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Sakamoto, K. Q.

Publications and source records attributed to Sakamoto, K. Q..

2 recordsLinked to original sources

Morning sickness-like changes during pregnancy in non-human primates and rodents

Nausea and vomiting of pregnancy (NVP), commonly referred to as "morning sickness," causes a range of symptoms including nausea, vomiting, weight loss, anorexia, and malaise in pregnant women during early pregnancy. Although NVP highly affects the quality of life of pregnant women, the absence of model animals has prevented us from revealing the underlying mechanisms. Here, to identify whether non-human animals may serve as models for studying NVP, we analyzed metabolic changes during pregnancy in common marmosets and mice. Marmosets exhibited a transient weight decrease during the period of placental development in approximately 22% of pregnancies. Some marmosets repeatedly showed transient weight loss across multiple pregnancies, suggesting individual variations in the likelihood of NVP-like symptoms. Although mice did not show apparent alteration in body weight, they exhibited a slowdown in food intake and alterations in locomotor activity during the corresponding phase. These shared alterations suggest that marmosets and mice may exhibit phenomena analogous to human NVP and could serve as useful models for investigating its biological basis. HighlightsO_LIMarmosets exhibited a transient weight loss during placental development in 22% of pregnancies. C_LIO_LIThere was individual variation in how often the transient weight loss occurred in marmosets. C_LIO_LIFood intake and activity in C57BL/6 mice are altered during the corresponding gestational phase. C_LIO_LIMultiple morning sickness-like phenomena were observed in non-human mammals. C_LI

physiology↗

Wandering albatross exert high take-off effort in weak wind with low wave conditions

The relationship between the environment and marine animal small-scale behavior is not fully understood. This is largely due to the difficulty in obtaining environmental datasets with a high spatiotemporal precision. The problem is particularly pertinent in assessing the influence of environmental factors in rapid, high energy consuming behavior such as seabird take-off. To fill the gaps in the existing environmental datasets, we employed novel techniques using animal-borne sensors with motion records to estimate wind and ocean wave parameters and evaluated their influence on wandering albatross take-off patterns. Measurements revealed that wind speed and wave heights experienced by wandering albatrosses during take-off ranged from 0.7 [~] 15.4 m/s and 1.6 [~] 6.4 m, respectively. The four indices measured (flapping number, frequency, sea surface running speed, and duration) also varied with the environmental conditions (e.g., flapping number varied from 0 to over 20). Importantly, take-off was easier under higher wave conditions than under lower wave conditions at a constant wind speed, and take-off effort increased only when both wind and waves were gentle. Our data suggests that both ocean waves and winds play important roles for albatross take-off and advances our current understanding of albatross flight mechanisms. Impact statementWind and ocean wave conditions experienced by albatrosses were estimated using an animal-borne recorder and revealed that take-off was easier under higher wave conditions.

animal behavior and cognition↗