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1.
J Exp Biol ; 222(Pt 20)2019 10 18.
Article in English | MEDLINE | ID: mdl-31558589

ABSTRACT

Manual grasping is widespread among tetrapods but is more prominent and dexterous in primates. Whether the selective pressures that drove the evolution of dexterous hand grasping involved the collection of fruit or predation on mobile insects remains an area of debate. One way to explore this question is to examine preferences for manual versus oral grasping of a moving object. Previous studies on strepsirrhines have shown a preference for oral grasping when grasping static food items and a preference for manual grasping when grasping mobile prey such as insects, but little is known about the factors at play. Using a controlled experiment with a simple and predictable motion of a food item, we tested and compared the grasping behaviours of 53 captive individuals belonging to 17 species of strepsirrhines while grasping swinging food items and static food items. The swinging motion increased the frequency of hand-use for all individuals. Our results provide evidence that the swinging motion of the food is a sufficient parameter to increase hand grasping in a wide variety of strepsirrhine primates. From an evolutionary perspective, this result gives some support to the idea that hand-grasping abilities evolved under selective pressure associated with the predation of food items in motion. Looking at a common grasping pattern across a large set of species, this study provides important insight into comparative approaches to understanding the evolution of the hand grasping of food in primates and potentially other tetrapod taxa.


Subject(s)
Biological Evolution , Food , Hand Strength/physiology , Primates/physiology , Animals , Databases as Topic , Female , Male , Models, Biological , Movement
2.
Mil Med ; 182(S1): 59-65, 2017 03.
Article in English | MEDLINE | ID: mdl-28291453

ABSTRACT

A novel vascular staple (C-staple) was developed that does not enter the vasculature lumen during anastomoses. The objective of this study was to demonstrate C-staple safety when used with a bovine xenograft and compare efficacy of the C-staple procedure with Anastoclip surgical clips or suturing when used with a bovine xenograft. Eight sheep had an acute comparison between suturing and C-staples using both common carotid arteries. Sixteen sheep had xenograft placement in the left carotid artery, eight with C-staples and eight with Anastoclips in a chronic study. Over 6 months, Doppler ultrasound interrogation of the common carotid arteries was performed. After 6 months, arteries were evaluated histopathologically. Cross-clamp and surgical times were longer in the C-staple group than the suture group, and xenograft implantation times were statistically longer with C-staples than with Anastoclips. After 6 months, C-staple biocompatibility was similar to Anastoclips. Patency and hemodynamics of the bovine xenograft were not statistically different between the two groups. C-staples performed as well as the Anastoclips except for implant times, likely due to delivery system differences. Histological findings and clinical outcomes were no different with the two devices. Further refinements of the C-staple delivery system are necessary before proceeding to clinical trials.


Subject(s)
Anastomosis, Surgical/methods , Sutures/standards , Time Factors , Vascular Closure Devices/standards , Animals , Carotid Arteries/surgery , Hemorrhage/prevention & control , Hemorrhage/therapy , Heterografts/physiopathology , Models, Animal , Sheep/injuries , Wound Healing
3.
Sci Rep ; 6: 37729, 2016 11 24.
Article in English | MEDLINE | ID: mdl-27883046

ABSTRACT

The origin and evolution of manual grasping remain poorly understood. The ability to cling requires important grasping abilities and is essential to survive in species where the young are carried in the fur. A previous study has suggested that this behaviour could be a pre-adaptation for the evolution of fine manipulative skills. In this study we tested the co-evolution between infant carrying in the fur and manual grasping abilities in the context of food manipulation. As strepsirrhines vary in the way infants are carried (mouth vs. fur), they are an excellent model to test this hypothesis. Data on food manipulation behaviour were collected for 21 species of strepsirrhines. Our results show that fur-carrying species exhibited significantly more frequent manual grasping of food items. This study clearly illustrates the potential novel insights that a behaviour (infant carrying) that has previously been largely ignored in the discussion of the evolution of primate manipulation can bring.


Subject(s)
Animals, Newborn/physiology , Behavior, Animal/physiology , Hand Strength/physiology , Strepsirhini/physiology , Adaptation, Physiological/physiology , Animals , Biological Evolution , Female , Male
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