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UPDATE IN INTERVENTIONAL DIGITALIZED INFRA-RED THERMAL IMAGING IN PAIN MANAGEMENT

机译:止痛性介入数字化红外线热成像中的更新

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Significant new technological advances in biomedical engineering in detector material, staring focal plane array (S.F.A) sensors, integrated circuits, and high performance photon detectors such as Mercury-Cadmium-Telluride (M.C.T.) operate between 70K to 120K temperature ranges enable the clinician in medicine to "see more". With Third Generation technology coupled with concomitant advances in biological medicine in gene, receptor specific, and enzymatic molecular medicines, interventional quantitative thermography enables a better understanding of interactive thermal patterns recognition in neuropathic, myopathic, angiopathic and scleropathic syndromes as aides in diagnosis and monitoring treatment in Pain Management. As a result of these advances, we can now demonstrate two types of Interventional Computerized Thermal Imaging: (1) chemically mediated-receptor specific; and (2) Peripheral neuropathic localization of the somato-autonomic Thermatome. This study will focus on new medical applications of these techniques, and review the clinical physiology mediated by interventionally monitored Digitalized Infra-red Thermal Imaging (D.I.T.I.).
机译:探测器材料中生物医学工程的重要新技术进步,凝视焦平面阵列(SFA)传感器,集成电路和高性能光子探测器,如汞 - 碲化镉(MCT)在70K至120K温度范围内,使临床医学能够“看到更多”。利用第三代技术与基因,受体特异性和酶药物的生物医学伴随的第三代技术,介入定量热成像使得能够更好地理解神经疗法,肌病,血管病和硬化综合征中的交互式热模式,因为诊断和监测治疗在痛苦管理中。由于这些进步,我们现在可以展示两种类型的介入计算机化热成像:(1)化学介导的受体特异性; (2)躯体神经治疗的外周神经化定位。本研究将专注于这些技术的新医学应用,并审查介入监测的数字化红外热成像(D.I.T.I.)介导的临床生理学。

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