Background Within the past decade, colorectal surgery length of stay (LOS) has decreased from an average of 5-6 days to 2-3 days. However, elective colon resections have yet to become a common procedure with the potential for same-day discharge. During the COVID pandemic, hospital capacity was exceptionally strained and colon resections were delayed due to the lack of inpatient beds available. Purpose We sought to create a protocolized ERAS (enhanced recovery after surgery) pathway that would allow for safe and feasible ambulatory colon resections as well as decreasing overall hospital inpatient burden. Research Design Between November 2020 and March 2022, 15 patients were offered same-day discharges under the HOME protocol. Of the 15 patients, 11 patients agreed to be discharged home the day of surgery and followed prospectively for 30 days. All procedures were performed robotically. Study Sample Patients were selected based on level of preoperative health (ASA class 1 and 2), low-risk for loss to follow-up, ability for close family supervision for 3 days postoperatively, and type of procedure (partial colectomy). Close follow-up was achieved with daily telephonic or televideo visits for 3 days post-operatively, as well as a 2-week outpatient clinic follow-up. Data Collection A total of 11 patient underwent same-day surgery utilizing the protocol, 5 females and 6 males, between the ages of 34 and 62. All patients were ASA class 2. Indications for colon resection were cecal volvulus (1), recurrent sigmmoid diverticulitis (9), and Crohn's disease (1). Primary outcome was readmission rates within the 30-days. Results There were no readmissions or complications during the perioperative 30-day period. There was one emergency department return for pain who was not admitted. Average operative time was 132.1 minutes. Conclusion Using a novel enhanced recovery protocol, we demonstrated the feasibility and safety of ambulatory partial colectomy in a highly select small subset of patients.
Orbital metastases can masquerade as other orbital processes. We present two cases of orbital metastases, the first being the first reported adenocarcinoma of the esophagus presenting as an orbital metastasis prior to the primary being known, and the other as the first urothelial carcinoma to present as orbital cellulitis. The first patient presented with left upper eyelid pain. CT scan identified a superolateral subperiosteal fluid collection without concomitant sinus disease, which was drained in the operating room. Two weeks later repeat CT scan showed recurrent orbital subperiosteal fluid. It was drained and a biopsy showed necrotic adenocarcinoma. The second case presented with a painless right proptosis, decreased vision, and globally decreased ocular motility 3 days after bladder resection for urothelial carcinoma. CT scan demonstrated pan sinusitis with a soft tissue mass in the apex of the right orbit with extension through the superior orbital fissure. After no improvement on antibiotics endoscopic drainage was performed. Pathology revealed metastatic urothelial carcinoma within the orbital fat.
The authors present a case of a 16-year-old boy who sought treatment in Storm Eye Institute for orbital cellulitis complicated by central retinal artery occlusion. He was examined for severe signs of orbital cellulitis, including decreased vision and an afferent pupillary defect. Intravenous antibiotics failed to provide timely improvement, and the patient was surgically managed with endoscopic orbital decompression. An ocular examination under anesthesia revealed retinal ischemia in the affected eye, and fluorescein angiography confirmed the diagnosis of central retinal artery occlusion. The patient's vision improved slightly following resolution of the infection. Central retinal artery occlusion is a rare complication of orbital cellulitis in adults and has yet to be reported in the pediatric population.
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