3/11/2023 0 Comments Uncaged photolinker![]() ![]() Second, reversible nerve blockage is produced by cooling the nerve below physiological temperature to a temperature in which reversible nerve blockage is achieved, for example from 15° C. for a duration that leads to reversible nerve blockage as opposed to nerve damage. The method comprises first heating a nerve above physiological temperature (e.g., 37° C. Provided herein are methods of nerve blockage, for example for treatment of obesity, heart failure, cardiovascular disease, muscle spasms, chronic pain, or urinary retention in a patient. University of Pittsburgh-Of the Commonwealth System of Higher Education (Pittsburgh, Pennsylvania) Image Data Processing or Generation, in Generalĭepartment of Health and Human Services (HHS) National Institutes of Health (NIH) National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK) Recognition of Data Presentation of Data Record Carriers Handling Record Carriers Measuring Electric Variables Measuring Magnetic Variables Louis, Missouri)Īmong the various aspects of the present disclosure is the provision of methods and systems for segmenting images and expediting a contouring process for MRI-guided adaptive radiotherapy (MR-IGART) comprising applying a convolutional neural network (CNN), wherein the CNN accurately segments organs (e.g., the liver, kidneys, stomach, bowel, or duodenum) in 3D MR images.Ī61B 5/055 (20130101) Original (OR) Class The reflection profile can be associated with a model of tissue layers in the body between the UWB sensor and lung tissue.Ī61B 5/0205 (20130101) Original (OR) Classĭepartment of Health and Human Services (HHS) Agency for Healthcare Research and Quality (AHRQ) The UWB sensor can include an array of transmit (TX) and receive (RX) antenna pairs positioned on a body of a user. The reflection coefficients can be determined from reflection profiles based upon the reflected backscatter data for that sequence of UWB pulses and the corresponding calibration measurement. In one example, a method for determining a bodily characteristic includes collecting sets of reflected backscatter data for a sequence of ultra-wideband (UWB) pulses transmitted via an UWB sensor, and a corresponding calibration measurement from a calibration channel determining reflection coefficients for each tissue interface based on the sets of reflected backscatter data and determining a fluid level content of the lung tissue based upon the reflection coefficients. Various examples related to mobile bodily monitoring using ultra-wideband radar are provided. Ohio State Innovation Foundation (Columbus, Ohio)Įmre ERTIN (Columbus, Ohio) William T. ABRAHAM (Columbus, Ohio) Department of Health and Human Services (HHS) National Institutes of Health (NIH) National Institute of Biomedical Imaging and Bioengineering (NIBIB) National Science Foundation (NSF) Directorate for Computer and Information Science and Engineering (CISE) Division of Information and Intelligent Systems (IIS) ![]()
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