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HSM478 Exercises

Total questions: 60

Worksheet time: 3600secs

Name
Class
Date
1.

Which of the following best describes how store-and-forward systems operate in digital health?
A. Data is transferred only via satellite with delays
B. Medical details are exchanged in real time through live chat
C. Information is shared without requiring simultaneous presence
D. It is exclusively used in high-risk emergency cases

a)

A

b)

B

c)

C

d)

D

2.

Which specialty was the first to apply store-and-forward tools in its practice?
A. Remote cardiac monitoring
B. Digital pathology
C. Remote radiology
D. Online dermatology consultations

a)

A

b)

B

c)

C

d)

D

3.

In contrast to video consultations, store-and-forward solutions are usually:
A. Technically demanding and costly
B. Basic and cost-effective
C. Designed only for reading text
D. Dependent on live satellite feeds

a)

A

b)

B

c)

C

d)

D

4.

What essential tools are typically involved in a digital pathology setup?
A. ECG monitor and tablet
B. Optical microscope, camera, and screen
C. X-ray device and printer
D. CT scanner and holographic display

a)

A

b)

B

c)

C

d)

D

5.

Which data transmission mode is frequently applied in telepathology daily operations?
A. Augmented reality interactions
B. Interactive live video links
C. Delayed image and data sharing
D. Intelligent robotic platforms

a)

A

b)

B

c)

C

d)

D

6.

What is the primary assessment method in digital dermatological consultations?
A. Skin examination through voice recordings
B. Use of written patient responses
C. Analysis of visual skin data
D. Review of blood test interpretations

a)

A

b)

B

c)

C

d)

D

7.

What two technologies are frequently integrated in teledermatology services?
A. Robotics and AI algorithms
B. Image transmission and video chats
C. Text-based messages and remote surgery
D. ECG monitoring and automated scripts

a)

A

b)

B

c)

C

d)

D

8.

Why is videoconferencing valuable in digital skin consultations?
A. It replaces doctors with automation
B. It eliminates patient consent procedures
C. It replicates face-to-face consultation models
D. It works independently of the internet

a)

A

b)

B

c)

C

d)

D

9.

What advancement in 2017 enhanced skin cancer screening?
A. Skin cancer-detecting wristbands
B. Use of AI to assess dermatological images
C. Development of a new radiation therapy
D. Introduction of preventive vaccination

a)

A

b)

B

c)

C

d)

D

10.

Which data source was used to teach AI to identify skin conditions?
A. Audio logs of patient interviews
B. Cardiovascular health data
C. Thousands of labeled dermatological images
D. Genetic code patterns

a)

A

b)

B

c)

C

d)

D

11.

On an X-ray film, how do bones typically appear?
A. Translucent
B. Grey-toned
C. Bright white
D. Invisible

a)

A

b)

B

c)

C

d)

D

12.

What is one drawback of traditional X-ray imaging?
A. It ignores bone abnormalities
B. It involves unsafe sound waves
C. It creates animated 3D scans
D. It cannot view behind skeletal structures

a)

A

b)

B

c)

C

d)

D

13.

What is the defining principle behind ultrasound imaging?
A. Electromagnetic field transmission
B. Echo-based sound wave reflection
C. Laser-generated 3D projections
D. Surgical camera insertions

a)

A

b)

B

c)

C

d)

D

14.

Which of the following is a typical use for ultrasound?
A. Observing prenatal development
B. Checking glucose levels
C. Bone damage detection
D. Mapping brain function

a)

A

b)

B

c)

C

d)

D

15.

CT scanners produce images using which mechanism?
A. X-ray radiation and software
B. High-frequency acoustic signals
C. Magnetic and radio waves
D. Thermal imaging

a)

A

b)

B

c)

C

d)

D

16.

What is a key benefit of modern CT imaging?
A. It captures live heart activity
B. It can deliver thousands of image slices
C. It emits no radiation
D. It is exclusively for dentists

a)

A

b)

B

c)

C

d)

D

17.

What distinguishes MRI from conventional X-ray technology?
A. It reveals the internal bone structure
B. It can't visualise soft tissues
C. MRI creates average-quality pictures
D. It depends on heat signatures

a)

A

b)

B

c)

C

d)

D

18.

MRI produces images by utilising:
A. Radiation and heat
B. Sonar technology
C. Magnetic resonance and wave pulses
D. Infrared reflections

a)

A

b)

B

c)

C

d)

D

19.

What is the main focus of the Visible Human Project?
A. Developing surgery training video games
B. Generating full-body 3D human models
C. Designing robotic surgical arms
D. Gathering hospital intake data

a)

A

b)

B

c)

C

d)

D

20.

Which statement does not describe the Visible Human dataset?
A. Viewers can rotate and flip anatomical models
B. Models are only printed in hardcopy
C. They offer 3D visual interaction
D. Users can zoom and highlight structures

a)

A

b)

B

c)

C

d)

D

21.

What is the primary aim of expert systems in clinical settings?
A. Fully replace doctors
B. Gather patient intake data
C. Rehearse surgeries virtually
D. Provide expert-level decisions in narrow tasks

a)

A

b)

B

c)

C

d)

D

22.

Expert systems are a sub-discipline of which field?
A. Cyber risk management
B. Genetic engineering
C. Artificial intelligence
D. Robotics

a)

A

b)

B

c)

C

d)

D

23.

What is a common feature of health-related mobile apps?
A. Performing remote surgeries
B. Monitoring steps and fitness data
C. Automating hospital discharges
D. Offering legal consultation

a)

A

b)

B

c)

C

d)

D

24.

Which function is not typically available in health apps?
A. Estimating blood alcohol
B. Checking vision
C. Issuing restricted prescriptions
D. Analysing symptoms

a)

A

b)

B

c)

C

d)

D

25.

How can wearables improve traffic safety?
A. Tracking car fuel usage
B. Monitoring driver drowsiness or seizures
C. Managing road signs
D. Lowering speed limits

a)

A

b)

B

c)

C

d)

D

26.

Why are drivers a critical group for wearable monitoring?
A. They carry passengers daily
B. They constantly use social media
C. Their job increases chronic disease risk
D. They stay mostly indoors

a)

A

b)

B

c)

C

d)

D

27.

What is a concern regarding general wearables in healthcare?
A. They fail to function outdoors
B. They have no evidence to support their health claims
C. They cost more than hospital machines
D. They only measure oxygen levels

a)

A

b)

B

c)

C

d)

D

28.

What distinguishes medical-grade wearables from basic trackers?
A. Less power consumption
B. Exclusivity in hospitals
C. Use for recreational purposes
D. Diagnostic-level accuracy

a)

A

b)

B

c)

C

d)

D

29.

In fitness trackers, accelerometers are used for:
A. Brain scan analysis
B. Heart arrhythmia detection
C. Tracking step count
D. Gum health screening

a)

A

b)

B

c)

C

d)

D

30.

What’s an example of wearable tech aiding pain therapy?
A. Noise-cancelling headphones
B. Smart footwear insoles
C. Wrist-based calendars
D. Retinal monitors

a)

A

b)

B

c)

C

d)

D

31.

What allowed the expansion of smart devices across households?
A. Growth in smart TV sales
B. Bluetooth-only device rollout
C. Government bans on old tech
D. Cheaper mobile data costs

a)

A

b)

B

c)

C

d)

D

32.

Which illustrates Internet of Things (IoT’s) role in easing daily travel?
A. Reading printed roadmaps
B. Logging exercise in notebooks
C. Navigating with internet-connected cars
D. Reducing screen time

a)

A

b)

B

c)

C

d)

D

33.

How can older adults use video calls without keyboards?
A. Rely on remote-controlled smart TVs with webcams
B. Use consoles for messaging
C. Post letters for updates
D. Consult printed guides

a)

A

b)

B

c)

C

d)

D

34.

Improved connectivity benefits include:
A. Less independence
B. Better social contact and mobility tracking
C. Poor access to medical support
D. Decline in active routines

a)

A

b)

B

c)

C

d)

D

35.

What is one health benefit of smart homes for seniors?
A. Reducing housework
B. Connecting appliances with health platforms
C. Blocking data sharing
D. Cutting off phone calls

a)

A

b)

B

c)

C

d)

D

36.

One major issue in health device design is:
A. Making screens smaller
B. Adding manual buttons
C. Restricting device pairing
D. Developing intuitive and complete solutions

a)

A

b)

B

c)

C

d)

D

37.

What is the goal of using haptics in telehealth?
A. Replace surgery with text bots
B. Eliminate hand use in surgeries
C. Track eye position during treatment
D. Offer tactile signals during remote procedures

a)

A

b)

B

c)

C

d)

D

38.

Why are haptic simulators helpful for trainees?
A. They offer hands-on practice without harming patients
B. They lower equipment prices
C. They speed up graduation
D. They eliminate theory-based learning

a)

A

b)

B

c)

C

d)

D

39.

How does Business Intelligence (BI) help hospitals?
A. Cuts down employee salaries
B. Identifies idle medical facilities
C. Removes insurance dependencies
D. Enhances workflow and clinical judgment

a)

A

b)

B

c)

C

d)

D

40.

What is a financial benefit of BI in healthcare?
A. Limiting care to basic needs
B. Increasing private luxury services
C. Spotting high-revenue areas like medical tourism
D. Cancelling elective procedures

a)

A

b)

B

c)

C

d)

D

41.

Why is 5G important for wearables in smart health systems?
A. It blocks cyber threats
B. It supports large data for remote monitoring
C. It reduces device heat
D. It removes paperwork

a)

A

b)

B

c)

C

d)

D

42.

What role do connected sensors play in telemonitoring?
A. Send patient data from different environments
B. Block unnecessary alerts
C. Replace emergency units
D. Stream movies to patients

a)

A

b)

B

c)

C

d)

D

43.

Which tools are standard in teleneurology real-time sessions?
A. Fax and voice calls
B. Emails and live video platforms
C. Texts and mobile games
D. Blogs and memo apps

a)

A

b)

B

c)

C

d)

D

44.

Who typically supports the patient onsite in a teleneurology consult?
A. Family caregiver
B. Consulting physician
C. Imaging technician
D. Onsite nurse

a)

A

b)

B

c)

C

d)

D

45.

Live surgery sessions that need real-time feedback between clinicians are best supported by store-and-forward systems.

a)

T

b)

F

46.

Remote radiology enables image sharing without requiring the physical presence of the patient or radiologist.

a)

T

b)

F

47.

In telepathology, only live-streaming technologies are used for all types of diagnostic reporting.

a)

T

b)

F

48.

Without contrast-enhancing substances, soft tissue visibility on X-rays is limited.

a)

T

b)

F

49.

CT scans are free from radiation exposure and are typically used for prenatal imaging.

a)

T

b)

F

50.

Magnetic Resonance Imaging produces high-resolution visuals of internal soft structures without using ionising radiation.

a)

T

b)

F

51.

The Visible Human Project focuses solely on male anatomical models and cannot be accessed online.

a)

T

b)

F

52.

Computer-based expert systems apply logic-based frameworks to mimic clinical decision-making.

a)

T

b)

F

53.

Certain health-related mobile apps can generate estimates of body data, though these may not be medically validated.

a)

T

b)

F

54.

Health-monitoring wearables used by drivers can help minimise road accidents by identifying medical warning signs.

a)

T

b)

F

55.

Consumer-grade wearables meet the same diagnostic accuracy requirements as certified clinical equipment.

a)

T

b)

F

56.

Affordable mobile data has enabled continuous connectivity for health-related smart devices.

a)

T

b)

F

57.

The main function of smart home gadgets is entertainment, with little involvement in health support.

a)

T

b)

F

58.

Tactile simulation through haptic tools enhances the realism of remote medical training sessions.

a)

T

b)

F

59.

The main objective of Business Intelligence in healthcare is to analyse user behaviour for marketing and entertainment.

a)

T

b)

F

60.

Telemedicine platforms can support both scheduled consultations and data sharing without requiring real-time interaction.

a)

T

b)

F