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Version 92.1 by Aleksanteri Hämäläinen on 2022/04/03 18:46

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1 = Problem statement and research questions =
2
3 People with dementia often forget to eat and drink, leading to dehydration, malnutrition and decreased wellbeing in general. Our prototype engages in discourses to remind PwD to have lunch and drink water, using the Nao robot platform. The discourse aims to reming the PwD without causing any anxiety or embarrassment which a traditional "alarm" system could cause, and keep them company throughout these activities.
4
5 The four research questions studied in this evaluation are:
6
7 {{html}}
8
9 <ol>
10 <li>Does the robot remind the PwD of their hunger?</li>
11 <li>Does the music make the eating more enjoyable for the PwD?</li>
12 <li>Does the PwD experience less negative emotions, such as agitation, sadness, embarrassment, after the interaction with the 'intelligent' robot?</li>
13 <li>* Does the robot cause PwD to eat more regularly?</li>
14 </ol>
15
16 * This research question is difficult due to the practical limitations in designing the experimental setup and as such is left to lesser importance.
17
18 {{/html}}
19
20 = Method =
21
22 The prototype is evaluated with an in-person experiment with multiple participants.
23
24 == Participants ==
25
26 As there are practical difficulties with conducting the experiment with actual people with dementia due to both time constraints and COVID, our participants' group consists of peers from other groups and friends. In total we had 19 people take part in our experiment.
27
28 == Experimental design ==
29
30 For the experiment we used a within-subject design. All of the participants interacted with both versions of the robot, with half of the participants interacting with the version 1 first and then version 2, and the other half in reverse order. This was done to counter-balance the carryover effects. Snacks were made available for the participants, in case they were prompted and they ewre hungry. The participants were unaware of the possibility of eating snacks, to prevent disturbing the interaction with the robot. Otherwise the subjects would have been primed for eating, which would have biased the results and hide the effect of the robotic interaction.
31
32 == Tasks ==
33
34 The participant interacted with the robot, which was programmed to engage in a lunch discourse. Two versions were implemented: the first version asks basic questions about mealtime, mostly acting as a reminder for the PwD to have lunch (basically an alarm clock). The second is our original implementation of it with the more sophisticated discourse and music.
35
36 == Measures ==
37
38 We measured the effectiveness of the discourse, both physically and emotionally. Our quantitative measure was whether the person ate the lunch they were supposed to have eaten, and the qualitative measure was the emotions that the PwD experienced before, during, and after the interaction. The qualitative measures were recorded with a simple questionnaire. Some people were not hungry enough to be prompted to have something to eat, which disturbed the results. However we did measure whether the robot reminded someone of their hunger and if they ate.
39
40 == Procedure ==
41
42 The procedure was conducted as follows:
43
44 1. Welcome participant and explain what they are going to be doing.
45 1. Have them sign the permission form.
46 1. Complete questionnaire 1 regarding their emotional state (control).
47 1. Have an interaction with version A of the robot.
48 1. Complete questionnaire 2 (extended version).
49 1. Have a short interview during downtime (prepared questions).
50 1. Have an interaction with version B of the robot.
51 1. Complete questionnaire 3 (extended version).
52 1. Have a short interview during downtime (prepared questions).
53
54
55 We used the "Wizard of Oz" method for recognizing agreement and disagreement, to make sure that the whole process did not depend on voice recognition being good enough. In practice, this meant that someone was pressing "y" and "n" on the keyboard according to the participants answers in a place the participant did not see, such as behind them.
56
57 == Material ==
58
59 For the experiments, we used the NAO robot platform, and a laptop to control it with. The participants completed the questionnaires on their phones by scanning a QR code. The questionnaires are a combination of questions regarding the emotional state of the participants, their interaction with the robot, and the music included in the interaction. Stroopwafels and water in a clean cup were made available to see and measure how much people ate.
60
61 Below are listed the contents of the three questionnares:
62
63 Questionnare 1:
64 * Consent Form and Disclaimers
65 * Control for robot version A
66 ** 8 questions from the [[EVEA>>https://www.ucm.es/data/cont/docs/39-2013-04-19-EVEA%20-%20Datasheet.pdf]] questionnaire
67 ** 4 questions from the [[Godspeed>>https://www.bartneck.de/2008/03/11/the-godspeed-questionnaire-series/]] questionnaire
68
69 Questionnare 2:
70 * Questions about robot version A
71 ** 3 food-related questions of our own (5-point Likert scale)
72 ** 2 music-related questions of our own (5-point Likert scale)
73 * Control for robot version B
74 ** 8 questions from the [[EVEA>>https://www.ucm.es/data/cont/docs/39-2013-04-19-EVEA%20-%20Datasheet.pdf]] questionnaire
75 ** 4 questions from the [[Godspeed>>https://www.bartneck.de/2008/03/11/the-godspeed-questionnaire-series/]] questionnaire
76
77 Questionnare 3:
78 * Questions about robot version B
79 ** 3 food-related questions of our own (5-point Likert scale)
80 ** 2 music-related questions of our own (5-point Likert scale)
81
82 == Practicalities ==
83
84 Before the experiment we:
85
86 * did a practice round by ourselves
87 ** This was filmed to have a controlled performance to give an example of the experiment if needed
88 * contacted other groups and decide on scheduling
89 ** Each participant was booked a 20 min slot
90 * reserved the lab
91 * bought the stroopwafels
92
93 = Results =
94
95 The results were gathered from 19 personnel, all of whom interacted first with one version of the robot and then the other. 10 of the participants interacted first with the simple version, nine having their first interaction with the advanced version.
96
97 == Eating ==
98
99 {{html}}
100 <img src="https://xwiki.ewi.tudelft.nl/xwiki/wiki/sce2022group01/download/Test/WebHome/EatingComp.png?rev=1.1" alt="Results on the eating of the test personas" style="display:block;margin-left:auto;margin-right:auto" width=750/>
101 {{/html}}
102
103 (% style="text-align:center" %)
104 Figure 1: Results on the eating of the test personas during the experiment
105
106 Simple robot:
107
108 * 16% ate
109 * 33% of those would not have eaten without the robot
110
111 Advanced robot:
112
113 * 32% ate
114 * 67% of those would not have eaten without the robot
115
116 == Music ==
117
118 {{html}}
119 <img src="https://xwiki.ewi.tudelft.nl/xwiki/wiki/sce2022group01/download/Test/WebHome/MusicEnjoyable.png?rev=1.1" alt="Effects of music on the test personnel" style="display:block;margin-left:auto;margin-right:auto" width=1250/>
120 {{/html}}
121
122 (% style="text-align:center" %)
123 Figure 2: Answers of the test personas regarding music
124
125
126 == EVEA (Mood) ==
127
128 {{html}}
129 <img src="https://xwiki.ewi.tudelft.nl/xwiki/wiki/sce2022group01/download/Test/WebHome/MoodChangeDumb.png?rev=1.1" alt="Measured moods and changes for the simple robot" style="display:block;margin-left:auto;margin-right:auto" width=750/>
130 {{/html}}
131
132 (% style="text-align:center" %)
133 Figure 3: Median measured moods for the simple version of the robot
134
135 {{html}}
136 <img src="https://xwiki.ewi.tudelft.nl/xwiki/wiki/sce2022group01/download/Test/WebHome/MoodChangeSmart.png?rev=1.1" alt="Measured moods and changes for the advanced version of the robot" style="display:block;margin-left:auto;margin-right:auto" width=750/>
137 {{/html}}
138
139 (% style="text-align:center" %)
140 Figure 4: Median measured moods for the advanced version of the robot
141
142 (% style="text-align:center" %)
143 Table 1: Wilcoxon signed rank test results for the hypothesis that the mood changed during the interaction with the simple robot
144
145 |=Mood|=Happiness|=Anxiety|=Sadness|=Anger
146 |Statistic|37|5|4|14
147 |P-value|0.54|0.01|0.01|0.45
148
149 (% style="text-align:center" %)
150 Table 2: Wilcoxon signed rank test results for the null hypothesis that the mood changed during the interaction with the advanced robot
151
152 |=Mood|=Happiness|=Anxiety|=Sadness|=Anger
153 |Statistic|32|11|2|17
154 |P-value|0.18|0.01|0.01|0.45
155
156 (% style="text-align:center" %)
157 Table 3: Wilcoxon signed rank test results for the null hypothesis that the mood decreased during the interaction with the simple robot
158
159 |=Mood|=Anxiety|=Sadness|=Anger
160 |Statistic|81|53|29
161 |P-value|0.01|0.00|0.23
162
163 (% style="text-align:center" %)
164 Table 4: Wilcoxon signed rank test results for the null hypothesis that the mood decreased during the interaction with the advanced robot
165
166 |=Mood|=Anxiety|=Sadness|=Anger
167 |Statistic|32|149|52
168 |P-value|0.00|0.01|0.07
169
170 (% style="text-align:center" %)
171 Table 5: Wilcoxon signed rank test results for the null hypothesis that the mood increased during the interaction with the simple robot
172
173 |=Mood|=Happiness
174 |Statistic|37
175 |P-value|0.27
176
177 (% style="text-align:center" %)
178 Table 6: Wilcoxon signed rank test results for the null hypothesis that the mood increased during the interaction with the advanced robot
179
180 |=Mood|=Happiness
181 |Statistic|32
182 |P-value|0.09
183
184 (% style="text-align:center" %)
185 Table 7: Wilcoxon signed rank test results for the hypothesis that the mood changes with the simple and advanced robots during the interaction are different
186
187 |=Mood|=Happiness|=Anxiety|=Sadness|=Anger
188 |Statistic|92|49|85|69
189 |P-value|0.92|0.07|0.71|0.31
190
191 == Godspeed ==
192
193 {{html}}
194 <img src="https://xwiki.ewi.tudelft.nl/xwiki/wiki/sce2022group01/download/Test/WebHome/friendly-hist.png?rev=1.1" alt="Effects of music on the test personnel" style="display:block;margin-left:auto;margin-right:auto" width=750/>
195 {{/html}}
196
197 (% style="text-align:center" %)
198 Figure 5: Answers to the statement 'I thought the robot was friendly'
199
200 {{html}}
201 <img src="https://xwiki.ewi.tudelft.nl/xwiki/wiki/sce2022group01/download/Test/WebHome/pleasant-hist.png?rev=1.1" alt="Answers to the statement 'I thought the robot was pleasant'." style="display:block;margin-left:auto;margin-right:auto" width=750/>
202 {{/html}}
203
204 (% style="text-align:center" %)
205 Figure 6: Answers to the statement 'I thought the robot was pleasant'
206
207 {{html}}
208 <img src="https://xwiki.ewi.tudelft.nl/xwiki/wiki/sce2022group01/download/Test/WebHome/godspeed-barchart.png?rev=1.1" alt="Godspeed questionnaire median comparison'." style="display:block;margin-left:auto;margin-right:auto" width=750/>
209 {{/html}}
210
211 (% style="text-align:center" %)
212 Figure 7: Median measured Godspeed questionnaire dimensions
213
214
215 (% style="text-align:center" %)
216 Table 8: Wilcoxon signed rank test results for the null hypothesis that the advanced robot scored higher in the perceived dimensions
217
218 |=Dimension|=Likeability|=Intelligence
219 |Statistic|36|70
220 |P-value|0.01|0.17
221
222 = Discussion =
223 Analysis the results surfaced some minor issues in the experiment, such as the lack of comparison with two robots of similar features, with and without music. Also the practical limitations in the setup, such as the lack of different food options and some participants being aware of the design goals of the prototype could have interfered with the natural flow of the intercourse. With these limitations, the research method was successful in extracting differences within the robots and brought up additional directions for future research.
224
225 The most interesting direction for future research would be the longer term studying of the effect of mealtime reminders on the health of the test subjects. The longer term health study would uncover the effect on eating frequency and the development of the relationship with the robot, for example would the test subjects that were first excited about the novel interaction with the robot, develop negative feelings about the supervision that the robot is conducting into their personal life.
226
227 Another topic to study is the differences with and without music. The effects of music could be studied with the music tailored to personal taste and all versions of the robot with and without the music playback included in the interaction. This would allow to pinpoint the effects of music, without the other features causing variance.
228
229 = Conclusions =
230
231 From the results we can see that the more advanced robot shows advantages over the simple version in many categories. Hints of better performance in other categories can be seen, but no conclusions should be drawn from the ones that lack the statistical significance.
232
233 In improving the eating, it seems that both robots have limited success in causing the people to eat as seen in Figure 1, they could cause the patients to eat more regularly, if triggered by timers or other suitable systems. It also seems that the advanced robot is better in the reminding, by a slight margin. However, the long term effects of reminding should be researched more to conclude whether the usage of the demonstrated robot platform or similar would cause the patients to eat more regularly. It is also unclear how the test setup and the limited choice of food affected the eating.
234
235 Based on the answers of the participants regarding music seen in Figure 2, it seems that most of them were either indifferent or liked the music. Also, as the test personnel find the advanced robot more likeable with a 5% confidence limit (Table 7), and the advanced version was the only version with music, it seems likely that the music does make the interaction more pleasant for the personas. However, some of the likeability might be due to the other advanced features of the robot and thus more research is needed to conclude the effect of the music.
236
237 The EVEA and partial Godspeed result can be seen in Figures 3-7 and Tables 1-8. The results show that with reasonable confidence (5% confidence limit), both versions of the robot decreased sadness and anxiety in the test personas. Hints are shown (10% confidence limit) that the advanced robot also decreases feelings of anger and increases happiness, while the simple robot fails to show similar results. However, in Table 7 we can see that the statistical differences in the mood differences during the interactions with the different versions are not highly significant.
238
239 A Wilcoxon signed rank test for the partial Godspeed test shows in Table 8 that with high confidence (1% confidence limit), the intelligent robot is more likeable in comparison to the simple robot. With these results it is likely that the more advanced robot is slightly preferrable and the personas might experience less negative emotions after the interaction with the robots, but it is slightly unclear if the effect is more powerful with the advanced robot.
240
241
242 = Appendix =
243
244 == Experiment introduction for participants ==
245
246
247
248 Hi, we are <NAME> and <NAME> from the TU Delft Socio-Cognitive Engeering course Group 1, thank you for participating in our prototype evaluation experiment. The experiment is being conducted as a part of the TU Delft course on Socio-Cognitive Engineering and aims to evaluate the prototype designed as a part of the course. The evaluated prototype is based on the Nao robot-platform and is intended to improve the wellbeing of people suffering of dementia.
249
250 Consuming food and/or water can be a consequence of the interaction between you and the robot. Therefore, we would like to ask you if you have any allergies. If you have a form of Diabetes, please let us know before we start the first part of the experiment. You are strongly encouraged to share any other health conditions that can possibly be relevant to take into account when doing an experiment with robots and food with us.
251
252 The link between the stimuli of the Nao-robot and the triggering of epileptic seizures is yet unknown. If you have ever experienced epileptic seizures, please let us know. Then, we could see if any special precautions are needed.
253
254 The experiment will last for approximately 15-20 minutes, and consists of two interaction sections with the Nao robot, as well as questionnaires before, between and after the sections. We kindly ask you to act naturally during the experiment and fill the questionnaires truthfully and intuitively. Remember that we are evaluating the prototypes performance, not yours. You can stop the experiment at any time.
255
256 We will be collecting data of the questionnaires and recording some experiments, do you agree with your experiment being recorded? All data excluding the recordings will be anonymised before analysis and storage. The recordings will not be shared with third parties. After the experiment you have the right to ask for information about the collected data and revoke the right to use it. We kindly ask you not to share any information about the experiment with other participants.
257 
Do you have any questions?
258
259 == After research interview ==
260
261 Setup:
262 The test subject has finished both parts of the experiment. Before leaving the test conductor(s) sit down with them and ask the following questions in a discussion about the experiment. Discussion can flow freely, but the following topics should be discussed.
263
264 Topics:
265 - Emotions before / during / after the interaction with the robot
266 - Agitation due to the robot suggesting eating
267 - Effect of music on the general feeling of the situation
268 - Feeling of company during eating
269 - Effectiveness of eating/drinking suggestions
270
271 Questions:
272 - Did you eat or drink anything during the experiment?
273 - Were you feeling hungry/thirsty beforehand and did the discourse change this?
274 - On a scale of 1-10, how likely would you have eaten/drank without the robot suggesting it?
275 - What did the interaction with the robot feel like?
276 - With the more intelligent version?
277 - With the less intelligent version?
278 - What did you feel like when the robot suggested you should eat/drink?