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1.
Ann Plast Surg ; 90(6S Suppl 5): S538-S542, 2023 06 01.
Artículo en Inglés | MEDLINE | ID: mdl-36880790

RESUMEN

PURPOSE: Data after enhanced recovery after surgery (ERAS) with same-day discharge in breast reconstruction is limited. This study evaluates early postoperative outcomes after same-day discharge in tissue-expander immediate breast reconstruction (TE-IBR) and oncoplastic breast reconstruction. METHODS: A single-institution retrospective review of TE-IBR patients from 2017 to 2022 and oncoplastic breast reconstruction patients from 2014 to 2022 was performed. Patients were divided by procedure and recovery pathway: group 1 (TE-IBR, overnight admission), group 2 (TE-IBR, ERAS), group 3 (oncoplastic, overnight admission), and group 4 (oncoplastic, ERAS). Groups 1 and 2 were subdivided by implant location: groups 1a (prepectoral) and 1b (subpectoral), and groups 2a (prepectoral) and 2b (subpectoral). Demographics, comorbidities, complications, and reoperations were analyzed. RESULTS: A total of 160 TE-IBR patients (group 1, 91; group 2, 69) and 60 oncoplastic breast reconstruction patients (group 3, 8; group 4, 52) were included. Of the 160 TE-IBR patients, 73 underwent prepectoral reconstruction (group 1a, 25; group 2a, 48), and 87 underwent subpectoral reconstruction (group 1b, 66; group 2b, 21). There were no differences in demographics and comorbidities between groups 1 and 2. Group 3 had a higher average body mass index than group 4 (37.6 vs 32.2, P = 0.022). There was no significant difference between groups 1a and 2a or between groups 1b and 2b in rates of for rates of infection, hematoma, skin necrosis, wound dehiscence, fat necrosis, implant loss, or reoperations. Group 3 and group 4 showed no significant difference in any complications or in reoperations. Notably, no patients in same-day discharge groups required unplanned hospital admission. CONCLUSIONS: Many surgical subspecialities have successfully adopted ERAS protocols into their patient care and have shown both its safety and feasibility. Our research shows that same-day discharge in both TE-IBR and oncoplastic breast reconstruction does not increase risk for major complications or reoperations.


Asunto(s)
Implantación de Mama , Implantes de Mama , Neoplasias de la Mama , Recuperación Mejorada Después de la Cirugía , Mamoplastia , Humanos , Femenino , Implantes de Mama/efectos adversos , Alta del Paciente , Mamoplastia/métodos , Dispositivos de Expansión Tisular/efectos adversos , Complicaciones Posoperatorias/cirugía , Estudios Retrospectivos , Neoplasias de la Mama/cirugía , Neoplasias de la Mama/complicaciones , Implantación de Mama/métodos
2.
Front Neurosci ; 13: 1140, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-31736687

RESUMEN

Traumatic brain injury (TBI), caused by repeated concussive head trauma can induce chronic traumatic encephalopathy (CTE), a neurodegenerative disease featuring behavioral symptoms ranging from cognitive deficits to elevated aggression. In a Drosophila model, we used a high-impact trauma device (Katzenberger et al., 2013, 2015) to induce TBI-like symptoms and to study post-TBI behavioral outcomes. Following TBI, aggression in banged male flies was significantly elevated as compared with that in unbanged flies. These increases in aggressive behavior were not the result of basal motility changes, as measured by a negative geotaxis assay. In addition, the increase in post-TBI aggression appeared to be specific to concussive trauma: neither cold exposure nor electric shock-two alternate types of trauma-significantly elevated aggressive behavior in male-male pairs. Various forms of dietary therapy, especially the high-fat, low-carbohydrate ketogenic diet (KD), have recently been explored for a wide variety of neuropathies. We thus hypothesized that putatively neuroprotective dietary interventions might be able to suppress post-traumatic elevations in aggressive behavior in animals subjected to head-trauma-inducing strikes, or "bangs". We supplemented a normal high-carbohydrate Drosophila diet with the KD metabolite beta-hydroxybutyrate (ß-HB)-a ketone body (KB). Banged flies raised on a KB-supplemented diet exhibited a marked reduction in aggression, whereas aggression in unbanged flies was equivalent whether dieted with KB supplements or not. Pharmacological blockade of the ATP-sensitive potassium (KATP) channel abrogated KB effects reducing post-TBI aggression while pharmacological activation mimicked them, suggesting a mechanism by which KBs act in this model. KBs did not significantly extend lifespan in banged flies, but markedly extended lifespan in unbanged flies. We have thus developed a functional model for the study of post-TBI elevations of aggression. Further, we conclude that dietary interventions may be a fruitful avenue for further exploration of treatments for TBI- and CTE-related cognitive-behavioral symptoms.

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