Netter's Physiology Flash Cards by Adem Myers, Susan Mulroney PDF

By Adem Myers, Susan Mulroney

Netter’s body structure Flash playing cards, through Susan Mulroney and Adam Myers, is the right source for quick and enjoyable reinforcement of key physiologic wisdom! two hundred playing cards, superbly designed within the Netter culture, provide the fitting streamlined evaluate that can assist you research crucial proof and mathematical ideas simply, successfully, and at your individual price of research. playing cards function pictures and questions about the front-with solutions and brief observation at the reverse.
Uses top of the range Netter and Netter-style illustrations for greater visual
Presents concise, quick-access details on key body structure options for the suitable, transportable review.
Includes questions about the fronts of the playing cards to extra increase your studying adventure and equip you to evaluate your mastery of the material.
Features a matte end at the opposite aspect of playing cards that help you make notes.
Utilizes a structure both like minded to team or person learn.

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Extra resources for Netter's Physiology Flash Cards

Example text

3. Conduction velocity is increased by myelinization. With reduced capacitance and increased membrane resistance, the current travels through the interior of the axon, but not across the membrane in myelinated segments of the axon. The action potential jumps rapidly between the nodes of Ranvier (unmyelinated breaks in the myelin sheath at 1- to 2-mm intervals; compare parts A and B). 4. This process of conduction whereby the action potential jumps between nodes is known as saltatory conduction and allows rapid propagation of the action potential despite small axon diameter.

4. P [Kϩ ] ϩ PNaϩ [Naϩo ] ϩ PCI- [CIϪi ] RT In Kϩ ϩo Vm ϭ F PKϩ [K i ] ϩ PNaϩ [Naϩi ] ϩ PCI- [CIϪo ] where Vm is the resting membrane potential, PX is the membrane permeability to ion x, [X]i is the concentration of x inside the cell, [X]o is the concentration of x outside the cell, R is the ideal gas constant, T is absolute temperature, and F is Faraday’s number. Comment: Although cells contain many ions, this simplified G-H-K equation omits ions that are much less permeable to the cell membrane than K,ϩ Naϩ, and ClϪ because their contribution to resting membrane potential is usually negligible.

Extracellular fluid ؉ Membrane ؉ ؉ Di ffu sio ؉ A tr ؉ ctiv an spo ADP ؉ n sio ffu Di 2 ؉ ؉ ؊ ؊ ؊ ؉ 2 ؊ ؉ Protein؊ (anions) ؉ ؉ ATPase 3 Diffusion 3 Mitochondrion ATP e ؉ n 1 ؉ rt 1 Axoplasm ؊ ؊ ؊ ؊ ؊ ؊ ؊ Resting Membrane Potential 2-2 Resting Membrane Potential 1. Naϩ: Naϩ is constantly transported out of the cell by Naϩ/KϩATPase. 2. Kϩ: Kϩ is constantly transported into the cell by Naaϩ/Kϩ-ATPase. 3. ClϪ: ClϪ is not actively transported, and its concentrations reflect electrochemical equilibrium.

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