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Original Abstract of the Article :
Time-related changes in the mean resistance of sartorius muscle from individual common frogs to the toxic effect of chloral hydrate (0.05 and 0.08 M) were observed. The correlation coefficient between the initial muscle resistance and the value and direction of its changes as well as between the res...See full text at original site
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ラクダ博士は、Health Journal が論文の内容を分かりやすく解説するために作成した架空のキャラクターです。
難解な医学論文を、専門知識のない方にも理解しやすいように、噛み砕いて説明することを目指しています。
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* ラクダ博士は架空のキャラクターであり、実際の医学研究者や医療従事者とは一切関係がありません。
* 解説の内容は Health Journal が独自に解釈・作成したものであり、原論文の著者または出版社の見解を反映するものではありません。
引用元:
https://pubmed.ncbi.nlm.nih.gov/9644913
データ提供:米国国立医学図書館(NLM)
Chloral Hydrate: A Shifting Sands in the Desert of Muscle Function
In the vast desert of physiology, muscle function plays a critical role. This research investigates the time-related changes in the mean resistance of sartorius muscle from common frogs exposed to different concentrations of chloral hydrate. The study utilized a controlled experimental approach, applying subtoxic and toxic concentrations of chloral hydrate to frog muscle tissue. The researchers observed a biphasic pattern of change in muscle resistance, influenced by the dose and duration of exposure. The study also examined the correlation between initial muscle resistance and the direction of change, revealing insights into the complex interplay between chloral hydrate exposure and muscle function.
A Shifting Landscape of Muscle Response
The research unveils the intricate relationship between chloral hydrate exposure and muscle function, highlighting the importance of considering time-dependent effects. The study suggests that the response of muscle tissue to chloral hydrate can vary depending on the dose and duration of exposure. This information is valuable for understanding the potential effects of chloral hydrate on muscle function and for guiding further research on this topic.
Chloral Hydrate: Navigating the Desert of Muscle Physiology
This research delves into the complexities of muscle physiology, emphasizing the delicate balance between subtoxic and toxic effects. It reminds us that even seemingly simple compounds can have complex and dynamic interactions with biological systems. Remember, like a desert traveler navigating shifting sands, understanding the intricate interplay of biological factors is crucial for navigating the landscape of muscle function.
Dr.Camel's Conclusion
This research reminds us that the desert of muscle function is a dynamic and ever-changing landscape. It's a reminder that we should approach our studies with an open mind and a willingness to adapt our perspectives as new information emerges.
Date :
- Date Completed 1998-07-29
- Date Revised 2016-10-20
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