Facial differences associated with cleft lips are often stigmatizing and can negatively impact psychosocial development and quality of life. However, little is known regarding patients’ responses to societal expectations of appearance, or how these responses may impact utilization of revision surgery. Thus, patients with cleft lips at least 8 years of age (n = 31) were purposively sampled for semi-structured interviews. After verbatim transcription, first cycle coding proceeded with a semantic approach, which revealed patterns that warranted second cycle coding. The authors utilized an eclectic coding design to capture deeper meanings in thematic analysis. Additionally, survey data from a separate study were examined to evaluate participants’ interest in improving appearance. Three major themes emerged, all of which reflected a desire to “save face” when interacting with society: (1) Cultural Mantras, which included societal mottos that minimized the importance of appearance; (2) Toughening Up, wherein the participants downplayed the difficulty of having a cleft; and (3) Deflection, wherein the participants took pride in facial features unrelated to their clefts. Despite these efforts to “save face,” 78% of participants expressed interest in improving their appearance in the separate survey data. In conclusion, children with cleft lips try to “save face” when interacting with society by depreciating appearance, making light of clefts, and focusing on non-cleft related features. Paradoxically, many desired improvements of their appearance in an earlier survey. Awareness of these coping strategies is critical, as they may negatively impact surgeon-patient communication and inhibit patients from expressing interest in revision surgery.
Background: In facial reanimation via microneurovascular muscle transfer, dual-nerve reinnervation of the muscle capitalizes on the synergistic effects of spontaneous motion from cross facial nerve grafting (CFNG) and increased excursion from masseteric nerve transfer. Two-stage approaches that delay masseteric nerve transfer until the time of the muscle flap increase spontaneity by maximizing muscle reinnervation from the CFNG. While this 2-stage, dual-nerve approach has been described in adults, we present a series of pediatric patients who underwent this reconstructive technique. Methods: We retrospectively reviewed all pediatric patients who underwent 2-stage, dual-nerve reconstruction with CFNG and ipsilateral masseteric nerve transfers. Procedures were performed between 2004 and 2016 by 2 surgeons at a single centre. Degree of facial paralysis before and after surgical intervention was measured using House-Brackmann scores. Results: Nine patients with a mean age of 8.6 (range: 5-15 years) years at time of surgery underwent 2-stage, dual-nerve reconstruction. Average time between CFNG and transfer of the free gracilis with masseteric nerve transfer was 13.3 (SD 2.4) months. Mean follow-up was 27.3 months (SD 25.7). Patients demonstrated initiation of voluntary movement on paralyzed side by 3.6 months (SD 0.6) on average, with 3 patients demonstrating spontaneous movement at 3 months. Conclusion: The 2-stage, dual innervation technique using CFNG and delayed ipsilateral masseteric nerve transfer with a free gracilis is a promising reconstructive option to maximize spontaneous expression in pediatric patients. Validated, objective scoring systems for excursion are needed before meaningful comparisons can be made to other reconstructive strategies.
Summary: Reconstruction of alveolar clefts includes fistula repair and bone grafting. However, bone is often harvested from the iliac crest or the skull, which can be associated with considerable donor site morbidity, and the failure rate may be as high as 20%. As such, some centers utilize bone morphogenetic protein (BMP)-2 to reconstruct the bony cleft. However, this remains an off-label use, and therefore we propose using BMP-2 only in patients with tenuous soft tissues, when the likelihood of graft failure is high. In four patients, we used BMP-2 with demineralized bone matrix (DBM) to reconstruct defects related to clefts—three patients had alveolar clefts, and the fourth patient was referred to us, with resorption of a necrotic premaxilla after premaxillary setback. In all cases, the decision was made to forego bone grafting intraoperatively given the poor quality of soft tissue and the increased risk of bone graft exposure. BMP-2 was infused onto a carrier and placed in the fistula, and Grafton DBM was then packed into the defect. In three cases, small amounts of bone from the piriform aperture were mixed with the BMP-2/DBM. After 3–7 months, all patients had generated bone in the clefts and did not require bone grafting. While we continue to prefer a “like with like” reconstruction, bone grafting has a high likelihood of failure in patients with suboptimal soft tissues or tight closures. We suggest that combining BMP-2 and DBM in higher risk patients is an excellent option to avoid bone graft loss and reoperation.
Background: Although most patients attain normal speech after cleft palate repair, up to 20 percent require secondary speech surgery. Despite the frequency of these procedures, complications and rates of subsequent revisions of secondary speech surgery after all procedure types have never been reviewed using national, longitudinal data. Methods: The authors examined insurance claims from Clinformatics Data Mart between 2001 and 2017. Cases were categorized as palatal procedures (i.e., palatoplasty, revision palatoplasty, secondary lengthening, palatal island flap) or pharyngeal procedures (i.e., pharyngeal flap, dynamic sphincter pharyngoplasty) (n = 846). Continuous enrollment from 180 days before to 30 days after surgery was required. Patients were excluded if they underwent palatoplasty, or any surgery at less than 3 years of age, without a speech diagnosis. Outcomes included 30-day complications and rates of subsequent revision secondary speech surgery. Multivariable logistic regression was used to evaluate the relationship between procedure type and complications. Results: In this cohort, 52.5 percent underwent pharyngeal procedures, and 47.5 percent underwent palatal procedures. Complications occurred in 10.9 percent of patients and included respiratory complications (4.0 percent), bleeding (1.2 percent), dehiscence (3.6 percent), and critical care episodes (3.0 percent). There was no difference in complications between procedure types (OR, 0.87; 95 percent CI, 0.56 to 1.37; p = 0.56). The subsequent revision rate was 12.7 percent, but was 21.7 percent in patients with 3 years of postoperative enrollment. Conclusions: Although complication rates were comparable to those in recent literature, rates of subsequent revisions of secondary speech procedures were high in patients with longer postoperative enrollment. Thus, these patients merit prolonged follow-up, as velopharyngeal dysfunction may recur over time. Clinical Question/Level of Evidence: Therapeutic, III.
Background In patients with craniosynostosis, imaging remains up to the discretion of the plastic surgeon or neurosurgeon. To inform best practice guidelines, we sought to obtain data surrounding the frequency at which craniofacial surgeons order computed tomography (CT), as well as indications. We hypothesized that we would identify considerable variation in both imaging and associated indications. Methods We surveyed members of the American Society of Maxillofacial Surgeons and the American Society of Craniofacial Surgeons to measure the frequency of preoperative and postoperative head CTs, as well as indications. Initial items were piloted with 2 craniofacial surgeons and 1 neurosurgeon, using interviews to ensure content validity. χ2 Tests were used to measure associations between operative volume, years in practice, and imaging. Results Eighty-five craniofacial surgeons responded (13.8% response rate), with the majority (63.5%) having performed a craniosynostosis operation in the last month. Only 9.4% of surgeons never order preoperative CTs. Of those who do, the most common indications included diagnosis confirmation (31.2%) and preoperative planning (27.3%). About 25% of surgeons always obtain postoperative head CTs, usually to evaluate surgical outcomes (46.7%). Only 13.3% of respondents order 2 or more postoperative scans. Higher operative volume was associated with a lower likelihood of ordering preoperative head CTs (P = 0.008). Conclusions The majority of surgeons obtain preoperative head CTs, whereas only 25% obtain CTs postoperatively, often to evaluate outcomes. Because outcomes may be evaluated clinically, this is a poor use of resources and exposes children to radiation. Consensus guidelines are needed to create best practices and limit unnecessary studies.
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