ATI RN
microbiology test bank Questions
Question 1 of 5
A patient with diarrhea had stool culture revealing non-lactose-fermenting, Gram-negative rods. The bacteria were oxidase-positive and fermentative. What is the most likely causative agent?
Correct Answer: C
Rationale: The correct answer is C: Salmonella typhi. The patient's symptoms of diarrhea and the characteristics of non-lactose-fermenting, Gram-negative rods that are oxidase-positive and fermentative are consistent with Salmonella typhi. Salmonella typhi is the causative agent of typhoid fever, which presents with symptoms like diarrhea. Pseudomonas aeruginosa (choice A) is oxidase-positive but not fermentative. Escherichia coli (choice B) is both lactose-fermenting and oxidase-negative. Shigella dysenteriae (choice D) is oxidase-negative. Therefore, Salmonella typhi is the most likely causative agent based on the given information.
Question 2 of 5
During an outbreak of cholera, a fecal smear revealed Gram-negative, comma-shaped, motile bacteria. What staining method would best confirm the diagnosis?
Correct Answer: A
Rationale: The correct answer is A: Gram staining. This method is used to differentiate bacteria based on their cell wall composition. In cholera, the causative agent is Vibrio cholerae, which is Gram-negative. By performing Gram staining, the bacteria will appear pink/red under the microscope, confirming the presence of Gram-negative bacteria. Choice B: Neisser's staining is used for staining capsules of bacteria, not suitable for confirming cholera diagnosis. Choice C: Ziehl-Neelsen staining is used for acid-fast bacteria like Mycobacterium tuberculosis, not for confirming cholera diagnosis. Choice D: Burri-Gins staining is not a standard staining method in microbiology and is not relevant for confirming cholera diagnosis.
Question 3 of 5
Passage of antibodies from one person to another is called
Correct Answer: A
Rationale: Passive immunity is the transfer of pre-formed antibodies from one individual to another, providing immediate protection. This process does not involve the recipient's immune response, hence it is called passive. Active immunity, on the other hand, involves the individual's immune system producing its own antibodies after exposure to an antigen. Innate immunity refers to the body's natural defense mechanisms present from birth, not involving antibodies. Therefore, the correct answer is A: passive immunity.
Question 4 of 5
How soon after a potentially infectious bite should a person be treated for rabies?
Correct Answer: B
Rationale: The correct answer is B: Within 24 hours. Rabies post-exposure prophylaxis should ideally be initiated as soon as possible after a potentially infectious bite to prevent the virus from spreading and causing symptoms. Immediate treatment is crucial to prevent the virus from reaching the central nervous system. Waiting beyond 24 hours increases the risk of the virus reaching the brain and becoming fatal. Choices A, C, and D are incorrect because waiting for 6 months, a week, or 2 weeks respectively would significantly delay treatment, allowing the virus to progress and potentially become untreatable.
Question 5 of 5
A 10-year-old child cut his leg with a piece of glass and was sent to a clinic for an anti-tetanus serum injection. In order to prevent the development of anaphylactic shock, the Besredka desensitization method was applied. What mechanism underlies this method?
Correct Answer: A
Rationale: The correct choice is A: Binding to IgE fixed to mast cells. The Besredka desensitization method involves injecting small, gradually increasing doses of the allergen to induce tolerance and prevent anaphylactic shock. This process works by binding the allergen to IgE antibodies fixed to mast cells, which prevents the release of histamine and other inflammatory mediators that trigger allergic reactions. This desensitization process helps the immune system become less reactive to the allergen over time. Incorrect choices: B: Inhibited synthesis of mast cells mediators - This choice does not reflect the mechanism of the Besredka desensitization method, which involves binding to IgE on mast cells. C: Stimulation of the immunological antigen tolerance - While this may sound plausible, the Besredka method specifically targets the IgE-mast cell interaction. D: Stimulation of antigen-specific IgG synthesis - While IgG antibodies may play a role in desensitization, the
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