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PubMed · 8917153

Lidocaine anesthesia.

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J W Richards. 1996. Lidocaine anesthesia.. https://pubmed.ncbi.nlm.nih.gov/8917153/

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Intracameral anesthesia: in vitro iris and corneal uptake and washout of 1% lidocaine hydrochloride.

OBJECTIVES: To characterize the uptake, washout, and metabolism of lidocaine hydrochloride in the iris/ciliary body and cornea. METHODS: Iris/ciliary body uptake of lidocaine hydrochloride was measured by incubating human and rabbit irides in radiolabeled carbon 14-1% lidocaine hydrochloride for 2 to 60 minutes. Washout was determined by incubating the iris in 14C-1% lidocaine hydrochloride for 5 minutes and transferring the iris to a series of wells. The wells contained a common intraocular irrigating solution of essential ions, glucose, and glutathione buffered with bicarbonate (an enriched balanced salt solution [BSS PLUS]), which is similar to aqueous humor. Corneal uptake was measured by exposing the endothelial surface to 14C-1% lidocaine hydrochloride for 5 or 15 minutes. Corneal washout was performed after 5-minute exposure to 14C-1% lidocaine hydrochloride using a 2-chambered diffusion apparatus. Samples of the iris, cornea, and BSS PLUS washout solution were analyzed by high-performance liquid chromatography and liquid scintillation spectrometry. RESULTS: In vitro iris/ciliary body uptake of 14C-1% lidocaine hydrochloride follows a logarithmic curve, with 50% to 60% of maximum lidocaine hydrochloride uptake present at 5 minutes. There was no difference in uptake between human, albino rabbit, and pigmented rabbit irides. Washout of lidocaine from the iris occurs with a halflife of 8 to 9 minutes. Corneal uptake of lidocaine was greater after incubation for 15 vs. 5 minutes. The washout of lidocaine from the cornea had a half-life of 5 minutes. Results of high-performance liquid chromatography confirmed that there were no metabolites or breakdown products in the iris, cornea, or washout solution. CONCLUSIONS: Lidocaine is taken up quickly by the iris/ ciliary body and cornea and rapidly removed from these tissues after BSS PLUS washout. Irrigation during phacoemulsification seems to limit lidocaine exposure to the ocular tissues, resulting in a short duration of anesthesia. Lidocaine is not metabolized or broken down by the iris or cornea during this short period.

Anesthesia, Local

The feasibility of laparoscopic extraperitoneal hernia repair under local anesthesia.

BACKGROUND: Laparoscopic preperitoneal herniorrhaphy has the advantage of being a minimally invasive procedure with a recurrence rate comparable to open preperitoneal repair. However, surgeons have been reluctant to adopt this procedure because it requires general anesthesia. METHODS: In this report, we describe the technique used in the laparoscopic repair of inguinal hernias under local anesthesia using the preperitoneal approach. We also report our results with 10 inguinal hernias repaired using the same technique. RESULTS: Ten patients underwent their primary inguinal hernia repairs under local anesthesia. None were converted to general anesthesia. Four patients received a small amount of intravenous sedation. Three patients had bilateral hernias. There were five direct and eight indirect hernias. The average operative time was 47 min. The average lidocaine usage was 28 cc. All patients were discharged within a few hours of the surgery. There were no complications. Follow-up has ranged from 1 to 6 months. There has been no recurrences to date. CONCLUSIONS: The extraperitoneal laparoscopic repair of inguinal hernia is feasible under local anesthesia. This technique adds a new treatment option in the management of bilateral inguinal hernias, particularly in the population where general anesthesia is contraindicated or even for patients who are reluctant to receive general or epidural anesthesia.

Anesthesia, Local