Laminar Air Flow Good

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    Laminar Air Flow

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    Moderator 

    Dr. Surendra U Kamath

    Dr. Anup Kumar

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    •  An air flow in which entire body of airwithin a confined area moves with

    • uniform velocity

    •  along parallel flow

    •  with minimum air turbulence.

    DF!"!#!$"

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     A%%L!&A#!$"

      laminar air flows have a variety of applicationssuch as '

    • (uality control labs of pharmaceutical

    Industries • (uality control labs of food processing

    industries 

    • (uality control labs of micro circuit and

    electronic assembly and manufacturingapplications.

    • Deoxy Ribonucleic Acid Thermo cycling 

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     A%%L!&A#!$"

    • )eneral Laboratory applications inBiotechnology 

    • )eneral Laboratory applicationsMicrobiology 

    • )eneral Laboratory applications Tissue

    ulture • )eneral Laboratory applications !enetic

    engineering

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    *here are we concerned

    about+.

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    ,!S#$-

    • Laminar flow

    ventilation was first

    pioneered by "ir

    #ohn harnley  in the 

    /012s

    *, D$ * "D

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    *, D$ * "D

    LAM!"A- A!- FL$*

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    $IT%RAT&R%

    %'ID%(%"

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    • $idwell)s Trial • incidence of 3oint

    sepsis at reoperation

    was 425 less

    body e6haust suitsfurther reduced to

    745.

    the incidence of sepsis

    282.115

     

    the British Medical Journal in /097

    vertical laminar flow

    ventilation

    performed better than

    hori:ontal ventilation

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    More recent literature

    • *olton and Ridgway

    •  Fit:;erald• van !riethuysen et al +,,- 

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    • D!-

    -LA#!$"S,

    !%

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    #-A"SM!SS!$" &&L !" $#"usceptible *osts

    &lientsService providers

     Ancillary Staff 

    &ommunity members

    Reservoirs

    %eople*ater and solutions

    !nstruments and other items

    >uipment

    Soil and air 

    laces of exit-espiratory? ;enitourinary?

    and vascular systems

    )astrointestinal tract

    S@in

    Mucous membranes

    %lacenta

    laces of entry

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    Types of air supply

    Air is supplied to the operating theatre by/

    • /. %lenum entilation

    • 7. Laminar Flow entilation BUltra

    &lean entilation

    • 0. 1all Mounted Air onditioners• 2. 3ree4standing Air onditioners

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    %L"UM "#!LLA#!$"

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    LAM!"A- A!- FL$*

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    %L"UM "#!LLA#!$" S LAF

    • /18 72 &,A")S

    C,-

    • 428/42cfuCM

    • !"F!$" -A# !"&LA" SU-)-

    45

    • E228422C,-

    • /$ &FUCM

    • !"F!$" -A#

    /5

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    #%S $F LAM!"A- A!- FL$*

    •'%RTIAL

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    ,$-!G$"#AL LAF

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     ADA"#A)

    • 'ertical $aminar  3low &lean -oom

    Space has the additional advantage over

    the ,ori:ontal System in that

    • particles are removed by ;ravity as well as

    by airflow. #his is particularly important in

    the case of heavy

    • particles that can fall out and settle? via a

    ,ori:ontal 3low System

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    D!SADA"#A)

    • D&-ASS -SA#AL!# $F

    $%-A#!") -$$M

    • L!),# A"D (U!%M"# &$M !" #,

    *A

    • M$M"# $F %-S$"AL !" $U#-

     A-A %US,S A!-

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    H%$""#!AL

    LAF

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    • Laminar air flow systems contains three

    basic elements I

    • a blower?

    •  a hi;h efficiency air filter?

    •  and a plenum.

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    ,%A F!L#-S

    •  A highefficiencyparticulate air  

    or *%A•  00.0J5 of

    airborne 

    particles 2.micrometers Bm in diameter

    http://en.wikipedia.org/wiki/Particulatehttp://en.wiktionary.org/wiki/airbornehttp://en.wikipedia.org/wiki/Micrometrehttp://en.wikipedia.org/wiki/Micrometrehttp://en.wiktionary.org/wiki/airbornehttp://en.wikipedia.org/wiki/Particulate

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    !uided Airflow 'entilation

    "ystem 

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     ADA"#A)S

    • #his novel desi;n maintains a lar;e sterile :one at a much lower operatin; cost ascompared to other conventional ventilation systems and minimi:es infection rate inthe $-.

    • %rovides a directional? stable and sterile airflow Bvertical? hori:ontal and dia;onal tocreate a clearly defined sterile :one for the sur;ery and instrument tray areas.

    •  Accommodates between / I 74 air chan;es per hour  B72 air chan;es is commonlyused.

    • Double8wall e6haust system located at low level helps to reduce turbulences by;uidin; contaminated air out of $- while enhancin; the coolin; effect within $- inhot climate.

    •  Allows fle6ibility of optimal patient positionin; for different operatin; postures? whichoptimi:es e>uipment placement and staff er;onomics.

    • -e>uires a lower airflow rate? /922 mCh? to achieve stable and sterile environment incomparison with other conventional laminar airflow BLAF systems re>uirin; 0222

    mCh.• Maintains a constant bacteria count of 2.4 cfuCm? which is effective in infectioncontrol? Bmeasured at a distance of 22 mm from wound site? independent ofpersonnel activities over lar;e wor@in; area in the $-.

    • 125 8 J25 reduction in ener;y

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    • &,A-"L

    S#UD!S

    • S&A"D!"A!A"

    =UK S#UD!S

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