Рефераты. Listening and memory training in translation

I=Interpreting, L=listening and analyzing the source language speech, M=short-term memory required between the time information is heard and the time it is written down in the notes, and N=note-taking.

Phase Two: I= Rem+Read+P

In this Phase Two of Consecutive Interpreting, interpreters retrieve messages from their short-term memory and reconstruct the speech (Rem), read the notes (N), and produce the Target Language Speech (P). Gile's Effort Model for Simultaneous Interpreting is:

SI=L+M+P

SI=Simultaneous Interpreting.

L=Listening and Analysis, which includes "all the mental operations between perception of a discourse by auditory mechanisms and the moment at which the interpreter either assigns, or decides not to assign, a meaning (or several potential meanings) to the segment which he has heard."

M=Short-term Memory, which includes "all the mental operations related to storage in memory of heard segments of discourse until either their restitution in the target language, their loss if they vanish from memory, or a decision by the interpreter not to interpret them."

P=Production, which includes "all the mental operations between the moment at which the interpreter decides to convey a datum or an idea and the moment at which he articulates (overtly produces) the form he has prepared to articulate" (1995a:93). Anderson, J.R., 1983. The Architecture of Cognition. Cambridge, MA: Harvard University Press. Pp.46-57, 134,139, 212-226

Gile emphasizes that the memory effort is assumed to stem form the need to store the words of a proposition until the hearer receives the end of that proposition. The storage of information is claimed to be particularly demanding in SI, since both the volume of information and the pace of storage and retrieval are imposed by the speaker (1995a:97-98).

In both models, Gile emphasizes the significance of Short-term Memory. It is actually one of the specific skills which should be imparted to trainees in the first stage of training. Among all the skills and techniques which are required for a good interpreter, memory skill is the first one which should be introduced to trainee interpreters.

2.1.2.Psychological studies of human memory make a distinction between Short-Term Memory (STM) and Long-Term Memory (LTM). The idea of short-term memory simply means that you are retaining information for a short period of time without creating the neural mechanisms for later recall. Long-Term Memory occurs when you have created neural pathways for storing ideas and information which can then be recalled weeks, months, or even years later. To create these pathways, you must make a deliberate attempt to encode the information in the way you intend to recall it later. Long-term memory is a learning process. And it is essentially an important part of the interpreter's acquisition of knowledge, because information stored in LTM may last for minutes to weeks, months, or even an entire life. The duration of STM is very short. It is up to 30 seconds. Peterson (1959) found it to be 6 - 12 seconds, while Atkinson and Shiffrin (1968) and Hebb (1949) state it is 30 seconds. Memory in interpreting only lasts for a short time. Once the interpreting assignment is over, the interpreter moves on to another one, often with different context, subject and speakers. Therefore, the memory skills which need to be imparted to trainee interpreters are STM skills.

Input of information: It is generally held that information enters the STM as a result of applying attention to the stimulus, which is about a quarter of a second according to the findings of both Sperling(1960) and Crowden(1982). However, McKay's (1973, in Radford and Govier, 1991: 382) findings do not fully support this, asserting that unattended information may enter the STM.

Capacity: As mentioned in the previous section, the capacity of STM is limited and small. Atkinson and Shiffrin (1968) propose that it is seven items of information (give or take two). Miller (1956) says it is seven "chunks." Another possibility may be that the limiting factor is not the STM's storage capacity, but its processing capacity (Gross:1990:55).

Modality: To store information in STM, it must be encoded, and there is a variety of possibilities as to how this operates. There are three main possibilities in STM: (1) Acoustic (Phonemic) coding is rehearsing through sub-vocal sounds (Conrad, 1964 and Baddeley:1966). (2) Visual coding is, as implied, storing information as pictures rather than sounds. This applies especially to nonverbal items, particularly if they are difficult to describe using words. In very rare cases some people may have a "photographic memory," but for the vast majority, the visual code is much less effective than this (Posner and Keele: 1967). (3) Semantic coding is applying meaning to information, relating it to something abstract (Baddeley:1990, Goodhead:1999)

Information Loss: There are three main theories as to why we forget from our STM: (1) Displacement--existing information is replaced by newly received information when the storage capacity is full (Waugh and Norman:1965) (2) Decay--information decays over time (Baddeley, Thompson and Buchanan, 1975). (3) Interference--other information present in the storage at the same time distorts the original information (Keppel and Underwood:1962). . Atkinson, R.L., and Stiffrin, R.M., 1968. Human memory: A proposed system and its control processes, in K.W. Spence and J.T. Spence (eds.), The psychology of learning and motivation. Vol.2. London: Academic Press. Pp. 19, 65, 78-79

Retrieval: There are modes of retrieval of information from STM: (1) Serial search--items in STM are examined one at a time until the desired information is retrieved (Sternberg:1966). (2) Activation--dependence on activation of the particular item reaching a critical point (Monsell:1979, Goodhead:1999).

3.1.2.The purpose of memory (STM) training in interpreting is to achieve a better understanding of the source language, which will lead to adequate interpreting. As Lin Yuru et al. put it, "Memory in consecutive interpreting consists of nothing more than understanding the meaning, which is conveyed by the words" (Lin et al., 1999:9). Understanding is the first step in successful interpreting; therefore, memory training is to be provided in the early stage of interpreter training. Memory functions differently in consecutive and simultaneous interpreting, because the duration of memory is longer in CI than in SI. There are different methods of training STM for CI and SI respectively. Interpreting starts with the encoding of the information from the original speaker. According to Gile's Effort Model, interpreting is an STM-centered activity; the process of interpreting could be re-postulated into:

Encoding of information from the Source Language + Storing Information + Retrieval of Information + Decoding Information into the Target language.

In Consecutive Interpreting, there is probably up to 15 minutes (depending on the speaker's segments) for the interpreter to encode and then store the information. This is the first phase of Gile's Effort Model for CI. In the second phase of Gile's Model, the interpreter starts to retrieve information and decode it into the target language. In SI, encoding and decoding of information happen almost at the same time. The duration for storing the information is very limited. Therefore, in the first step of interpreting, encoding (understanding) information uttered in the SL is the key to memory training.

According to the previous description, there are three main possibilities of storing information in STM: (1) Acoustic Coding; (2) Visual Coding and (3) Semantic Coding. Visual coding may be used by interpreters in conference situations with multimedia. Notes in interpreting are to assist in such visual coding of information. But in most interpreting contexts, interpreters will depend on acoustic and semantic coding. Therefore, exercises should be designed for this purpose. The following methods are recommended:

Retelling in the Source Language: The instructor either reads or plays a recording of a text of about 200 words for the trainees to retell in the same language. The trainees should not be allowed to take any notes. In the first instance, trainees should be encouraged to retell the text in the same words of the original to the largest possible extent. The following tactics should be used by the trainees after a certain time of training on retelling: Categorization: Grouping items of the same properties; Generalization: Drawing general conclusions from particular examples or message from the provided text; Comparison: Noticing the differences and similarities between different things, facts and events; Description: Describing a scene, a shape, or size of an object, etc. Trainees are encouraged to describe, summarize, and abstract the original to a large extent in their own words in exercises (2) to (5). Shadowing Exercise: Which is defined as "a paced, auditory tracking task which involves the immediate vocalization of auditorily presented stimuli, i.e., word-for-word repetition in the same language, parrot-style, of a message presented through a headphone"(Lambert 1899:381). This kind of exercise is recommended for training of Simultaneous Interpreting, especially the splitting of attention skills and the short-term memory in SI. Atkinson, R.L., et al., 1993. Introduction to psychology(11th ed. (s:l): Ted Bucholz. Pp. 46-58

There is another tool which is effective in memory training: Mnemonic to Memory. Mnemonic is a device, such as a formula or rhyme, used as an aid in remembering. Mnemonics are methods for remembering information that is otherwise quite difficult to recall. A very simple example of a mnemonic is the '30 days hath September' rhyme. The basic principle of Mnemonics is to use as many of the best functions of the human brain as possible to encode information.

The human brain has evolved to encode and interpret complex stimuli--images, color, structure, sounds, smells, tastes, touch, spatial awareness, emotion, and language--using them to make sophisticated interpretations of the environment. Human memory is made up of all these features.

Typically, however, information presented to be remembered is from one source--normally words on a page. While reading words on a page reflects one of the most important aspects of human evolution, it is only one of the many skills and resources available to the human mind. Mnemonics seek to use all of these resources. By encoding language and numbers in sophisticated, striking images which flow into other strong images, we can accurately and reliably encode both information and the structure of information to be easily recalled later (Manktelow:2003).

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