Categories
Herbs & Plants

Wild Indigo (Baptisia lactea)

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Botanical Name : Baptisia lactea
Family :               Leguminosae
Genus : Baptisia
Synonyms : Baptisia alba macrophylla – (Larisey.)Isely., Baptisia leucanthaTorr.&A.Gray.

Habitat: Range South-eastern N. America .   Sandy pine woods, prairies and river banks.

Description:
It is a Perennial  upright bushy plant with attractive foliage. White blossoms are arranged in long erect plumes. Seed heads turn a deep indigo color providing winter interest.

Upright bushy plants with attractive foliage. White blossoms are arranged in long erect plumes. Seed heads turn a deep indigo color providing winter interest.

Height: 2-4′

Color: Flowers white with purple splotches

Flowering Time: June

Habitat: Moderate light. Mesic to moist soils.

Rate of Spread: Slow Propagation:

Seed: Collect Sept.-Oct. Clean seeds to avoid insect damage. 3-month stratification, scarification increases germination. Darker seeds germinate better than yellow seeds. Plant spring.

Vegetative: Division in fall, but difficult. Transplant seedlings at two years in spring.

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Miscellaneous: Formerly Baptisia leucantha
It is hardy to zone 5. It is in flower in May. The flowers are hermaphrodite (have both male and female organs)It can fix Nitrogen.
The plant prefers light (sandy) and medium (loamy) soils and requires well-drained soil. The plant prefers acid and neutral soils. It cannot grow in the shade. It requires moist soil.

Cultivation :
Prefers a deep, well-drained neutral to slightly acid soil in full sun[188, 200]. Grows freely in a loamy soil[1]. Plants are hardy to about -20°c. Some modern works treat this species as a variety of B. alba, naming it Baptisia alba macrophylla. Somewhat shy flowering in British gardens. Plants have a very deep root system and dislike root disturbance, they should be left alone once they are established. This species has a symbiotic relationship with certain soil bacteria, these bacteria form nodules on the roots and fix atmospheric nitrogen. Some of this nitrogen is utilized by the growing plant but some can also be used by other plants growing nearby.

Propagation:

Seed – best sown as soon as it is ripe in a cold frame. Stored seed should be pre-soaked for 24 hours in warm water and then sown in a cold frame in late winter or early spring. Prick out the seedlings into individual pots as soon as they are large enough to handle and plant them out into their permanent positions in the summer or following spring. Division in spring[188]. Larger divisions can be planted straight into their permanent positions whilst smaller clumps are best potted up and kept in a cold frame until they are growing away well.

Medicinal Actions &  Uses
Cathartic; Emetic; Laxative.

Known Hazards : The plant is potentially toxic.

Disclaimer : The information presented herein is intended for educational purposes only. Individual results may vary, and before using any supplement, it is always advisable to consult with your own health care provider.

Resources:

http://www.pfaf.org/database/plants.php?Baptisia+lactea
http://www.webresults.net/gardener/index.htm
http://www.inhs.illinois.edu/animals_plants/plants/ilgallery/ThePlants/BGenera/BapLac/BapLac.htmlhttp://www.stonesiloprairie.com/catalog/i74.html

http://www.inhs.illinois.edu/animals_plants/plants/ilgallery/ThePlants/BGenera/BapLac/BapLac.html

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Categories
Herbs & Plants

Century Plant(Agave utahensis eborispina)

Botanical Name :Agave utahensis eborispina
Family : Agavaceae
Genus  : Agave
Synonyms: Agave eborispina – Hester.
Common names: Clark mountain agave, Utah agave

Habitat : Native to California and to Arizona, to Nevada, to Utah [Lum/Walker].South-western N. America .  Dry stony limestone slopes, 1000 – 1500 metres. Calcareous outcrops with desert scrub at elevations of 1100 – 1900 metres in California and Nevada. Cultivated Beds; South Wall By;

Description:
Agave utahensis, an evergreen Perennial  a monocot, is a shrub growing to 4m by 2m.  It is hardy to zone 9 and is not frost tender. It is in leaf all year. The flowers are hermaphrodite (have both male and female organs) and are pollinated by Moths, bats….

You may click to see more pictures of  Century Plant
The plant prefers light (sandy) and medium (loamy) soils and requires well-drained soil. The plant prefers acid, neutral and basic (alkaline) soils. It cannot grow in the shade. It requires dry or moist soil and can tolerate drought.

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Cultivation:
Requires a very well-drained soil and a sunny position. Plants are only hardy on the south coast of England, where they succeed from Torbay westwards. A monocarpic species, the plant lives for a number of years without flowering but dies once it does flower. However, it normally produces plenty of suckers during its life and these take about 10 – 15 years in a warm climate, considerably longer in colder ones, before flowering. This plant is widely used by the native people in its wild habitat, it has a wide range of uses. Members of this genus are rarely if ever troubled by browsing deer.

Propagation:
Seed – surface sow in a light position, April in a warm greenhouse. The seed usually germinates in 1 – 3 months at 20°c. Prick out the seedlings into individual pots of well-drained soil when they are large enough to handle and grow them on in a sunny position in the greenhouse until they are at least 20cm tall. Plant out in late spring or early summer, after the last expected frosts, and give some protection from the cold for at least their first few winters. Offsets can be potted up at any time they are available. Keep in a warm greenhouse until they are well established


Edible Parts:
Leaves; Root; Sap; Seed; Stem.

Edible Uses: Drink.You
The heart of the plant is very rich in saccharine matter and can be eaten when baked. Sweet and delicious, but rather fibrous. It is partly below ground. Can be dried for future use or soaked in water to produce a flavourful beverage. Seed – ground into a flour. Flower stalk – roasted. Root – cooked. Sap from the cut flowering stems is used as a syrup. The sap can also be tapped by boring a hole into the middle of the plant at the base of the flowering stem. It can be fermented into ‘Mescal’, a very potent alcoholic drink.

Medicinal Actions & Uses:-
Antiseptic; Diuretic; Laxative.

The sap is antiseptic, diuretic and laxative.

Disclaimer:The information presented herein is intended for educational purposes only. Individual results may vary, and before using any supplements, it is always advisable to consult with your own health care provider.

Other Uses
Brush; Fibre; Miscellany; Needles; Paper; Pins; Soap; Thatching.

The leaves contain saponins and an extract of them can be used as a soap. It is best obtained by chopping up the leaves and then simmering them in water – do not boil for too long or this will start to break down the saponins. A very strong fibre obtained from the leaves is used for making rope, coarse fabrics etc. To make hair brushes and brushes for cleaning, the dried matter of a dead and rotten leaf was knocked free from the fibres, which were then bent in two. the upper end of this brush was wrapped with a cord and the bent portion was covered with a cloth. The loose fibres were cut to the right length and hardened by burning the ends. A paper can also be made from the fibre in the leaves. The thorns on the leaves are used as pins and needles. The dried flowering stems are used as a waterproof thatch and as a razor strop.

Resources:
http://www.pfaf.org/database/plants.php?Agave+utahensis+eborispina
http://commons.wikimedia.org/wiki/Category:Agave_utahensis
http://www.calflora.org/cgi-bin/species_query.cgi?where-calrecnum=116

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Categories
Herbs & Plants

Subalpine Fir (Abies lasiocarpa)

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Botanical Name : Abies lasiocarpa
Family:
Pinaceae
Genus:
Abies
Species:
A. lasiocarpa
Kingdom:
Plantae
Division:
Pinophyta
Class:
Pinopsida
Order:
Pinales

Synonyms : Abies subalpina – Engelm., Pinus lasiocarpa – Hook.
Common Name: German: Korksilbertanne.  Czech: jedle plstnatoplodá

Habitat: Western N. America – Alaska to Arizona and New Mexico.   Often found in poor and rocky soils, it is rarely seen below 600 metres. It grows in forests right up to the timber line where it is no more than a shrub on exposed slopes at high altitudes.

Description:
Abies lasiocarpa  is an evergreen deciduous  medium-sized coniferous  tree growing to 20 metres (66 ft) tall, exceptionally to 40–50 metres (130–160 ft) tall, with a trunk up to 1 m diameter, and a very narrow conic crown. The bark on young trees is smooth, gray, and with resin blisters, becoming rough and fissured or scaly on old trees. The leaves are flat needle-like, 1.5–3 centimetres (0.59–1.18 in) long, glaucous green above with a broad stripe of stomata, and two blue-white stomatal bands below; the fresh leaf scars are reddish. They are arranged spirally on the shoot, but with the leaf bases twisted to be arranged to the sides of and above the shoot, with few or none below the shoot. The cones are erect, 6–12 centimetres (2.4–4.7 in) long, dark blackish-purple with fine yellow-brown pubescence, ripening brown and disintegrating to release the winged seeds in early fall.CLICK & SEE

The flowers are monoecious (individual flowers are either male or female, but both sexes can be found on the same plant) and are pollinated by Wind.

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Leaf: Flattened needles, usually about 1 inch long, thickened in the middle, bluish white bloom on all surfaces; tips mostly rounded, but may be notched (or pointed near top of tree); spirally arranged but uniformly upswept; commonly have a manicured appearance.

Flower: Monoecious; male cones bluish and borne beneath the leaves; female cones purple and borne upright near the top of the crown.

Fruit: Cones are 2 to 4 inches long, cylindrical, slender, and borne upright on the twig (frequently in clusters); cone scales are deciduous, falling from the cone as seeds ripen; purple when mature.

Twig: Stiff, orange-brown, and covered with round, flat leaf scars when needles fall. Buds are small, rounded, and covered with pitch; terminal buds usually occur in clusters of three or more.

Bark: When young, grayish green and covered with resin blisters; later turning gray to white, unbroken except near base of large trees. Resin pockets scattered throughout inner bark.

Form: When mature 40 to 100 feet tall and 1 to 2 feet in diameter. Very narrow crown of dense foliage; often spire-like with branches to the ground.

Cultivation:
Prefers a good moist but not water-logged soil. Grows well in heavy clay soils. Very shade tolerant, especially when young, but growth is slower in dense shade[81]. Intolerant of atmospheric pollution. Prefers slightly acid conditions down to a pH of about 5. Prefers growing on a north-facing slope. Occasionally planted for timber in N. Europe but this species does not thrive in Britain. It is a very cold-hardy tree but the milder winters of this country make it susceptible to damage by aphis and late frosts. The sub-species A. lasiocarpa arizonica. (Merriam.)Lemmon. is growing somewhat better here. Trees should be planted into their permanent positions when they are quite small, between 30 and 90cm in height. Larger trees will check badly and hardly put on any growth for several years. This also badly affects root development and wind resistance[200]. Plants are strongly outbreeding, self-fertilized seed usually grows poorly. They hybridize freely with other members of this genus. The crushed foliage has a balsam aroma.

Propagation:-
Seed – sow early February in a greenhouse or outdoors in March. Germination is often poor, usually taking about 6 – 8 weeks. Stratification is said to produce a more even germination so it is probably best to sow the seed in a cold frame as soon as it is ripe in the autumn. The seed remains viable for up to 5 years if it is well stored. When large enough to handle, prick the seedlings out into individual pots and grow them on for at least their first winter in pots. Plant them out into their permanent positions in late spring or early summer, after the last expected frosts. Alternatively, if you have sufficient seed, it is possible to sow in an outdoor seedbed. One report says that it is best to grow the seedlings on in the shade at a density of about 550 plants per square metre whilst another report says that they are best grown on in a sunny position.

Edible Uses:-
Edible Parts: Inner bark; Seed; Seedpod.

Edible Uses: Gum; Tea.

The shoot tips are used as a tea substitute. The cones can be ground into a fine powder, then mixed with fat and used as a confection. It is said to be a delicacy and an aid to the digestion. The resin from the trunk is used as a chewing gum. It is said to treat bad breath. Inner bark. No more information is given, but inner bark is often dried, ground into a powder and then used with cereal flours when making bread etc. Seeds. No more information is given, but the seeds are very small and fiddly to use. Seeds of this genus are generally oily with a resinous flavour and can be eaten raw or cooked.

Medicinal  Actions & Uses:

Antihalitosis; Antiseptic; Emetic; Foot care; Laxative; Poultice; TB; Tonic.

Antiseptic. The gummy exudate that appears on the bark was soaked in water until soft and then applied to wounds. An infusion of the resin has been used as an emetic to cleanse the insides. The resin has also been chewed to treat bad breath. A decoction of the bark is used as a tonic and in the treatment of colds and flu. A poultice of the leaves has been used to treat chest colds and fevers. An infusion has been taken to treat the coughing up of blood, which can be the first sign of TB, and as a laxative.

Disclaimer:The information presented herein is intended for educational purposes only. Individual results may vary, and before using any supplements, it is always advisable to consult with your own health care provider.

Other Uses:-
Baby care; Deodorant; Gum; Hair; Incense; Miscellany; Repellent; Wood.

The fragrant young leaves and twigs are used to repel moths or are burnt as an incense. They were also ground into a powder and used to make a baby powder and perfumes. A gum is obtained from the bark. It is antiseptic and was chewed by the N. American Indians in order to clean the teeth. It was also used to plug holes in canoes. An infusion of the leaves is used as a hair tonic. The leaves can also be placed in the shoes as a foot deodorant. Wood – light, soft, not strong. It is little used except as a fuel and for pulp. The native North American Indians used it for making chairs and insect-proof storage boxes. It was also used as a fuel and was said to burn for a long time.

Scented Plants
Leaves: Crushed
The crushed foliage has a balsam aroma.

Resource:
http://www.pfaf.org/database/plants.php?Abies+lasiocarpa
http://plants.usda.gov/java/profile?symbol=ABLAL&photoID=ablal_003_avp.jpg
http://www.about-garden.com/e/en/7-subalpine-fir-abies-lasiocarpa/

https://en.wikipedia.org/wiki/Abies_lasiocarpa

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Categories
Ailmemts & Remedies

Bilateral Hydronephrosis

Alternative Names: Hydronephrosis – bilateral

Definition
Bilateral hydronephrosis is the enlargement (distention) of the urine collecting structures and pelvis of both kidneys. Bilateral means both sides.

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Click to See : Unilateral hydronephrosis

Causes
Bilateral hydronephrosis occurs when urine is unable to drain from the kidney down the ureters into the bladder. Hydronephrosis is not itself a disease, but rather a physical result of whatever disease is keeping urine from draining out of the kidneys, ureters, and bladder.

Disorders associated with bilateral hydronephrosis include:
*Acute bilateral obstructive uropathy
*Bladder outlet obstruction
*Chronic bilateral obstructive uropathy
*Neurogenic bladder
*Posterior ureteral valves
*Prune belly syndrome

*Uteropelvic junction obstruction

*Vesicoureteric reflux

Symptoms
Signs of hydronephrosis are generally seen during pregnancy ultrasound studies. There are no symptoms in the fetus.In the newborn, any urinary tract infection is reason to suspect some type of obstructive problem in the kidney. An older child who gets repeat urinary tract infections should be evaluated for possible obstruction.

Urinary tract obstruction usually has no other symptoms beyond an increased number of urinary tract infections.

Diagnosis:

Exams and Tests
Bilateral hydronephrosis may be seen on:

*CT scan of the abdomen or kidneys
*IVP
*Pregnancy (fetal) ultrasound
*Renal scan
*Ultrasound of the abdomen or kidneys

Treatment
Placing a Foley catheter may relieve the obstruction. Other treatment options include draining the bladder or relieving pressure with nephrostomy tubes placed through the skin (percutaneous) or stents placed in the ureters to allow urine to flow from the kidney to the bladder.

Once the blockage is treated, the underlying cause (such as an enlarged prostate) must be identified and treated.

Prognosis:
Advances in fetal ultrasound have given specialists the ability to diagnose problems caused by bilateral obstruction of the urinary tract in the developing fetus. If an obstruction is detected in a fetus, intrauterine surgery (performed while the fetus is still inside the mother’s uterus), or shortly after birth, will improve kidney function.

Newborns diagnosed with obstruction while still in the uterus can receive prompt surgical correction of the defects, often with good results.

Possible Complications :-
Renal insufficiency or failure may develop as a complication of many of the disorders associated with hydronephrosis.

When to Contact a Medical Professional
This disorder is usually discovered by the health care provider.

Prevention
A fetal ultrasound can reveal an obstruction of the urinary tract and allow for early surgery with better outcomes in the newborn. Other causes of obstruction, such as kidney stones, can be diagnosed early if individuals recognize early warning signs of obstruction and kidney disease.

Disclaimer: This information is not meant to be a substitute for professional medical advise or help. It is always best to consult with a Physician about serious health concerns. This information is in no way intended to diagnose or prescribe remedies.This is purely for educational purpose.

Resources:
http://www.nlm.nih.gov/medlineplus/ency/article/000474.htm

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Healthy Tips News on Health & Science

Body Clock ‘Cog’ Could End Jet-Lag

International travellers, who often complain of jet lag and sleeping disorders will soon have a treatment in hand, as scientists have now discovered a unique “cog” in the sleep-controlling human body clock which may help them avert these disorders.

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It is believed that the body clock governs the circadian rhythms of the body and connects the cycles of metabolism and behaviour to the cycle of day and night.

It often gets disrupted by old age, disease, international travel and shift work and such disturbance not only causes problems sleeping and eating, but also leads to serious illness.

And now, researchers have identified a molecule, known as c-AMP, a common signalling molecule, which plays a major role in keeping the body clock’s “rhythms” going. This molecule is located in the hypothalamus of the brain, which harbours cells that keeps the body clock in alignment with the other major organs including the heart, lungs and liver.

Led by Michael Hastings, at the Medical Research Council Laboratory of Molecular Biology in Cambridge, the study found that the body clock keeps ticking owing to the daily activation of this molecule, or “cog” in tandem with the body’s genes and proteins.
When the circadian day starts, genes are switched on which then produce proteins, which in turn go on to switch off the same genes at the end of the day. These proteins are then broken down over the circadian night and the process continues again beginning the next morning.

The scientists have claimed that this knowledge of the mechanism of circadian clock may pave the way for new treatments for jet leg and other sleep disorders, in which the body clock is effectively “reset”. The technology arm of the laboratory has applied for a patent application for looking after the pharmacological methods of manipulating the molecule.

Sources: The Times Of India

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