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laser/karščiavimas

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Puslapis 1 nuo 1175 rezultatus

Stereotactic interstitial laser-hyperthermia using Nd-YAG laser.

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Laser hyperthermia using Nd-YAG laser was studied experimentally and clinically to treat deep-seated brain tumors. Histological changes, temperature profile, and modification of the blood-brain barrier were studied using cat and rat brains. In a clinical study 5 patients with brain tumors were

Interstitial laser hyperthermia.

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Experimental studies have shown that once the appropriate laser parameters are defined, interstitial laser hyperthermia (ILH) can produce well-defined, predictable tissue necrosis in solid viscera which heal safely with little functional or structural sequelae. Preliminary clinical studies have

Interstitial laser hyperthermia.

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Interstitial laser hyperthermia.

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Liver resection and laser hyperthermia.

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Table 2 provides a comparison of these interstitial and in situ techniques, assessing several criteria and utilizing and expanding on an excellent review by Masters et al. The rapid advance of technology and cross-fertilization between groups using different interstitial techniques will lead to a

Interstitial laser hyperthermia in tumour therapy.

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The clinical applications of non-laser thermal techniques are limited by technical and practical problems. Experimentally, Interstitial Laser Hyperthermia (ILH) is a feasible technique for producing precise, well defined and predictable areas of tissue necrosis which heal safely in normal liver and

Laser-induced hyperthermia of ocular tumors.

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Experimental results for the optical distribution and temperature rise during laser irradiation of tumors are presented. The experimental conditions are chosen to simulate laser irradiation of ocular tumors. The tumor models are human retinoblastoma heterotransplanted in athymic mice, murine mammary

A new method for the treatment of fibromas: interstitial laser hyperthermia using the Nd:YAG laser. Preliminary study.

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Operative laparoscopy can replace hysterectomy in the treatment of submucous and subserosal uterine fibromyomas. Interstitial myomas are still treated using traditional methods. Using an Nd:YAG laser with a quartz fibre which diffuses the ray, we induced delayed necrosis of myoma secondary to the

Cardiac preconditioning with local laser-induced hyperthermia.

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BACKGROUND Whole body hyperthermia has been shown to be highly effective in preconditioning cardiac tissue against reperfusion injury. The current study was aimed to assess the ability of regional sublethal laser-induced hyperthermia to precondition cardiac tissue against ischemic-induced myocardial

Fevers in patients undergoing vaginal laser surgery.

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Three patients undergoing laser surgery of the vagina developed high fevers that later regressed, one of them without treatment. The possible causes and implications of these cases are discussed.

Biodegradable magnesium nanoparticle-enhanced laser hyperthermia therapy.

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BACKGROUND Recently, nanoparticles have been demonstrated to have tremendous merit in terms of improving the treatment specificity and thermal ablation effect on tumors. However, the potential toxicity and long-term side effects caused by the introduced nanoparticles and by expelling them out of the

Percutaneous interstitial laser hyperthermia in clinical use.

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Twelve patients were treated with laser-induced hyperthermia. Eight had liver metastases from breast cancer or colorectal cancer, and four were treated for a primary tumour, two in the liver, one in the biliary tract and one in the pancreas. The mean diameter of the metastases was 2.5 cm and of the

[Clinical application of the thermal effect of lasers. 1. Application of the Nd-YAG laser in inducing hyperthermia].

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[Future of medical lasers].

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Whatever the medical field of application of lasers, their future is linked to research and to the realization of systems of automatization which will allow the development of "smart lasers". It will be linked to the improvement of imaging techniques and of medical computers, as well as to the

Erbium laser in gynecology.

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The aim of this paper is to present a novel laser technology utilizing the erbium YAG laser for various minimally invasive, non-surgical procedures in gynecology. Non-ablative, thermal-only SMOOTH-mode erbium pulses are used to produce vaginal collagen hyperthermia, followed by collagen remodeling
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