Buy Ultane Inhalation Anesthetic 250ml
Ultane Inhalation Anesthetic Online at cheap wholesale prices.
Indicated for induction and maintenance of general anesthesia in adult and pediatric patients for inpatient and outpatient surgery.
Solubility(ies):Slightly soluble in: water. Miscible with ethanol, ether, benzene, chloroform
Sevoflurane is a clear, colorless, liquid containing no additives. Sevoflurane is not corrosive to
stainless steel, brass, aluminum, nickel-plated brass, chrome-plated brass or copper beryllium.
Sevoflurane is nonpungent. It is miscible with ethanol, ether, chloroform, and benzene, and it is
slightly soluble in water. Sevoflurane is stable when stored under normal room lighting
conditions according to instructions. No discernible degradation of sevoflurane occurs in the
presence of strong acids or heat. When in contact with alkaline CO2 absorbents (e.g., Baralyme®
and to a lesser extent soda lime) within the anesthesia machine, sevoflurane can undergo
degradation under certain conditions. Degradation of sevoflurane is minimal, and degradants are
either undetectable or present in non-toxic amounts when used as directed with fresh absorbents.
Sevoflurane degradation and subsequent degradant formation are enhanced by increasing
absorbent temperature increased sevoflurane concentration, decreased fresh gas flow and
desiccated CO2 absorbents (especially with potassium hydroxide containing absorbents e.g.,
Baralyme).
stainless steel, brass, aluminum, nickel-plated brass, chrome-plated brass or copper beryllium.
Sevoflurane is nonpungent. It is miscible with ethanol, ether, chloroform, and benzene, and it is
slightly soluble in water. Sevoflurane is stable when stored under normal room lighting
conditions according to instructions. No discernible degradation of sevoflurane occurs in the
presence of strong acids or heat. When in contact with alkaline CO2 absorbents (e.g., Baralyme®
and to a lesser extent soda lime) within the anesthesia machine, sevoflurane can undergo
degradation under certain conditions. Degradation of sevoflurane is minimal, and degradants are
either undetectable or present in non-toxic amounts when used as directed with fresh absorbents.
Sevoflurane degradation and subsequent degradant formation are enhanced by increasing
absorbent temperature increased sevoflurane concentration, decreased fresh gas flow and
desiccated CO2 absorbents (especially with potassium hydroxide containing absorbents e.g.,
Baralyme).
A number of factors determine the rate of increase of the partial pressure of an anesthetic in the brain, and hence its speed of onset. These factors include the concentration of the anesthetic delivered, solubility of the anesthetic in both the blood and the brain, alveolar ventilation, cardiac output, and presence of intrapulmonary or intracardiac shunts.
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