首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 0 毫秒
1.
2.
Local peripheral cooling (immerson of legs up to the knees into 12°C water) increased heart rate and blood pressure by 10–20% within the first 3–10 min of cooling. During further cooling heart rate remained elevated, while systolic and diastolic blood pressures decreased to the control value. Data on heart rate indicate a permanent activation of the sympathetic nervous system during local cooling.Skin temperatures (measured topically by thermosensors) decreased on some non-cooled areas of the body (fingers, palms and thighs) immediately after the start of local cooling. On the other hand, skin temperatures on chest and forehead were not influenced. During cooling skin temperatures on thighs remained low, but skin temperatures on fingers tended to increase. Changes in skin temperatures on non-cooled areas of the body indicate that a permanent and generalized activation of the sympathetic nervous system occurs during local cooling.Cold induced cycles of vasodilation (CIVD) were observed on fingers, palms and forearms during local cooling. Minute cycles in skin temperatures were observed on forehead, thighs and chest. Minute cycles coincided with those in the heart rate, indicating a permanent, generalized but discontinuous control of vasomotion by the sympathetic nervous system during local cooling.Infrared thermographic recordings from different body areas indicated that local peripheral cooling lowered skin temperatures in all areas of the body within 5 min. Distant areas of the body (extremities) and pectoral muscles showed greater hypothermia than abdominal areas and head. After 10 min of cooling average skin temperatures in all areas of the body returned to the original level and further fluctuated at approximately 10–15 min intervals.Data indicate that during local cooling skin blood flow in all areas of the body surface permanently fluctuates forming a mosaic of dynamic changes in skin temperatures. Since tympanic temperature increases, while skin temperature decreases immediately after the start of the local cooling, it appears that the initial vasoconstrictor response is being controlled independently of the central temperature input.  相似文献   

3.
4.
5.
6.
7.
The examination has shown that people who have many cold spots on the forearm possess high ventilation volume and breathing frequency and low value of oxygen utilization. These facts can evidence for the effect of cold skin receptors on the respiratory patterns. The skin temperature, at which the maximal cooling-induced changes of respiratory parameters are observed depends on the dynamic activity of cold skin thermoreceptors: the greater number of cold spots in the hand and forearm, the lesser cooling is necessary to cause the maximal increase of oxygen consumption and change of respiratory volume. The latter increased in the case of hand cooling and decreased in the case of the forearm cooling.  相似文献   

8.
9.
10.
11.
12.
Expedited healing of skin wounds is essential regardless of surgical specialty. Any skin deficiency will thwart this basic intent, and an alternative must be sought. The autogenous skin graft or local flap has long had a major role in satisfying this objective. Various forms of autogenous skin grafts are to be differentiated from local flaps, primarily on the basis of vascularization. The indications for either, their surgical anatomy, harvest techniques, and limitations, including pitfalls, need to be outlined. Skin grafts are the simplest means to restore skin integrity. If skin grafts are contraindicated, a flap may be essential. For this purpose, the "top ten" local "workhorse" flaps are briefly described in this article. Accompanying videos further elaborate the requisite surgical anatomy and harvest techniques. As a problem-solving specialty, it is incumbent upon us to first prevent, then be able to provide rapid, efficient, and efficacious healing of, any surgical wound, iatrogenic or otherwise. Skin grafts and local flaps are fundamental elements for achieving this goal when healing by primary or secondary intent is not possible. Whether one is a "reconstructive" or "aesthetic" plastic surgeon, knowledge of these basic tenets will ensure maintenance of competency.  相似文献   

13.
14.
15.
16.
This study investigated the relationship between the force applied to a finger and the differential threshold of the force. Further, it presented an improvement function for tactile perception in archers by adapting to circumstances in which enhanced tactile perception and finger dexterity are required to practice archery on a daily basis. For this purpose, a tactile display using an air jet was developed. The air was aimed at the center of the fingertip of the index finger. The inner diameter of the nozzle was set to 3 mm. In this study, a psychophysical experiment was conducted to obtain the differential threshold from two subject groups-an archery athlete group and a control group. A total of six levels of standard stimuli ranging from 2.0 gf to 7.0 gf was obtained. As a result, the differential threshold of the archery group was significantly higher than that of the control group. The Weber ratio of the archery group remained around 0.13 and that of control group was 0.10. The experiment also revealed that the differential threshold for archers exhibited less fluctuation between the trials and between the days, which implied that the tactile perception of archery athletes may be more stable than that of non-experienced subjects. This may be a plasticity property of tactile perception.  相似文献   

17.
18.
The development of somatosensation and affective touch acquires a central role throughout our lives, for several reasons. In adults, these functions are driven by different, neuroanatomically and functionally segregated fibres. To date, very little is known about the basic features of these fibres in childhood and this lack of knowledge is mirrored in the affective touch domain, where there are no studies on the main physiological features of the tactile processes linked to the stimulation of the hairy skin, namely the preferential site of affective touch. Thus, our study aims to analyze (1) tactile sensitivity and tactile acuity of children’s hairy forearms; (2) a possible dissociation between somatosensation and the affective touch; and (3) the presence/absence of the perception of affective touch already in childhood. To these aims, participants (160 children, aged 6 to 14?years), were administered with the Von Frey (tactile sensitivity) and the 2 Point Discrimination (tactile acuity) tests. Affective touch was measured following the classic protocol and pleasantness ratings were recorded. Our findings showed a correlation between age and somatosensation, suggesting a progressive reduction of sensitivity and acuity as age grows. Further, there was no overlap between affective touch and somatosensation, suggesting a behavioural segregation. Lastly, we found higher pleasantness ratings for Affective versus Neutral stimulations at all ages and an enhanced preference for Affective as age grows. We concluded that both somatosensation and affective touch are already present as two separate components of touch in childhood and change as a function of age.  相似文献   

19.
A method of local effect of focused ultrasound has been devised for blocking brain structures of an unrestrained experimental animal. The effect of reversible blocking of the visual tract following focused ultrasound was recorded.  相似文献   

20.
The ability of human subjects to detect -ionone was measuredover a range of concentrations and compared with that of GermanShepherd dogs measured previously under comparable conditions.The mean minimal concentration detected by humans was 4.0x109molecules / cm3 which compares with a mean minimal concentrationof 4.0x105 molecules / cm3 for the dogs. In general, dogs coulddetect -ionone in concentrations 1,000 to 10,000 times lowerthan could human subjects. Concentration-response curves forboth species are similar in form and show a double reversalin their upper ranges.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号