Multiple Select QuestionSelect all that applyDiethyl ether came into use as a general anesthetic during the 19th century, but had some drawbacks to its use which caused it to be replaced with more modern anesthetics during the 20th century. What are some of the drawbacks to the use of diethyl ether as an anesthetic? Select all that apply.Multiple select question.High patient mortalityNauseaLack of availabilityFlammability
Question
Multiple Select QuestionSelect all that applyDiethyl ether came into use as a general anesthetic during the 19th century, but had some drawbacks to its use which caused it to be replaced with more modern anesthetics during the 20th century. What are some of the drawbacks to the use of diethyl ether as an anesthetic? Select all that apply.Multiple select question.High patient mortalityNauseaLack of availabilityFlammability
Solution
The drawbacks to the use of diethyl ether as an anesthetic include:
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Nausea: Diethyl ether often caused postoperative nausea and vomiting, which was uncomfortable for patients and could lead to complications.
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Flammability: Diethyl ether is highly flammable. This made it dangerous to use, especially in settings with open flames or sparks, such as in the presence of electrical surgical equipment.
High patient mortality and lack of availability are not listed as common drawbacks of diethyl ether.
Similar Questions
Select all that applyWhich of the following are properties of diethyl ether as an anesthetic? Select all that apply.Multiple select question.Diethyl ether is not flammable.Diethyl ether has low patient mortality.Diethyl ether causes nausea in many patients.Diethyl ether is safe and easy to administer.
General anesthetics are compounds that render patients unable to respond to external stimuli and are commonly employed during surgical procedures. Inhaled general anesthetics are either gases or liquid suspensions that are administered and absorbed through the lungs prior to the onset of pharmacologic action. In the 1840s, the organic liquids chloroform and diethyl ether were identified as potent inhaled anesthetics. Despite the observed dangers of acute toxicity associated with chloroform usage and high flammability and addictiveness of diethyl ether, these agents remained in the anesthetic arsenal for over a century.Subsequent studies ultimately led to the discovery of safer anesthetic agents. Empirical evidence demonstrated that anesthetic potency of the (halo)alkanes increased with molecular weight up to a total of 10 carbon atoms. Halogenation of agents increased their stability and capacity for medical storage through the attenuation or elimination of flammability. Shorter-chain methyl ethers were observed to be more effective anesthetics than ethyl ethers, as was the presence of unsaturated functional groups (eg, alkenes, alkynes). The agents halothane, isoflurane, and sevoflurane were developed using the combined body of data and were introduced to the United States market in 1958, 1979, and 1992, respectively. While these newer agents provide a wider margin of safety, an optimal inhaled anesthetic has not yet been discovered.A group of researchers attempting to discover novel inhaled anesthetics wish to perform an SN2 reaction as depicted in Scheme I. The hypothesis of this study is that the product of this reaction will demonstrate improved efficacy as an inhaled anesthetic.Scheme I Question 51If Scheme I is repeated using NaOC(CH3)3 instead of NaOCH3, which of the following statements most accurately describes the outcome of the altered reaction?A.The reaction will occur slower because the electrophile is more sterically hindered.B.The reaction will occur faster because the electrophile is less sterically hindered.C.The reaction will occur faster because the nucleophile is less sterically hindered.D.The reaction will occur slower because the nucleophile is more sterically hindered.
Multiple Select QuestionSelect all that applyIn addition to ethylene (H2C=CH2), which of the following compounds are directly useful in food and medicine?Multiple select question.TamoxifenPropaneLycopene
Select all that applyLycopene may reduce cardiovascular disease risk by _____.Multiple select question.increasing liver cholesterol synthesisdecreasing HDL cholesterol levelsdecreasing LDL oxidationincreasing cellular LDL receptor activity
Select all that applyLycopene may reduce cardiovascular disease risk by _____.Multiple select question.increasing cellular LDL receptor activityincreasing liver cholesterol synthesisdecreasing LDL oxidationdecreasing HDL cholesterol levels
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