Late Bleeding Following Cleft Palate Repair

2021 ◽  
Vol Publish Ahead of Print ◽  
Author(s):  
Jonathan S. Wheeler ◽  
Megan Sanders
2017 ◽  
Vol 28 (4) ◽  
pp. 909-914
Author(s):  
Rachel Skladman ◽  
Lynn Marty Grames ◽  
Gary Skolnick ◽  
Dennis C. Nguyen ◽  
Sybill D. Naidoo ◽  
...  

2021 ◽  
pp. 105566562110174
Author(s):  
Thomas R. Cawthorn ◽  
Anna R. Todd ◽  
Nina Hardcastle ◽  
Adam O. Spencer ◽  
A. Robertson Harrop ◽  
...  

Objective: To evaluate the development process and clinical impact of implementing a standardized perioperative clinical care pathway for cleft palate repair. Design: Medical records of patients undergoing primary cleft palate repair prior to pathway implementation were retrospectively reviewed as a historical control group (N = 40). The historical cohort was compared to a prospectively collected group of patients who were treated according to the pathway (N = 40). Patients: Healthy, nonsyndromic infants undergoing primary cleft palate repair at a tertiary care pediatric hospital. Interventions: A novel, standardized pathway was created through an iterative process, combining literature review with expert opinion and discussions with institutional stakeholders. The pathway integrated multimodal analgesia throughout the perioperative course and included intraoperative bilateral maxillary nerve blocks. Perioperative protocols for preoperative fasting, case timing, antiemetics, intravenous fluid management, and postoperative diet advancement were standardized. Main Outcome Measures: Primary outcomes include: (1) length of hospital stay, (2) cumulative opioid consumption, (3) oral intake postoperatively. Results: Patients treated according to the pathway had shorter mean length of stay (31 vs 57 hours, P < .001), decreased cumulative morphine consumption (77 vs 727 μg/kg, P < .001), shorter time to initiate oral intake (9.3 vs 22 hours, P = .01), and greater volume of oral intake in first 24 hours postoperatively (379 vs 171 mL, P < .001). There were no differences in total anesthesia time, total surgical time, or complication rates between the control and treatment groups. Conclusions: Implementation of a standardized perioperative clinical care pathway for primary cleft palate repair is safe, feasible, and associated with reduced length of stay, reduced opioid consumption, and improved oral intake postoperatively.


2017 ◽  
Vol 28 (5) ◽  
pp. 1164-1166 ◽  
Author(s):  
Robin Wu ◽  
Alexander Wilson ◽  
Roberto Travieso ◽  
Derek M. Steinbacher

2021 ◽  
Vol 58 (5) ◽  
pp. 603-611
Author(s):  
Giap H. Vu ◽  
Christopher L. Kalmar ◽  
Carrie E. Zimmerman ◽  
Laura S. Humphries ◽  
Jordan W. Swanson ◽  
...  

Objective: This study assesses the association between risk of secondary surgery for oronasal fistula following primary cleft palate repair and 2 hospital characteristics—cost-to-charge ratio (RCC) and case volume of cleft palate repair. Design: Retrospective cohort study. Setting: This study utilized the Pediatric Health Information System (PHIS) database, which consists of clinical and resource-utilization data from >49 hospitals in the United States. Patients and Participants: Patients undergoing primary cleft palate repair from 2004 to 2009 were abstracted from the PHIS database and followed up for oronasal fistula repair between 2004 and 2015. Main Outcome Measure(s): The primary outcome measure was whether patients underwent oronasal fistula repair after primary cleft palate repair. Results: Among 5745 patients from 45 institutions whom met inclusion criteria, 166 (3%) underwent oronasal fistula repair within 6 to 11 years of primary cleft palate repair. Primary palatoplasty at high-RCC facilities was associated with a higher rate of subsequent oronasal fistula repair (odds ratio [OR] = 1.84 [1.32-2.56], adjusted odds ratio [AOR] = 1.81 [1.28-2.59]; P ≤ .001). Likelihood of surgery for oronasal fistula was independent of hospital case volume (OR = 0.83 [0.61-1.13], P = .233; AOR = 0.86 [0.62-1.20], P = .386). Patients with complete unilateral or bilateral cleft palate were more likely to receive oronasal fistula closure compared to those with unilateral-incomplete cleft palate (AOR = 2.09 [1.27-3.56], P = .005; AOR = 3.14 [1.80-5.58], P < .001). Conclusions: Subsequent need for oronasal fistula repair, while independent of hospital case volume for cleft palate repair, increased with increasing hospital RCC. Our study also corroborates complete cleft palate and cleft lip as risk factors for oronasal fistula.


2013 ◽  
Vol 29 (2) ◽  
pp. 262 ◽  
Author(s):  
MC Rajesh ◽  
Saji Kuriakose ◽  
Jayanth Sukumar ◽  
EK Ramdas

2021 ◽  
Vol 16 (3) ◽  
pp. 47-53
Author(s):  
Yu.V. Stebeleva ◽  
◽  
Ad.A. Mamedov ◽  
Yu.O. Volkov ◽  
A.B. McLennan ◽  
...  

Surgical repair of cleft palate is quite difficult because it aims not only to eliminate the anatomical defect of the palate, but also to ensure normal functioning, including speech. Moreover, successful surgery implies no or minimal deformation of the middle face that can be corrected in the late postoperative period. No doubt that primary surgery (both in terms of technique and time) is crucial for further growth and development of the maxilla. However, surgical techniques and the age of primary cleft palate repair vary between different clinics, which makes this literature review highly relevant. Key words: cleft palate repair, cleft palate, congenital cleft lip and palate


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