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1

BRUNDTLAND, TERJE. "From medicine to natural philosophy: Francis Hauksbee's way to the air-pump." British Journal for the History of Science 41, no. 2 (2008): 209–40. http://dx.doi.org/10.1017/s000708740800085x.

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AbstractFrancis Hauksbee (1660–1713) is well known for his double-barrelled air-pump. However, the origin of this pump, and Hauksbee's background, are often described as a mystery. This text seeks to dispel the riddle. It is argued that Hauksbee's competence as an exceptional maker of air-pumps was developed between 1699 and 1703 as a result of his experiences with the construction, manufacturing and sale of cupping-glasses. His cupping utensils embodied a new design, where syringes were used to evacuate the glasses, instead of the traditional way by fire or mouth suction. These syringes, whic
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2

Derrick, J. L., A. M.-H. Ho, and A. M. W. Cho. "Consequences of Syringe Size Sensor Malfunction in a Modern Infusion Pump." Anaesthesia and Intensive Care 31, no. 1 (2003): 75–79. http://dx.doi.org/10.1177/0310057x0303100115.

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Prompted by an actual case of potentially life-threatening infusion pump malfunction, we investigated the effects of wire breakage(s) within the syringe size sensor circuit in a Graseby 3400 infusion pump.The circuit wires within the sensor were systematically broken.The syringe sizes recognised by the sabotaged circuit and the actual sizes of syringes inserted into the pump were compared.Thirty-eight per cent of the possible wire breakages resulted in a smaller syringe size being recognized, causing the infusion rate to be too fast, and 38% of the possible wire breakage resulted in a larger s
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3

Wadham, Paul. "Syringe Pump Design." Engineering in Medicine 15, no. 4 (1986): 171–74. http://dx.doi.org/10.1243/emed_jour_1986_015_048_02.

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With the evolution of special care baby, intensive care, and coronary care units over the last decade, there has developed a need for greater accuracy in the control of increasingly potent infusions. The design of bedside syringe pump infusers that administer the contents of a syringe to a patient at a constant and predetermined rate will be considered in terms of their ergonomics, control, and safety. Syringe pump design has evolved over the past few years from simple mechanised forms of syringe driving to very sophisticated and precisely-controlled drive systems capable of high volumetric ac
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4

M.S, Muhammadu Sathik Raja. "Smart Syringe Infusion Pump." International Journal of Innovative Research in Advanced Engineering 10, no. 07 (2023): 636–41. http://dx.doi.org/10.26562/ijirae.2023.v1007.34.

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Delivery of fluids such as nutrients and medications into a patient’s body in a controlled environment is one of the essential prerequisites of a treatment that requires precise flow control. In manual liquid drug delivery systems, fluctuations may occur while operating by a nurse or hospital staff. At present, syringe pumps are used worldwide for healthcare purpose as well as research purpose. Syringe pump is a small infusion pump used for controlled administration of small amounts of drugs or medications to a patient or for use in chemical, biomedical research, etc. With the advancement of c
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5

Dewa Pascal Ariyanto, Panji Setyo Nugroho, Della Astri Widayani, et al. "Developing a Low-Cost Syringe Pump as a Support System for Electrospinning." Jurnal Nasional Teknik Elektro dan Teknologi Informasi 13, no. 3 (2024): 203–11. http://dx.doi.org/10.22146/jnteti.v13i3.12415.

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Electrospinning is one of the techniques used to fabricate nanofibers. The syringe pump is one of the main parts of electrospinning, responsible for injecting the solution into the chamber with high precision. The syringe pump has a simple operating system, but it has a high price on the market. Its high price has been one of the obstacles for research groups in the fabrication of nanofibers. Hence, this research aimed to solve the problem of expensive syringe pumps by developing a low-cost syringe pump using affordable components. This research utilized methods from a literature study of syri
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Sitorus, Tenberry, Hotromasari Dabukke, Harold Situmorang, and Fitria Priyulida. "ANALISA PEMELIHARAAN KOREKTIF PADA SYRINGE PUMP." JURNAL MUTIARA ELEKTROMEDIK 6, no. 2 (2022): 46–50. http://dx.doi.org/10.51544/elektromedik.v6i2.3568.

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Research has been carried out on the analysis of corrective maintenance on Syringe pumps. Maintenance of medical equipment is very important, which is useful for extending the service life of the equipment and ensuring the performance of the equipment to function according to its specifications. Corrective maintenance is a maintenance activity that is repairing damaged equipment with or without replacement of spare parts. This maintenance is intended to restore the damaged equipment to a usable and operational condition. The purpose of the study was to determine the of the Syringe Pump mainten
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Laia, Awaluddin, and Yulizham Yulizham. "ANALISIS KALIBRASI SYRINGE PUMP." JURNAL MUTIARA ELEKTROMEDIK 6, no. 1 (2022): 25–32. http://dx.doi.org/10.51544/elektromedik.v6i1.3262.

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Sustainable health services need to be supported by equipment that is always in a ready-to-use condition and can be functioned properly. One of them is the pumpa syringe tool, through the provision of suitable equipment, preventive maintenance is needed including periodic maintenance and implementation of testing and calibration. The method used in this research is quantitative research with analytical descriptive method which aims to analyze the results of the syringe pump calibration using an infusion pump analyzer and also aims to determine the results of the data obtained after observing t
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8

Kurniawan, Erry Dwi, Alwin Adam, Muhammad Ichlasul Salik, and Paulus Lobo Gareso. "Programmable Syringe Pump for Selective Micro Droplet Deposition." Jurnal Elektronika dan Telekomunikasi 19, no. 2 (2019): 75. http://dx.doi.org/10.14203/jet.v19.75-82.

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Micro/nanopatterns with micro deposition techniques have been used in various applications such as flexible electronic devices, biosensing, and biological tissue engineering. For depositing a small size of droplets that can be controlled, structured and patterned precisely is a very important process for microfabrication. In this study, we developed a low cost and simple system for fabricating micro/nanostructure by a selective micro deposition process using a syringe pump. This method is an additive fabrication method where selective droplet materials are released through a needle of the syri
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9

Sathik Raja, Prof Muhammadu, Beautlinvinola D.G, and Reshma R. "IOT BASED SMART MULTILAYER SYRINGE PUMP FOR ICU PATIENTS." International Journal of Innovative Research in Advanced Engineering 9, no. 9 (2022): 379–82. http://dx.doi.org/10.26562/ijirae.2022.v0909.03.

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Controlled and Precise delivery of fluid is one of the essential demands in many fluid inflow applications like as micro fluids, Micro Electro Mechanical systems, micro-machining and in medicinal biological systems. Like deliveries are generally achieved using syringe pump which generally employs syringes driven by an electric motor. In this work a syringe pump is operated with ATMEGA 329P Chip and LCD keypad shield, which is more user friendly than a control with an ordinary micro controller.
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Ağır, İsmail. "Designing a Cost-Efficient Belt-Driven 3D-Printed Syringe Pump." Afyon Kocatepe University Journal of Sciences and Engineering 24, no. 3 (2024): 749–57. http://dx.doi.org/10.35414/akufemubid.1400218.

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In biotechnology, biomedicine, and bioengineering research, precise liquid transfer and control are essential. Laboratories depend on diverse pumps and fluid control systems, with syringe pumps emerging as a preferred option due to their compatibility with biological fluids. Due to the high cost and limited customization options in existing commercial syringe pumps, researchers have begun designing their own custom devices, utilizing the expanding 3D printing technology and open-source electronics. Nevertheless, 3D-printed pumps often integrate metal components such as lead screws and rods to
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11

Mulyono, Tri, Asnawati Asnawati, and Umarul Faruq. "Design of Multi Syringe Pump for Flow System Analysis." Jurnal ILMU DASAR 14, no. 1 (2013): 17. http://dx.doi.org/10.19184/jid.v14i1.477.

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The aims of this work were to research: design of the multi syringe pumps, volume consistency of ISAB and the correlation of the PWM to the flow rate of carrier. Pump speed was set by PWM. Controlling the pump speed and time were performed with a computer using Labview software. It was found that based on the time variation of time then the volume of ISAB has a consistency of the injected volume with Kv 0.25% to 2.53% and the rate of carrier based on multi syringe velocity have a good correlation with the regression value of 0.998 and the value of Kv 0.27% to 1.2%. Keywords : Multi syringe pum
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12

Falista M, Hafidz. "RANCANG BANGUN SYRINGE PUMP." Elektrika 9, no. 2 (2017): 13. http://dx.doi.org/10.26623/elektrika.v9i2.1094.

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<p> A syringe pump is a tool for inserting high-dose drug fluids given to patients. The accuracy and accuracy of the amount of fluid given to this device are quite high. The need for this tool in hospitals is very large, but in terms of the economy, the price of the equipment is still very expensive so it is not affordable for small hospitals. The purpose of making a syringe pump is to be able to meet the needs of the syringe pump in small hospitals so that it can save on budget expenses. Therefore a syringe pump is designed, designed using the Arduino Nano as a control system, display f
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13

Biswajit, Mallick, and Chandra Mohanta Harish. "Development of a Syringe Infusion Pump." Journal of Control System and its Recent Developments 6, no. 3 (2023): 19–32. https://doi.org/10.5281/zenodo.10401078.

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<em>The primary objective of this work is to develop an advanced syringe infusion pump that improves precision, safety, and convenience in medical fluid delivery systems. The proposed pump incorporates state-of-the-art technology to overcome the constraints of current models, offering accurate and dependable delivery of medications and fluids in healthcare environments. The work commences by conducting a thorough analysis of the existing syringe infusion pumps, aiming to identify their inherent strengths, weaknesses, and potential areas that can be enhanced. Following that, the design phase ut
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14

Sentosa, Vito, Riski Titian Ginting, Fadhillah Azmi, and Despaleri Despaleri Perangin-Angin. "High Precision 3D Printed Syringe Pump for Contact Angle Goniometer." JOURNAL OF INFORMATICS AND TELECOMMUNICATION ENGINEERING 5, no. 1 (2021): 209–15. http://dx.doi.org/10.31289/jite.v5i1.5321.

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Contact angle goniometer is a tool used to measure the contact angle of a surface which is usually coated with nanomaterial. Contact angle goniometer has an important part, that is syringe pump as a tool for dripping a number of liquids with high precision and accurate flowrate. The function of the syringe pump is to control amount and feedrate of liquid on a milliliter to microliter scale per minute using a simple microcontroller. In this study, this syringe pump used an arduino as a controller and a stepper motor as a syringe driver. Casing and the syringe pump mechanism were designed with
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15

Azizah, Wafiq Nur, Triana Rahmawati, and Syaifudin Syaifudin. "Accuracy of Infrared Photodiode Sensors at The Flowrate Measurement in Infusion Device Analyzer with 2 Channel TFT Display." Indonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics 5, no. 3 (2023): 165–74. http://dx.doi.org/10.35882/ijeeemi.v5i3.306.

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The use of infusion is crucial for patient healing. Infusion refers to a fluid that consists of drugs, nutrients, and hydration delivered continuously into the patient's bloodstream over a specific period. One of the types of infusion devices is the infusion pump and syringe pump. These devices play a vital role in accurately and precisely controlling the volume or flow rate of fluids. However, continuous usage of these devices can sometimes result in inaccurate measurements, which can affect their overall accuracy. The accuracy of these devices is crucial for proper dosage administration to p
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16

Nieman, M., A. L. Evans, and A. Shaw. "A syringe pump tester." Journal of Medical Engineering & Technology 10, no. 5 (1986): 255–58. http://dx.doi.org/10.3109/03091908609022917.

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17

Sherry, E. "Ohmeda 9000 syringe pump." Anaesthesia 46, no. 9 (1991): 788–89. http://dx.doi.org/10.1111/j.1365-2044.1991.tb09788.x.

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18

Bray, R. J. "SYRINGE PUMP SAFETY LOCK." Lancet 331, no. 8578 (1988): 188. http://dx.doi.org/10.1016/s0140-6736(88)92767-5.

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19

Voelker, Rebecca. "Programmable Syringe Pump Alert." JAMA 316, no. 13 (2016): 1350. http://dx.doi.org/10.1001/jama.2016.13805.

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20

Faria, Monica, Yi Liu, and Edward F. Leonard. "Particle Spallation in a Microfluidic Blood Processing Device: The Problem of Using Peristaltic Pumps and Silicon-based Microfilters." International Journal of Artificial Organs 40, no. 10 (2017): 589–93. http://dx.doi.org/10.5301/ijao.5000609.

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Peristaltic pumps rely on constant compression of elastomeric tubing from which particles may be shed, a phenomenon known as spallation. We studied spallated particles on microfluidic filtration devices with photolithographically prepared micron-level pore fields. Filtration of ultra-pure water through these pores was analyzed using either the usual peristaltic pump or a reciprocating pair of syringe pumps. Using syringe pumps, transmembrane pressure (TMP) values during filtration at 2.5 cm3/min revealed steady filtration for over 80 minutes at 2.3 mmHg. Using the peristaltic pump, TMP was nev
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21

Zahid, Aisha, Andrew Wignell, Dusan Raffaj, and Patrick Davies. "P57 Continuous drug delivery is significantly affected by relative height changes between patient and syringe driver." Archives of Disease in Childhood 105, no. 9 (2020): e36.1-e36. http://dx.doi.org/10.1136/archdischild-2020-nppg.65.

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AimsSyringe drivers are the principle method of giving continuous infusions of important drugs to patients. Many of these drugs are critical for the maintenance of normal physiology. Anecdotal evidence abounds of severe patient instability on movement of syringe drivers during infusion. Our objective was to define the variation in drug delivery seen in three different syringe drivers, with changes in relative height between the syringe driver and the end of the giving set.MethodsThree syringe drivers (Alaris CC (Becton Dickinson), Perfusor Space (B Braun), and Synamed μSP6000 (Arcomed)) were a
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22

Elli, Stefano, Elisa Mattiussi, Stefano Bambi, et al. "Changing the syringe pump: A challenging procedure in critically ill patients." Journal of Vascular Access 21, no. 6 (2020): 868–74. http://dx.doi.org/10.1177/1129729820909024.

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Introduction: In the literature, the change of a syringe pump is described as a dangerous situation, especially in the case of vasoactive drug administration. Methods: Different variables have been studied (central venous pressure, pump displacement in relation to the patient position, utilization of a stopcock, or a neutral displacement needle-free connector between the syringe and the infusion tubing) to understand their influence on medication administration in terms of backflow or bolus creation when changing the syringe. Results: We performed 576 measurements with different combinations.
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Park, Suk-Youl, and Ki Hyun Nam. "Sample delivery using viscous media, a syringe and a syringe pump for serial crystallography." Journal of Synchrotron Radiation 26, no. 5 (2019): 1815–19. http://dx.doi.org/10.1107/s160057751900897x.

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Sample delivery using injectors is widely used in serial crystallography (SX) and has significantly contributed to the determination of crystal structures at room temperature. However, sophisticated injector nozzle fabrication methods and sample delivery operations have made it difficult for ordinary users to access the SX research. Herein, a simple and easily accessible sample delivery method for SX experiments is introduced, that uses a viscous medium, commercially available syringe and syringe pump. The syringe containing the lysozyme crystals embedded in lipidic cubic phase (LCP) or polyac
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Pudji, Andjar Pudji, Anita Miftahul Maghfiroh, and Nuntachai Thongpance. "Design an Infusion Device Analyzer with Flow Rate Parameters using Photodiode Sensor." Indonesian Journal of electronics, electromedical engineering, and medical informatics 3, no. 2 (2021): 39–44. http://dx.doi.org/10.35882/ijeeemi.v3i2.1.

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Infusion devices are the basis for primary health care, that is to provide medicine, nutrition, and hydration to patients. One of the infusion devices is a syringe pump and an infusion pump. This device is very important to assist the volume and flow that enters the patient's body, especially in situations related to neonatology or cancer treatment. Therefore, a comparison tool is needed to see whether the equipment is used or not. The purpose of this research is to make an infusion device analyzer (IDA) design with a flow rate parameter. The contribution of this research is that the tool can
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Mazlan, A. M., M. R. Sapiee, and M. S. Yahaya. "The Concept of Single Use Piston Break Safety Syringe." Applied Mechanics and Materials 761 (May 2015): 646–50. http://dx.doi.org/10.4028/www.scientific.net/amm.761.646.

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A syringe is a simple piston pump consisting of a plunger that fits tightly in a tube. The plunger can be pulled and pushed along inside a cylindrical tube (the barrel), allowing the syringe to take in and expel a liquid or gas through an orifice at the open end of the tube. The open end of the syringe may be fitted with a hypodermic needle, a nozzle, or tubing to help direct the flow into and out of the barrel. Syringes are often used to administer injections, apply compounds such as glue or lubricant, and measure liquids. The reuse and abuse of syringe has led to cross-infection of diseases;
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Syaifudin, Syaifudin, and Triana Rahmawati. "Design Analysis of Portable 1 Channel Infusion Device Analyzer Using Sensor SKU 237545." Jurnal Teknokes 16, no. 4 (2023): 255–59. http://dx.doi.org/10.35882/teknokes.v16i4.637.

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An infusion pump is a tool used to inject a certain amount of fluid into the patient's body through the patient's veins continuously over a certain period of time. A syringe pump is a tool that functions to push the syringe rod so that it can produce a flow ranging from microliters to milliliters per minute periodically with high accuracy. Very often there are problems with blockages or occlusion when using infusion pumps and syringe pumps. The occlusion limit set is ≤20 PSI according to ECRI. The presence of occlusion in the infusion pump and syringe pump can be identified when there is an al
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Perdana, Mhd Rafli, and Siti Rahmah. "ANALISIS PEMELIHARAAN SYRINGE PUMP DI.LAB TERPADU UNIVERSITAS SARI MUTIARA INDONESIA." JURNAL MUTIARA ELEKTROMEDIK 5, no. 1 (2021): 1–6. http://dx.doi.org/10.51544/elektromedik.v5i1.3247.

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Medical devices are divices that are always in a ready to use condition and can function properly. This requires the Sari Mutiara University Integrated Laboratory to assist and medical equipment as effectively and efficiently as possible. This study aims to look at the syringe pump monitoring system in the USM-Indonesia Integrated Lab.Descriptive research method. Syringe pump tools and materials, questionnaire instruments used to conduct direct interviews with officers in the integrated laboratory, observation and documents.The results of this study indicate that all medical equipment includin
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Ichikawa, Akihiko, Tamio Tanikawa, Satoshi Akagi, and Kohtaro Ohba. "Automatic Cell Cutting by High-Precision Microfluidic Control." Journal of Robotics and Mechatronics 23, no. 1 (2011): 13–18. http://dx.doi.org/10.20965/jrm.2011.p0013.

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We have developed automated cell cutting by highprecision microfluidic control using a high-response and high-precision syringe pump. A microfluidic chip containing 2 orthogonal microchannels was used for cutting animal cells softened by cytochalasin and aspirated and fixed in 1 microchannel, then a high-velocity microchannel flow was generated from another channel to cut the cell. To control microchannel flow precisely, we made a syringe pump with a minimum flow of 0.35 × 10-3µl/min and response time of 10 ms. The syringe pump was connected to the microfluidic chip by a thin, hard Teflon tube
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Stawarz, Melissa, Cynthia Jackson, Lian Wang, and Joanne Ransom. "Human Milk Fat Loss Is Strongly Affected by Syringe Position During Tube Feeding in the NICU Population." Current Developments in Nutrition 4, Supplement_2 (2020): 1084. http://dx.doi.org/10.1093/cdn/nzaa054_156.

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Abstract Objectives Human milk is the recommended feeding for preterm infants. It is a dynamic, non-homogenized fluid. The most variable component is the fat content, which rapidly separates out when milk is allowed to sit. Fat from human milk is thought to adhere to the plastic syringe and tubing products used to administer tube feedings. The objective of this study was to identify best practices for tube feeding preterm infants to minimize nutrient loss from human milk during administration in the Neonatal Intensive Care Unit (NICU). Methods A study was conducted to investigate the effect of
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Gross, Bradley A., Ashutosh P. Jadhav, Tudor G. Jovin, and Brian Thomas Jankowitz. "Dump the pump: manual aspiration thrombectomy (MAT) with a syringe is technically effective, expeditious, and cost-efficient." Journal of NeuroInterventional Surgery 10, no. 4 (2017): 354–57. http://dx.doi.org/10.1136/neurintsurg-2017-013520.

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IntroductionSyringe aspiration for manual aspiration thrombectomy (MAT) is a cost- and time-efficient alternative to an aspiration pump with likely similar efficacy. It is counterintuitive to expect the pump to perform better than direct vacuum with a syringe, as the pump must deliver vacuum additionally through a canister and meters of tubing.ObjectiveTo present in vitro and clinical results of MAT with a syringe.MethodsAn in vitro analysis was performed comparing vacuum pressures generated by syringe aspiration and with pump aspiration. This was then complemented with prospective clinical da
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Astuti, Anisa Rahma, Syaifudin, Triana Rahmawati, and Khongdet Phasinam. "The Performance Analysis of the Infrared Photodiode Sensor to Infusion Set on Infusion Device Analyzer Machine." Journal of Electronics, Electromedical Engineering, and Medical Informatics 5, no. 1 (2023): 25–32. http://dx.doi.org/10.35882/jeeemi.v5i1.274.

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Infusion pumps and syringe pumps are devices used to administer liquid medicines to patients. The frequency of using the infusion pump and syringe pump in the long term will affect the accuracy of the tool. Accuracy is very important in dosing to patients in critical conditions who require intensive care to prevent fluid balance in the body. Therefore, periodic calibration of medical devices is required at least once a year. Calibration according to Permenkes No. 54 of 2015 is a calibration activity to determine the correctness of a tool. The purpose of this research is to make an Infusion Dev
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Anjani, Annisa Gallela, Presillia Grisviani Grisviani, Royan Royan, et al. "Application of IoT Using nodeMCU ESP8266 on the Syringe Pump Device to Increase Patient Safety." Indonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics 4, no. 1 (2022): 23–27. http://dx.doi.org/10.35882/ijeeemi.v4i1.4.

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Nowadays, health care has turned out to be more technology-oriented. Today's technology is demanded to be practical and easy to use. The number of mobile devices based on the Android operating system has increased significantly based on data. The open-source nature of android helps in programming applications easily according to user requirements. The syringe pump is a medical device that functions to enter the medicinal fluid into the patient's body at a specific dose and time automatically in mL/hour. The syringe pump is generally equipped with an alarm. Alarms have a vital function to provi
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Burch, Kelly J., and Nancy C. Powell. "Malfunction of syringe-pump system." American Journal of Health-System Pharmacy 47, no. 10 (1990): 2236. http://dx.doi.org/10.1093/ajhp/47.10.2236a.

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Wijnen, Bas, Emily J. Hunt, Gerald C. Anzalone, and Joshua M. Pearce. "Open-Source Syringe Pump Library." PLoS ONE 9, no. 9 (2014): e107216. http://dx.doi.org/10.1371/journal.pone.0107216.

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35

Zope, Pankaj H., and Shekhar R. Suralkar. "Design and Control of Electronic Syringe Pump using AVR Microcontroller." SAMRIDDHI : A Journal of Physical Sciences, Engineering and Technology 13, no. 02 (2021): 65–69. http://dx.doi.org/10.18090/samriddhi.v13i02.1.

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The infusion and retract rate of the electronic syringe injection pump is one of the major challenge in the designing and control of electrospinning system. The selective droplet materials of a small size with controlled structured and patterned is released through a needle of the syringe pump very important. This investigation focuses on control parameter like infusion and retract rate, flow rate, the droplet volume, and syringe size dimension. It is observed the infusion rate 1ml for 5.7sec to 7.11 sec, retract rate 1ml for 1600-2000 signals pulses of stepper motor, the droplet volume is 0.0
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Garrigue, Bruno, Yann Dehu, Fabrice Girault, et al. "Preparing Drugs for Infusion Via Syringe Pump: A Key Step to Ensure Homogeneous Concentration." Critical Care Nurse 36, no. 4 (2016): 36–44. http://dx.doi.org/10.4037/ccn2016756.

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Objective Preparation of drug solutions used with electronic syringe infusion pumps plays a crucial role in the delivery of an accurate drug concentration. Is there a correlation between drug concentrations during syringe pump infusion and preparation protocols? Method Norepinephrine, insulin, and sufentanil were prepared in 3 different ways: (1) the drug was taken from the vial, then the solvent was added followed by an air bubble, and mixing was performed by turning the syringe top-to-bottom in a 180° shaking movement 5 consecutive times; (2) the drug was taken from the vial, then the solven
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Shirzadfar, Hamidreza, Zahra Ahmadpour, and Maryam Soltani. "Design and manufacture a syringe pump for intelligent injection of specific doses of contrast medicine in medical imaging applications." International Journal of Biosensors & Bioelectronics 9, no. 1 (2024): 1–5. http://dx.doi.org/10.15406/ijbsbe.2024.09.00236.

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The construction of an Arduino Uno based syringe pump with the ability to measure the patient's body temperature during injection and detect the contrast material bubble has not been done so far. A syringe pump is a device that controls the volume and flow of milliliters to microliters for a certain period of time with very high precision, which gradually pushes the injection piston. This use of syringe pump for drug administration has been done for years. The working principle of this system consists of installing two steel rods to push the syringe piston at a set speed, which works through a
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Dona, Mery, Rizki Sri Haryanti, and Ratna Ningsih. "Pengaruh Penggunaan Media Video Tutorial Standar Operational Procedur (Sop) Dalam Link Quick Response Code (QR Code) Terhadap Kemampuan Mahasiswa Keperawatan Mengoperasikan Alat Syringe Pump." JKM : Jurnal Keperawatan Merdeka 4, no. 2 (2024): 105–10. https://doi.org/10.36086/jkm.v4i2.2583.

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Background: in order to accomplish learning objectives, SOP can be developed employing learning media that can transmit messages, students attention, interest, thoughts, and feelings during learning activities. This is made possible by the development of modern technology. The SOP for laboratory equipment utilization, which is already in place and was developed in accordance with the work instructions for each piece of equipment, serves as a guide for the execution of practical work in the nursing laboratory. Through a rapid response code-connected tutorial video of the SOP, the study aims to
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Froehler, Michael T. "Comparison of Vacuum Pressures and Forces Generated by Different Catheters and Pumps for Aspiration Thrombectomy in Acute Ischemic Stroke." Interventional Neurology 6, no. 3-4 (2017): 199–206. http://dx.doi.org/10.1159/000475478.

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Background: Direct aspiration thrombectomy is an increasingly utilized technique in endovascular stroke treatment that relies on vacuum and suction force to remove the clot. This report assesses the pressures and forces generated by different catheters and pumps. Methods: Vacuum pressures were measured using a vacuum gauge for several catheters (Stryker Catalyst6, Penumbra Ace 064, Medtronic Arc 061, and Penumbra 041) and pumps (Penumbra pump, 60-mL syringe, and the ASPIRE device). Suction forces were calculated based on pressure and catheter tip size (force = area × pressure). Vacuum pressure
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Hogerwaard, Manon, Muriël Stolk, Liselotte van Dijk, et al. "Implementation of barcode medication administration (BMCA) technology on infusion pumps in the operating rooms." BMJ Open Quality 12, no. 2 (2023): e002023. http://dx.doi.org/10.1136/bmjoq-2022-002023.

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BackgroundMedication administration errors (MAEs) are a major cause of morbidity and mortality. An updated barcode medication administration (BCMA) technology on infusion pumps is implemented in the operating rooms to automate double check at a syringe exchange.ObjectiveThe aim of this mixed-methods before-and-after study is to understand the medication administrating process and assess the compliance with double check before and after implementation.MethodsReported MAEs from 2019 to October 2021 were analysed and categorised to the three moments of medication administration: (1) bolus inducti
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Yasmin, Nishana, Sreelakshmi J, Dilruba P K, Punnya P, and Remya V. "Intelligent IoT Based Syringe Pump Controlling and Monitoring Drip Level, Temperature, And Pulse Rate Using A Smart Phone Application." Journal of IoT Security and Smart Technologies 1, no. 2 (2022): 22–28. http://dx.doi.org/10.46610/jisst.2022.v01i02.004.

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The syringe pump is a miniature infusion pump that’s utilized to give little volumes of liquid (with or without medicine) to an understanding or for chemical and biomedical research. This study describes how a smartphone application can be used to create micro-liter accuracy, lightweight, and remotely controlled syringe pump developed by the MIT app inventor using Intelligent Internet of Things (I2oT). The human health parameters such as heart rate, temperature, and drip level of the patient are measured using biomedical sensors and the corresponding readings and ECG graph are displayed using
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Choeron, Rachmat Chusnul, and Wahyu Dini Metrikayanto. "MENINGKATKAN KEMAMPUAN SKILL LAB SYRINGE PUMP MELALUI VIDEO TUTORIAL." Jurnal Ilmiah Keperawatan (Scientific Journal of Nursing) 8, no. 1 (2022): 99–104. http://dx.doi.org/10.33023/jikep.v8i1.927.

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Introduction. The syringe pump lab skill is one of the nurse's professional student competencies. However, many students have difficulty mastering these competencies, especially during the COVID-19 pandemic which makes it impossible to meet directly between students and lecturers. The purpose of this study was to prove the effect of online video tutorials on the ability of nursing profession students' lab skills. Methods. This study uses a one group pre-post test design. The population in this study were students of Nursing Professional Education, Faculty of Health Sciences, Tribhuwana Tunggad
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Putri, Lely Erica, Muhammad Ridha Mak'ruf, and Abd. Kholiq. "Syringe Pump With Nearly Empty Based Microcontroller Atmega328." Journal of Electronics, Electromedical Engineering, and Medical Informatics 1, no. 2 (2019): 25–30. http://dx.doi.org/10.35882/jeeemi.v1i2.5.

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Syringe Pump is a tool used to give liquid medicine or food liquid into the patient's body in a certain amount and within a certain period of time on a regular basis. The purpose of this study is to facilitate monitoring of fluid in the syringe so that the hose is not installed continuously when the liquid has run out. The circuit consists of an Atmega328 microcontroller, a motor driver, and an optocoupler sensor. Setting the syringe, volume and flowrate is done at the beginning. To insert liquid, the motor must be run by the way the settings have been done and press the start button. Tools ne
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Nur Hayati, Rini Dwi, Amalia Cemara Nur'aidha, and Dhananjaya YH Kumarajati. "Desain Syringe Pump Terprogram Menggunakan Arduino Uno." JURNAL CRANKSHAFT 8, no. 1 (2025): 81–88. https://doi.org/10.24176/cra.v8i1.14170.

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Infus merupakan alat medis yang banyak digunakan dalam bidang kesehatan, jumlah pemasangan infus di RS Indonesia hampir 70%. Saat ini kebanyakan alat infus pump belum menggunakan data volume infus dalam pengoperasiannya. Syringe Pump ini dibuat untuk membantu tenaga medis memasukkan cairan obat atau nutrisi ke dalam tubuh pasien secara teratur dengan mengatur kecepatan tetesan infus menggunakan data volume infus. Metode yang digunakan penulis pada penelitian ini ialah eksperimen dan pengujian berulang. Hasil penelitian menunjukkan kinerja yang cukup baik dalam hal akurasi dan stabilitas dengan
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Thompson, Mark, Bill Porter, Jane O’Byran, Henry E. Heffner, and Rickye S. Heffner. "A syringe-pump food-paste dispenser." Behavior Research Methods, Instruments, & Computers 22, no. 5 (1990): 449–50. http://dx.doi.org/10.3758/bf03203193.

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Kannan, S. "Potential hazard with syringe infusion pump." Anaesthesia 56, no. 9 (2001): 906–24. http://dx.doi.org/10.1046/j.1365-2044.2001.02230-13.x.

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Deng, Weimin, and Randolph M. Beaudry. "Overcoming Gas Sampling Problems: Analysis of Volatiles Using Capillary Column Needles." HortScience 31, no. 4 (1996): 643f—643. http://dx.doi.org/10.21273/hortsci.31.4.643f.

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Sampling factors that could affect gas chromatograph (GC) response for volatile analysis such as syringe pumping time, injection volume, needle length, temperature, and the type of volatile were investigated. Capillary GC column segments (steel and glass) were installed in gas-tight syringes and used as needles for volatile analysis. Standard stainless-steel needles were also used. Hexylacetate, ethyl-2-methylbutyrate, 6-methyl-5-hepten-2-one, and butanol standard were measured. The number of pumps required to maximize GC response for each needle–volatile combination was determined. Maximal GC
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Liu, Yunxi, Miao Guo, Jingmin Gao, and Yue Li. "Liquid Level Detection of Syringe Pump and Syringe Based on Machine Vision." Journal of Physics: Conference Series 1971, no. 1 (2021): 012002. http://dx.doi.org/10.1088/1742-6596/1971/1/012002.

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Nam, Ki Hyun. "Microcrystal Delivery Using a Syringe and Syringe Pump Method for Serial Crystallography." Analytica 6, no. 1 (2025): 5. https://doi.org/10.3390/analytica6010005.

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Serial crystallography (SX) determines the crystal structures of target molecules at room temperature with minimal radiation damage. During SX data collection, the stable delivery of many microcrystals to the X-ray interaction point is crucial for efficient sample consumption and effective beamtime usage. Most microcrystal delivery techniques for SX require sophisticated devices or specialized techniques, which can be challenging for data collection. This review introduces a straightforward method that delivers microcrystal samples in SX experiments using a commercially available syringe and s
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Diethei, Daniel, Franz Ertle, Tobias Grundgeiger, Christoph Mengelkamp, and Volker Held. "E-Learning vs. E-Learning with Hands-on: An Experimental Study to Improve Clinical Skills." Proceedings of the Human Factors and Ergonomics Society Annual Meeting 61, no. 1 (2017): 660. http://dx.doi.org/10.1177/1541931213601651.

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The training of healthcare staff is an important aspect in reducing adverse events related to medical devices. For medical devices, e-learning has been shown to be a successful method for knowledge acquisition (e.g., Grundgeiger et al, 2016). However, research addressed the learning of clinical skills to a lesser extent. Hands-on learning seems to be superior to conventional classroom learning when it comes to long-term-memory performance (e.g., Hearns, Miller, &amp; Nelson, 2010). This study examined whether using a syringe pump while learning improves the skills to operate the pump, subjecti
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