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In South Africa this pretty Lily is called Varkblom or Varklelie, Hog Flower or Hog Lily. That name derives from the propensity of Hogs to root for the tubers of our plant. Actually, I rather like that name. The wallowing mud of Pigs stands in fine contrast to the pure white of these flowers. I don't know whether pigs get rheumatism from all that wallowing; but the leaves of this Lily serve to alleviate its symptoms in human beings.

Zantedeschia is for Giovanni Zantedeschi (1773-1846), a friend and lively correspondent of well-known and versatile Kurt Sprengel (1766-1833), a physician and botanist. The latter published a series of books on the history of medicine, but is best remembered for his pioneering microscopic work on the tissues of plants.

Cada una de las nervaduras que componen a ese sagrado tejido es lo que te asemejan a mí, pues tu también sabes lo que es la dicha de poder sentir

Busco aquel descanso en el que uno puede regocijarse en medio de esa vida silvestre que protege y resguarda a cualquiera que sea un amante de la naturaleza

Existe algo que no vemos y que está en nosotros, y ese algo es tan sensible, tan lábil y propenso a sufrir tantas modificaciones, y es nuestro cuerpo el que se atreve a manifestar ese extraño fenómeno, que ni yo mismo podré decifrar

En ese día nuboso en donde pude capturar la esencia de todas esas formas de vida, medite por un segundo y me detuve a ver por un momento a esa planta tan singular, la cual se convirtió en el cierre de ese día excepcional

Scanning electron micrograph; plant tissue magnified 2800x

 

beautyofmicroscopy.tumblr.com/page/5

Cottony-white aerial colonies are found most frequently on succulent tissue, such as current season's growth, water sprouts, unhealed pruning wounds, or cankers. Figure 4 in NYS IPM fact sheet Woolly Apple Aphid (Eriosoma lanigerum (Hausmann)), in eCommons, Cornell University at ecommons.cornell.edu/handle/1813/43136. Photo by J. Ogrodnick. More information is on nysipm.cornell.edu/agriculture/fruits and Cornell Fruit Resources fruit.cornell.edu.

Cross section: Pinus Needle

Common Name: Pine

Magnification: 400x

Cross section: Pinus Needle

Common Name: Pine

Magnification: 100x

Cross section: Pinus Needle

Common Name: Pine

Magnification: 100x

Cross section: Pinus Needle

Common Name: Pine

Magnification: 200x

 

Cross section: Pinus Needle

Common Name: Pine

Magnification: 200x

Cross section: Pinus Needle

Common Name: Pine

Magnification: 200x

This vegetable matter was seen in this cervical biopsy, for which no explanation was found. A rectovaginal fistula was suggested as a possible origin, but since no accompanying inflammation was found, it was considered more plausible that it was introduced by the patient herself.

#VegetableMatter #cervix #GynPath #PlantTissue

 

Images contributed by Dr. Rakesh Gupta - @NewjobiRakesh

 

這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

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這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

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這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

shutterstock

這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

shutterstock

這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

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This plant is a fern. Its specific epithet is Athyrium filix-femina. The common name is ladyfern.

 

Ferns also contain xylem and phloem. You would find these in the vascular tissue of the plant.

 

users.rcn.com/jkimball.ma.ultranet/BiologyPages/P/PlantTi...

這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

shutterstock

這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

shutterstock

這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

shutterstock

這張超微距攝影的龍船花葉子圖像展現了極高的細節,讓我們能夠觀察到肉眼難以見到的結構與質地。照片中特寫了葉子的表面紋理、葉脈分佈,並且突顯了葉緣與表面的毛狀結構。這些毛狀結構可能是植物的毛狀體(trichomes),在顯微攝影下呈現出發光的效果,顯得格外迷人。整體畫面具有強烈的對比度,葉子的綠色與黑色背景形成鮮明對比,而透光的毛狀結構則增加了層次感與美感。

shutterstock