Aktuális sajtó tartalmak és illusztrációs fotók

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RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RF
Nerve conduction study Electrophysiological studies for both LL lower limbs motor and sensory nerves shows, no evidence of proximal or distal entrapme-stock-foto
RM
Hind Limb of Frog - Femur of the Frog, ft, proximo.! ^ d, distnl orticuluting surfaces., s, shaft. B, Tibio-fibula, seen from below, p, proximal ; d, distal articulating surfaces ; t, tibial half of the bone separated by a groove from f the fibular half. C, The right ankle and foot of the Frog, seen from below. This figure is drawn to a smaller scale than A and B. a, astragalus ; c, calcaneum ; / — V, the five principal digits ; X, the minute accessory digit. from the book ' An introduction to the study of the comparative anatomy of animals ' by Bourne, Gilbert C. (Gilbert Charles), 1861-1933-stock-foto
RF
Neuron cell-stock-foto
RF
. Foot anatomy illustration, whit annotations-stock-foto
RF
The knee joint's ligaments include the anterior cruciate ligament (ACL), posterior cruciate ligament (PCL), medial and lateral collateral ligaments.-stock-foto
RF
The knee joint's ligaments include the anterior cruciate ligament (ACL), posterior cruciate ligament (PCL), medial and lateral collateral ligaments.-stock-foto
RF
Foot anatomy illustration, with annotations.-stock-foto
RM
A Gallic brooch found in France during the 1800's- Une broche gauloise trouvée en France dans les années 1800 -Eine gallische Brosche, die im 19. Jahrhundert in Frankreich gefunden wurde.-stock-foto
RF
Anatomical Illustration of Biceps Femoris Muscle.3d rendering-stock-foto
RF
Superficial and Deep Veins of Lower Limb.3d rendering-stock-foto
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Sciatic Nerve on Black Background.3d rendering-stock-foto
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Boundaries of Popliteal Fossa-stock-foto
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Right Fibula-Multiple Views-stock-foto
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Right Tibia-Multiple Views-stock-foto
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Anterior view of Right Fibula-stock-foto
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Posterior view of Right Tibia-stock-foto