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Arrow 1 shows the apoptotic body; arrow 2 indicates the autophagosome; and arrow 3 indicates the cytoplasmic vacuoles, typical markers of paraptosis.
Figure 2 Metal foreign body (arrow) as seen by ultrasound.
Fig. 2 High resolution AS-OCT showing a linear highly reflective structure with marked posterior shadowing suggesting a foreign body (arrow) retained in the iris.
Within the cytoplasm of the central PE cell is a degenerated compact whorled membranous body (arrow), another of which is also shown toward the right in the cytoplasm of an indeterminate cell (crossed arrow).
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a Diagram showing typical bilateral exudative choroidal detachment, with two convex rigid lines protruding into the vitreous, extending from the scleral spur near the ciliary body (arrows) to the level of the exit foramina of the vortex veins (arrowheads), at some distance from the papilla.
At this stage, the starch grains have disappeared and numerous tiny protein bodies (arrow) have accumulated within the embryo proper.
Open image in new window Fig. 10 Ventral block vertebra in 8 month old: Lateral radiograph of the spine demonstrates fused L2 and L3 vertebral bodies (arrow).
At this stage, the starch grains have disappeared, and a number of small protein bodies (arrow) can be seen within the embryo proper.
Sagittal CBCT-A reformatted image shows the presence of intra-articular loose bodies (arrow) Open image in new window Fig. 12 Pigmented villonodular synovitis of the elbow.
Osteolytic changes with free air space were observed within the vertebral body Fig. 3 MRI at the onset of paraplegia showed the destructions of the Th2 3 vertebral bodies (arrow) and the intervertebral disc accompanying epidural abscess (circled high intensity area) compressing the spinal cord at the level of Th2 3 Fig. 4 Laminectomy of Th2 3 was performed.
By electron microscopy (Figure 3g), the treatment of siRNA resulted in various abnormalities of primary cilia, e.g. disorganization of 9+0 microtubular structure of basal bodies (arrow head), bulging basal bodies (arrow), and stunted shaft projection (asterisk).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com