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Biomedical subjects

D Ratner

Publications and source records attributed to D Ratner.

At least 19 recordsLinked to original sources

Perineural spread of basal cell carcinomas treated with Mohs micrographic surgery.

BACKGROUND: Perineural spread is a well-documented feature of cutaneous tumors and may portend a more aggressive course. The incidence of perineural invasion in basal cell carcinoma (BCC) is reportedly 1%. The authors sought to determine whether perineural spread occurs more commonly than previously thought. METHODS: The authors prospectively evaluated 434 patients with BCC treated with Mohs surgery, assessing the presence or absence of perineural inflammation and invasion in tumors requiring more than one stage of surgery. They also documented the demographic features, clinical characteristics, histologic subtype, and operative data in each case. RESULTS: Seventy-eight BCCs required more than one stage of Mohs surgery. Perineural inflammation, perineural tumor invasion, or both were present in 29 of the 78 tumors (37%), or 6.7% of all 434 prospectively evaluated cases. Twenty-one of the 78 tumors (26.9%) exhibited perineural inflammation, 3 (3.8%) demonstrated perineural invasion, and 5 (6.4%) exhibited both. Tumors with perineural invasion required 5.3 surgical stages on average for clearance, in contrast to tumors without perineural invasion, which required 2.2 stages. Tumors with perineural inflammation, inflammation plus tumor invasion, and invasion alone were, respectively, 138%, 149%, and 194% greater in area preoperatively than tumors without perineural involvement, and their mean defect areas after Mohs surgery were, respectively, 151%, 121%, and 605% larger than those of tumors without perineural involvement. CONCLUSIONS: The incidence of perineural invasion among cases of BCC appears higher than previously recognized. Tumor aggressiveness appears to correlate with the presence of perineural invasion. Surgery with horizontal frozen-section margin control enables easy detection of perineural involvement and should therefore be strongly considered for the treatment of high risk BCC patients.

Aged↗

Universal PCR amplification of mouse immunoglobulin gene variable regions: the design of degenerate primers and an assessment of the effect of DNA polymerase 3' to 5' exonuclease activity.

Degenerate primers were designed for PCR amplification of unknown mouse immunoglobulin (Ig) light (L) and heavy (H) chain variable (V) genes. Each subgroup of mouse Ig gene sequences [Kabat, E.A., Wu, T. T., Perry, H.H., Gottesman, K.S., Foeller, C., 1991. Sequences of Proteins of Immunological Interest, 5th edn. US Department of Health and Human Services, Public Health Service, NIH.] was analyzed, and highly degenerate primers in the framework one (FR1) region were designed. A single highly degenerate FR1 primer sufficed for the amplification of light chains; for heavy chains, a series of FR1 primers was used. At the same time, we assessed the effect of 3' to 5' exonuclease activity of DNA polymerase on the utilization of these degenerate primers. Using Taq polymerase, which lacks 3' to 5' exonuclease activity, we successfully amplified the Ig VL and VH genes expressed in more than a hundred monoclonal hybridoma cell lines reactive against a phosphonamidate hapten. Sequence analysis of the cloned VL and VH genes, 52 of each, showed that they are derived from multiple germline families (10 of the 17 VL families and 9 of the 14 VH families) as recently defined [Martinez, C., Lefranc, M., 1998. The mouse (Mus musculus) immunoglobulin kappa variable (IGKV) genes and joining (IGKJ) segments. Exp. Clin. Immunogenet. 15, 184.]. The universality of our primers was also demonstrated by successful amplification of other mouse hybridoma cell lines that are specific to different antigens.

Animals↗

Use of the double-bladed scalpel in peripheral margin control of dermatofibrosarcoma protuberans.

BACKGROUND: The double-bladed scalpel previously has not been cited in the published literature for use in Mohs micrographic surgery. OBJECTIVE: To allow for maximum tissue conservation and greatest possible intraoperative efficiency for peripheral margin control of a massive tumor. METHODS: We describe the use of the double-bladed scalpel during Mohs surgery for peripheral margin control of a large dermatofibrosarcoma protuberans (DFSP). RESULTS AND CONCLUSION: While not necessary for the majority of routine Mohs cases, utilization of the double-bladed scalpel may be timesaving, especially when used for peripheral margin control of a massive tumor.

Adult↗

Real photographic prints from digital images.

BACKGROUND: Digital photography is emerging as a standard method of documenting preoperative, intraoperative, and postoperative results in the clinical setting. While hard copies of these electronic images can be quickly and easily generated on color laser or inkjet printers, there are times when it is necessary to generate a true photographic print of an image, either for insurance documentation or to meet the publication requirements of a peer-reviewed journal. Standard inkjet and laser printers are unable to generate true photographic prints. OBJECTIVE: To identify a rapid, cost-effective means of generating high-quality photographs of digital images. METHODS: We describe the use of on-line service bureaus with digital photographic printers to obtain high-quality photographic prints of patient images. RESULTS: From as little as 49 cents per print, a color or black-and-white print of a color image can be generated by an on-line service bureau to satisfy the need for a photographic quality hard copy. CONCLUSIONS: While color laser or inkjet printers allow physicians to generate their own hard copies of electronic patient images, photographic quality images are at times needed to satisfy requirements for insurance documentation or publication in peer-reviewed journals. Use of on-line service bureaus is the most cost-effective way that we have found to obtain high-quality photographic color or black-and-white prints from electronically stored patient images.

Dermatology↗

Principles of CO2/erbium laser safety.

BACKGROUND: There are a variety of potential hazards with laser technology. METHODS: A review of the literature. OBJECTIVE: To summarize the potential hazards of CO2 and erbium laser technologies and the safety guidelines and equipment developed to minimize them. RESULTS: Laser hazards can be divided into the following categories: mechanical, environmental, macrobiologic, microbiologic, and iatrogenic. CONCLUSION: At the conclusion of this learning activity, the reader should be able to discuss the mechanical, environmental, macrobiologic, microbiologic, and iatrogenic hazards of resurfacing laser technology, the literature cited to support current safety guidelines, and the equipment developed to promote laser safety.

Humans↗

The uses of digital photography in dermatology.

Digital photography is a powerful tool that is transforming the specialty of dermatology by integrating patient and practice management. The fundamentals of digital imaging are discussed, and an approach to the selection of a digital camera and its associated hardware and software is provided. The applications of this technology to patient and practice management are addressed, and the ethical implications of digital tampering are also discussed.

Dermatology↗

Cutaneous laser resurfacing.

UNLABELLED: Cutaneous resurfacing with the new generation of carbon dioxide and erbium lasers has recently come into favor for the treatment of facial rhytides, photodamage, and scarring. The precise control of these resurfacing lasers over the extent of tissue vaporization minimizes thermal damage to the skin while maximizing therapeutic efficacy. Proper use of resurfacing lasers is contingent upon a complete understanding of their clinical, histologic, and ultrastructural effects, as well as an appreciation of the principles of laser safety. An organized approach to the preoperative, intraoperative, and postoperative management of the patient undergoing laser resurfacing will be provided, including a discussion of prevention and treatment of postoperative side effects and complications. (J Am Acad Dermatol 1999;41:365-89.) LEARNING OBJECTIVE: At the conclusion of this learning activity, participants should be familiar with the clinical, histologic, and ultrastructural effects of resurfacing lasers and be able to discuss the preoperative, intraoperative, and postoperative management of patients undergoing laser resurfacing.

Anesthesia↗

Pilot ultrastructural evaluation of human preauricular skin before and after high-energy pulsed carbon dioxide laser treatment.

BACKGROUND: Carbon dioxide laser resurfacing has recently come into favor for the treatment of photodamaged skin. While the clinical and histologic effects of high-energy short-pulse carbon dioxide lasers on human skin have been investigated, the ultrastructural effects of these lasers have not been documented. Our objective was to study the ultrastructural effects of a high-energy pulsed carbon dioxide laser on photodamaged human skin. OBSERVATIONS: Before laser surgery, the ultrastructural changes characteristic of photodamaged skin were evident. Immediately after treatment, there was extensive coagulation necrosis of the epidermis and papillary dermis. Thirty days after treatment, there was no evidence of intercellular or intracellular edema, and ordered differentiation of the epidermal keratinocytes, with a loss of keratinocyte dysplasia, was seen. Increased numbers of desmosomes and tonofibrils were noted. New deposition of collagen was present in the papillary dermis. The ultrastructural findings seen at 90 days after treatment were similar to those seen at 30 days, apart from increased organization of collagen fibers in the papillary dermis. CONCLUSIONS: Treatment with the high-energy pulsed carbon dioxide laser appears to reverse the epidermal and dermal changes of photoaging on an ultrastructural level. These changes appear morphologically to be consistent with previously described clinical and histologic changes following laser resurfacing.

Aged↗

Skin grafting. From here to there.

Free skin grafts for soft tissue reconstruction can be classified into four types: full-thickness skin grafts, split-thickness skin grafts, composite grafts, and free cartilage grafts. The indications, techniques, donor site considerations, and postoperative complications of each type of skin graft are reviewed.

Cartilage↗

Blocking the ends of transforming DNA enhances gene targeting in Dictyostelium.

Eukaryotic gene targeting by means of gene replacement vectors is often complicated by unwanted plasmid insertion events involving the ends of transforming DNA molecules. These undesirable and often multiple insertions occur both randomly (i.e. non-homologously) and at the targeted locus. By blocking the 3' ends of transforming DNA with 2'3' dideoxynucleotides, we have reduced the frequency of end-mediated DNA insertion in Dictyostelium amoebae. As a result, only one copy of the selectable gene is introduced at the target locus to achieve a precise gene disruption.

Animals↗

Mohs micrographic surgery for the treatment of dermatofibrosarcoma protuberans. Results of a multiinstitutional series with an analysis of the extent of microscopic spread.

BACKGROUND: Dermatofibrosarcoma protuberans (DFSP) is an uncommon soft-tissue tumor of the skin; its microscopic extent of invasion beyond the grossly visible tumor is frequently difficult to appreciate. Although wide local excision has been the standard treatment of DFSP, recurrence rates range from 11% to 53%. Because Mohs micrographic surgery allows the extent of excision to be tailored to the microscopic extent of tumor, we evaluated this technique for the treatment of primary and recurrent DFSP. OBJECTIVE: Our purpose was to determine the local recurrence rate and microscopic extent of spread of primary and recurrent DFSP after treatment with Mohs micrographic surgery. METHODS: The records of 58 patients with primary and recurrent DFSP treated with Mohs micrographic surgery at three institutions were reviewed and the macroscopic and microscopic extents of tumor were recorded. RESULTS: One patient with a twice-recurrent DFSP had another recurrence after Mohs micrographic surgery, for an overall local recurrence rate of 2% (zero for primary tumors and 4.8% for recurrent tumors). There were no cases of regional or distant metastases. Macroscopic tumor size ranged from 0.3 x 0.6 cm to 30 x 20 cm, whereas microscopic (postoperative) size ranged from 1.8 x 1.0 cm to 35 x 40 cm. We calculated the likelihood that a given width of excision around the macroscopic tumor would clear the entire microscopic extent of tumor. Standard wide excision with a width of 1 cm around the primary tumor would have left microscopic residual tumor in 70.7%; a width of 2 cm, 39.7%; 3 cm, 15.5%; and 5 cm, 5.2%. Even an excision width of 10 cm would not have cleared the microscopic extent of some tumors, despite taking a huge excess of normal tissue. CONCLUSION: Treatment of primary and recurrent DFSP by Mohs micrographic surgery results in a low recurrence rate because of the ability of the technique to permit the detection and excision of microscopic tumor elements in even the most asymmetric tumors. Whatever type of surgery is chosen to treat DFSP, it is necessary to assess the entire perimeter of the tumor for microscopic extension and to achieve tumor-free margins in all directions.

Adolescent↗

An interlocking auricular composite graft.

BACKGROUND: Full-thickness defects of the nasal alar rim are relatively common following Mohs micrographic surgery for the treatment of long-standing or recurrent skin tumors. Composite grafts provide an excellent cosmetic and functional alternative for the repair of such defects. OBJECTIVE: A useful technique of auricular composite graft placement for reconstruction of full-thickness nasal alar rim defects is described. METHODS: The cartilaginous portion of the graft is extended beyond the borders of the soft tissue defect so that two cartilaginous pegs frame the lateral aspects of the graft. These pegs are then inserted into pockets prepared within the alar tissue of both sides of the defect, such that the graft interlocks with its recipient bed. A series of diagrams as well as a set of photographs from a representative case are provided, along with accompanying commentary, so as to enable the surgeon to incorporate this technique easily into his/her practice. CONCLUSION: The interlocking auricular composite graft technique permits increased graft stability, with decreased shearing forces of the graft over its recipient bed, and a larger surface area for revascularization, resulting in an increased probability of graft survival. This technique provides an elegant single stage alternative to current reconstructive techniques for full-thickness nasal alar rim defects measuring less than 1.5 cm in diameter.

Bandages↗

Mohs' micrographic surgery: an overview.

Microscopic control of surgical margins has made Mohs' micrographic surgery an increasingly appealing option for patients with large, recurrent, or difficult-to-treat basal cell and squamous cell carcinomas who require precise and effective surgical management. Understanding the pre-, peri-, and postoperative considerations in Mohs' surgery will help dermatology nurses better prepare and educate patients who undergo this procedure.

Basal Cell Carcinoma↗

Basic suture materials and suturing techniques.

There is a need for surgeons to be able to make a logical decision regarding which suture materials to use in a given clinical situation because the choice of wound-closure materials may make a difference in wound healing and the ultimate functional and cosmetic result obtained. This article will review the basic physical, handling, and tissue-reaction characteristics of commonly used suture materials. Basic suturing techniques are also reviewed. Knowledge of multiple suturing techniques provides versatility, individuality, and optimal closure of surgical wounds.

Absorption↗

Merkel cell carcinoma.

Merkel cell carcinoma is a malignant neuroendocrine tumor with features of epithelial differentiation. Biologically aggressive, it may be difficult to diagnose and, particularly in its late stages, even more difficult to treat effectively. This article addresses what is known and what is still controversial about the histogenesis, diagnosis, and management of Merkel cell carcinoma and the structure and function of the Merkel cell from which it is believed to be derived. The incidence, clinical presentation and diagnosis, ultrastructure, immunocytochemistry, treatment, and prognosis of this tumor will be discussed.

Carcinoma, Merkel Cell↗