inverted radial reflex - ορισμός. Τι είναι το inverted radial reflex
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Τι (ποιος) είναι inverted radial reflex - ορισμός

NUCLEIC ACID SEQUENCE
Inverted repeats; Inverted Repeat; Terminal inverted repeat; Inverted repeat sequence
  • right
  • left
  • Inverted repeat changing to/from an extruded cruciform.   A: Inverted Repeat Sequences;   B: Loop;   C: Stem with base pairing of the inverted repeat sequences
  • The 5 base-pair sequence on the left is "repeated" and "inverted" to form sequence on the right.
  •  Pseudoknot with four sets of inverted repeats. Inverted repeats 1 and 2 create the stem for stem-loop A and are part of the loop for stem-loop B. Similarly, inverted repeats 3 and 4 form the stem for stem-loop B and are part of the loop for stem-loop A.
  • left

Flinching         
  • An example of reflex reversal is depicted. Activating the same spinal reflex pathway can cause limb flexion while standing, and extension while walking.
  • The simplest reflex is initiated by a stimulus, which activates an afferent nerve. The signal is then passed to a response neuron, which generates a response.
AUTOMATIC, SUBCONSCIOUS RESPONSE TO A STIMULUS
Reflex reaction; Reflexes; Reflex test; Reflectory reaction; Reflectory; Reflex, abnormal; Reflex action; Medical reflex; Body reflexes; Instinctive reflex; Involuntary action; Reflex response; Involuntary behavior; Human reflex; Flinching
·p.pr. & ·vb.n. of Flinch.
Withdrawal reflex         
SPINAL REFLEX
Pain withdrawal reflex; Pain Withdrawal Reflex; Nociceptor reflex; Flexor reflex; Flexion reflex; Nociceptive flexion reflex; RIII reflex; Nociceptive flexion response
The withdrawal reflex (nociceptive flexion reflex or flexor withdrawal reflex) is a spinal reflex intended to protect the body from damaging stimuli. The reflex rapidly coordinates the contractions of all the flexor muscles and the relaxations of the extensors in that limb causing sudden withdrawal from the potentially damaging stimulus.
Radial engine         
  • [[Pratt & Whitney R-1340]] radial mounted in [[Sikorsky H-19]] helicopter
  • access-date=10 November 2016}}</ref>
  • A [[Nordberg Manufacturing Company]] two-stroke diesel radial engine for power generation and pump drive purposes
  • Packard DR-980 diesel radial aircraft engine
  • Wasp Major]], a four-row radial
  • [[Rare Bear]]
  • Moving parts showing operation of a typical small five-cylinder radial.<br>Pistons are in gold and valves in pink, master rod in pale purple, slaved connecting rods in blue, crankshaft / counterbalance in gray and timing ring and cams in red.
  • Continental]] radial, 1944
  • Four-stroke aircraft radial engine Scarlett mini 5
  • Master rod (upright) and slaved connecting rods from a two-row, fourteen-cylinder [[Pratt & Whitney R-1535 Twin Wasp Junior]]
RECIPROCATING ENGINE WITH CYLINDERS ARRANGED RADIALLY FROM A SINGLE CRANKSHAFT
Radial engines; Radial piston; Radial Engine; Radial piston engine; Radial engine (stationary); Radial motor
·add. ·- An engine, usually an internal-combustion engine of a certain type (the radial type) having several cylinders arranged radially like the spokes of a complete wheel. The semiradial engine has radiating cylinders on only one side of the crank shaft.

Βικιπαίδεια

Inverted repeat

An inverted repeat (or IR) is a single stranded sequence of nucleotides followed downstream by its reverse complement. The intervening sequence of nucleotides between the initial sequence and the reverse complement can be any length including zero. For example, 5'---TTACGnnnnnnCGTAA---3' is an inverted repeat sequence. When the intervening length is zero, the composite sequence is a palindromic sequence.

Both inverted repeats and direct repeats constitute types of nucleotide sequences that occur repetitively. These repeated DNA sequences often range from a pair of nucleotides to a whole gene, while the proximity of the repeat sequences varies between widely dispersed and simple tandem arrays. The short tandem repeat sequences may exist as just a few copies in a small region to thousands of copies dispersed all over the genome of most eukaryotes. Repeat sequences with about 10–100 base pairs are known as minisatellites, while shorter repeat sequences having mostly 2–4 base pairs are known as microsatellites. The most common repeats include the dinucleotide repeats, which have the bases AC on one DNA strand, and GT on the complementary strand. Some elements of the genome with unique sequences function as exons, introns and regulatory DNA. Though the most familiar loci of the repetitive sequences are the centromere and the telomere, a large portion of the repeated sequences in the genome are found among the noncoding DNA.

Inverted repeats have a number of important biological functions. They define the boundaries in transposons and indicate regions capable of self-complementary base pairing (regions within a single sequence which can base pair with each other). These properties play an important role in genome instability and contribute not only to cellular evolution and genetic diversity but also to mutation and disease. In order to study these effects in detail, a number of programs and databases have been developed to assist in discovery and annotation of inverted repeats in various genomes.