologists can play an important role in this expanding field since they frequently serve as the entry point or provide long-term follow-up to patients with these complex problems.

Adult

Computer-designed prostheses for orbitocranial reconstruction.

Three-dimensional imaging is an adjunct to preoperative evaluation and surgical management in some patients with complex anatomic defects of various etiologies. Deformities defined by conventional computerized tomography can be viewed as accurate three-dimensional images calculated from the original scan. The images are viewed on a high-resolution video monitor and can be photographed for a permanent record. A computer-controlled milling device can use these data to fabricate prostheses. The prostheses aid reconstructive surgery through use as an alloplastic implant, as a template to fashion autogenous bone grafts, or as a model for tissue removal. We have utilized three-dimensional imaging in combination with computer-assisted prosthesis manufacture in six patients with complex orbitocranial deformities. Four patients have undergone reconstructive surgery with satisfactory results and no complications thus far. The use of computer-designed prostheses adds a new aspect to orbitocranial reconstructive surgery that facilitates increased accuracy in the correction of anatomic defects.

Adolescent

Microvascular free-tissue transfer in children.

We have reviewed our experience with 22 microvascular free-tissue transfers in children. Ages range from 2 to 14 years; the success rate was 96 percent. Two patients underwent reexploration for postoperative hemorrhage, possibly due to treatment with low-molecular-weight dextran. No vessel spasm was observed, compared with a 28 percent incidence in our adult series of 154 patients. The vessels were in pristine condition. Operative time was shorter (6.1 hours) than in our adult series (9.7 hours). Average hospital stay was 10 days (compared to 23 days for adults). All children have resumed almost normal activity within 2 months (4 months for adults). Results of this study indicate that microvascular free-tissue transfer can be accomplished safely and expeditiously in children. Care should be taken in preoperative and postoperative planning, however, especially concerning immobilization.

Adolescent

A multidisciplinary approach to orbital neoplasm.

The patient with orbital and periorbital neoplasia requires careful assessment of the extent and biologic activity as well as histopathologic categorization. Treatment is optimal through a multidisciplinary approach involving the ophthalmic surgeon, plastic surgeon, neurosurgeon, head and neck surgeon, and oral surgeon.

Aged

The technique of cranial bone grafts in the correction of posttraumatic orbital deformities.

The technique of split-thickness cranial bone graft for reconstructive orbital surgery, is reported in five patients who sustained extensive orbital trauma. This technique involves exposing the skull via a coronal scalp incision, after which the cranial bone is split in situ along the diploe. The outer table of the cranial bone is then used as a graft to correct orbital defects and other associated bony deformities. Cranial bone grafts have several advantages over other graft sites in orbital reconstruction, including more rapid postoperative recovery, close proximity of donor site to recipient site, and improved survival of cranial bone grafts in experimental studies. Cranial bone grafts are an important source of autogenous tissue for the reconstructive surgeon.

Adolescent