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1.
J Am Acad Orthop Surg ; 30(24): 1157-1164, 2022 Dec 15.
Article in English | MEDLINE | ID: mdl-36476461

ABSTRACT

The success of renal, liver, cardiac, pulmonary, and other solid organ transplantation (SOT) has resulted in increasing volume of transplant procedures and recipient survivorship. Subsequently, many SOT patients develop end-stage degenerative joint disease and are presenting for total hip or total knee arthroplasty more frequently. Surgeons must be aware of the medical complexities and prepare for the perioperative risks associated with these immunocompromised patients. Preoperative evaluation should be conducted in coordination with transplant specialists to ensure optimization, including appropriate surgical timing and advanced, organ-specific medical assessments. Although often unable to be modified, the transplant patient's antirejection medication regimens should be reviewed with understanding of inherent risks of poor wound healing or acute infection. Despite higher rates of complications, revision surgeries, and mortality compared with the general population, SOT recipients continue to demonstrate markedly improved pain relief, function, and quality of life. An ongoing multidisciplinary approach is required throughout the perioperative process and beyond to deliver successful outcomes after total joint arthroplasty in the SOT population.


Subject(s)
Arthroplasty, Replacement, Knee , Organ Transplantation , Humans , Quality of Life
2.
Arthroplast Today ; 18: 84-88, 2022 Dec.
Article in English | MEDLINE | ID: mdl-36312886

ABSTRACT

Background: Immersive virtual reality (IVR) is utilized as an adjunct to anesthesia to distract patients from their intraoperative environment, thereby potentially reducing sedative and narcotic medication usage. This study evaluated intraoperative and acute postoperative results of patients undergoing primary total hip (THA) and total knee arthroplasty (TKA) with and without IVR. Methods: Utilizing IVR as an adjunct to spinal anesthesia, 18 primary THAs (n = 8) and TKAs (n = 10) were performed. These cases were 1:2 matched based on procedure type, age, sex, and body mass index to those performed without IVR. Intraoperative and postanesthesia care unit sedative/narcotic usage, vital signs, and pain scores were compared. Acute perioperative outcomes, including 24-hour oral morphine equivalent (OME), first ambulation distance, length of stay, and 30-day complications, were also analyzed. Pearson Chi-square and Wilcoxon-Mann-Whitney tests evaluated categorical and continuous variables, respectively. Results: When compared to non-IVR primary THAs and TKAs, those performed with IVR utilized significantly less intraoperative sedation (48 mg vs 708 mg of propofol; P < .001) and trended toward less narcotic usage (13 mcg vs 39 mcg of fentanyl; P = .07). In the postanesthesia care unit, IVR and non-IVR patients showed no significant differences (P > .3) in vital signs, pain scores, or OME received. Additionally, similar (P > .3) postoperative outcomes were noted in both cohorts' 24-hour OME use, distance at first ambulation, length of stay, and 30-day complications. Conclusions: The use of spinal anesthesia with the IVR adjunct to perform primary THAs and TKAs appears to be well-tolerated and associated with less intraoperative sedative medication usage than spinal anesthesia alone.

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