17³Ô¹ÏÔÚÏß

All imagesSmartphone imagesVideos

Intracellular Stock Videos

2TYDT2P–Effects of Ribosomes and Intracellular Solutes on Activities
0:12
2TYGP5A–Intracellular dynamics of hippocampal place cells during virtual navigation.
0:08
2W24390–Intracellular dynamics of hippocampal place cells during virtual navigation.
0:08
2TYHRF0–Robotic Intracellular Manipulation. 3D Navigation and Measurement Inside a Single Cell
0:21
2W1NX8P–Robotic Intracellular Manipulation. 3D Navigation and Measurement Inside a Single Cell
0:23
2W1XYCW–Robotic Intracellular Manipulation. 3D Navigation and Measurement Inside a Single Cell
0:21
2W1W0P4–Robotic Intracellular Manipulation. 3D Navigation and Measurement Inside a Single Cell
0:08
2TJX5D8–Cardiac Fat. There are 3 major fat depots around the heart: pericardial fat, epicardial fat and intracellular myocardial fat .
0:17
2TNJNBR–Cardiac Fat. There are 3 major fat depots around the heart: pericardial fat, epicardial fat and intracellular myocardial fat .
0:14
2W793T1–Adenosine triphosphate molecular structure, ATP is intracellular energy transfer. C10H16N5O13P3. 3D render. Seamless loop. Chemical structure model: Ball and Stick.
0:15
2TPCC6P–Ligand, cell membrane, nuclear membrane, intracellular receptor DNA, drugs targeting receptors and DNA transcription in the cell nucleus, 2d animation, video
0:09
2W765DC–Adenosine triphosphate molecular structure, ATP is intracellular energy transfer. C10H16N5O13P3. 3D render. Seamless loop. Chemical structure model: Ball and Stick. White background
0:15
2TKMT8C–enzyme linked receptor, ligand, ADP, ATP, cell membrane, Enzyme-linked receptors, cell surface proteins that activate intracellular pathways upon ligand binding. 2d animation
0:11
2W4E602–Adenosine triphosphate molecular structure, ATP is intracellular energy transfer. C10H16N5O13P3. 3D render. Seamless loop. Chemical structure model: Ball and Stick. RGB + Alpha (Transparent) channel
0:30
2TPD71A–enzyme linked receptor, ligand, ADP, ATP, cell membrane, Enzyme-linked receptors, cell surface proteins that activate intracellular pathways upon ligand binding. 2d animation
0:30
3CBFW15–Cytoskeleton animation. 3d animation. concept.
0:10
2W051AY–Using ATP, the cell transports sodium Potassium ions to exterior
0:06
2TYFPK2–3D Medical Animation of Nervous system. Potassiumions in the neuron
0:07
2W27JH1–3D Medical Animation of Nervous system. Potassiumions in the neuron
0:12
3DK0KHF–Animation illustrating plant cell structure, highlighting endoplasmic reticulum against a vibrant green background
0:14
2TMDP3R–Glucose transformation process
0:14
2TMT0AC–Chlamydia word made of wooden blocks with stethoscope. Medical and healthcare concepts
0:08
2TR54N4–Glucose transport process
0:14
2TGB0RK–Structure of the human ether-a-go-go related potassium channel. Animated 3D cartoon model and Gausian surface models, putative membrane shown, PDB 5va1, black background
0:19
2TK3W49–Glucose transport process
0:11
2W6E27C–Cross-section view of Mitochondria, 3d rendering.
0:10
2W1NAF3–Insulin molecules in Brownian motion
0:13
2W7E6XH–Cell Membrane and Molecules, 3d rendering.
0:11
3D7FK85–medical supplement visualization, health science display showcasing cellular regeneration processes, laboratorythemed illustration emphasizing metabolic functions and nutritional strategies
0:20
3DAF2ME–scientific presentation featuring molecular interactions on teal grid background, educational animation demonstrating receptor ligand interactions and signaling pathways in biochemistry
0:15
2W775WJ–Cell Membrane and Molecules, 3d rendering.
0:09
3CBFWHG–Interior visualization of an eukaryotic cell with cutaway view of nucleus.
0:14
3CKRD5G–Animation illustrating plant cell structure with focus on ribosomes, highlighting organelles and cellular components in a clear, educational style
0:21
2XJ2GA5–Cell membrane structure background, 3d rendering.
0:10
3E6W67W–Neuron cell with pink light inside
0:06
2XJ2G8T–Cell membrane structure background, 3d rendering.
0:10
2TJR1J0–Structure of E. coli hydrogenase-1 in complex with cytochrome b. Animated 3D cartoon and Gaussian surface models, entity id color scheme, putative membrane is shown, PDB 4gd3, black background
0:36
3CBFW5B–Cross-section of rabies virus, detailed microscopic animation
0:15
3CBFW4E–Detailed microscopic visualization of macrophage phagocytosis.
0:31
2XJ2G98–Cell membrane structure background, 3d rendering.
0:10
2XJ2GAR–Cell membrane structure background, 3d rendering.
0:10
2W4YJDG–Streaming of cytoplasm in myxomycete plasmodium - model of logic network and artificial intelligence
0:10
2W563XR–Streaming of cytoplasm in myxomycete plasmodium - model of logic network and artificial intelligence
0:30
2XJ2GCC–Cell membrane structure background, 3d rendering.
0:10
2W4REBD–Streaming of cytoplasm in myxomycete plasmodium - model of logic network and artificial intelligence
0:20
2W2B64K–Streaming of cytoplasm in myxomycete plasmodium - model of logic network and artificial intelligence
0:10
2W2F0XE–Streaming of cytoplasm in myxomycete plasmodium - model of logic network and artificial intelligence
0:20
2YD7Y5G–Amoeba proteus contains several organelles, including the nucleus (controls cell functions), contractile vacuole (regulates water balance), food vacuoles (digestion), pseudopodia (movement and feeding), and cytoplasm.
0:30
3CBFW18–Several mitochondria moving inside their environment.
0:10
2W55F7H–Streaming of cytoplasm in myxomycete plasmodium - model of logic network and artificial intelligence
0:24
2TJRC30–Cryo-EM structure of a respiratory membrane-bound hydrogenase from Pyrococcus furiosus. Animated 3D cartoon and Gaussian surface models, entity id color scheme, putative membrane is shown, PDB 5cfw
0:36
2SC47C5–Animation depicting stages of atherosclerosis development
0:31
2W6FJCD–Langerhans cells populate the epidermis from the early developmental stage as a dense network of immune system sentinels.
0:06
2TNWYHX–Mitochondria animation, cellular organelles, produce energy, Cell energy and Cellular respiration, DNA, 3D rendering animation
0:30
3E0895N–Cell cross section with membrane layers, organelles and internal compartments on transparent background for biology and medical use.
0:15
2W0PX2P–Langerhans cells populate the epidermis from the early developmental stage as a dense network of immune system sentinels.
0:06
3CBFW0G–Several mitochondria moving inside their environment.
0:10
2TK88MW–Mitochondria animation, cellular organelles, produce energy, Cell energy and Cellular respiration, DNA, 3D rendering animation
0:30
2TK42W0–Animated Lymphocyte type Leukocyte cell, white blood cells, 3d render
0:10
2X917PT–3d animation of assembly or formation phospholipids into bilayer structure
0:16
2W1PPHD–Structure of an antibody molecule determined by X-Ray cristallography. PDB source 1igt
0:20
3CMEW3M–Animation illustrating animal cell anatomy with labeled organelles, vibrant colors, and smooth transitions on a green background
0:34
3D94AMJ–Animation illustrating animal cell anatomy with focus on mitochondrion, highlighting cellular components and their arrangement
0:20
3CJDFEG–Animation illustrating plant cell anatomy with a focus on ribosomes, highlighting cellular components and their interactions
0:20
3CRYFB7–Illustrated animation highlighting the Golgi apparatus within an animal cell, showcasing its structure and function in cellular biology
0:20
3CKHNDM–Animation illustrating animal cell structure with focus on centrioles, highlighting organelles in a vibrant, educational style
0:20
3CK5KXT–Animated rotation of a protein cell model
0:16
3D3GEWH–Illustration of an animal cell highlighting the Golgi apparatus, showing organelle development and structure in vibrant colors
0:20
3CMEW6C–Animation illustrating animal cell anatomy, focusing on the endoplasmic reticulum with dynamic transitions and vibrant colors
0:20
3CC4KT2–Illustration of atherosclerosis stages in an artery
0:37
3CMEWFM–Animation illustrating animal cell anatomy, focusing on centrioles with vibrant colors and smooth transitions over 20 seconds
0:20
3DATDW1–Colorful animation illustrating animal cell structure with focus on lysosome. Smooth transitions highlight organelles and cellular components
0:20
3DA8662–Animation illustrating animal cell structure with focus on ribosomes, featuring vibrant colors and smooth transitions
0:20
3D1MEJE–Illustrated animation of plant cell structure highlighting cytoplasm movement and organelles on a vibrant green background
0:22
3CWE119–Animation illustrating plant cell anatomy, focusing on endoplasmic reticulum with vibrant colors and smooth transitions
0:22
3CW26F9–Animation illustrating animal cell anatomy, highlighting organelles and nucleus with vibrant colors and smooth transitions
0:20
3CRYERX–Animation illustrating plant cell anatomy with focus on endoplasmic reticulum, featuring detailed organelle transitions and vibrant colors
0:14
3CMP8KB–Animation illustrating animal cell anatomy, focusing on ribosomes with vibrant colors and smooth transitions
0:20
3D02CHA–Animation highlights the endoplasmic reticulum within an animal cell, showcasing its structure and function against a green background
0:20
3CKHN9E–Animation illustrating animal cell anatomy, focusing on the endoplasmic reticulum with vibrant colors and smooth transitions
0:20
3DK0K80–Animation illustrating animal cell anatomy, focusing on endoplasmic reticulum with vibrant colors and smooth transitions
0:20
3D3GBPF–Illustrated animation highlighting the Golgi apparatus within an animal cell, featuring vibrant colors and smooth transitions
0:20
3CRYER1–Animation illustrating plant cell structure, highlighting organelles with labels and dynamic transitions on a black background
0:19
3CDCBFH–Animation highlights plant cell structure focusing on the Golgi apparatus with vibrant colors and smooth transitions
0:22
3D0X396–Colorful animation illustrating the structure and function of the Golgi apparatus within an animal cell on a black background
0:20
3DK2290–Animation illustrating animal cell anatomy with focus on mitochondrion, highlighting cellular components and dynamic transitions
0:20
3DEG8KF–Detailed animation illustrating animal cell structure and lysosome function with vibrant colors and smooth transitions
0:20
3CGEJRE–Animation illustrating plant cell structure and organelle functions with labeled components and dynamic transitions
0:19
2YHCTN8–The endoplasmic reticulum (ER) is a cell organelle involved in protein and lipid synthesis, comprising rough and smooth types.
0:32
2YKGKPD–The cell membrane protects the cell, controls substance movement, and supports cell communication.
0:41
3D6THEJ–Animation illustrating plant cell structure with focus on vacuole and crystal formations, highlighting cellular components and dynamic transitions
0:22
2YKGKTC–The cell membrane regulates the movement of substances in and out of the cell, maintaining homeostasis.
0:41
3DATDX0–Animation illustrating animal cell structure, highlighting the vacuole. Features vibrant colors and smooth transitions over 20 seconds
0:20
2YKGKP9–The Golgi apparatus modifies, sorts, and packages proteins and lipids for transport within or outside the cell.
0:12

Search Results for Intracellular Stock Videos (94)