| 1 |
What is the primary function of AI in the medical imaging industry?
|
To conduct medical research |
|
Some examples of
this include interpreting medical images to generate diagnostic recommendations
and personalised treatment plans which act as a second medical opinion and form the basis of pre-populated preliminary medical
reports. |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
7 |
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| 2 |
Which of the following is a key benefit of AI in radiology noted in the article?
|
Acts as a second medical opinion |
|
Medical AI systems of this nature have wide-ranging use cases to support clinical decision-making. |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
7 |
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| 3 |
What does AI literacy refer to according to the article?
|
Understanding and knowledge of AI technology |
|
Understand how AI works. |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
7 |
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| 4 |
Which factor is NOT listed as influencing the acceptability of AI among healthcare professionals?
|
The color of the AI machines |
|
NOT listed. |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
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| 5 |
What role does social influence play in AI acceptability in healthcare according to the article?
|
Affects healthcare professionals’ decisions to use AI |
|
Affecting how healthcare professionals perceive and decide to adopt AI tools. |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
7 |
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| 6 |
What is a perceived threat regarding AI usage in healthcare settings?
|
Concerns about replacing healthcare professionals |
|
Fear that AI might replace human healthcare professionals |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
7 |
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| 7 |
According to the article, what is essential for increasing AI acceptability among medical professionals?
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Ensuring AI systems have high algorithmic performance |
|
It is possible that healthcare professionals could have a distorted perspective
of AI |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
7 |
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| 8 |
What does the 'system usage' category of AI acceptability factors include according to the article?
|
Factors like value proposition and integration with workflows |
|
How useful and beneficial the AI system is perceived to be. |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
7 |
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| 9 |
How does ethicality impact AI acceptability among healthcare professionals?
|
Affects views on AI based on compatibility with professional values |
|
AI acceptability among healthcare professionals impact that different
types of AI educational programs. |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
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| 10 |
What methodological approach did the article emphasize for future AI acceptability studies?
|
Considering user experience and system integration deeply |
|
That will be useful from both a theoretical and practical perspective to develop a corpus of
knowledge around. |
Artificial Intelligence In Medicine - Understanding the factors influencing acceptability of AI in medical
imaging domains among healthcare professionals: A scoping review |
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| 11 |
What is the primary objective of using human embryonic stem cells in treating Parkinson’s disease?
|
To replace lost dopamine neurons. |
|
Replace the dopamine-producing neurons in the brain that are lost or damaged due to the disease. |
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
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| 12 |
Which animal was used to test the STEM-PD product for safety and efficacy?
|
Rats |
|
From Figure 1. Manufacturing and quality control of STEM-PD |
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
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| 13 |
What was the duration of the preclinical safety study in rats mentioned in the article?
|
9 months |
|
9 months 3 weeks |
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
7 |
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| 14 |
What is the name of the clinical trial phase mentioned for STEM-PD?
|
Phase I/IIa |
|
From Figure 1. Manufacturing and quality control of STEM-PD |
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
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| 15 |
How is the STEM-PD product manufactured?
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Under GMP-compliant conditions |
|
The STEM-PD product was generated using a good manufacturing practice (GMP)-compliant protocol. |
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
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| 16 |
According to the article, what confirmed the safety of the STEM-PD product in rats?
|
There were no adverse effects or tumor formation. |
|
To assess the safety profile of STEM-PD cells prior to use in the clinical trial. |
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
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| 17 |
What key finding was noted in the efficacy study of STEM-PD in rats?
|
Cells showed migration to unintended areas. |
|
|
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
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| 18 |
What specific markers were used to assess the purity of the STEM-PD batch?
|
GIRK2 and ALDH1A1 |
|
They are specific markers used to assess the purity of dopamine neurons in the STEM-PD batch. |
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
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| 19 |
What role do growth factors like FGF8b and SHH play in the manufacturing process of STEM-PD?
|
They enhance pluripotency. |
|
|
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
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| 20 |
What was a key outcome measured in the preclinical trials for efficacy in rats?
|
Recovery of motor function |
|
Recovery of motor function is directly relevant to Parkinson’s disease. |
Clinical and Translational Report - Cell Stem Cell , Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease, STEM-PD |
7 |
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