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Exploring Affective Communication for Frissons in Online Video Viewing


Core Concepts
The authors explore the design of affective communication for sharing frissons during online video viewing, using biosignals to detect viewers' reactions and present aggregated data alongside videos.
Abstract
The study investigates the efficient sharing of frisson moments among online video viewers through three different designs: ambient light, icon, and vibration. The research aims to enhance social presence and create affective contagion among viewers by conveying physiological responses. Key points include: Frisson as a psycho-physiological reaction to arousing stimuli. Challenges in expressing and sensing frissons on online platforms. Proposed approach using biosignals for affective communication. Design process involving brainstorming, focus group interviews, and iterations. Evaluation of designs through a mixed-methods study with 48 participants. The study highlights the potential of sensor-detected frissons as an emotional communication channel beyond online videos.
Stats
"N=48" - Sample size for the mixed-methods study. "5Hz" - Sampling rate for EDA signals during data collection. "30 Hz" - Low-pass filter sample rate used to eliminate noise from sensor data.
Quotes
"I felt uncomfortable as if too close to strangers." "My emotions were amplified."

Key Insights Distilled From

by Zeyu Huang,X... at arxiv.org 03-05-2024

https://arxiv.org/pdf/2403.01090.pdf
Sharing Frissons among Online Video Viewers

Deeper Inquiries

How can the design of affective communication channels be improved beyond online video platforms?

In addition to online video platforms, affective communication channels can be enhanced by integrating them into various other digital environments such as social media platforms, virtual reality experiences, and gaming communities. By incorporating biosignal sensors or other technologies that capture users' emotional responses in real-time, these platforms can provide more immersive and engaging interactions. Furthermore, personalized feedback mechanisms tailored to individual preferences and emotions can enhance the effectiveness of affective communication channels.

What are potential drawbacks or limitations of relying on biosignals for emotional communication?

While biosignals offer a direct way to measure physiological responses related to emotions, there are several limitations to consider. One drawback is the potential invasiveness of collecting sensitive data from individuals without their explicit consent or understanding. Additionally, interpreting biosignals accurately requires sophisticated algorithms and may not always reflect the complexity of human emotions accurately. There could also be concerns about privacy and data security when using biosignals for emotional communication.

How might the concept of shared physiological experiences impact social interactions in virtual environments?

The concept of shared physiological experiences in virtual environments has the potential to deepen social connections among participants by creating a sense of empathy and mutual understanding. When individuals share their physiological reactions with others during virtual interactions, it can foster a stronger sense of presence and emotional connection. This shared experience may lead to increased trust, collaboration, and engagement within virtual communities. However, challenges such as misinterpretation or over-reliance on physiological cues could also arise if not managed effectively.
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