The Safe Use of Lasers. in Clinical Practice
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1 The Safe Use of Lasers in Clinical Practice John Saunderson Laser Protection Adviser Hull & East Yorkshire Hospitals
2 Content Welcome Nature of laser radiation Laser classes & hazards Local safety systems Operational safety Q & As.
3 Light Amplification by the Stimulated Emission of Radiation
4 40 W bulb - 5% efficient 2,000 x light energy from 1 mw laser pointer At 1 metre 40 W bulb = 3.2 W/mm 2 1mW laser pointer = = 1 mw/mm 2 (300 x bulb), or = 0 W/mm 2 40 W surgical laser 40,000 x laser pointer
5
6 1 mm beam focussed to 20 microns (1000/20) 2 = 2500 power density
7 Absorption (log scale) 12.5 melanin Ar HbO 2 Nd:YAG Ho:YAG water CO Wavelength (nm) Visible Green 532 nm Red 633 nm Invisible Nd:YAG 1064 nm CO nm
8 Continuous beam Single pulse Interrupted pulses
9
10 Laser Device Classes & Hazards Class 1 Class 1M Class 2 Class 2M Class 3R Class 3B Class 4 Applies to device as a whole.
11 Video
12 Class 1 no risk to eyes (including using optical viewing instruments) no risk to skin (either low power device or totally encased)
13 Class 1M no risk to the naked eye no risk to skin
14 Class 2 no risk to eyes for short term exposure (including using optical viewing instruments) no risk to skin (visible, so blink response protects) (may cause dazzle or flash blindness)
15 Class 2M no risk to naked eye for short time exposure no risk to skin
16 Class 3R low risk to eyes no risk to skin (risk for intentional intrabeam viewing only) (may be a dazzle hazard)
17 Class 3B medium to high risk to eyes low risk to skin (aversion response protects skin, or must be focussed to such a small spot that pin-prick effect only)
18 Class 4 high risk to eyes and skin low risk to skin (diffuse reflection may be hazardous) (possible fire hazard)
19 HEYH Trust CP137 Health & Safety at Work Policy - Lasers - Includes safety of class 3B and class 4 lasers
20 Laser Safety Structure Risk assessment Controlled Area Local Rules Laser Protection Supervisor Laser Protection Adviser Authorised Operators and Assistants
21 Risk Assessments
22 Risk Assessments
23 Local Rules (How to work safely) Specific to each laser What are hazards? Controlled area - limit area of hazard - signs Users & Laser Protection Supervisor Safety precautions (e.g. eyewear, blinds) Methods of safe working, etc. Adverse incident procedure, LPA, etc.
24 Laser Protection Supervisor
25 Laser Protection Adviser
26 Authorised Users
27 Hull and East Yorkshire Hospitals NHS Trust L A S E R S A F E T Y AUTHORISED LASER OPERATOR ( C L I N I C A L) Laser: I have read and understand the Trust Laser Radiation Health & Safety Policy, the Local Rules & relevant sections of the manufacturer s instructions for the above laser I understand the responsibilities of Authorised Operators towards staff and patients, and undertake to use the laser in a safe manner, within my clinical competence. Name: Position: Signature: Date: If the operator is not a Consultant, this statement should be countersigned by the appropriate Clinical Coordinator or Consultant: (This statement should be kept by the Laser Protection Supervisor, and a copy sent to the Laser Protection Adviser).
28 Authorised Users
29 Incidents
30
31 Example
32 MDA One Liners - Eye risk? August 2002 (Issue 17) MDA has become aware of the use of inappropriate filters for lasers used in ophthalmic surgery. This can lead to permanent eye damage for the operator. When connecting a laser to a protective system with filters, ensure that the wavelengths of laser radiation for which the filter offer protection match the output wavelength of the laser. If a fault is suspected with the filters, the procedure should be discontinued and the filters examined by a trained engineer.
33 Example Laser nm Green, 2 W nm Yellow, 1 W 670 nm Red (aim), < 5 mw Goggles labelled nm OD> nm OD> nm OD>6
34 Example Laser nm Green, 2 W nm Yellow, 1 W 670 nm Red (aim), < 5 mw Goggles labelled nm OD> nm OD> nm OD>6
35 MDA One Liners - Hind Sight? March 2000 (Issue 8) Two separate incidents reported to MDA involving faulty laser equipment resulted in permanent retinal damage (one to a patient and one to the operator). In both cases, the operator had noticed that the equipment was behaving unusually but carried on with the procedure. Abnormal performance of any equipment should be questioned immediately.
36 Laser Eyewear Labelling DI 1060 L7 X Z 620 TO 700 nm OD 2 CARBON DIOXIDE, O.D NM DIR L4 D 1064 L7, IR 1064 L8, DIR L7, DIR > L5, DI L5, DI L5 D = continuous wave laser, I = pulsed laser (0.1 ms ms) R = giant pulsed laser (1 ns - 10 s), M = mode-coupled pulse laser (< 1 ns)
37 Wavelength Number before the L in nanometres Colour of beam May be single number (e.g ) or a range (e.g ) Wavelength on laser should fall within range on eyewear
38
39 Optical Density Number after the L Strength of filter OD 1 only 1 / th 10 of laser light transmitted OD2-1 / th 100, OD3-1 / th 1000, etc. Local rules should say strength required. Note higher ODs may be very dark
40 DIR L4 1 / th of nm laser light transmitted Laser Wavelength Suitable? CO nm Ho:YAG 2100 nm Nd:YAG 1060 nm LaserTripter 504 nm Argon 477 or 515 nm
41 DI L R L8 > R L7 > DI L DI L DI L DI L5 Laser Wavelength Transmission CO nm 1/100,000 Ho:YAG 2100 nm 1/100,000 Nd:YAG 1060 nm 1/10,000,000 LaserTripter 504 nm? Argon 477 or 515 nm?
42 Other Hazards Fire Anaesthetic gas ignition Plumes
43
44 f i n
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