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The remote electrocardiograph (ECG) monitoring technique is a combination of microelectronics technology, artificial intelligence technology, modern communication technology and modern medical technology. The key technical points of remote ECG monitoring system includes data preprocessing, identification of feature point, analysis and diagnosis, and remote warning. By using remote ECG monitoring technique, doctors can cross the limitation of domain and implement ECG monitoring, early warning and relevant disposal measures for patients at anytime and anywhere. This new technique can achieve early prevention, early found and early treatment for patients with cardiovascular disease (CVD).
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Integrating visualization toolkit and the capability of interaction, bidirectional communication and graphics rendering which provided by HTML5, we explored and experimented on the feasibility of remote medical image reconstruction and interaction in pure Web. We prompted server-centric method which did not need to download the big medical data to local connections and avoided considering network transmission pressure and the three-dimensional (3D) rendering capability of client hardware. The method integrated remote medical image reconstruction and interaction into Web seamlessly, which was applicable to lower-end computers and mobile devices. Finally, we tested this method in the Internet and achieved real-time effects. This Web-based 3D reconstruction and interaction method, which crosses over internet terminals and performance limited devices, may be useful for remote medical assistant.
Subject(s)
Diagnostic Imaging , Image Processing, Computer-Assisted , Imaging, Three-Dimensional , Internet , SoftwareABSTRACT
Objective:To learn and master the application of microwave technology in medical electron linear accelerator tube. Methods: Introduced the structure and principle of medical electron linear accelerator, traveling wave accelerating tube and standing wave accelerating tube;compared the structure, stable system and transport system of traveling wave accelerating tube standing wave accelerating tube. Results:standing wave accelerating cube have higher efficiency, shorter accelerating cube and electron gun, but have higher demand for pulse modulator, automatic frequency stabilization, the deflection system and microwave transmission systems. Traveling wave accelerating cube have lower efficiency, but have better energy spectrum and easy to adjust. Conclusion:Both traveling wave accelerating cube and standing wave accelerating cube were used in medical electron linear accelerator nowadays, it's easy to master medical electron accelerator after knowing the application of microwave in medical electron linear accelerator.
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This paper presents the components and the principles of an internal electrohydraulic lithotripter.Cooperating with the cystoscope,the lithotripter introduces the high-pressure discharge pulse into the bladder through the microelectrode.Then the little,easily-moved stone is targeted,and the re-discharge of the lithotripter 5mm away from the stone results in the shock wave to perform lithotritization.
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The components and the principles of laser treatment instrument of YAG dual wavelength in intelligent Q switch are introduced in this paper.By the application of microprocessor technology,this instrument autocontrols the energy of pulse laser and pulse frequency,then the laser of specific wavelength is introduced to the skin by the light guide arm for beauty and related treatment.
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Medical treatment facility(MTF) is the equipment of diagnosis and therapy of patients in medical service.The quality of MTF is directly related to the life safety of people.So it is very important to recognize and discuss the maintainability using overall quality standpoint.This standpoint is set out to satisfy the need of patients,reflect the need ability characteristics of MTF or medical treatment service.To guarantee the quality not only designs and produces quality but also is the very important means to confirm the quality.
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According to the operational principle of original switch K2 for the console of orthopantomography X-ray unit, the common switch K1 and some accessory circuits are used to improve K2.
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21 albino rats were used. The origin of the noradrenergic (NA) fibers in the septum was studied with a simultaneously combined retrograde fluorescent tracing and histofluorescence method. The results revealed that the NA neurons projecting to the septum were in A_1, A_2 and A_6 groups. The projections of A_1 were bilateral, But A_2 and A_6 projected dominantly to the ipsilateral septum, with a few to the contralateral. Retrograde labeled NA cells were localized in the rostrodorsal part of A_6 group, and scattered over the whole rostrocaudal length of A_(1,2) groups. No labeling was seen in A_4 and A_7 groups. In five of the animals, retrograde labeled NA cells were occasionally observed in A_5 group. In addition, some scattered labeled non-NA neurons were seen in the raphe and the ventrolateral reticular formation of the rostral medulla.
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The distribution and morphological characteristics of CA-containing cell bodies of diencephalon in 7-9monthold fetuses were studied by means of Faglu histofluoresccnce method. Although the general distribution of CA cell bodies in the human diencephalon observed in the present study is similar to that in other mammals, there are some significant differences. A great number of CA neurons occur within the lateroventral hypothalamic zone. There are more numerous larger CA neurons distributed outside the periventricular gray in human diencephalon.
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The distribution and morphological characteristics of catecholamine(CA)-containing neurons in the human brain stem of 7-9-month-old fetuses were studied by using Faglu histofluorescence method. The distribution of the main CA groups is consistent with the data provided by the literature concerning human infant and adult except for the presence of numerous small premature-looking fluorescent cells in the fetal area postrema which is lacking in the human infant and adult. As compared with most studies of other animals, the CA neurons of the dorsocaudal extension of the locus coeruleus in human appear to be more extensive and do not close to the ependyma of the fourth ventricle. Moreover, the CA neuronal population in human midbrain become more hypertrophic and appear to be more complexly organized in comparison with those in animals.
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Injections of propidium iedide (PI) into the lateral cerebral ventricle (LV) ofthe rat resulted in a prominent abnormality characterized by tremor,ataxia,andnystagmus.The intensity of PI fluorescence in the parenchyma of the brain fadedgradually away from the injection site and ventricles to the surfaces of the brain. In the forebrain it was seen that PI fluorescence reached the most lateral part ofthe ipsilateral caudate putamen nucleus.A constant neuronal labeling was observedin the septohippocampal nuclei,the A8-9-10 dopaminergic cell groups of themidbrain,the dorsal raphe nucleus,the median raphe nucleus,neurons within anddorsal to the medial lemniscus of the caudal midbrain,and Furkinje cells of thecerebellum.This neuronal labeling was bilateral.No distinct labeling was seen inother areas of the brain.Combined with Faglu histofluorescence,it was found thatalmost all of the dopaminergic neurons in the midbrain exhibited PI fluorescence.No labeled non-dopaminergic neuron was seen in A8-9-10.With a transection ofthe unilateral medial forebrain bundle,a prominent accumulation of PI fluorescencewas seen within the distal segments of catecholaminergic fibers near the transection,but no accumulation of PI was seen in the proximal segments.With LV injectionof Evans blue(EB)or DAPI or ethidium bromide,animals did not exhibit anyvisible abnormality.In animals with LV injection of EB or DAPI,although somelabeled cells were seen in the distant areas of the brain,their distribution wasdistinctly different from that of PI labeling.The above results indicate that besidesconfirming the LV injection of PI results in a prominent abnormality and PI isselectively uptaken by Purkinje cells,we have found that:a)PI is able to enter theparenchyma from the cerebrospinal fluid and diffuse widely in the brain;b)LVinjection of PI results in a selective labeling in certain specific areas of the brain,and those selectively labeled cells in A8-9-10 all are dopaminergic neurons;c)these dopaminergi(?) cells are labeled through axonal uptake and retrograde transportof PI.