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Herbs & Plants

Cabbage Tree (Cordyline australis)

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Botanical Name : Cordyline australis
Family: Laxmanniaceae
Genus: Cordyline
Kingdom: Plantae
Order: Asparagales
Species: C. australis
Synonyms :  Dracaena australis. Forst.f.

Habitat :New Zealand. Forest margins and open places. Abundant near swamps. North, South and Stewart Islands.Woodland Garden Sunny Edge; Dappled Shade;

A quote from Philip Simpson sums up the wide range of habitats the cabbage tree occupied in early New Zealand, and how much its abundance and distinctive form shaped the impression travellers received of the country:

“In primeval New Zealand cabbage trees occupied a range of habitats, anywhere open, moist, fertile and warm enough for them to establish and mature: with forest; around the rocky coast; in lowland swamps, around the lakes and along the lower rivers; and perched on isolated rocks. Approaching the land from the sea would have reminded a Polynesian traveller of home, and for a European traveller, conjured up images of the tropical Pacific”.

Cordyline australis occurs from North Cape to the very south of the South Island, where it becomes less and less common, until it reaches its southernmost natural limits at Sandy Point (46° 30′ S), west of Invercargill near Oreti Beach. It is absent from much of Fiordland, probably because there is no suitable habitat, and is unknown on the subantarctic islands to the south of New Zealand, probably because it is too cold. It occurs on some offshore islands—Poor Knights, Stewart and the Chathams—but was probably introduced by M?ori. In the Stewart Island region, it is rare, growing only on certain islands, headlands and former settlement sites where it may have been introduced by muttonbird collectors, while on the Chatham Islands it is also largely “a notable absentee”.

Generally a lowland species, it grows from sea level to about 1000 metres (3300 ft), reaching its upper limits on the volcanoes of the central North Island, where eruptions have created open spaces for it to exploit, and in the foothills of the Southern Alps in the South Island, where deforestation may have played a part in giving it room to grow. C. australis in the central North Island has evolved a much sturdier form called t? manu “with branches bearing broad, straight upright leaves.” This form resembles that found in the far south of the South Island, suggesting that they are both adapted to cold conditions.

Cordyline australis is a light-demanding pioneer species, and seedlings die when overtopped by other trees. To grow well, young plants require open space so they are not shaded out by other vegetation. Another requirement is water during the seedling stage. Although adult trees can store water and are drought resistant, seedlings need a good supply of water to survive. This stops the species from growing in sand dunes unless there are wet depressions present, and from hillsides unless there is a seepage area. The fertility of the soil is another factor—settlers in Canterbury used the presence of the species to situate their homesteads and gardens. The fallen leaves of the tree also help to raise the fertility of the soil when they break down. Another factor is temperature, especially the degree of frost. Young trees are killed by frost, and even old trees can be cut back. This is why C. australis is absent from upland areas and from very frosty inland areas.

Early European explorers of New Zealand described “jungles of cabbage trees” along the banks of streams and rivers, in huge swamps and lowland valleys. Few examples of this former abundance survive today—such areas were the first to be cleared by farmers looking for flat land and fertile soil. In modern New Zealand, Cabbage trees usually grow as isolated individuals rather than as parts of a healthy ecosystem.

Description:
An evergreen Tree growing   up to 20 metres (66 ft) tall with a stout trunk and sword-like leaves, which are clustered at the tips of the branches and can be up to 1 metre (3 ft) long. With its tall, straight trunk and dense, rounded heads, C. australis is a characteristic feature of the New Zealand landscape. Its fruit is a favourite food source for the New Zealand pigeon and other native birds. It is common over a wide latitudinal range from the far north of the North Island at 34° 25’S to the south of the South Island at 46° 30’S. Absent from much of Fiordland, it was probably introduced by M?ori to the Chatham Islands at 44° 00’S and to Stewart Island at 46° 50’S. It grows in a broad range of habitats, including forest margins, river banks and open places, and is abundant near swamps. The largest known tree with a single trunk is growing at Pakawau, Golden Bay. It is estimated to be 400 or 500 years old, and stands 17 metres (56 ft) tall with a circumference of 9 metres (30 ft) at the base. Known to M?ori as T? k?uka, the tree was used as a source of food, particularly in the South Island, where it was cultivated in areas where other crops would not grow. It provided durable fibre for textiles, anchor ropes, fishing lines, baskets, waterproof rain capes and cloaks, and sandals. It is also grown as an ornamental tree in Northern.

Hemisphere countries with mild maritime climates, including the warmer parts of Britain, where its common names include Torquay palm. Hardy and fast growing, C. australis is widely planted in New Zealand gardens, parks and streets, and numerous cultivars are available. The tree can also be found in large numbers in island restoration projects such as Tiritiri Matangi Island, where it was among the first seedling trees to be planted.

It is hardy to zone 8 and is not frost tender. It is in leaf 12-Jan It is in flower from Aug to September. The flowers are hermaphrodite (have both male and female organs) Before it flowers, it has a slender unbranched stem. After the first flowering, it divides to form a much-branched crown with tufts of leaves at the tips of the branches. Each branch may fork after producing a flowering stem. The pale to dark grey bark is corky, persistent and fissured, and feels spongy to the touch.

The long narrow leaves are sword-shaped, erect, dark to light green, 40 to 100 cm (15–40 in) long and 3 to 7 cm (12–28 in) wide at the base, with numerous parallel veins. The leaves grow in crowded clusters at the ends of the branches, and may droop slightly at the tips and bend down from the bases when old. They are thick and have an indistinct midrib. The fine nerves are more or less equal and parallel. The upper and lower leaf surfaces are similar.
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In spring and early summer, sweetly perfumed flowers are produced in large, dense panicles (flower spikes) 60 to 100 cm (2–3 ft) long, bearing well-spaced to somewhat crowded, almost sessile to sessile flowers and axes. The flowers are crowded along the ultimate branches of the panicles. The bracts which protect the developing flowers often have a distinct pink tinge before the flowers open. In south Canterbury and North Otago the bracts are green.

The individual flowers are 5 to 6 mm (about 0.2 in) in diameter, the tepals are free almost to the base, and reflexed. The stamens are about the same length as the tepals. The stigmas are short and trifid. The fruit is a white berry 5 to 7 mm (2–3 in) in diameter which is greedily eaten by birds. The nectar attracts great numbers of insects to the flowers.

Large, peg-like rhizomes, covered with soft, purplish bark, up to 3 metres (10 ft) long in old plants, grow vertically down beneath the ground. They serve to anchor the plant and to store fructose in the form of fructan. When young, the rhizomes are mostly fleshy and are made up of thin-walled storage cells. They grow from a layer called the secondary thickening meristem.

Cultivation:
Prefers a good sandy loam rich in humus[1]. Succeeds in full sun or light shade. A very wind hardy plant, tolerating maritime exposure. A very ornamental plant[1], it is not very cold-hardy, tolerating short-lived lows down to about -10°c. It only succeeds outdoors in the milder areas of Britain. It grows very well in Cornwall where it often self-sows. A form with purplish leaves is hardier than the type and succeeds outdoors in Gloucestershire. The flowers have a delicious sweet scent that pervades the air to a considerable distance. Mice often kill young plants by eating out the pith of the stem[

Cordyline australis is one of the most widely cultivated New Zealand native trees, very popular as an ornamental tree in Europe, Great Britain and the United States. Hardy forms from the coldest areas of the southern or inland South Island tolerate Northern Hemisphere conditions best, while North Island forms are much more tender. It is easily grown from fresh seed — seedlings often spontaneously appear in gardens from bird-dispersed seed — and can be grown very easily from shoot, stem and even trunk cuttings. It does well in pots and tubs.

It is also widely planted in western Europe and the Northwest coast of the United States.It is particularly popular in Britain, where it is thought to resemble a palm tree. Cabbage trees are so common in the south of England that they are called Torquay palms, and are used in tourist posters promoting South Devon as the English Riviera. Some plants grow well as far north as western coast of Scotland where the Gulf Stream tempers the climate, including the village of Plockton. It is occasionally mis-named Cornish palm, Dracaena palm, Torbay palm or Manx palm in the British Isles due to its extensive use in Torbay and as the official symbol of that area under its alternative identity, the English Riviera. It also grows in Spain, Italy and Japan.Even though the natural distribution of C. australis ranges from a subtropical 34° S to a mid-latitude 46°S, and despite its ultimately tropical origins, it also grows at about five degrees from the Arctic Circle in Masfjorden, Norway, latitude 61ºN, in a microclimate protected from arctic winds and moderated by the Gulf Stream.

Propagation  :

Seed – pre-soak for about 10 minutes in warm water and sow in late winter to early spring in a warm greenhouse. The seed usually germinates in 1 – 3 months at 25°c. There is usually a good percentage germination. Prick out the seedlings into individual pots as soon as they are large enough to handle and grow them on in the greenhouse for at least their first winter. Plant out in late spring after the last expected frosts and give the plants some protection in their first winter outdoors. Stem cuttings – cut off the main stem just below the head and then saw off 5cm thick blocks of stem and place them 3cm deep in pure peat in a heated frame. Keep them moist until they are rooting well, then pot them up into individual pots. Plant out in late spring after the last expected frosts. Suckers. These are best removed in early spring and planted out in situ. Protect the division from wind and cold weather and do not allow the soil to become dry until the plant is established. Divisions can also be potted up and grown on until established, planting them out in the summer.


Edible Uses:

Root – baked. It can also be brewed into an intoxicating drink. Pith of the trunk – dried and steamed until soft. Sweet and starchy, it is used to make porridge or a sweet drink. The root and stems are rich in fructose, the yields compare favourably with sugar beet (Beta vulgaris altissima). Edible shoots – a cabbage substitute. The leaves are very fibrous even when young, we would not fancy eating them.

Medicinal Uses:
The Maori used various parts of Cordyline australis to treat injuries and illnesses, either boiled up into a drink or pounded into a paste. The koata, the growing tip of the plant, was eaten raw as a blood tonic or cleanser. Juice from the leaves was used for cuts, cracks and sores. An infusion of the leaves was taken internally for diarrhoea and used externally for bathing cuts. The leaves were rubbed until soft and applied either directly or as an ointment to cuts, skin cracks and cracked or sore hands. The young shoot was eaten by nursing mothers and given to children for colic. The liquid from boiled shoots was taken for other stomach pains. Cordyline australis contains an agent with anti-inflammatory properties, cinchophen, and the seeds are high in linoleic acid, one of the essential fatty acids.

Other Uses:
The leaves contain saponins, but not in commercial quantities. The leaves contain a strong fibre, used for making paper, twine, cloth, baskets, thatching, rain capes etc. The whole leaves would be used for some of these applications. When used for making paper, the leaves are harvested in summer, they are scraped to remove the outer skin and are then soaked in water for 24 hours prior to cooking.

When used for making paper, the leaves are harvested in summer, they are scraped to remove the outer skin and are then soaked in water for 24 hours prior to cooking.

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.


Resources:

http://www.pfaf.org/user/Plant.aspx?LatinName=Cordyline australis
http://en.wikipedia.org/wiki/Cordyline_australis

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Categories
Herbs & Plants

Leptospermum Scoparium

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Botanical Name : Leptospermum scoparium
Family: Myrtaceae
Genus: Leptospermum
Kingdom: Plantae
Division: Magnoliophyta
Class: Magnoliopsida
Order: Myrtales
Species: L. scoparium
Common Name :  “Tea Tree” is also shared with the related Melaleuca tree of Australia suggesting that both were used to make tea by Captain Cook.
Other Names: Manuka or Tea tree or just Leptospermum
Habitat : Native to New Zealand and southeast Australia. It is found throughout New Zealand but is particularly common on the drier east coasts of the North Island and the South Island, and in Australia in Tasmania, Victoria and New South Wales. Manuka (from Maori ‘manuka’) is the name used in New Zealand, and ‘tea tree’ is a common name in Australia and to a lesser extent also in New Zealand. This name arose because Captain Cook used the leaves to make a ‘tea’ drink.

Description :It is a prolific scrub-type tree and is often one of the first species to regenerate on cleared land. It is typically a shrub growing to 2–5 m tall, but can grow into a moderately sized tree, up to 15 m or so in height. It is evergreen, with dense branching and small leaves 7–20 mm long and 2–6 mm broad, with a short spine tip. The flowers are white, occasionally pink, 8–15 mm (rarely up to 25 mm) diameter, with five petals.

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This species is often confused with the closely related species Kanuka – the easiest way to tell the difference between the two species in the field is to feel their foliage – Manuka leaves are prickly while Kanuka leaves are soft. The wood is tough and hard, and was often used for tool handles. Manuka sawdust imparts a delicious flavour when used for smoking meats and fish.

It is hardy to zone 8 and is frost tender. It is in leaf all year, in flower from May to June. The flowers are hermaphrodite (have both male and female organs) and are pollinated by Insects.

The plant prefers light (sandy), medium (loamy) and heavy (clay) soils and requires well-drained soil. The plant prefers acid and neutral soils. It cannot grow in the shade. It requires dry or moist soil. The plant can tolerates strong winds but not maritime exposure.

.Edible Uses
Edible Parts: Manna.

Edible Uses: Tea.

The fresh, pungent leaves are a fragrant and refreshing tea substitute . Of excellent quality, in taste trials this species has often received higher marks than the traditional China tea obtained from Camellia sinensis[K]. It is important to brew the leaves for considerably longer than normal teas to ensure the flavour is released into the water[K]. A sweet manna is sometimes exuded from the stems as a result of insect damage . Another report says that manna is reported to form on the leaves .


Other Uses

Dye; Hedge; Insecticide; Roofing; Wood.

This species can be grown as a hedge in the milder areas of Britain  and is reasonably tolerant of maritime exposure. Plants should not be trimmed back into old wood, however, because they do not regenerate from such treatment. A yellow-green dye is obtained from the flowers, branches and leaves. A greenish-black dye is obtained from the flowers. Source of an insecticide (no further details). Wood – red, strong, elastic. Used for inlay work, cabinet making etc. The bark is used for roofing huts.

Scented Plants
Flowers: Crushed
The flowers, when handled, possess an aromatic fragrance.
Leaves: Crushed
The leaves, when handled, possess an aromatic fragrance.
Cultivation details
Succeed in almost any neutral or acid soil of good or reasonable quality[200], preferring a light sandy loam and full sun. Succeeds in dry soils. Prefers a position sheltered from hot or cold drying winds. We have found the plants to be fairly tolerant of maritime exposure[K]. The plant only succeeds outdoors in the milder areas of Britain. Hardy to about -10°c, succeeding outdoors in most of Southern Britain. A polymorphic species, many forms have been developed for their ornamental value. There are some dwarf varieties that grow very well in pots in cold greenhouses and conservatories. Resents root disturbance. Plants do not regenerate from old wood. The bruised leaves and the flowers are pleasantly aromatic. Plants in this genus are notably resistant to honey fungus.

Propagation:-
Seed – sow spring in a greenhouse and only just cover the seed. Prick out the seedlings into individual pots when they are large enough to handle and grow them on in the greenhouse for at least their first winter. Plant out in late spring or early summer, after the last expected frosts, and give some protection from the cold for their first winter or two outdoors. The seed remains viable for many years. Cuttings of half-ripe wood, 5 – 8 cm with a heel, early August in a frame. Over-winter in the greenhouse for its first year. Good percentage. Cuttings of almost mature wood, 4 – 5 cm with a heel, October/November in a frame. Good percentage.

Cultivars

‘Kea’
A dwarf form with small white flowers.
‘Kiwi’
A dwarf form with small red flowers

Medicinal Uses:
Manuka products have high antibacterial potency for a limited spectrum of bacteria and are widely available in New Zealand. Similar properties led the Maori to use parts of the plant as natural medicine.

Kakariki parakeets (Cyanoramphus) use the leaves and bark of Manuka and Kanuka to rid themselves of parasites. Apart from ingesting the material, they also chew it, mix it with preen gland oil and apply it to their feathers.

Manuka honey, produced when honeybees gather the nectar from its flowers, is distinctively flavoured, darker and richer in taste than clover honey and has strong antibacterial and antifungal properties. The finest quality Manuka honey with the most potent antimicrobial properties is produced from hives placed in wild, uncultivated areas with abundant growth of Manuka bushes. However a very limited number of scientific studies have been performed to verify its efficacy.

The University of Waikato in Hamilton, New Zealand has formed the Waikato Honey Research Unit to study the composition of honey and its antimicrobial activity. The Active Manuka Honey Association (AMHA) is the industry association that promotes and standardizes the production of Manuka honey for medical uses. They have created the Unique Manuka Factor (UMF) standard which grades honey based on its anti-bacterial strength. In January 2008 Professor Thomas Henle, University of Dresden (Germany) identified methylglyoxal as the active compound in Manuka honey. This is now shown on products as MGO Manuka honey. E.g. MGO 100 represents 100 mg of methylglyoxal per kilogram.

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

Resources;

http://www.pfaf.org/database/plants.php?Leptospermum+scoparium

http://en.wikipedia.org/wiki/Leptospermum_scoparium

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Categories
Ailmemts & Remedies

Ataxia

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Definition:
Ataxia (from Greek , meaning “lack of order”) is a neurological sign and symptom consisting of gross lack of coordination of muscle movements. Ataxia is a non-specific clinical manifestation implying dysfunction of parts of the nervous system that coordinate movement, such as the cerebellum. Several possible causes exist for these patterns of neurological dysfunction. The term “dystaxia” is rarely used as a synonym.

A sign of an underlying condition, ataxia can affect your movements, your speech, your eye movements and your ability to swallow.
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Persistent ataxia usually results from damage to your cerebellum — the part of your brain that controls muscle coordination. Many conditions may cause ataxia, including alcohol abuse, stroke, tumor, cerebral palsy and multiple sclerosis. It’s also possible to inherit a defective gene that may cause one of many ataxia variants.

Types of ataxia:-

#Cerebellar ataxia:
The term cerebellar ataxia is employed to indicate ataxia due to dysfunction of the cerebellum. This causes a variety of elementary neurological deficits, such as antagonist hypotonia, asynergy, dysmetria, dyschronometria, and dysdiadochokinesia. How and where these abnormalities manifest depend on which cerebellar structures are lesioned, and whether the lesion is bilateral or unilateral.

*Dysfunction of the vestibulocerebellum impairs balance and control of eye movements. This presents with postural instability, in which the person tends to separate the feet on standing to gain a wider base and avoid oscillations (especially posterior-anterior ones); instability is therefore worsened when standing with the feet together (irrespective of whether the eyes are open or closed: this is a negative Romberg’s test, or more accurately, denotes the inability to carry out the test as the individual is unstable even with open eyes).

*Dysfunction of the spinocerebellum presents with a wide-based “drunken sailor” gait, characterised by uncertain start and stop, lateral deviations, and unequal steps. This part of the cerebellum regulates body and limb movements.

*Dysfunction of the cerebrocerebellum presents with disturbances in carrying out voluntary, planned movements, including intention tremor (coarse trembling, accentuated over the execution of voluntary movements, possibly involving the head and eyes as well as the limbs and torso), peculiar writing abnormalities (large, unequal letters, irregular underlining), and a peculiar pattern of dysarthria (slurred speech, sometimes characterised by explosive variations in voice intensity despite a regular rhythm).

#Sensory ataxia:
The term sensory ataxia is employed to indicate ataxia due to loss of proprioception (sensitivity to joint and body part position), which generally depends on dysfunction of the dorsal columns of the spinal cord, since they carry proprioceptive information up to the brain; in some cases, the cause may instead be dysfunction of the various brain parts that receive that information, including the cerebellum, thalamus, and parietal lobes. Sensory ataxia presents with an unsteady “stomping” gait with heavy heel strikes, as well as postural instability that is characteristically worsened when the lack of proprioceptive input cannot be compensated by visual input, such as in poorly lit environments. Doctors can evidence this during physical examination by having the patient stand with his / her feet together and eyes shut, which will cause the patient’s instability to markedly worsen, producing wide oscillations and possibly a fall (this is called a positive Romberg’s test). Worsening of the finger-pointing test with the eyes closed is another feature of sensory ataxia. Also, when the patient is standing with arms and hands extended toward the examiner, if the eyes are closed, the patient’s finger will tend to “fall down” and be restored to the horizontal extended position by sudden extensor contractions (“ataxic hand”).

#Vestibular ataxia:
The term vestibular ataxia is employed to indicate ataxia due to dysfunction of the vestibular system, which in acute and unilateral cases is associated with prominent vertigo, nausea and vomiting. In slow-onset, chronic bilateral cases of vestibular dysfunction, these characteristic manifestations may be absent, and dysequilibrium may be the sole presentation.

Symptoms:-
Symptoms may vary depending on the severity and type of ataxia, of which there are many. If the ataxia is caused by an injury or another health condition, symptoms may emerge at any age, and may well improve and eventually disappear.

Initial ataxia symptoms usually include:
*Poor limb coordination.
*Dysarthria – slurred and slow speech that is difficult to produce. The patient may also have difficulties controlling volume, rhythm, and pitch.

If the ataxia advances other symptoms may also appear:

*Swallowing difficulties, which may sometimes result in choking or coughing.
*Facial expressions become less apparent.
*Tremors – parts of the body may shake or tremble unintentionally.
*Nystagmus – involuntary rapid rhythmic repetitious eye movement. Movements may be vertical, horizontal, or circular.
*Pes cavus – a foot with too high an arch.
*Cold feet – because of a lack of muscle activity.
*Problems with balance.
*Walking difficulties – in severe cases the patient may need a wheelchair.
*Vision problems.
*Hearing problems.
*Depression – as a result of having to live and cope with the symptoms.

Cerebellar ataxias:
Cerebellar ataxia early onset usually emerges between the ages of 4 and 26. Late onset ataxia generally appears after the patient is 20 years old. Late-onset ataxias usually present less severe symptoms, compared to early-onset ataxia.

Ataxia telangiectasia symptoms generally include:
*Small veins appear around the corner of the eyes, cheeks and ears.
*Physical and sexual development is usually delayed.

Friedreich’s ataxia symptoms generally include:
*The spine curves sideways (scoliosis).
*The heart muscle becomes weaker (cardiomyopathy).
*Diabetes.

For patients whose symptoms are caused by injury or illness, symptoms often improve over time, and eventually go away completely.

When to see a doctor:-
If you aren’t aware of having a condition that causes ataxia, such as multiple sclerosis, see your doctor if you:

*Lose balance
*Lose muscle coordination in a hand, arm or leg
*Have difficulty walking
*Slur your speech
*Have difficulty swallowing

Causes:-
The three types of ataxia have overlapping causes, and can therefore either coexist or occur in isolation.

Focal lesions
Any type of focal lesion of the central nervous system (such as stroke, brain tumour, multiple sclerosis) will cause the type of ataxia corresponding to the site of the lesion: cerebellar if in the cerebellum, sensory if in the dorsal spinal cord (and rarely in the thalamus or parietal lobe), vestibular if in the vestibular system (including the vestibular areas of the cerebral cortex).

Exogenous substances
Exogenous substances that cause ataxia mainly do so because they have a depressant effect on central nervous system function. The most common example is ethanol, which is capable of causing reversible cerebellar and vestibular ataxia. Other examples include various prescription drugs (e.g. most antiepileptic drugs have cerebellar ataxia as a possible adverse effect), marijuana ingestion[2] and various other recreational drugs (e.g. ketamine, PCP or dextromethorphan, all of which are NMDA receptor antagonists that produce a dissociative state at high doses).

Vitamin B12 deficiency
Vitamin B12 deficiency may cause, among several neurological abnormalities, overlapping cerebellar and sensory ataxia.

Causes of isolated sensory ataxia

Peripheral neuropathies may cause generalised or localised sensory ataxia (e.g. a limb only) depending on the extent of the neuropathic involvement. Spinal disorders of various types may cause sensory ataxia from the lesioned level below, when they involve the dorsal columns.

Non-hereditary cerebellar degeneration
Non-hereditary causes of cerebellar degeneration include chronic ethanol abuse, paraneoplastic cerebellar degeneration, high altitude cerebral oedema, coeliac disease, normal pressure hydrocephalus and cerebellitis.

Hereditary ataxias
Ataxia may depend on hereditary disorders consisting of degeneration of the cerebellum and/or of the spine; most cases feature both to some extent, and therefore present with overlapping cerebellar and sensory ataxia, even though one is often more evident than the other. Hereditary disorders causing ataxia include autosomal dominant ones such as spinocerebellar ataxia, episodic ataxia, and dentatorubropallidoluysian atrophy, as well as autosomal recessive disorders such as Friedreich’s ataxia (sensory and cerebellar, with the former predominating) and Niemann Pick disease, ataxia-telangiectasia (sensory and cerebellar, with the latter predominating), and abetalipoproteinaemia. An example of X-linked ataxic condition is the rare fragile X-associated tremor/ataxia syndrome.

GeneReview/NIH/UW entry on Hereditary Ataxia Overview

Arnold-Chiari Malformation
Arnold-Chiari malformation is a malformation of the brain. It consists of a downward displacement of the cerebellar tonsils and the medulla through the foramen magnum, sometimes causing hydrocephalus as a result of obstruction of CSF (cerebrospinal fluid) outflow.

Diagnosis:-
Besides conducting a physical exam and a neurological exam, including checking your memory and concentration, vision, hearing, balance, coordination and reflexes, your doctor may request these laboratory tests:

#Blood tests. Certain blood tests can confirm or exclude the suspected condition. A sample of your blood will be drawn from your arm through a needle. You may be required to fast from midnight the night before your appointment until after your blood is drawn. The specific tests will depend on the suspected cause, but most likely will include a complete blood count (CBC), which helps evaluate your overall health and detect a range of disorders, including infection and heavy metal poisoning.

#Urine tests. Examining a sample of your urine under a microscope (urinalysis) may suggest certain systemic abnormalities that can be related to some forms of ataxia. If your doctor suspects Wilson’s disease, you may be asked for a 24-hour urine collection to help determine the amount of copper in your system.

#Imaging studies. A computerized tomography (CT) scan or magnetic resonance imaging (MRI) of your brain may help determine potential causes.

#Genetic testing. Your doctor may recommend genetic testing to determine whether you or your child has the gene mutation that causes one of the hereditary ataxic conditions. Gene tests are available for many but not all of the hereditary ataxias.

Treatments:-
There’s no treatment specifically for ataxia and it is not curable  but a great deal can be done to ease symptoms and improve the quality of life of the patient. Treatment for coordination and balance problems usually involves the use of adaptive devices which help the patient attain as much independence as possible. These may include the use of a cane (walking stick), crutches, walker or a wheelchair. Symptoms such as tremor, stiffness, spasticity, sleep disorders, muscle weakness, depression (or frustration, sadness and anger) may be addressed with targeted physical therapy, speech therapy, medications and counseling.

Occupational therapy – the occupational therapist can help the patient manage better around the house and work. This may involve some home adaptations, wheelchair assessments, and making the kitchen more practical for the patient.

#Speech therapy – the speech therapist can help with swallowing, coughing, choking and speech problems. If speech becomes very difficult the speech therapist can help the patient learn how to use speech aids.

#Orthopedic care – this can help patients with curvature of the spine (scoliosis).

Physical therapy (physiotherapy) – a physical therapist (physiotherapist) can help maintain strength and improve mobility.

#Physical therapy to help you build strength and enhance your mobility
#Occupational therapy to help you with daily living tasks, such as feeding yourself
#Speech therapy to improve speech and aid swallowing

*Counseling – patients with ataxia commonly become frustrated and depressed; this usually results from having to cope with some symptoms which affect physical mobility and coordination. Talking to a well qualified counselor, such as a psychotherapist can help.

*Supplements and nutrition – some patients with ataxia have very low levels of vitamin E and require supplements and/or a special diet. As sensitivity to gluten is more common among ataxia patients, a gluten-free diet also helps.

*Medication – some patients with ataxia telangiectasia are prescribed gamma-globulin injections to boost their immune systems. There are also drugs for muscle spasms and uncontrollable eye movements.

Coping and support:-
The challenges you face when living with ataxia, such as loss of independence, or having a child with the condition, may make you feel alone or lead to depression and anxiety. Talking to a counselor or therapist may lessen your sense of isolation and help you cope. Or you may find encouragement and understanding in a support group, either for ataxia or for your underlying condition, such as cancer or multiple sclerosis.

Although support groups aren’t for everyone, they can be good sources of information. Group members often know about the latest treatments and tend to share their own experiences. If you’re interested, your doctor may be able to recommend a group in your area.

Other uses of the term:-
The term “ataxia” is sometimes used in a broader sense to indicate lack of coordination in some physiological process. Examples include optic ataxia (lack of coordination between visual inputs and hand movements, resulting in inability to reach and grab objects, usually part of Balint’s syndrome, but can be seen in isolation with injuries to the superior parietal lobule, as it represents a disconnection between visual-association cortex and the frontal premotor and motor cortex), and ataxic respiration (lack of coordination in respiratory movements, usually due to dysfunction of the respiratory centres in the medulla oblongata).

You may Click to see:->  Related articles from newspapers, magazines, and more

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.mayoclinic.com/health/ataxia/DS00910
http://en.wikipedia.org/wiki/Ataxia
http://www.medicalnewstoday.com/articles/162368.php

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Herbs & Plants

Acaenia anserinifolia

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Botanical Name: Acaenia anserinifolia
Family : Rosaceae
Subfamilia: Rosoideae:
Genus : Acaenia
Cladus: Eukaryota
Regnum: Plantae
Ordo: Rosales
Tribus: Sanguisorbeae
Subtribus: Sanguisorbinae
Genus: Acaena
Species
: Acaena anserinifolia

Synonyms: Acaena novae-zelandiae Kirk
Common Name: Pirri-Pirri Bur,  Bidibid, hutiwai, piripiri
Habitat:Eastern Australia, New Zealand. Naturalized in Britain. Open positions from lowland to the montane zone in North, South and Stewart Islands of New Zealand.  Ground Cover;

Description:

Acaenia anserinifolia is a stoloniferous, prostrate, evergreen trailing and perennial herb, forming diffuse to dense patches up to 1 m diam. Prostrate stems 1-1.5 mm diam. and < 1 m long, erect stems 1-1.5 mm diam., < 150 mm long (unless scrambling up through surrounding vegetation, in which case taller). Leaves 10-75 mm long, stipules 3-8-fid, leaflets 9-13, oblong, 4-17 x 2-9 mm, 7-15-toothed to base, dull green to yellow-green, basal leaves often mottled brown, upper surface sparsely to densely hairy, undersides paler, glaucescent to silvery, and very silky hairy, teeth tipped with a tuft of brush-like hairs. Inflorescence scape 40-120 mm long, covered in long, appressed hairs. Capitulum 5-8 mm diam. at flowering, 10-20 mm diam. (including spines) at fruiting; florets c. 50-60; sepals 4; stamens 2; anthers white or rose; style 1; white; achene 1. Fruit obconic, 3 x 12 mm, hairy, spines 4, pale brown, 4-9 mm long, barbed.

It is not frost tender. It is in leaf all year, in flower from June to July. The flower colours are Red,Pink & White. The flowers are hermaphrodite (have both male and female organs) and are pollinated by Wind.Fruiting time is December – April
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Cultivation:
An easily grown plant, it succeeds in ordinary well-drained soil in sun or semi-shade. Requires a warm position. Adaptable to poorly-drained soils in Australia. A very invasive plant, spreading freely by its procumbent rooting stems. It is low-growing, however, and so can be grown as a ground cover amongst taller plants.

Propagation:
Seed – sow March in a greenhouse. Germination, which can be very poor, usually takes place within 1 – 3 months at 10°c. When the seedlings are large enough to handle, prick them out into individual pots, planting them out in the summer. Division in April or October. Very easy, the plants can be divided at any time of the year if required, though it will need to be done in a greenhouse during the winter months. Cuttings – August in a cold frame.

Edible Uses
Edible Uses: Tea.

The leaves are used as a substitute for tea.

Medicinal Uses.

Antiphlogistic; Diuretic; Vulnerary.

The leaves are antiphlogistic, carminative, diuretic and vulnerary.

Other Uses:-
Ground cover.

A good ground-cover plant, tolerating some treading. A carpeting plant, rooting as it spreads.

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?Acaenia+anserinifolia
http://commons.wikimedia.org/wiki/Acaena_anserinifolia
http://luirig.altervista.org/photos/a/acaena_anserinifolia.htm
http://www.bethchatto.co.uk/plant%20portraits%20a/acaena%20anserinifolia.html
http://plants.usda.gov/java/profile?symbol=ACNO7

http://www.nzpcn.org.nz/flora_details.aspx?ID=1436

 

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Categories
Herbs & Plants

Nasturtium

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Botanical Name:Tropaelum majus
Family: Tropaeolaceae
Kingdom: Plantae
Order: Brassicales
Genus: Tropaeolum
Species: T. majus
Common Names:
English: Nasturtium, Common nasturtium, Garden nasturtium, Indian cress
Esperanto: Tropeolo, Granda tropeolo
Finnish: Koristekrassi, Köynnöskrassi
French:   Capucine, Cresson d’Inde
German: Kapuzinerkresse, Indische Kresse

Habitat:A native of Peru.  Originating in South America in the Andes from Bolivia north to Colombia. It is of cultivated, probably hybrid origin, with possible parent species including T. minus, T. moritzianum, T. peltophorum, and T. peregrinum.

Description:
NASTURTIUM Flower showing nectar spur   is a herbaceous annual plant with trailing stems growing to 1 m long or more. The leaves are large, nearly circular, 3-15 cm diameter, green to glaucous green above, paler below; they are peltate, with the 5-30 cm long petiole near the middle of the leaf, with several veins radiating to the smoothly rounded or slightly lobed margin. The flowers are 2.5–6 cm diameter, with five petals, eight stamens, and a 2.5–3 cm long nectar spur at the rear; they vary from yellow to orange to red, frilled and often darker at the base of the petals. The fruit is 2 cm broad, three-segmented, each segment with a single large seed 1–1.5 cm long

CLICK & SEE THE PICTURES
. It is easily recognised by its large, round peltate leaves. (Peltate means that the leaf stalk is attached near the middle of the bottom of the leaf, instead of the edge of the leaf.) It grows sprawling along the ground or as a climber. Nasturtiums have brightly coloured flowers in variations of yellow, orange and red when growing in the sun.

Cultivation :
THEY ARE easy to grow from seed, and once established in the garden nasturtiums will self seed freely. Seeds can be sown in situ, where they are to grow, at intervals of about 20cm apart. Sandy soil is preferred and they like a damp spot, so for best results, they should be well watered.

It is widely cultivated, both as an ornamental plant and as a medicinal plant.Garden Nasturtiums are grown for their flowers, and also because both their leaves and flowers are edible; they can be used in salads, imparting a delicately peppery taste. The seeds are also edible, and can be used as a caper substitute.
It is listed as invasive in several areas, including Hawaii, Lord Howe Island, and New Zealand.

Uses :
THE LEAVES as well as the colourful petals are used to brighten salads and the pickled seeds are used as a substitute for capers. Medicinally the leaves are chewed to relieve a sore throat as well as being used for their antiseptic properties in poultices for wounds. Nasturtium can be used as a decoy in the garden to attract aphids and whitefly away from other crops

Medicinal Uses:
It is a culinary as well as a medicinal herb  and  is used in   Indian herbal medicine. All parts of the plant posses an antibiotic and vitamin C. Taken internally, it stimulates coughing and reduces phlegm production. Applied externally, it is antiseptic.

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.

Resources:
http://www.piam.com/mms_garden/plants.html
http://www.uni-graz.at/~katzer/engl/Lepi_sat.html
http://www.dispatch.co.za/2002/09/21/features/GARDENSS.HTM
http://en.wikipedia.org/wiki/Tropaeolum_majus

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