Unit 10: Antibiotic sensitivity of microorganism - Practice Quiz

BTY331 — Microbiology Laboratory 60 Questions
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1 What is antibiotic sensitivity testing used to determine?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. The color of bacterial colonies
B. The age of bacterial cells
C. The shape of bacterial cells
D. The response of bacteria to antibiotics

2 Which method is commonly used to test antibiotic sensitivity on an agar plate?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. Gram staining method
B. Kirby–Bauer disk diffusion method
C. Hanging drop method
D. Capsule staining method

3 What is placed on the agar surface in the disk diffusion test?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. Nutrient broth tubes
B. Sterile glass slides
C. Antibiotic-impregnated paper disks
D. Unstained bacterial smears

4 What does a clear area around an antibiotic disk indicate?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. Contamination of the plate
B. Formation of bacterial spores
C. Inhibition of bacterial growth
D. Increase in bacterial growth

5 What is the zone of inhibition?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. The colored area under the agar
B. The clear area around an antibiotic disk
C. The thickest part of the bacterial smear
D. The edge of the culture plate

6 How is the zone of inhibition usually measured?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. By measuring the plate weight in grams
B. By counting the number of colonies
C. By measuring its diameter in millimeters
D. By recording the broth volume in milliliters

7 Which agar medium is commonly used for the Kirby–Bauer test?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. Mueller–Hinton agar
B. Sabouraud dextrose agar
C. Lowenstein–Jensen medium
D. Selenite F broth

8 A microorganism described as susceptible to an antibiotic is expected to:

To study the antibiotic sensitivity pattern of microorganisms Easy
A. Change into a virus
B. Be inhibited by the antibiotic
C. Grow only without oxygen
D. Always produce the antibiotic

9 A microorganism described as resistant to an antibiotic will generally:

To study the antibiotic sensitivity pattern of microorganisms Easy
A. Stop growing in every medium
B. Become sensitive to all antibiotics
C. Continue growing despite the antibiotic
D. Produce a clear zone without treatment

10 What is the usual purpose of comparing a zone diameter with a standard chart?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. To classify the organism as susceptible or resistant
B. To determine the color of the agar
C. To identify the bacterial cell shape
D. To calculate the incubation humidity

11 Why should the bacterial inoculum be prepared uniformly?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. To make test results comparable
B. To increase the agar thickness
C. To change the antibiotic color
D. To prevent disk diffusion

12 What type of culture is generally preferred for antibiotic sensitivity testing?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. A pure culture of the test organism
B. A mixed culture from several organisms
C. A culture without any microorganisms
D. A culture containing only dead cells

13 What may happen if antibiotic disks are placed too close together?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. The bacteria may change into fungi
B. The disks may produce no antibiotic
C. The agar may become completely sterile
D. Their inhibition zones may overlap

14 Why are antibiotic disks pressed gently onto the agar surface?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. To ensure proper contact with the agar
B. To remove all bacteria from the plate
C. To increase the agar concentration
D. To prevent antibiotic diffusion

15 What does antibiotic diffusion mean in the disk method?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. Conversion of agar into liquid
B. Attachment of bacteria to the disk
C. Removal of bacteria from the incubator
D. Movement of the antibiotic through the agar

16 What is an antibiotic sensitivity pattern?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. The color pattern of a culture medium
B. The sequence of steps in bacterial staining
C. The response of an organism to several antibiotics
D. The arrangement of cells in a stained smear

17 Which result usually indicates greater antibiotic activity in a disk diffusion test?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. A thicker paper disk
B. A darker agar color
C. A smaller culture plate
D. A larger zone of inhibition

18 Why is incubation necessary after placing antibiotic disks on the plate?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. To dry the antibiotic disks completely
B. To remove nutrients from the agar
C. To sterilize the culture plate
D. To allow bacterial growth and antibiotic action

19 What is the minimum inhibitory concentration, or MIC?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. The diameter of a paper antibiotic disk
B. The number of colonies on an agar plate
C. The lowest antibiotic concentration preventing visible growth
D. The highest temperature tolerated by bacteria

20 Which practice helps prevent contamination during sensitivity testing?

To study the antibiotic sensitivity pattern of microorganisms Easy
A. Using unsterilized culture media
B. Leaving plates open during incubation
C. Using sterile tools and aseptic technique
D. Touching disks with bare fingers

21 A bacterial isolate produces a 24 mm zone around an antibiotic disk. The interpretive chart classifies zones of 21 mm or more as susceptible. How should the isolate be reported?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. Resistant
B. Indeterminate
C. Susceptible
D. Intermediate

22 Why is a standardized inoculum important in the Kirby–Bauer disk diffusion test?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. It permits comparable zone measurements
B. It improves colony pigmentation
C. It prevents antibiotic diffusion
D. It increases agar thickness

23 A student prepares a bacterial suspension much denser than the recommended turbidity before disk diffusion testing. What result is most likely?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. Artificially larger inhibition zones
B. No change in inhibition zones
C. Complete loss of bacterial growth
D. Artificially smaller inhibition zones

24 Which reference standard is commonly used to adjust a bacterial suspension for disk diffusion testing?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. 50 McFarland standard
B. 0.05 McFarland standard
C. 5.0 McFarland standard
D. 0.5 McFarland standard

25 An agar plate used for disk diffusion is noticeably thicker than the recommended depth. How can this affect the test?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. It prevents bacterial growth
B. It may produce smaller zones
C. It may produce larger zones
D. It eliminates resistance mechanisms

26 Why should antibiotic disks be pressed gently onto the agar surface after placement?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. To increase bacterial density
B. To ensure complete disk contact
C. To prevent agar solidification
D. To reduce antibiotic potency

27 Two antibiotic disks are placed too close together, and their inhibition zones overlap. What is the main problem?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. The antibiotics become chemically identical
B. The organism becomes uniformly susceptible
C. The zones become easier to measure
D. The individual zones become difficult to interpret

28 A culture shows no visible growth on the entire antibiotic test plate, including areas far from the disk. Which explanation should be investigated first?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. The disk may have been too small
B. The inoculum may have been nonviable
C. The agar may have been too dry
D. The zone may have been measured incorrectly

29 An inhibition zone measures 15 mm, while the susceptibility chart lists 16–20 mm as intermediate and 21 mm or more as susceptible. How should the result be classified?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. Susceptible-dose dependent
B. Susceptible
C. Resistant
D. Intermediate

30 Why should inhibition zones be measured from the underside of a plate without opening the lid whenever possible?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. To increase agar moisture
B. To improve antibiotic diffusion
C. To reduce contamination risk
D. To make colonies grow faster

31 A test strain gives unusually large zones for every antibiotic tested, including those normally showing resistance. Which procedural issue is most likely?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. The agar was too deep
B. The disks were too close
C. The inoculum was too light
D. The incubation time was too long

32 Why are control strains included periodically in antimicrobial susceptibility testing?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. To identify bacterial species visually
B. To replace clinical isolates routinely
C. To increase the antibiotic concentration
D. To verify the test system performs correctly

33 A disk diffusion test is incubated at a temperature substantially below the recommended temperature. Which outcome is most concerning?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. Guaranteed resistance to every drug
B. Instant sterilization of the plate
C. Unreliable growth and zone interpretation
D. Uniform enlargement of all colonies

34 An isolate is susceptible to antibiotic X in vitro, but the drug does not reach effective concentrations at the infection site. What does this illustrate?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. A technical failure of disk placement
B. A requirement to enlarge the inhibition zone
C. The difference between susceptibility and clinical response
D. A proof that the isolate is resistant

35 A culture produces a distinct inner growth ring close to an antibiotic disk and a clear outer zone. What should the laboratory do before reporting the result?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. Classify the drug as universally effective
B. Ignore the inner growth automatically
C. Report the largest diameter only
D. Repeat or investigate the test

36 A mixed bacterial culture is tested instead of a pure isolate. Why might the susceptibility pattern be misleading?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. The antibiotic cannot diffuse through mixed growth
B. Different organisms may show different responses
C. All organisms will become susceptible
D. Mixed cultures always lack viable cells

37 A laboratory compares zone diameters obtained on two different media types. Why may direct comparison be inappropriate?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. Zone diameters never depend on antibiotics
B. Media properties can alter antibiotic diffusion
C. Bacteria cannot grow on any solid medium
D. All media contain identical nutrients

38 A disk has passed its expiration date and was stored at room temperature. What is the most appropriate action?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. Use it only for resistant isolates
B. Use it if the disk color is unchanged
C. Double the incubation period
D. Discard it and use a validated disk

39 An antibiotic has a zone diameter in the intermediate category. What does this result generally indicate?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. The test must be reported as contamination
B. The organism is fully susceptible
C. The drug is always ineffective
D. The drug may work under certain exposure conditions

40 A laboratory obtains a resistant result for an antibiotic, but the control strain is outside its acceptable range. What should happen next?

To study the antibiotic sensitivity pattern of microorganisms. Medium
A. Report the patient result immediately
B. Change the result to susceptible
C. Ignore the control strain result
D. Investigate the system and repeat testing

41 A Kirby–Bauer test produces zones that are uniformly 3–4 mm smaller than expected for several antibiotics, while the control strain gives similarly reduced zones. Which error most likely explains the pattern?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Agar depth greater than 4 mm
B. Inoculum below 0.5 McFarland
C. Incubation temperature below 35°C
D. Agar surface excessively dry

42 A bacterial suspension appears equivalent to 0.5 McFarland by visual comparison, but viable counting shows an inoculum approximately three times higher. Which result is most likely?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. No change for bactericidal drugs
B. Uniformly smaller inhibition zones
C. Only aminoglycoside zones become larger
D. Uniformly larger inhibition zones

43 In disk diffusion testing, two antibiotic disks are placed so close that their inhibition zones overlap. What is the main interpretive problem?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. The organism becomes phenotypically tolerant
B. Both drugs are automatically reported resistant
C. The overlapping edges cannot be measured independently
D. The drug with the larger zone becomes invalid

44 An isolate has a clear zone around erythromycin but grows within the zone adjacent to a clindamycin disk, producing a flattened D-shaped edge. What is the appropriate interpretation?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. The erythromycin disk was placed beyond the diffusion range
B. Constitutive macrolide resistance is absent
C. Inducible clindamycin resistance is present
D. The isolate is susceptible to all lincosamides

45 A Staphylococcus aureus isolate is resistant to cefoxitin but susceptible to erythromycin and clindamycin. Which conclusion is most appropriate?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. It is methicillin susceptible with inducible resistance
B. It should be reported susceptible to all beta-lactams
C. It likely carries mec-mediated methicillin resistance
D. It is resistant only because of an efflux pump

46 An Enterobacterales isolate shows a cefotaxime zone of 21 mm, a ceftazidime zone of 19 mm, and a clavulanate combination zone 6 mm larger than the corresponding cephalosporin zone. What does this support?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Vancomycin resistance
B. Extended-spectrum beta-lactamase production
C. Fluoroquinolone target protection
D. AmpC hyperproduction

47 A Gram-negative isolate is susceptible to cefotaxime initially, but resistance emerges during therapy and the isolate shows reduced susceptibility to cefoxitin. Which mechanism is most plausible?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Inhibition of lipopolysaccharide synthesis
B. Induction or derepression of AmpC beta-lactamase
C. Loss of the 30S ribosomal subunit
D. Acquisition of vanA

48 A broth microdilution series contains antibiotic concentrations of 0.25, 0.5, 1, 2, and 4 µg/mL. Visible growth is absent at 2 and 4 µg/mL but present at 1 µg/mL. What is the MIC?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. 4 µg/mL
B. 1 µg/mL
C. 2 µg/mL
D. 0.5 µg/mL

49 A minimum inhibitory concentration is measured as 8 µg/mL, but the clinical breakpoint for susceptibility is 4 µg/mL. How should the isolate be categorized?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Intermediate or susceptible increased exposure
B. Resistant
C. Indeterminate because MICs cannot use breakpoints
D. Susceptible

50 A control strain produces inhibition zones outside the accepted quality-control range for three disks, although the test isolate's zones appear typical. What should the laboratory do first?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Average the control and isolate zones
B. Report all antibiotics as intermediate
C. Repeat testing after investigating the QC failure
D. Release the isolate results unchanged

51 A culture plate has a faint haze extending inside an otherwise clear inhibition zone. Which factor is most important before calling this resistance?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Whether the disk contains a bacteriostatic drug
B. Whether the organism is Gram positive
C. Whether the agar was sterilized by autoclaving
D. Whether the haze represents a reproducible colony population

52 An isolate gives a susceptible result by disk diffusion but an MIC above the resistance breakpoint by broth microdilution. Which response is most scientifically appropriate?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Always select the larger inhibition zone
B. Average the MIC and zone diameter numerically
C. Verify methods and repeat testing using a validated procedure
D. Report susceptibility because disk diffusion is qualitative

53 A swarming Proteus isolate obscures the edges of several inhibition zones on Mueller–Hinton agar. What is the best laboratory approach?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Increase the inoculum to suppress swarming
B. Replace Mueller–Hinton agar with nutrient broth
C. Measure the outermost hazy edge for every disk
D. Use the standardized method and validated endpoint guidance for swarming organisms

54 An isolate has a large inhibition zone around tetracycline but a very small zone around doxycycline. Which conclusion is justified without additional testing?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. The isolate has no tetracycline resistance mechanism
B. The doxycycline disk is automatically defective
C. The two drugs must have identical clinical activity
D. Each result must be interpreted using its own breakpoint

55 A mixed culture is mistakenly used for susceptibility testing, and the plate shows colonies with two distinct morphologies inside and outside antibiotic zones. What is the principal consequence?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. The result is uninterpretable until a pure isolate is tested
B. The more resistant colony should be ignored
C. The combined zone represents the average phenotype
D. Mixed cultures improve detection of synergism

56 A laboratory incubates disk diffusion plates at 25°C overnight instead of using the validated temperature for the organism. Why can this invalidate interpretation?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Temperature has no effect if the incubation time is unchanged
B. Temperature affects disk diameter but not bacterial growth
C. Temperature changes only the color of the agar
D. Temperature alters growth rate and antimicrobial diffusion behavior

57 A disk is applied to agar 30 minutes after inoculation, but the plate surface has already dried completely. Which bias is most likely?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. More rapid diffusion may produce altered zone sizes
B. Only resistant organisms can grow on the plate
C. No diffusion occurs after the surface dries
D. All antibiotics become chemically inactive

58 A urine isolate is susceptible to an antibiotic at the serum breakpoint but resistant at the urinary breakpoint. Why might the laboratory use a specimen-specific breakpoint?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Urinary isolates never develop acquired resistance
B. Urinary drug concentrations may exceed serum concentrations
C. Urine prevents all bacterial multiplication
D. Serum breakpoints apply only to Gram-positive bacteria

59 An isolate is resistant to ciprofloxacin and levofloxacin but susceptible to nalidixic acid. Which interpretation is most defensible?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Fluoroquinolone resistance is excluded
B. The results must be combined into one mean zone
C. Resistance may be agent-specific and requires validated interpretation
D. Nalidixic acid susceptibility proves treatment success

60 A bacterial population produces two colony types, one susceptible and one highly resistant, but the overall disk-diffusion zone appears susceptible. What phenomenon could explain this finding?

To study the antibiotic sensitivity pattern of microorganisms Hard
A. Uniform intrinsic susceptibility
B. Heteroresistance with a minority resistant subpopulation
C. Complete absence of selective pressure
D. A guaranteed false-positive identification test