Paper Details 
Original Abstract of the Article :
An "omics"-style approach was used to evaluate the complex relationship between whisky aroma and dilution with water, typically suggested as a way to better appreciate whisky. A set of 25 samples, including Bourbons, ryes, single-malt and blended Scotches, and Irish whiskies were chemically profiled...See full text at original site
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引用元:
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10048241/

データ提供:米国国立医学図書館(NLM)

Whisky Aroma: A Sensory Journey Through Dilution

The world of whisky is a complex one, with its aromas and flavors evolving with the addition of water. This study uses a 'omics' approach to explore this complex relationship between whisky aroma and dilution. It's like understanding how the subtle scents of the desert change as a shimmering oasis appears on the horizon.

Dilution's Impact on Aroma

The researchers found that diluting whisky above 80% whisky/20% water reduced the differences within whisky styles. However, the differences between American and Scotch styles continued to increase with further dilution. It's like a camel who can distinguish between the distinct aromas of a blooming desert flower and the salty air of a distant sea, even when the wind carries them together.

Enjoying Whisky: A Matter of Dilution

This research suggests that whisky enthusiasts can enhance their sensory experience by carefully considering dilution levels. It's like a camel who appreciates the subtle variations in the desert's scents depending on the time of day and the prevailing wind. The study provides valuable insights into the complex world of whisky aromas and the role of dilution in shaping our perceptions.

Dr.Camel's Conclusion

This study uses a unique 'omics' approach to explore the complex relationship between whisky aroma and dilution, like a camel who carefully navigates a landscape of scents and flavors. By understanding the impact of dilution on whisky aroma, we can enhance our appreciation for this complex and fascinating beverage.

Date :
  1. Date Completed n.d.
  2. Date Revised 2023-03-31
Further Info :

Pubmed ID

36981202

DOI: Digital Object Identifier

PMC10048241

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Languages

English

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