1.Development of ultrasound-based monitor of relative blood volume.
Shunzhong JIANG ; Xiao HU ; Zhongwei LIANG ; Jianghong FAN ; Wubing XIA ; Hongbo ZHOU ; Wei YI
Journal of Biomedical Engineering 2013;30(6):1204-1208
Assessing dry weight accurately is crucial in providing effective and safe haemodialysis. Biases towards dry weight assessment may bring a series of dialysis complications. This study introduces an online detection technique of relative blood volume (RBV) based on ultrasound, which analyzes the correlation between changes in blood density and sound speed. By measuring the attenuation in sound velocity, this method was employed to calculate RBV, and then to evaluate the dry weight of patients on dialysis. TDC-GP2 time measurement chip and MSP430 Single-chip Microcontroller (SCM) were used in the system to measure the ultrasonic travel time. In the clinical trials, RBV values range between 71.3% and 108.1%, showing consistent result with Fresenius 4008S blood volume monitor (BVM). This detection method possesses several advantages, such as real time, convenient, reproducible, non-invasive, and etc.
Blood Volume
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Body Weight
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Humans
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Monitoring, Physiologic
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Renal Dialysis
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Ultrasonics
2.A new radiopharmaceutical for bone imaging: experimental study of 99mTc-HEDTMP.
Shu HU ; Houfu DENG ; Shubin JIANG ; Shunzhong LUO ; Yong LEI
Journal of Biomedical Engineering 2010;27(4):811-815
The purpose of this study is to prepare 99mTc-HEDTMP [N-(2-hydroxyethyl) ethlenediamine-1,1,2-tri (methylene phosphonic acid), a new kind of bone seeking compound; to investigate its biological properties; and to explore the possibility of using it as a potential radiopharmaceutical for skeleton scintigraphy. HEDTMP was labeled with 99mTc by "pretinning" method, the radiochemical purity was 97.00% +/- 0.34%. 99mTc-HEDTMP was found to be stable in 5 hours in vitro with the radiochemical purity over 95% even after being diluted by physiological saline with the factor of dilution 100. The plane bone scanning of rabbits showed that 99mTc-HEDTMP was principally absorbed by skeletal system. Skull, spine and legs could be observed clearly, and were more legible than the images of 99mTc-MDP. Mice trial also indicated the high bone seeking of 99mTc-HEDTMP. The skeletal uptake was 11.92% ID/g, 13.19% ID/g, 10.14% ID/g, 10.04% ID/g, 7.71% ID/g separately at 30 minutes, 1 hour, 3 hours, 6 hours and 24 hours after the injection. Kidney seemed to be the major excretory organ. The clearance of blood was quick and the retaining amount in non-target organs was small. These results indicate that 99mTc-HEDTMP can be prepared easily, and its biological properties can be compared favorably with the commonly used bone imaging agent, and it is well worth further researching as a promising potential radiopharmaceutical in nuclide diagnosis for skeleton diseases.
Animals
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Bone and Bones
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diagnostic imaging
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metabolism
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Female
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Male
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Mice
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Organotechnetium Compounds
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chemical synthesis
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pharmacokinetics
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Rabbits
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Radiopharmaceuticals
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chemical synthesis
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pharmacokinetics
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Random Allocation
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Technetium Tc 99m Medronate
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pharmacokinetics
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Tissue Distribution
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Tomography, Emission-Computed, Single-Photon
3.Inlfuence Factors on Analyzing Transmission Time of Relative Blood Volume Based on Ultrasonic
Shunzhong JIANG ; Jian QIN ; Cailing WANG ; Yanbin LUO ; Wei YI
Chinese Journal of Medical Instrumentation 2017;41(1):5-8
Ultrasound-based measurement of relative blood volume can be used to assess patient's dry weight during hemodialysis. The results of relative blood volume were calculated from the ultrasonic transmission time measurement in the arteriol pot, and the accuracy of transmission time measurement is directly related to the reliability of the results of relative blood volume. There are various factors which influence the travel time, this article analyzed patients themselves, measuring device and the external factors, and advised appropriate counter measures.