要素 发表于 2025-3-23 12:37:18
Michael Meadows,Dave Cliff18 3. Immobilized Enzyme Systems . 19 3.1. Methods of Immobilization. 19 3.2. Characteristics of Immobilized Enzymes 23 3.3. Analytical Applications with Ion-Selective Electrodes 23 4. Enzyme Electrodes 31 4.1. Urea Electrodes 35 4.2. Amygdalin Electrodes 39 4.3. Glucose Electrodes . 40 4.4. Penicillin Electr978-1-4684-3778-2978-1-4684-3776-8Odyssey 发表于 2025-3-23 14:59:59
Lorenzo Pucci,Pietro Gravino,Vito D. P. Servedio18 3. Immobilized Enzyme Systems . 19 3.1. Methods of Immobilization. 19 3.2. Characteristics of Immobilized Enzymes 23 3.3. Analytical Applications with Ion-Selective Electrodes 23 4. Enzyme Electrodes 31 4.1. Urea Electrodes 35 4.2. Amygdalin Electrodes 39 4.3. Glucose Electrodes . 40 4.4. Penicillin Electr978-1-4684-3778-2978-1-4684-3776-8暂停,间歇 发表于 2025-3-23 20:26:42
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Panagiotis Pantazopoulos,Merkourios Karaliopoulos,Ioannis Stavrakakisonly one point in time. Undoubtedly piercing a cell with a microelectrode can alter its functional state. But, as has been debated in neuro- and electrophysiology, if the microelectrodes are sufficiently fine and the area entered small with respect to the total cell, then the injury should be negligAcetabulum 发表于 2025-3-24 09:36:39
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Luis Enrique Cortés-Berrueco,Carlos Gershenson,Christopher R. Stephensonly one point in time. Undoubtedly piercing a cell with a microelectrode can alter its functional state. But, as has been debated in neuro- and electrophysiology, if the microelectrodes are sufficiently fine and the area entered small with respect to the total cell, then the injury should be negligA精确的 发表于 2025-3-24 21:14:27
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Mohammed Bahria,Alexis Olivereau,Aymen Boudguigaonly one point in time. Undoubtedly piercing a cell with a microelectrode can alter its functional state. But, as has been debated in neuro- and electrophysiology, if the microelectrodes are sufficiently fine and the area entered small with respect to the total cell, then the injury should be neglig