What are the signs and symptoms of Raynaud's phenomenon?
Attacks of poor blood circulation in the fingers are the most noticeable symptom of Raynaud's phenomenon. These attacks occur when the hands or the whole body gets cold, either at work or at home or from stress. Household or leisure activities resulting in cold exposure include washing a car, holding a cold steering wheel of a car, or the cold handlebars of a bicycle. Attacks of white finger can also occur when a person is outdoors watching sports or while gardening, fishing or golfing in cold weather.
Typical attacks occur when cold or emotionally upset. Symptoms usually include:
Occupationally induced Raynaud's phenomenon gradually gets worse if workers remain exposed to the condition that causes the problem. As the disorder gets worse, the attacks become stronger and more frequent. It is important to recognize the signs and symptoms in the early stages and to take steps to avoid exposure.
The Stockholm Workshop classification is often used to rate vibration-induced conditions. In this classification, vascular (blood flow) changes and neural (feeling of touch, heat, cold, etc.) changes are considered separately [see Tables 1(a) and 1(b)].
Source: Gemne, G., et al. Scandinavian Journal of Work, Environment and Health. Vol. 13, no. 4 (1987). p. 275-278. And: American Conference of Governmental Industrial Hygienists (ACGIH). 2016 TLVs® and BEIs®. p. 190-194 and 198-204.
- context Cold fingers or toes.
- context Tingling and slight loss of feeling or numbness in the fingers, toes, nose, lips, and ears.
- context Blanching or whitening of the fingers, usually without affecting the thumb.
- context Numb, prickly feeling or stinging pain, sometimes with redness, upon warming or relief of stress.
- context A sequence of colour changes in the skin may progress from white to blue to red.
How do you live with Raynaud's phenomenon?
Precautions can be taken to reduce the number and intensity of attacks of white finger. These precautions include the following:
- context Protect the body from cold temperatures.
- context Dress appropriately for cold weather by wearing layers, mittens, gloves, an overcoat, a hat, and a scarf.
- context Avoid exposing your hands to extreme cold -- wear gloves when working in cold water or reaching into a freezer.
- context Protect your hands and feet from injury.
- context Avoid nicotine - nicotine can reduce blood circulation.
- context Decrease stress and anxiety.
- context Exercise can increase circulation. Exercise regularly and drink plenty of liquids to prevent dehydration.
- context During an attack, warm your fingers and toes (e.g., place hands under armpits or make wide circles (windmills) with your arms, run warm water over your fingers, or soak your feet in a bowl of warm water) and take time to relax.
Precautions with Vibrating Tools
Anti-vibration tools, anti-vibration gloves, and anti-vibration shields may help reduce exposure to vibration.
In general, grinding, machining, and vibrating processes should be as fully automated as possible. Workers should use vibrating tools only when necessary.
There are several ways to reduce the amount of vibration that passes from the tool to the hands.
It is important for workers to recognize if early symptoms of Raynaud's phenomenon have occurred and then get appropriate advice to reduce further exposure to vibration.
- requirement Use only well-maintained and properly operating tools.
- administrative Hold vibrating tools as lightly as possible, consistent with safe work practices. Let the tool do the work.
- requirement Rest vibrating tools on a support or work piece as much as possible.
- requirement Store tools so that they do not have cold handles when next used.
- administrative Use proper job design with scheduled breaks to reduce exposure to vibration.
Are there laws regarding vibration exposure at work?
Canada (federal), British Columbia, Saskatchewan, Manitoba, Quebec, New Brunswick, Yukon, Northwest Territories, and Nunavut are the jurisdictions in Canada that have specifically mentioned vibration exposure within their occupational health and safety regulations in terms of worker health or musculoskeletal effects. Most jurisdictions do not regulate a specific limit to exposure but rather state that workplaces must control for vibration where it can cause health or musculoskeletal effects.
The American Conference of Governmental Industrial Hygienists (ACGIH) has published exposure recommendations for the prevention of hand-arm and whole-body vibration.